Innovation Report

 
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Expats like Basel best

23.11.2018

Expats find Basel to be the best city in Switzerland, according to a study published by InterNations. Six Swiss cities were analyzed as part of its latest Expat City Ranking.

Basel, Zug, Lausanne, Geneva, Zurich and Bern are among the 72 cities around the world analyzed in the Expat Insider City Ranking 2018, published by InterNations. The expat organization also interviewed over 18,000 expats to produce its latest ranking.

Among the six Swiss cities, Basel was ranked the most popular by expats, coming 22nd in the overall ranking. Zug was the second most popular Swiss city, coming in 23rd, while Lausanne (44), Geneva (56), Zurich (57) and Bern (61) all placed in the lower half of the ranking.

Tapei came in first place overall, followed by Singapore, Manama, Ho Chi Minh City, Bangkok and Kuala Lumpur. Aachen was the highest ranked European city coming in seventh, while Rome, Jeddah and Riyadh were the three lowest ranked cities.   

According to an article by swissinfo, Basel scored particularly well among expats for its economic climate, coming in fifth place in this category. The city on the Rhine came in 10th for quality of life, with expats praising its transport system, and 28th for personal finances and housing. In contrast, 32 per cent said they do not feel at home (compared with 23 per cent worldwide), and 54 per cent said that it is difficult to forge new friendships (compared with 34 per cent worldwide).

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Baselland increases startup support

15.11.2018

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SunRegen Healthcare wins startup competition

08.11.2018

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Roivant raised USD 200 million, now valued at USD 7 billion

14.11.2018

The Basel-based pharmaceutical company Roivant Sciences has raised USD 200 million in a funding round. As a result, the company is now valued at an estimated USD 7 billion.

Roivant Sciences reported in a press release that all existing institutional shareholders participated in the latest funding round. The Basel pharma company also attracted a number of new investors, including NovaQuest Capital Management and RTW Investments. These new investors made up the majority of this latest funding drive, in which Roivant raised USD 200 million. The round has not yet finished and is only expected to close in early December. According to the press release, this latest financing puts the value of Roivant Sciences at approximately USD 7 billion.

Since the previous Roivant funding round last year, the number of therapies in development has grown from 14 to 34 and the company has increased its subsidiary “Vants” from six to 14. There has also been growth in employee numbers across Roivant and the Vants, from under 350 to more than 750. In addition, the Roivant subsidiary Enzyvant initiated a biologics licence application for a regenerative therapy to the U.S. Food and Drug Administration (FDA).

For 2019, the company anticipates topline data from six Phase 3 clinical trials. Roivant Health also intends to launch new Vants next year. This subsidiary was founded in June to develop companies that bring innovative medicines to emerging markets and improve the process of developing and commercialising new medicines through the application of technology. Sales are also expected to grow for Datavant, founded in autumn 2017 as a subsidiary that uses artificial intelligence in data analysis to improve the clinical trial process and accelerate drug development.

Roivant Sciences and its subsidiaries are supported by BaselArea.swiss as they establish themselves in Basel.

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Baselbieter Arbeitsmarkt- und Wirtschaftsforum 2018 Technologie@BL

22.10.2018

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Den Digitaltag in der Region Basel erleben

15.10.2018

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Connecting Innovators App Launch

11.04.2018

How the BaselArea.swiss-App connects innovators and supports an innovative idea.

One of the major assets of BaselArea.swiss is its broad network, which has been confirmed time and again by the participants of our seminars, workshops and conferences. To simplify the networking during and after the events, BaselArea.swiss launches the App “Connecting Innovators” together with SAS Papott.

The use is simple: After downloading the app from Google Play or from the App Store, connect with your LinkedIn account and complete your profile. You will see the other event attendees in a list with their name and picture, filtered according to proximity to your location, thus facilitating connect with other participants. Not only will you see which users attend the same events but it is also easier for specialists to connect to people with similar interests or for entrepreneurs to approach potential investors.

Networking made simple

Originally, the developer and founder of SAS Papott, Maxime Vitrey, had the vision of improving our ability to connect with our fellow human beings on a more general level. He designed an open app and everybody who created a profile could see who is close by. “I wanted to make it easy for everybody to get in touch with each other.” He also realized the potential the technology holds for networking at conferences. “I know from personal experience how hard it is to get in touch with other participants I do not know yet”, Maxime says. The challenges are manifold: Groups of people who stay together because they know each other already; name tags that are hard to read; the slightly impolite act of interrupting people who are engaged in conversation. And last but not least: finding the people you should talk to because you share the same area of interest.

The World of entrepreneurship

After attending a startup seminar organized by BaselArea.swiss, Maxime approached Sébastien Meunier, Head of Innovation & Entrepreneurship, to suggest creating an application according to the needs of the organization. “We quickly decided to give it a shot”, says Maxime. Being a seasoned project manager, he developed new techniques and gained experience during the implementation of the project since the whole value chain was in his hands. Currently, he approaches new customers to build clones of the app. He sees potential to ease interaction in large companies during meetings or amongst their employees. Further, the technology could be used in hospitals to allow patients to socialize with other patients. While Maxime still works for his long-term employer, Jet Aviation, he is also pleased that his entry into the world of entrepreneurship is successful. “It is extremely exciting to finally be the entrepreneur I always wanted to be.”

For BaselArea.swiss, the app allows the participants of the more than 70 events per year to be served even better: “The app helps to strengthen one of our core disciplines in creating an open and supportive business culture - a solid network with approachable members,” says Sébastien Meunier. “We are looking forward to seeing a lot of our participants using it.”

Join us to keep networking simple, efficient and useful. Download the app “Connecting Innovators” from Google Play or from the App Store and let us know what you think.

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Global Coating Supplier - Axalta Receives Tell Award 2018

12.10.2018

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Straumann unveils new products

11.10.2018

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Die Wirtschaftsregion Basel-Jura entwickelt sich stabil

28.03.2018

Die Wirtschaftsregion Basel-Jura bietet Unternehmen ein erstklassiges Umfeld. Dies das Fazit des aktuellen Jahresberichts 2017 von BaselArea.swiss.

In ihrem Jahresbericht 2017 zeigt sich BaselArea.swiss zufrieden mit der Entwicklung der Region Basel-Jura. Zwar pendelte sich die Zahl der von der Innovationsförderung und Standortpromotion der Kantone Basel-Landschaft, Basel-Stadt und Jura betreuten Ansiedlungen nach dem Rekordjahr 2016 wieder auf Vorjahresniveau ein. Gemessen an der Anzahl der geplanten Arbeitsplätze in den kommenden drei bis fünf Jahren knüpft das Ergebnis jedoch ans 2016 an. «Dies ist angesichts der erschwerten Rahmenbedingungen ein gutes Resultat», freut sich CEO Christof Klöpper. Insbesondere habe die Ablehnung der Unternehmenssteuerreform III zu Verunsicherungen auf Kundenseite geführt.

Bezüglich geografischer Herkunft und Tätigkeitsfeld der angesiedelten Unternehmen dominierten einerseits die USA sowie die Life Sciences (inklusive Chemie). Zu den grösseren Ansiedlungen zählten: Bio-Rad (USA), die in Basel den Europäischen Hauptsitz eröffneten, Idemitsu (Japan), die in Basel ein Forschungszentrum für organische Leuchtdioden einrichteten, sowie SpiroChem, die ihren Hauptsitz von Zürich nach Basel verlegten. Zudem gelang es, die Pipeline mit neuen Ansiedlungsprojekten zu füllen: So besuchten im vergangenen Jahr 90 Firmen im Rahmen einer Standortevaluation die Region.

Mehr Unternehmertum

Positiv entwickelten sich die Unternehmensgründungen in der Region Basel-Jura. So verzeichnete BaselArea.swiss eine erhöhte Nachfrage nach Dienstleistungen im Bereich Supporting Entrepreneurs und konnte mehr als 60 Neugründungen und Start-ups unterstützen. Die von BaselArea.swiss organisierten Veranstaltungen, Seminare und Workshops brachten über 5500 Teilnehmende zu Innovationsthemen zusammen, was ebenfalls ein deutliches Plus gegenüber dem Vorjahr darstellt.

BaselArea.swiss gelang es im Jahr 2017 eine Reihe von Aktivitäten in neuen, für die Region wichtigen Innovationsthemen anzustossen. So wurden die Aktivitäten im Bereich Industrie 4.0 ausgebaut. Diese sollen im 2018 mit Partnern aus dem benachbarten Ausland innerhalb eines Interreg-Projekts weiterentwickelt werden.

Ein weiterer thematischer Schwerpunkt fokussiert auf Innovationen in der chemischen Industrie. Unter dem Namen DayOne wurde 2017 eine vielbeachtete Initiative zum Thema Precision Medicine und Digital Health lanciert.

Überaus erfolgreich erwies sich der im 2017 lancierte Healthcare Accelerator BaseLaunch. Nicht nur gelang es mit Johnson & Johnson Innovation, Novartis Venture Fund, Pfizer und Roche sowie Roivant Sciences die Unterstützung von fünf Industrieschwergewichten für den Accelerator zu gewinnen. Auch am Markt wurde BaseLaunch gut aufgenommen: Über 100 Bewerbungen von Start-up-Projekten aus mehr als 30 Ländern gingen bei BaselArea.swiss ein. Sechs Start-up-Firmen werden nun in der Region Basel-Jura gegründet und während eines Jahres beim Firmenaufbau mit bis zu 250'000 Franken sowie Infrastrukturleistungen im Switzerland Innovation Park Basel Area unterstützt.

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Therachon completes 'transformational' acquisition

09.10.2018

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«Medtech & Pharma Platform» 5th anniversary conference again in Basel

05.10.2018

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Meet the BaseLaunch Startups

11.03.2018

Six of the BaseLaunch startups recently started Phase II. They received either grants up to 250,000 Swiss francs or gained free of charge access to BaseLaunch laboratory and office space at the Switzerland Innovation Park Basel Area. Hear what the startups, the BaseLaunch team and selection committee members experienced in the first year. Find out more about what makes BaseLaunch unique.

The BaseLaunch accelerator is now open for applications for the second cycle. Entrepreneurs with a healthcare based project or a game-changing innovation in diagnostics, medtech or related field at the pre-seed or seed funding stage are invited to submit their applications to the program.

Following the application deadline on 14 May, promising projects will be admitted to the accelerator program for a period of 15 months. In phase I, the startups will benefit from the support of industry experts, office- and laboratory space free of charge and access to healthcare partners. After three months, they will be invited to present their idea to the selection committee. They will determine which promising startups will proceed to Phase II that runs for one year.

BaseLaunch is backed by five industry leaders — Johnson & Johnson Innovation, Novartis Venture Fund, Pfizer, Roche and Roivant Sciences. Other public and private partners such as KPMG and Vossius & Partner also support the initiative.

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Visionarity promotes healthy living

05.10.2018

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Basel scientists develop DNA storage device

04.10.2018

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13 startup projects qualify for the first phase of BaseLaunch

18.09.2017

The BaseLaunch Healthcare Accelerator program from BaselArea.swiss started on September 14. Over 100 applications were received from more than 30 countries, and the selection committee has selected 13 projects to go on to Phase I. Now, the project teams will work with industry experts to further develop their business case over the next three months.

More than 100 projects from over 30 countries were submitted to the BaseLaunch accelerator program from BaselArea.swiss. The submitted projects ranged from therapeutics and diagnostics to digital healthcare and medtech. Instead of 10 as originally planned, the selection committee chose 13 promising projects, which will now proceed to Phase I. "The innovation potential of the project proposals was impressive," says BaseLaunch Selection Committee Chairwoman Trudi Haemmerli, CEO of PerioC Ltd and Managing Director of TruStep Consulting GmbH. “We look forward to seeing how the chosen project teams fine-tune their business cases during Phase I.”

According to Stephan Emmerth, the BaselArea.swiss Business Development Manager for BaseLaunch, the selected projects cover a wide range of objectives: from new approaches for the treatment of diseases such as Alzheimer's or novel immunotherapies to innovative drug delivery methods and next-generation gene therapies for cancer treatment. Other projects focus on new diagnostic procedures for finding cancer biomarkers or revolutionizing the detection of neurological diseases by deploying digital measurement methods.

The development stages of the projects were just as varied. Some projects were submitted by entrepreneurs wishing to establish a company with the support of BaseLaunch. Other projects came from existing startups that had already successfully managed the initial rounds of financing and wanted to further develop the company with the help of BaseLaunch. The founders of these companies and members of project teams also had different professional career histories. Some of the applicants selected for Phase I have many years of R&D experience in the industry; others come from a university background.

"We have chosen the most promising projects. Additionally, selected projects should benefit as much as possible from BaseLaunch and its regional life sciences ecosystem," says Alethia de León, Managing Director of BaseLaunch. “We paid particular attention to a sound scientific and technical foundation, a high level of innovation and the entrepreneurial potential of the founding team.” Alethia also commented on the productive and collaborative selection process with representatives from healthcare partners that included Johnson & Johnson Innovation, Novartis Venture Fund, Pfizer and Roche. "Our discussions during the selection process were very constructive," she says.

The 13 selected startups will have three months from September 14 to develop their business ideas. They will be supported by the BaseLaunch team as well as a number of experienced entrepreneurs and consultants. In this first phase, up to CHF 10,000 will be available for each of the projects. The selection committee will then select three of the Phase I projects to progress to Phase II. This phase lasts for 12 months, with each project receiving funding of up to CHF 250,000. The selected project teams in Phase II will also have access to the BaseLaunch Lab in the Switzerland Innovation Park Basel Area, where they will be expected to achieve important research milestones and further develop their business cases.


Overview of the selected projects:

ABBA Therapeutics develops therapeutic antibodies against novel targets for cancer immunotherapy.

The β-catenin project aims to develop novel therapeutics for the treatment of colorectal, lung, liver, breast, brain and ovarian cancers by removing pathological proteins from the human body.

CellSpring analyzes human cells grown in special 3-Dimensional environments to develop new tools for diagnosing early-stage cancer.

Eyemove strives to detect early-stage neurological diseases through eye-tracking.

Polyneuron Pharmaceuticals is committed to the development of a promising new drug class to treat autoimmune disorders.

The SERI project develops new medicines to treat anxiety and stress related disorders by modulating the activity of cannabinoid molecules in the human body.

SunRegen develops novel drugs for neurodegenerative diseases.

T3 Pharma develops the next generation bacterial cancer therapy.

The mission of T-CURX is to exploit its unique ‘UltraModularCAR’ platform to provide best-in-class immunotherapy.

The mission of TEPTHERA is to offer individualized therapeutic cancer vaccines.

TheraNASH develops precision medicine for fatty liver disease (NASH) - a rising cause of liver cancer world-wide.

VERSAMEB is a regenerative medicine research and development company.

One biotech in stealth mode is developing novel Immuno-Oncology drugs.

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First semester starts well for FHNW Campus Muttenz

20.09.2018

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BaseLaunch’s second round – 10 projects enter Phase I

18.09.2018

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"I want to turn innovative research into new drugs"

04.07.2017

Each year some 250,000 patients develop a type of cancer because of faulty communication between cells. This malfunction occurs in what is known as the NOTCH signal path. There are currently no effective treatments – but this is set to change. Cellestia Biotech AG is developing an innovative drug against this type of cancer by using a novel active ingredient that selectively attacks the malfunctioning cell communication. The drug could be used to treat leukaemia, lymphomas and solid tumours such as breast cancer.

In 2014 Professor Freddy Radtke and Dr Rajwinder Lehal, who had dealt with this subject in his dissertation, founded the company Cellestia Biotech AG. In 2015, an experienced team of pharmacology and oncology development specialists led by Michael Bauer came on board, investing in Cellestia as co-founders. Bauer and his team had previously spent several years examining various projects in an effort to help shape the development of such a start-up company. We spoke with him about the risks and implications of founding a company.

Interview: Stephan Emmerth

Mr Bauer, how long did you have to look before you found a project you wanted to invest?

Michael Bauer: Over the course of many years and alongside my regular jobs, I and my colleagues examined, evaluated and rejected a number of projects – sometimes more intensively, sometimes less. Some of the projects were great, some being unbelievably innovative. However, something always led us not to pursue a project in the end.

The search did not just cost you a lot of time, but also a lot of money as you have to conduct due diligence every time.

We of course had to put effort into the search. You could say that we identified, examined and evaluated projects acting similar to a small venture fund. Thanks to the make-up of our team, we were able to undertake many of the tasks ourselves, at times bringing in experts. There were many instances when specialists from our network assisted us. There was a considerable amount of good will. To some extent we footed the bill ourselves.

Why did this not work out before Cellestia?

A number of conditions have to be met. The basis is of course excellent, innovative research results protected by patents. Also important are ownership rights to the inventions and reasonable licencing terms. Finally, there has to be agreement on the expectations of the people involved in the project. We have experienced pretty much everything. Many times it emerged over the course of the investigation that, for example, the research data was not quite so convincing as had initially been presented. Or the expectations with respect to the licencing conditions were too far apart. In one project, they wanted to sell us patents that had expired. It often happens that the scientists have unrealistic ideas about the value of their project. One retired professor who had tried in vain for many years to finance his company expected us to try for five per cent of the shares. This is of course not the basis for a partnership.

Juggling research and entrepreneurship is a big challenge, isn’t it?

It is necessary to develop an understanding of the relations and contributions of the various partners involved in such a project, each of who have very different personal risks. On the one hand, there is some 20 years of basic research behind Cellestia, 11 of which were at the EPFL. Rajwinder Lehal has been working concretely on this project for the past nine years, initially as part of his dissertation, then as a post-doc and since 2014 as Chief Scientific Officer. We respect this history from the management team and are happy to have access to the resulting knowledge. At the same time, the inventor’s side has to have regard for the entire expenditure: some five million of public funds were invested over the years at the EPFL. However, it could take hundreds of millions until a product comes onto the market. Moreover, the path from the first successful experiment in lab animals until a drug is approved for human use is long. Altogether, the cost of research could be marginal in comparison to the development and marketing, amounting to only a few per cent. And the development costs are paid for by the investors, who need the investment to pay off. All of these factors have to be considered and respected in a partnership. This worked with our team.

You have many years of industrial experience. What attracted you to the entrepreneurship?

The challenge of turning ground breaking inventions into products attracted me. I consider myself a product developer and had wanted to start a company even as a student. Looking back, I have to say that I am lucky to have gained nearly 20 years of professional experience in product development as it is important to be able to understand and appreciate just how complex the challenges are in product development in life sciences and pharma. This wealth of experience also helps you understand where your own knowledge ends and when experts have to be brought on board to be able to successfully advance a project or a company.

What was the incubation from first contact until you joined as co-founder at Cellestia like?

The current Chief Scientific Officer, Rajwinder Lehal, and I had been in regular contact with each other for a number of years. At that time, however, the project was not advanced enough to establish a company. Initially, Professor Radtke, Rajwinder Lehal and Maximilien Murone founded Cellestia in 2014. We met a few times in summer 2015 with the Lausanne research and founder team at i-net, the predecessor of BaselArea.swiss. Things moved quickly from there. In just a few meetings, we were able to evaluate the project and develop a good personal understanding, which for me and my partners was very important if we were to invest in Cellestia. We could agree on matters quickly, more or less by handshake. Then came the necessary contracts and in November we were already listed in the commercial register. Our lawyer and co-founder Ralf Rosenow saw to the formalities. We decided to move the headquarters from Lausanne to Basel but to leave the research activities in Lausanne, resulting in a sort of transcantonal partnership.

Why move the headquarters to Basel?

For us, the most important argument in favour of Basel was access to talent and resources for product development, resulting from the proximity to leading pharmaceutical companies such as Novartis, Roche, Actelion and many others. Such access to experienced development specialists is more difficult in Lausanne. In addition, our co-founder Roger Meier and other colleagues already have an active investor network in Basel with an affinity to the sector and Basel itself. We did not have such access in Zurich or Geneva at the beginning. I personally also like the quality of work and life in Basel. The city is of a manageable size yet international, with diverse cultural offerings. Furthermore, the Basel airport has excellent connections – you are in the middle of Europe and in just one to two hours you’re practically anywhere Europe, be it London, Berlin or Barcelona. Lausanne, on the other hand, has in its favour the outstanding academic environment with the EPFL and the Swiss Institute for Experimental Cancer Research. Here, too, there is an excellent environment for start-ups, but in our opinion more toward engineering and technical disciplines or medicine technology. Many companies are founded each year at the EPFL and the innovation potential is enormous, but Cellestia is the first company founded at the EPFL that seeks to bring a drug to clinical development. We are happy to be able to combine the positive elements of both regions via what is now an established approach with two locations.

Which pre-conditions were decisive enough that you ended up collaborating and founding the company?

Actually, everything was right from the very beginning. First of all, the personal atmosphere between the people involved has to be right. This was also the basis in coming to a fair agreement for all co-founders with respect to understanding the evaluation and allocating the respective shares in the company at the time it was founded. On the other hand, it was of course crucial that the substantive examination of the project – as concerns both the scientific basis and the quality of the data – and the examination of the patent as well as license conditions of the EPFL were positive. Also important to us was that the risk profile is manageable, i.e. there is a good balance between innovation and reference to the research already carried out.

How will Cellestia develop further operationally?

Cellestia already has a long history, starting with the research activities at the EPFL. When the management team was expanded in 2015, other co-founders joined at the same time that I did: Dirk Weber as Chief Medical Officer, as well as the already mentioned co-founders Ralf Rosenow and Roger Meier. Cellestia now has six employees. Then there are the numerous service and consulting mandates, which complement our internal resources as needed. If you take into consideration external services, I reckon there are now well over 100 people involved in Cellestia. We expect that we will continue to grow in the direction of clinical development as our first project progresses and further expand the team. Moreover, we would like to develop additional products in our pipeline as soon as possible. This will definitely require additional financial resources. The Board of Directors will also develop further, expanding and adapting with each financing round in order to properly represent new investors. Research work is increasingly being carried out by external services providers, and at the same time continuing in the laboratory of Professor Freddy Radtke at the EPFL. We are currently setting up new framework agreements with the EPFL concerning the further use of their infrastructure. The flexibility there is very helpful for us.

What are the next milestones?

A key milestone is the treatment of the first cancer patients. We hope to be able to treat the first patients in October.

How are the clinical studies organised?

The course of a clinical trial for new drugs is strictly regulated. In the Phase I study, the compatibility of the active ingredient is first examined. This is when we treat patients who are suffering from a form of cancer in which NOTCH most likely plays a role. In the following Phase II study, the efficacy of our drug is researched in different types of cancer. This is when we select patients in whom activation of the NOTCH signal path is detected with a Cellestia diagnostic method. The therapeutic benefit for these patients is therefore very likely.

Have there been any surprises so far?

No, not really, because we have considered everything. Or yes, but pleasant surprises: due to the considerable amount of preparatory work, we were already quite certain with respect to the effect mechanism. It has now finally been possible to detect the precise binding mechanism of the drug, which confirmed all former studies. This is also the basis for significantly expanding the programme. We can now build a new platform on whose basis we can generate new drugs for new indications. In addition, it was not that easy to manufacture the drug in large quantities and in a high quality. Innovative steps were needed, which ultimately leads to a patent.

What do you have in mind for the next five years?

We are very optimistic about Cellestia’s prospects for success and are planning the next couple of years in detail. We of course also have a plan for the overall development over the next five years, but as experience shows, such plans always change with the results obtained. This is also the fascination and challenge in medication development – it does not allow you to plan everything in detail, and you have to respond flexibly to new results. This also applies to possible setbacks, of course. It is important to have sufficient reserves to deal with these and resolve them. Thanks to the successful financing rounds that we could close in January 2017, we are in a position to begin with Phase I while at the same time pursue further financing.

Who has invested in Cellestia so far?

The first investors after the deposit of the initial capital were predominantly many of our advisors, i.e. experts who are familiar with the sector as well as private people involved in life sciences and the pharma sector as investors. Around one-third of the shareholders are experts from the pharma and life sciences setting. Over the course of the Series A, B and C financing rounds, larger investments from family offices also came. The first institutional investor, the PPF Group, invested after its own, extensive due diligence that was conducted by experts from Sotio. So far, we’ve been able to mobilise a total of CHF 8 million to drive product development at Cellestia. In preparation of the next financing round, we are in talks with private investors, venture funds and pharmaceutical companies. We are confident that we will be able to win good partners for Cellestia’s next phase. The right combination of partnerships and financing is important. We need strong partners on board to give patients access to our medications quickly.


About
Michael Bauer (born 1966) has been CEO at Cellestia since November 2015. He studied chemistry at the University of Hamburg and completed his doctoral in biotechology from 1994 to 1997 at the Hamburg-Harburg University of Technology. After working in metabolic research at Zeneca in England, he moved to Syngenta in Basel in 2001 where he worked as Global Regulatory Affairs Manager in project and portfolio management. From 2007 to 2009 he was a project leader at Arpida, a biotech firm in the field of antibiotics development. From 2009 to 2012 he was a Global Program Manager at Novartis where he led global development projects in the field of oncology and brought a range of products to clinical development. From 2012 to 2015 he was the Head of Clinical Development at Polyphor.

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500 words on the DayOne Conference 2018

18.09.2018

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Connecting Innovators App – check out our latest updates

04.09.2018

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BaselArea.swiss got off to a successful start

08.06.2017

In its first annual report, the newly formed BaselArea.swiss can look back on a successful 2016. The joint initiative for innovation and economic promotion by the cantons of Basel-Stadt, Basel-Landschaft and Jura succeeded in growing in all areas. It provided assistance to 36 companies moving to the region, which corresponds to a 50% increase over the previous year. In the area of innovation promotion, over 4,000 participants attended 80 events, expanding the regional network from 8,000 to 13,000 innovators and experts. The services provided by BaselArea.swiss were also actively used to promote start-up projects, contributing to 43 companies being founded.

With a 50% increase over the previous year, the Basel region recorded the biggest growth across Switzerland with the number of new companies to the region. The economic promotion team at BaselArea.swiss advised and assisted 31 foreign and 5 domestic companies relocate to the Basel region. 14 companies came from the US and Europe each, and 3 from Asia. 19 of the new companies to the region are active in the life sciences.

“The consolidation of economic promotion and innovation/start-up promotion under one roof is paying off. By focussing on the strengths of the economic region, the location was able to clearly gain importance as a significant innovation hub in the life sciences and related technologies,” says Christoph Klöpper, CEO of BaselArea.swiss.

Growing network of innovators and experts

BaselArea.swiss succeeded in significantly expanding the network of innovators and experts in 2016, growing from 8,500 people at the end of 2015 to more than 13,000 people at the end of 2016. This puts BaselArea.swiss in a position to better assist clients with respect to relocations as well as innovation and expansion projects by providing them with targeted communication of knowledge and partnerships. The more than 80 events organized by BaselArea.swiss – attended by over 4,000 participants – made a key contribution to the expansion of the network. In addition, BaselArea.swiss supported start-ups and companies in more than 180 individual consultations, including initiating cooperation in research and development as well as in establishing contacts to potential customers and investors. In total, BaselArea.swiss provided assistance that resulted in 43 companies being founded.

BaselArea.swiss grew out of the merger of i-net innovation networks, the economic promotion agency BaselArea and the China Business Platform, and began its operational activities at the beginning of 2016 under the new brand BaselArea.swiss with a unified services portfolio and newly launched website. Its entrepreneurial profile has also been strengthened: industry representatives now form the majority of the Board of Directors, which is chaired by Domenico Scala and is responsible for strategic orientation.

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Plug & Play Lab Space for R&D at Switzerland Innovation Park Basel Area

03.07.2018

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NBE Therapeutics secures new investor

02.07.2018

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A molecular assembly line to cure the body

08.06.2017

Imagine that certain forms of blindness could be cured. Or imagine that the body itself could produce a cure for some of its own diseases. These may be just some of the results of the National Centre of Competence in Research Molecular Systems Engineering (NCCR MSE). Its long-term goals are to create molecular systems and factories for the production of high added-value chemicals and develop cellular systems for new applications in medical diagnostics, therapy and treatment. Director Thomas Ward is aiming high: He wants to make Basel the leading hub for the next European flagship project. At stake: one billion euro.

Interview: Ralf Dümpelmann

Thomas Ward, you are the director of the NCCR MSE. How did you end up in this position?

Thomas Ward: During my work at the University of Neuchâtel we became curious about artificial metalloenzymes. For instance, we could take ruthenium ion that nature does not have much of at its disposal, and incorporate it in a protein to yield an artificial metalloenzyme. Pursuing this curiosity driven pathway, my group became more and more interested in biological questions. Ultimately I wanted to collaborate with molecular biologists – and this is one of the main reasons why I moved to Basel. When I arrived here nine years ago, the ETH Department of Biosystems Science and Engineering (D-BSSE) had just moved to Basel. That led professor Wolfgang Meier, then head of the Department of Chemistry at our university, to initiate talks with the D-BSSE which were very productive. In the end, he and co-director professor Daniel Müller set out for a National Centre of Competence and Research that ultimately got funded by the Swiss National Science Foundation (SNSF).

What was the goal when starting the NCCR?

Wolfgang Meier and Daniel Müller saw the opportunity to start a collaboration between biologists who relied quite heavily on chemistry and chemists who can provide the required chemical building blocks to address challenging biological questions. This is scientifically a very unique match. In my view this is also reflected in the most important aspect in the title of our NCCR – molecular systems engineering – namely the systems aspect.

Do you build artificial biological systems with the help of chemistry?

At the end of the road, we want to reproduce the properties and the complexity of a living system. There are two ways to get there. The chemical way is to take a compartment, put objects inside one by one and see what evolves. That is the bottom-up approach. On the other hand, a biologist takes a complex system and knocks out components, one at a time. In doing so, biologists focus on computing a system. And they are doing this very well. They can control things, even without fully understanding the molecular details of such systems. These two approaches meet at some point, and that is where our NCCR comes into play.

What could a potential end result look like? A small golem?

If you take the definition of what is life, there are a few features that we are definitely not trying to mimic. We are rather focusing on an artificial organelle, something that you could introduce into a living system and which would work in a living system, but which does not have all the features of a living system itself. I like to call such components molecular prostheses. It is like an artificial Lego block that fits into living systems. There we are already quite advanced.

Can you explain how the work of the NCCR is structured?

The network is planned to work over twelve years, split in three phases. There are roughly 30 groups associated with this NRCC, with some 20 in Basel. When there is somebody outside of Basel who has a competence that we need, they can be integrated to the network. That might be people in the Paul Scherrer Institute or at the University of Bern, for instance.
We are now approaching the end of the first phase of four years. The first step for us as chemists is to synthesise and assemble molecules into modules, an assembly of several molecules. For example, Sven Panke at the D-BSSE and myself synthesise artificial enzymes. Daniel Müller of the D-BSSE on the other hand manipulates pore proteins which allow to control the trafficking of substrates and products in and out of a cell. The goal is assemble an artificial organelle containing two or three enzymes and to introduce this prosthesis inside a cell. With that we can complement the natural metabolism of a cell with an artificial metabolism to produce new chemicals. At the end of the first phase, we ideally want to have solved the module’s problem. In the second and third phase, we can then focus on creating molecular factories and cellular systems.
Ultimately, a chemical factory could produce something that could be useful and a cellular system could be used to cure a disease. For both of these goals, you need a molecular assembly line, much in the spirit of what Henry Ford developed in the early twentieth Century, but at a molecular scale.

Do you already get a stable system out of these assembly lines?

Yes. The question is, however, how stable and for how long. We have systems that function in a cell for two weeks. Whether this is enough to cure a disease remains to be demonstrated.

What benefits may come out of it?

Our aim is to change the way biology and chemistry work in the long term. It is a risky strategy, but with a potentially high payoff.

What would be the high payoff?

You put a molecular or cellular system in the body and it treats or cures a disease.

When will that be feasible?

There are two systems, which are already very well advanced. Both were initiated and funded by the NCCR. Botond Roska of the Friedrich Miescher Institute for Biomedical Research has developed a system that can be injected into the eye to regain vision. This system will enter clinical trials in Winter 2017. It is based on genetic engineering, where you have to inject DNA so that your eye starts to produce pigments again. The other one is aimed at curing diabetes. Your fat cells are re-programmed into cells that are capable of producing insulin. They are then injected into your body and allow you to autonomously produce insulin when the body needs it.

Will these ideas be used in start-ups?

Yes. There are already two start-ups that were created in the past three years. The diabetes treatment is also seriously being looked at for a start-up. The SNSF wants to see things like that. It wants us to bring our research to an advanced stage.

You are organising the International Conference on Molecular Systems Engineering in Basel at the end of August. What is its main goal?

It is a challenge to organise such a conference because people who attend conferences like to talk to specialists in their fields. In our case, we want to apply our approach to a number of different fields. There will be outstanding speakers, but we have to convince people that it is worth looking at the subject from a broader perspective. The good news is that there are similar projects in Europe, in the Netherlands and in Germany. We will have a pre-conference, where graduate students from these other projects can exchange experience and ideas with students from the NCCR.

Is the conference a step to the European level?

Four years ago, the EU funded so called flagship projects. One of them was the Graphene project in Manchester, the other one the Human Brain project at the EPFL in Lausanne. These flagships have a budget of a billion euro. It seems that Europe will have a second round of such flagship projects in a few years. Our aim is to apply for the funding together with our partners in Germany and the Netherlands which would ensure the development of molecular systems engineering at a European level in the future.

In unique events the conference combines art and research. What is the idea behind this special mix?

It is about communication and ethics. We asked ourselves how we can talk about our research as it is quite complex for lay people to understand. One answer is to interact closely with artists and see if they can show their interpretation of what we do, and hopefully this would speak more to the public. We worked with artists hoping that they might rise interest in our research. Furthermore we can engage the public in a dialogue about ethical questions.

When will this dialogue start?

At our conference the argovia philharmonic will present a composition based on illustrations and videos we have provided them with. On the same day, we will also have a public ethics debate. We have brought in an editor of “Science” who will animate the debate and there will be three people debating. We hope one of them will be a bioethics officer of the Pontifical Academy for Life, the two others will be scientists.

What was for you the scientifically most exciting aspect of this NCCR?

When we started, we had a very broad approach and we had quite a number of curiosity-driven research projects. Without it, we would not have come as far as we did in these three years. For the second phase – we have just submitted the pre-proposal – we are much more focused.

What do you hope to achieve at the end of the NCCR?

If we only get one product in use this would already be a very nice achievement. Imagine, for example, that we could say: This NCCR has cured some forms of blindness.

About:
Professor Thomas Ward, born in 1964 in Fribourg, is the director of the NCCR Molecular Systems Engineering. He heads the Ward Group at the Department of Chemistry of the University of Basel. The group’s research focuses on the exploitation of proteins as a host for organometallic moieties with applications in catalysis as well as in nano-biotechnology.
Ward studied organic chemistry at the University of Fribourg. He wrote his PhD thesis at ETH Zurich. He did a first postdoc with Roald Hoffmann at Cornell University in theory and then a second postdoc in Lausanne. He was then awarded an A. Werner Fellowship and moved to Bern where he obtained his habilitation. He moved to Neuchâtel in 2000 and to Basel in 2008. He was awarded a prestigious ERC advanced grant in 2016 and the 2017 Royal Society of Chemistry award in Bioinorganic chemistry.

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Investing in strengths – Swiss leadership in life sciences

15.05.2017

How can Switzerland and the Basel region maintain their international leadership role in life sciences? As part of the Biotech and Digitization Day, Federal Councillor Johann Schneider-Ammann visited the Basel region to discuss current trends and challenges with a high-ranking delegation from politics, business, research and start-ups.

The importance of life sciences for the Swiss economy is enormous. Last year, the sector was responsible for 45% of total Swiss exports. Similarly, the majority of new relocations are active in the healthcare sector. Switzerland is said to a leading life sciences location in the world with the Basel region as its engine.

It is against this backdrop that Federal Councillor Johann Schneider-Ammann, head of the Federal Department of Economic Affairs, Education and Research, was invited by BaselArea.swiss and digitalswitzerland to visit the Basel region as part of the Biotech and Digitization Day to discuss current trends and challenges in life sciences with a high-ranking delegation from politics, business and research.

The event was held at Actelion Pharmaceuticals and the Switzerland Innovation Park Basel Area in Allschwil in the canton of Basel-Landschaft. Federal Councillor Schneider-Ammann emphasised the significance of the region and life sciences industry: “The two Basels have a high density of innovation and successful companies, research institutes and universities. This fills me with pride and confidence. Pharmaceuticals and chemistry are rightly regarded as the drivers of innovation.” But Switzerland cannot rest on its laurels if it is to remain successful in the future; business and politics, science and society must all use the digital transformation as an opportunity, he insisted.

The event was organised by BaselArea.swiss, which promotes innovation and business development in the northwest Switzerland cantons of Basel-Stadt, Basel-Landschaft and Jura, and digitalswitzerland, the joint initiative of business, the public sector and science, whose aim is to establish Switzerland as a leading digital innovation location in the world.

Federal Councillor Schneider-Ammann is currently visiting Switzerland’s leading regions to get an impression of the effects of digitalisation on different business sectors and to talk about promising future concepts.

Supporting biotech start-ups

Life sciences are regarded as a cutting-edge sector with considerable growth potential. But competition among the different locations is becoming more aggressive as other regions in the world are investing heavily to promote their location and attract large companies. A central question of today’s event was: How can Switzerland and the Basel region maintain its leadership role in the face of international competition?

Given its major economic importance in life sciences and when measured against other leading locations worldwide, Switzerland has comparatively few start-ups in this industrial sector. With the launch of BaseLaunch, the new accelerator for healthcare start-ups, BaselArea.swiss and the Kickstart Accelerator from digitalswitzerland have taken a first step to changing this. However, in addition to the lack of seed capital in the early phase of a company’s development, there is also a lack of access to the large capital that an established start-up requires in order to expand. Said Domenico Scala, president of BaselArea.swiss and a member of the steering committee of digitalswitzerland: “We have to invest in our strengths. This is why we need initiatives like Swiss Future Fund, which aims to enable institutional investors to finance innovative start-ups.”

The importance of an innovative start-up scene for Switzerland as a centre of life sciences was also a topic for the roundtable discussion that Federal Councillor Schneider-Ammann held with Severin Schwan, CEO of the Roche Group, Jean-Paul Clozel, CEO of Actelion Pharmaceuticals, Andrea Schenker-Wicki, rector of the University of Basel, and others.

Digitalisation as a driver of innovation

The second topic at the Biotech and Digitization Day was digitalisation in life sciences. According to Thomas Weber, a member of the government of the canton of Basel-Landschaft, this is an important driver of innovation for the entire industry and is crucial to strengthening Switzerland as a centre of research.

In his speech, Federal Councillor Schneider-Ammann focused on three aspects: first, the creation of a new and courageous pioneer culture in which entrepreneurship is encouraged and rewarded for those who dare to try something different. Second, more momentum for start-ups by realising an initiative for a privately financed start-up fund. And third, shaping the role of the state as a facilitator that opens up spaces rather than putting up hurdles or bans.

In the public discussion round, in which representatives from research and industry as well as entrepreneurs participated, it became clear that digitalisation is changing life sciences. Everyone agreed that Switzerland has the best conditions to play a leading role in this transformation process. The basis for this are its powerful and globally actively pharmaceutical companies, its world-renowned universities and an innovation-friendly ecosystem with digitally driven start-ups from the healthcare and life sciences fields. 

digitalswitzerland wants to promote this, too. According to Nicolas Bürer, CEO of digitalswitzerland, healthcare and life sciences are key industries to making Switzerland the leading digital innovation location.

A further contribution can be made by the DayOne, the innovation hub for precision medicine. Launched by BaselArea.swiss in close cooperation with the canton of Basel-Stadt, it brings together on a regular basis a growing community of more than 500 experts and innovators in an effort to share ideas and advance projects.

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The healthcare system must take responsibility

09.05.2017

Kristian Schneider wants to improve the quality of health care and better manage the rising healthcare costs by means of a network that includes doctors, hospitals, insurance companies and the state. Its aim is to provide exactly those services needed for the health of patients. For the canton of Jura, which like all other cantons suffers from the fragmentation of service providers, this could be a unique opportunity to build an integrative care system – and thus become a pioneer, says the director of Hôpital du Jura.

Interview: Fabian Käser, Steffen Klatt

What brought you to the canton of Jura?

Kristian Schneider: I was asked and had 16 hours to decide and submit an application in French. The likelihood of ending up in a high-level managerial position as a nurse is relatively rare. There are only three hospitals in Switzerland that are run by people with a nursing degree.

How did your new colleagues react to a nurse becoming a hospital director?

The reactions were almost all positive. Nurses have a different understanding of the system and speak differently with the people who are supposed to produce health – because they have done it themselves.

How are you received as a German?

I have lived a large part of my life in the greater Basel region. The Jura is not far from there. When I was approached by the canton of Jura in 2012, I was living not far from Belfort, just 20 minutes from the Jura border. This creates an affinity. But I hardly knew the canton. I quickly noticed that the people here are very friendly and open. You can build up a network quickly.

How did you approach the work?

I arrived on 1 January 2013, and the budget was already prepared with a loss of CHF 4.5 million predicted. We then created an action plan to overcome the loss, starting 40 projects to increase resource efficiency and flow efficiency. We were fairly successful in the end.

How did people react?

Although we defined the action plan from above, we made an effort to implement it together with our staff. For example, we had too many operation blocks, and our specialists suggested that we concentrate all operation blocks in Delémont. People knew where we are inefficient; we only have to give them permission to change it. But this also requires a cultural shift.

Where do things stand now?

We broke even in 2013. And we’ve been balancing our accounts since then – while the canton is less and less able to be involved in the hospital. We’ve tidied many things up and have done more in certain areas than other hospitals in the French-speaking part of Switzerland. We’ve since come so far in coding cases that we can now make this service available to other hospitals, such as Neuchâtel. With respect to accounting, our accountants have confirmed that we have the highest quality in the French-speaking part of Switzerland. We were the first hospital to be REKOLE-certified (the system of revising cost accounting and assessments in accordance with the requirements of the Health Insurance Act, ed).

We’ve also better positioned ourselves in the canton. We’re in a unique situation here: as a hospital, we have a “quasi monopoly” in acute care, outpatient care, and also in neuro-rehabilitation and geriatrics. We have 28 per cent of nursing home spots. We therefore cover a good deal of health care in the canton of Jura.

What comes next?

Credit Suisse is forecasting that health insurance premiums are set to double by 2030. In the canton of Jura, this would put 60 per cent of the population below the poverty level. So this raises the question of how we can shape health care in a way that we can still pay for it.

What is driving the costs?

Primarily outpatient care and the age structure. Of course, most of these costs are in the final one or two years, but they begin to rise in the years leading up to this. To prevent this, we need a healthcare system with greater efficiency. Many of today’s costs do not contribute to improving health.

How do you plan to manage the cost drivers?

If I see my role as guiding people through a healthy life, then this also means that people consume only as many healthcare services as they need. So I have to prevent doctors from prescribing services that people don’t really need.

The only way to achieve this is by making all actors take responsibility for the quality and the costs. Doctor have to be paid for keeping their patients healthy.

What could this look like?

We have to build up a network in close cooperation with doctors and change the financing system. Let’s assume that every person has a healthcare budget of CHF 5,000 per year, for instance. Then we would have CHF 360 million for the entire canton of Jura with its 72,000 inhabitants. No more. If something is left over, then it would remain in the network and everyone would have an interest in prescribing only that which brings added value. And there would also be an interest in investing in preventative care.

How would you organise this?

You first have to create a network and regulate it through a framework contract. The most important rule is that everyone only does what is actually necessary. In this network you form a quality committee as a second level, which uses actual cases to examine if the cooperation works. Thirdly, the actors should work together in a physical sense as closely as possible. So if I build a hospital, a healthcare centre should be built right next door to it. And fourthly, the network must invest in preventative care. This can also be because money is left over.

How would you finance the network?

This would be done by the insurance companies. They have no interest in having us exhaust the maximum budget. Insurance companies would therefore sell the model to their policyholders. Insured people who decide in favour of our network would then pay somewhat less than if they had a completely open choice of doctor and hospital.

Isn’t this what Swica is already doing with its healthcare centres?                                                                                              

Swica only does this with primary care, without a hospital. The canton of Jura now has a unique opportunity: it is manageable and has only one hospital

What do you need to build this network?

I would need an experienced partner. And it already exists: Réseau DELTA is a network in the greater Geneva area that is active in primary care. It is very interested in trying something like this with a hospital. We are also talking with Medbase and University Hospital Basel as potential partners. In the end it also needs the canton because the financing model will be changed. But I don’t see a problem there.

Because it will be the same amount just under a new name for the canton?

Precisely. The 55 per cent, which it assumes for hospital accommodation, could be part of the overall budget. It could then show its citizens that healthcare costs no longer have to automatically increase. At least not for those who choose our network model.

When do you begin?

I’m already negotiating now. For the first time since it was founded, the canton is now writing its owner strategy. It has to explain if it has expectations of us as a hospital in regard to the overall costs of the healthcare system. And if yes, if we have the freedom to change the structures. The federal government, which is ultimately responsible for the financing, is open to such models. The canton of Jura could therefore take a step toward a completely different system. It could even establish itself as a region where well-off elderly people spend their last years. This could turn health care into an interesting economic factor in the Jura.

Will you stay in the canton of Jura until you retire?

Enjoying my work matters to me, and I have that here. But I’m unsure if this would also be good for the hospital. Only time will tell. In our past-paced world we need change at such positions, fresh impetus.

About:

Kristian Schneider (45) was born in Frankfurt am Main. He was trained as a nurse in Basel and worked for close to 20 years at University Hospital Basel, the last five years as head of the emergency department. From 2007 to 2009 he completed a diploma programme at the University of Bern in Health Care Management. He has been the director of Hôpital du Jura since 2013. The Jura Cantonal Hospital was formed in 2002 through the merger of the hospitals in Delémont, Porrentruy and Saignelégier and employs 1,655 people.

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Basel-Landschaft welcomes new companies

21.04.2017

The canton of Basel-Landschaft welcomed a host of new companies over the past few weeks. BaselArea.swiss played in a big role in attracting the companies to establish themselves in Basel.

The companies now represented in Basel-Landschaft are from a variety of different sectors – some work in the sales of medical technology products, others in the manufacture of diagnostic tests. Also newly established in the canton are a music company, a creative agency and a provider of presentation items. BaselArea.swiss consulted these companies and supported them with their establishment.

Medi-CENT Innovation AG, which has offices in Liestal, distributes medical technology products. The company focuses on repairing probes and provides its customers with rental probes in the meantime. Other key areas for Medi-Cent Innovation AG include pain therapy and bone density measurement. Another company now represented in the canton is Predemtec AG. From its location in Binningen, it develops diagnostic tests that can determine the risk factors for dementia.

Musik Hug has opened a new musical world in Allschwil, where it offers a wide range of musical instruments. Its new location also comprises a piano and wind instrument workshop. Newly established in the Dreispitz area is the creative agency MJM.CC AG, which specialises in the production of awards ceremonies, such as the Swiss Film Award and Best of Swiss Web.

Meanwhile, Achilles Präsentationsobjekte GmbH is heading the business of KMC Karl Meyer AG. Thanks to this transition, existing customers can continue to access the consultancy and service portfolio they were accustomed to from KMC Karl Meyer AG. However, they can also access one of the biggest selections of folder and presentation systems in Europe.

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“I see a very innovation-friendly climate in Basel”

12.04.2017

It all began with research resources that were a quarter of a century old. Simon Ittig and his colleagues at the Biozentrum of the University of Basel turned these into a research project – and eventually a start-up. T3 Pharmaceuticals develops new therapies to treat solid tumours.

How did T3 Pharma come about?

Simon Ittig: I completed my doctorate at the Biozentum in Professor Guy Cornelis’ group, which dealt primarily with a secretion system of bacteria. Bacteria require these needles to inject proteins into cells and establish their pathogenesis. My doctoral supervisor discovered this mechanism 25 years ago and had researched it ever since. When I completed my doctorate in 2012 and Professor Cornelis retired, I was able to take over many resources such as bacterial strains and study protocols. As a postdoc in another group at the Biozentrum, I dealt with the question of how proteins can be transported rapidly into cells. This brought me back to my collection of bacterial strains, as they are by nature exactly the same. In a short time, I succeeded in showing that such a protein transport does in fact work – and rapidly, efficiently and synchronously. This potential enthralled my research colleagues and me.

What precisely can this technology be used for?

If you have bacteria that transport specific, for example human, proteins into cells, then you can stimulate these cells as you like. It has long been known that bacteria migrate to solid tumours. Accordingly, we focused on the field of solid tumour oncology and could achieve impressive results in a surprisingly short amount of time. We now have bacteria that grow specifically in a tumour over an extended period of time. We can also now program these in such a way that they produce certain active ingredients and pass them into the cells – precisely to where these substances can take effect. Our technology is very stable.

Was it obvious to you that you could go ahead and start a company with this idea?

Yes, this idea came relatively early. We received the first financial support from CTI, the Cancer League and smaller foundations when we were still just academic researchers. It was already clear then that we wanted to become self-employed with our protein transport technology. Founding our own company was even one of the conditions for further research funding from CTI. The Biozentrum supported us in many ways when we were spinning off. As before, the patents belong to the university, but we have an exclusive global license.

How did you finance T3 Pharma?

In the beginning and also subsequently we received substantial amounts of research funding. However, the funds are generally restricted to salaries and materials. Foundations mainly want to finance the actual research work. At some point you reach a limit, which is why we began to actively look for investors for our company.

With great success. What played a decisive role?

First of all, you have to have the right business idea. Second, you need a good amount of mutual trust. The whole set up should be able to accompany the company for several years. If every couple of years you need a few months to secure the next financing round, then this ties up too many resources, creates a lot of uncertainty and distracts from your research activities. For this reason, we looked – and found – investors who had the financial opportunities and necessary understanding, who believe in us and are ready to go the distance with us.

So were you in a privileged position where you could also turn investments down?

Maybe. I’m convinced that you shouldn’t accept every offer if you don’t have to. We carefully examine the conditions connected to the financing and also want to get a sense of the investors’ intentions. It’s also recommended that you keep your options open. If you become content with something too early, it can become very expensive later on.

You have received over 2 million francs from foundations. Is this unusually large for a start-up?

The effort for such financing is of course also very high, especially at the beginning when you can’t yet show proof of your achievements or have yet to receive any research grants. It’s crucial to bring experienced people on board at an early stage. This gives the foundations the necessary certainty when it comes to the project’s feasibility. It’s also important to appreciate smaller amounts. I’m also very grateful that I could learn a lot about the art of writing applications from an experienced and successful scientist, Professor Nigg. With Prof Nigg from the Biozentrum and Prof Christofori from the Department of Biomedicine, we had formed a professional and interdisciplinary consortium from early on. Without these two experienced professors our company wouldn’t exist in its current form.

How high then was the success rate?

I would estimate that half of our requests have been met with a positive result until now.

You’ve come far with this foundation funding, but you’re taking the next steps with the support of private investors. Is this better than turning to venture capital companies?

We of course looked at both alternatives. Private and institutional investors are not mutually exclusive. But we prefer private people because they are generally alone or in small committees and can decide quickly if they want to invest or not. A second point: it’s also important to me personally that we develop an idea together of the next few years and work towards these goals. The interactions, the shared vision and the sense of similar values bring a great amount of pleasure and confidence. It just has to be ‘right’, professional and personal.

How do you go about finding private investors?

Actually, this only goes via a good network and our experienced consultants. In contrast to venture capital firms, private investors tend to remain discretely in the background. It’s therefore important to think early on about the positioning of your own company, the team and its technology. A well-planned communication also helps. Once the ideas are known, it’s easier to get in touch with the right people. If you win someone over in a discussion, there’s a good chance that a private investor will get involved.

What are your next steps?

The financing of T3 Pharm is secured for the time being. We can therefore concentrate on our research and then validate our technology and prepare for preclinical development. As CEO, I’m working outside of the laboratory for the time being while my four colleagues are focussing fully on the research.

What is your long-term vision?

We want to bring our technology for use in patients. This is the major driver in our day-to-day work. How and when we will achieve this goal, I still can’t say today. And also whether or not T3 Pharma will still be an independent company. Who knows what the future holds. We’re therefore open and focused first and foremost on our research.

How do you see the local ecosystem for young entrepreneurs?

We have a good connection to the university and appreciate the open doors. If you trust people and approach them, you receive a lot of support. I see a very innovation-friendly climate in Basel. Of course the large life science cluster creates an incredibly positive environment for start-ups like us. And how BaselArea.swiss promotes innovation also helps in an uncomplicated way when it comes to meeting the right people.

And yet when it comes to start-ups, Basel lags behind other places. What needs to be done?

Nothing works without self-initiative and perseverance. If you have both, you’ll find the best conditions here in Basel and Switzerland. If I had one wish, it would be to more strongly institutionalise the informal exchange at the university. Earlier input from experienced professionals on a start-up idea could help young researchers gather the self-confidence for the next steps and be more successful in presenting their own ideas to a committee. Rejections can be quite discouraging sometimes.

Are there so many ideas that get buried before they’re even given a chance?

Yes, there are, and I find it a real pity. It’s not a matter of course for many people to stand up in front of others and say “I want this, I can do this, and I’ll do it”. Only a few young researchers trust themselves to overcome such a big hurdle and also pursue a project in the face of obstacles. Many talented young scientists remain on the academic track and continue to publish up until the train leaves for a start-up. It would help if they could discuss their ideas informally, without having to shout it from the rooftops. I’m convinced that there would be even more innovative start-ups. Once this hurdle is overcome, you get an unbelievable amount of support even from professors in other fields encouraging you to continue. This is what happened to me.

And was does your doctoral supervisor say about T3?

He’s extremely happy for us. Guy Cornelis also provides us with scientific advice and helps us where he can. The relationship has also since changed and has become very friendly.

About:

Dr Simon Ittig studied biochemistry and biotechnology at the universities of Bern, Vienna and Strasbourg and graduated from the Biozentrum of the University of Basel in microbiology. The start-up T3 Pharmaceuticals grew out of the research project Type 3 Technologies – Bacteria as a versatile tool for protein delivery.

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Swiss are among the happiest people in the world

20.03.2017

Switzerland is one of the four happiest countries in the world, according to the latest World Happiness Report. The study looks at GDP per capita, trust in government and business, and other social factors relating to well-being.

Switzerland is the fourth happiest country in the world, according to this year’s World Happiness Report. Along with Norway (first place), Denmark (second place) and Iceland (third place), the Swiss are among the happiest in the world. As the report’s authors point out, the differences among the top four countries are very low and they tend to swap places each year. Switzerland came in first place in 2015.

The top 20 countries in this year’s ranking include Finland (5), Canada (7), Israel (11), Costa Rica (12), the US (14) and Germany (16). At the bottom of the list is the Central African Republic.

International researchers analysed a total of 155 countries for this year’s report, taking into account both national data and the results of surveys conducted on the self-perception of residents. Factors such as GDP per capita, healthy years of life expectancy, perceived absence of corruption in government and business, perceived freedom to make life decisions, and generosity as measured by donations are compared.

 

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Branch of Innovation Park in Jura

14.03.2018

report Supporting Entrepreneurs

New Venture Assessment turns young entrepreneurs into experts

13.03.2018

report BaselArea.swiss

BaseLaunch can take full advantage of the potential of Basel's life sciences ecosystem

15.03.2017

The new accelerator for healthcare ventures, BaseLaunch, wants to link the best start-ups to the Basel region – and in doing so, provide impulses for major players. The project will consistently focus on quality and the concentrated know-how in the region, says Managing Director Alethia de Léon.

Financial support through BaseLaunch can be as high as CHF 10’000 per project. Startups accepted for the second phase will receive grants up to CHF 250’000. Other regions have tens of millions at their disposal. Are you even competitive?

Highly generous programmes in the EU and around the world have shown that it is not enough to distribute a lot of money with open hands. Rather, we have to make sure that the investments go to the most promising projects, namely those with a suitable team likely to effect a successful development from an idea to the market. In short: quality – and not quantity – has topmost priority for BaseLaunch.

What makes BaseLaunch unique?

BaseLaunch focuses on the entrepreneurs. Startups accepted for the programme will receive non-repayable funding, instead of equity financing that has to be repaid. Additionally, Basel is a life sciences ecosystem with one of the highest densities of biopharmaceutical enterprises globally and has an incredible pool of talents and specialists. Our healthcare partners, Pfizer, Johnson & Johnson Innovation, and Novartis Venture Fund offer direct access to valuable industry knowledge and experience relevant to develop and boost transformative healthcare solutions. Together, this allows us to give market-relevant advice suited to the needs of every single start-up company.

What types of projects is BaseLaunch especially suitable for?

BaseLaunch is open to all projects in the healthcare field. Geographically, our focus is on Switzerland and Europe. Our laboratories in Switzerland Innovation Park Basel Area specialise on therapeutics, but innovative concepts in the diagnostic and medtech fields are also welcome to participate in the accelerator.

Operationally, the accelerator is managed by BaselArea.swiss but operates under a different name. Why such a setup?

BaseLaunch seeks to find the most innovative and promising healthcare start-ups, support them and embed them into the local healthcare ecosystem. This makes BaseLaunch an important part of the core activity of BaselArea.swiss. Due to the different financing and decision-making structures and in line with a focussed market presence and a particular target groups, it made sense to launch the project under a different name.

Is it then the role of the state to invest in start-ups?

No public funds are invested in the projects. The cantons are financing the operational running of BaseLaunch. But what goes directly into the start-ups comes from the private sector. With BaseLaunch, BaselArea.swiss is thus providing the right framework conditions as a neutral partner of industry fostering the emergence of new companies with suitable programmes. And don’t forget that other places are very much on the offensive with public resources. It’s important not to fall behind. We have to remain in the fiercely competitive bid to be an attractive location – without, however, distorting our liberal economic order.

Why do we need more start-ups?

Start-ups are needed first and foremost to create added value from knowledge. If we invest billions into academic research, this also needs corresponding structures to make innovations out of inventions. It’s been shown that start-ups are taking on a more and more decisive role in this respect. In addition, start-ups have the potential to grow rapidly when successful and create a great number of high-quality jobs. Actelion, which began as a start-up, is the best example of this. While BaseLaunch succeeds in working with the best start-up projects, this also generates impulses for established companies and the ecosystem as a whole. BaseLaunch thus contributes toward raising the region’s attractiveness as Europe’s leading life sciences hub.

Is the Basel region even interesting for start-ups? Isn’t the cost of living likely to frighten away entrepreneurs?

Silicon Valley, London or Boston is not more affordable. The unique advantage of Basel’s life sciences ecosystem – its concentration of talent, pharmaceutical decision-makers and capital, which are unrivalled in Europe – ultimately tip the balance in our favour in the eyes of company founders. We have seen that the Basel region scores well in these critical areas – which are “must haves” especially for young companies – that, all things considered, the overall package is more than enough. This can be seen in the steady increase in companies being founded from outside the region in recent years.

For more information about the project, please visit www.baselaunch.ch

 

About Alethia de Léon

Born in Mexico, Alethia de Léon studied at Massachusetts Institute of Technology and Harvard Business School. After working in healthcare investment and product development, she was Global Head of Search and Evaluation, Business Development and Licensing for the Neuroscience Business at Novartis until 2015. In addition to managing BaseLaunch, Alethia de Léon is CEO and founder of the start-up Senes Science GmbH.

 

report Innovation

La deuxième édition de l’Innovation Lounge s’est penché sur l’industrie 4.0

12.03.2018

report Life Sciences

SpiroChem building on successful year

07.03.2018

report BaselArea.swiss

Startup accelerator BaseLaunch aims to attract promising healthcare ventures to Basel, Eur...

22.02.2017

BaseLaunch, Switzerland’s new accelerator for healthcare startups, provides handpicked ventures with access to the Basel region’s life sciences ecosystem. BaseLaunch has been initiated and is operated by BaselArea.swiss, supported by Novartis Venture Fund, Johnson & Johnson Innovation, Pfizer, and partners with digitalswitzerland’s Kickstart Accelerator.

BaselArea.swiss, the office for promoting innovation and inward investment for the northwest cantons of Basel-Stadt, Basel-Landschaft and Jura, today announced the launch of Switzerland’s new healthcare startup accelerator BaseLaunch. Harnessing the Basel region’s unique position as a global life sciences hub, as well as its rising popularity among investors and a program tailored to healthcare entrepreneurs, BaseLaunch is looking to attract the next generation of breakthrough companies.

“A healthy and well-endorsed startup scene is necessary to bolster and further expand the elite position of Switzerland’s exceptional life sciences economy,” stated Domenico Scala, President of BaselArea.swiss. “Switzerland has much catching-up to do in this regard and BaseLaunch is a strategic initiative to fill this gap.” “The expertise of BaselArea.swiss in connecting innovators and supporting entrepreneurs enables BaseLaunch to be extremely focused on the unmet needs of healthcare startups while at the same time contributing to the excellent Swiss innovation landscape, particularly in the life sciences arena,” added Dr. Christof Klöpper, CEO of BaselArea.swiss. As the designated healthcare vertical of digitalswitzerland’s Kickstart Accelerator and a partner of established public and private bodies, BaseLaunch is closely aligned with key national and regional initiatives. BaseLaunch has already garnered support from global biopharmaceutical companies and innovation champions Novartis Venture Fund, Johnson & Johnson Innovation and Pfizer. These healthcare partners are engaging with BaseLaunch to find and support transformational innovations that solve unmet medical needs. “BaseLaunch aims to support the best healthcare innovators and offers them fast access to founder-friendly venture grants, insights, industry access and state-of-the-art infrastructure. We want to enable and individually guide them to become fully embedded into the life sciences value chain,” explained Alethia de Léon, Managing Director of BaseLaunch.

The program consists of two phases, which extend over a total of 15 months. During the first phase, lasting three months, entrepreneurs work closely with the BaseLaunch Team as well as a network of entrepreneurs-in-residence, advisors and consultants to further develop their business cases. Financial support through BaseLaunch can be as high as CHF 10,000 per project. Up to three startups accepted for the second phase will receive the opportunity to secure a one-year grant of up to CHF 250,000 to generate data and reach business plan milestones in the labs at the Switzerland Innovation Park Basel Area.

BaseLaunch accepts applications for the inaugural acceleration program cycle until June 30, 2017. Additional program cycles will start in late 2018 and 2019. A Selection Committee of industry experts will handpick the ventures invited for each program cycle.

 

Comments from BaseLaunch healthcare partners

Richard Mason, Head of the Johnson & Johnson London Innovation Centre:
“This program offers grants and lab space to selected startups - with no strings attached - illustrating that what we want to create here is an optimal environment for startups that focuses on supporting transformative science and great ideas in Switzerland.”

Dr. Anja König, Managing Director, Novartis Venture Fund:
“We are pleased to help energize the Basel region’s center of gravity for European healthcare ventures, offering startups the support they need to accelerate their ideas.”

Uwe Schoenbeck, Chief Scientific Officer, External Research and Development Innovation & Senior Vice President, Worldwide Research and Development, Pfizer:
“Through Pfizer’s support of BaseLaunch, we hope to advance the pace at which promising science is translated into potential medicines.”

 

report

BaseLaunch up to a solid Phase II start

30.01.2018

report BaselArea.swiss

BaselArea.swiss und Switzerland Innovation Park Basel Area rücken näher zusammen

26.01.2018

report BaselArea.swiss

“Basel is well positioned”

09.02.2017

‘Uberfication’ will change marketing and sales in the pharmaceutical sector, says Patrik Frei. This is already seen at healthcare companies, where digitalisation is making inroads. Business angels and family offices are paying an increasingly larger role in awarding venture capital, according to the CEO of Venture Valuation. Venture capitalists are coming aboard only later.

What does Venture Valuation do?

Patrik Frei: We conduct independent assessments of companies in the life sciences sector. Our clients are looking either for capital or investments. We then try to determine a fair value and indicate a range. The price is then, of course, a matter of negotiation.

How do you rate Johnson & Johnson’s acquisition of Actelion – well negotiated or a fair value?

Actelion was already a success story before hand, one of the few biotech companies to have organised its own sale. The commercial part will now be split off while the research and innovation will remain in Switzerland. Generally speaking, this is a highly successful exit and sends an important signal to Basel as a centre of life sciences – irrespective of the fact that additional capital is again flowing into the industry.  

Is it possible to observe a consolidation process, one that could also have undesired effects?

No. While there is a concentration of large pharmaceutical companies at the top, this also creates opportunities for new companies. Start-ups have the advantage that they are faster and more agile. Some of them are acquiring others and becoming medium-sized companies. An example of this is Shire. Others are being acquired by the bigger companies, which in turn feeds new capital into the sector. I think that this innovation ecosystem is fundamentally healthy.

The US seem to profit more than Europe or Switzerland. Is there far more venture capital there?

There is four times as much venture capital in the US than in Europe, it’s true. But the number of companies is similar. In Europe, smaller amounts are usually invested and start-ups have to survive more financing rounds, while in the US extremely high amounts are committed in one go. Incidentally, investors in Asia are far more cautious than in Europe. It should also be noted that the investor landscape is changing in Europe. There are less and less traditional venture capitalists, while corporate venture funds, family offices and business angels are gaining in importance. These are often people who have made their own wealth in the sector. But this doesn’t mean that it has become easier for companies looking for capital; private investors are not only more cautious than venture capitalists, they also tend not to operate openly.

In addition, many institutional Europe investors prefer to give their money to large American venture capitalists, which are more visible and have been more successful in the past. Overall it can be seen that venture capitalists are coming on board later, creating a gap in expansion financing, especially in Europe. 

You had the opportunity to moderate an event in January about the future of the pharmaceutical industry at the JPMorgan Healthcare Conference. What came out of it?

One of the main themes was the ‘uberfication’ of the healthcare sector. Today, marketing and sales are firmly in the hands of the big pharmaceutical companies, but this could be challenged in the future by IT companies. We still don’t know how this will look like exactly, but it’s clear that new distribution channels will become possible through digitalisation.

But regulations could also slow this down.

Patients are increasingly informing themselves over the internet, and there are more and more digital diagnostic tools. Over a longer period of time, there could be some development there. But there’s no doubt that this also certainly depends on regulations.

How important is the choice of location for life sciences companies today?

We also discussed this in San Francisco. The trend is towards multiple sites - a presence in the US, development in China or even now in India, headquarters in Switzerland. Smaller biotech companies are also addressing such issues.

Where does Switzerland stand?

Switzerland and Basel are very well positioned. With the two large pharmaceutical companies, the location has widespread visibility. Many people in the sector are familiar with Basel and Switzerland from their own experience and invariably have very positive memories. But the fact is that you cannot simply rely on the past. You also have to actively shape your future.  

And what will this entail?

The keyword is digitalisation and personalised medicine or precision medicine. The trend is that markets will ultimately split off and become smaller. So you will need more products. This is also the reason for consolidation.

Will costs go up when markets become smaller through personalisation?

On the one hand, costs for medicines are rising. On the other hand, fewer medicines have to be tested until something works if they are personalised and actually work. This reduces costs. The likelihood of success of clinical trials also increases when resources are more strongly oriented towards specific groups. We can hope that costs will even fall thanks to personalisation.

Does digitalisation also open up the field for newcomers, particularly from the IT sector?

Definitely. We are noticing this trend very strongly and are increasingly conducting assessments of health tech companies. Health tech is interesting for investors because products are brought faster onto the market and the investments are smaller. This is a challenge for pharmaceutical companies since such health tech companies will be used as the first digital sales channels.

Are we prepared for this in Switzerland?

Switzerland has strong IT companies and even stronger pharmaceutical companies. The potential exists. But you have to better connect both sides, whether in research through an appropriate institution, through events or even a new association. But I am very confident that we will set the right course here.


Biography

Patrik Frei founded Venture Valuation in 1999. The Zurich-based company specialises in conducting independent assessments of start-up companies. Patrik Frei studied business administration at the University of St.Gallen and graduated from the Federal Institute of Technology in Lausanne.

report

Roivant Sciences to join BaseLaunch Accelerator as Healthcare Partner

18.01.2018

report BaselArea.swiss

UNESCO recognizes Basel Fasnacht as intangible heritage

07.12.2017

report BaselArea.swiss

Blogging, tweeting, sharing and liking: BaselArea.swiss goes social media

09.02.2017

BaselArea.swiss has a new social media presence. At its heart is the Innovation Report, which serves as a blog regularly providing information on important issues from our services segments and technology fields, as well as delivering important information for the innovation landscape of Northwest Switzerland. The Innovation Report offers the opportunity to filter, share and comment on innovations.

BaselArea.swiss on LinkedIn
On LinkedIn we not only have a presence with a general company page, but also have four so-called showcase pages on our services segments Invest in Basel Region, Connecting Innovators, Supporting Entrepreneurs and Accessing China. These are managed by our experts and offer a broad view of activities and events both in Northwest Switzerland and further afield. We love to attract followers – also on the general company page, which provides information primarily on events or regional news.

Even more interaction and up-to-date information from the various fields of innovation are promised by our LinkedIn groups Life Sciences by BaselArea.swiss, Medtech by BaselArea.swiss, Micro, Nano & Materials by BaselArea.swiss and Production Technologies by BaselArea.swiss, which are administered by the respective Technology Field managers. They keep visitors who are interested in these fields informed about the latest developments in the technologies concerned both in Northwest Switzerland and further afield.

Special groups on LinkedIn
BaselArea.swiss also has another three LinkedIn groups: 3D Printing Schweiz, Entrepreneurs in Northwestern Switzerland and Precision Medicine Group Basel Area. In the Precision Medicine Group, industry experts from Novartis, Actelion and Roche, together with BaselArea.swiss, form an open and highly specialized community of experts, researchers and entrepreneurs. The aim is to tap into the growing digitalization with a view to developing new chances and opportunities for the life sciences and healthcare industry.

The aim of the 3D Printing Group is to document the rapid development of this technology worldwide and invite those interested to share their thoughts and comments. The Entrepreneurs Group is designed for people who have already benefited from our services and also investors, experienced entrepreneurs and SMEs that would like to know what young entrepreneurs in the region need and what drives them.

BaselArea.swiss also on Twitter and Xing
@BaselAreaSwiss tweets on Twitter. Whether you keen to receive notice of events, the latest news, information on interesting innovations from partners or even just an amusing story, BaselArea.swiss keeps you up to date here with its own contributions, retweets and favourites.

BaselArea.swiss is also represented on Xing with a company page. Here we provide regular information on exciting events and innovations in a wide range of fields from the north-western region of Switzerland.

Look us up on the social media channels and get in touch!
We look forward to a lively exchange of ideas and hope to gain lots of new followers.

Link list

Innovation reports: Link
Twitter: Link
Xing: Link
LinkedIn BaselArea.swiss
company page:
Link                                                                  
LinkedIn showcase pages: Invest in Basel Region
Connecting Innovators
Supporting Entrepreneurs
Accessing China
LinkedIn technology groups: Life Sciences by BaselArea.swiss
Medtech by BaselArea.swiss
Micro, Nano & Materials by BaselArea.swiss
Production Technologies by BaselArea.swiss
Other LinkedIn groups: 3D Printing Schweiz
Entrepreneurs in Northwestern Switzerland
Precision Medicine Group Basel Area

 

Article written by Nadine Nikulski, BaselArea.swiss  

report Precision Medicine

The revolution comes from outside

05.12.2017

report BaselArea.swiss

Shanghai Biotalk: From Shanghai to Basel

04.12.2017

report BaselArea.swiss

Basel initiative supports life sciences start-ups

01.02.2017

BaseLaunch, an accelerator initiative launched and run by the location promotion organisation BaselArea.swiss, is a new partner of the start-up accelerator Kickstart. Life sciences start-ups will be promoted through a second Kickstart programme.

BaseLaunch, which will be launched on 22 February, is an accelerator initiative that aims to create the next generation of groundbreaking healthcare companies in the Basel region, according to a BaselArea.swiss announcement. The collaboration with Kickstart, one of the Europe’s largest multi-corporate start-up accelerators and an initiative of digitalswitzerland, will contribute towards accomplishing this objective. Kickstart is now starting a second programme.

“With the second edition taking place in Zurich and the extension of the programme to Basel, Kickstart will be one step closer to becoming the largest European start-up accelerator,” said Nicolas Bürer, managing director of digitalswitzerland, in a Kickstart statement. Kickstart describes Basel as a life sciences “hot spot” and says that the partnership will make it possible to “tap into the unexplored innovation potential”.

Kickstart Accelerator will select a shortlist of up to 30 start-ups that will be given the opportunity to develop their ideas in an 11-week programme at Impact Hub Zurich. In addition to life sciences, start-ups from the food sector, fintech, smart cities, and robotics and intelligent systems are also eligible.

The start-ups will receive support from experienced mentors and partner companies, and will have the chance to win up to CHF 25,000 as well as receiving a monthly stipend.

“Cooperation between the start-ups and corporate partners will allow the entrepreneurs to benefit from the corporates’ know-how and large customer networks, as well as enable them to develop new technologies and disruptive products together,” commented Carola Wahl, head of transformation and market management at AXA Winterthur, one of the corporate partners.

Interested start-ups can apply at Kickstart Accelerator.

 

report Micro, Nano & Materials

Sensors – a fantastic event about hardware, machine learning and humans

04.12.2017

report

KPMG becomes BaseLaunch partner

20.11.2017

report BaselArea.swiss

In Basel an Innovation Hub for Precision Medicine is Born

24.01.2017

A stakeholder group of healthcare experts from the life sciences industry and research initiated by BaselArea.swiss launches DayOne in close collaboration with Canton Basel-Stadt.

On Monday, 16 January 2017, decision makers from industry, university and the healthcare sector gathered in the Volkshaus, Basel, at the invitation of Christoph Brutschin to attend the launch of DayOne - the Innovation Hub for Precision Medicine. The initiative was dreamed up by BaselArea.swiss, the promoters of innovation and inward investment in the region, together with a core team of industry experts, and in his opening speech the Director of Economic Affairs for Canton Basel-Stadt made it clear what the initiative is all about: namely, the next development stage in the life sciences, where the Basel region should remain a prominent player. That increasing digitalization in the healthcare industry will not only provide for disruption, but also offers huge potential, as long as the right course is set, was also the main theme of the evening.

An introduction to the topic was provided by Peter Grönen, who - together with other industry experts – is one of the initiators of DayOne. The Head of Translational Science at Actelion explained why the linear innovation paradigm - in which tests for clinical relevance are only conducted late on in the process - inevitably ends in the notorious Valley of Death when it comes to the issue of precision medicine. The patient, says Grönen, has to take centre stage in research and development today - and remain included in all interactions. Groenen concluded his presentation with the observation that all the components are actually present in the Basel region to build a novel innovation ecosystem in which the various skills and disciplines operate not downstream of one another but work in constant collaboration.

And it is precisely this that is also the main driver of the DayOne initiative. The projects were then presented that are currently being pursued in the Basel region and are likely to enjoy an added boost as a result of the Innovation Hub in Precision Medicine. Torsten Schwede from the University of Basel reported on the Data Coordination Centre of the Swiss Personalized Health Network (SPHN), which is aimed at making all patent data of Switzerland’s university hospitals interoperable and accessible for research purposes. Christof Kloepper, Managing Director of BaselArea.swiss, presented BaseLaunch, the accelerator for healthcare ventures that will be officially launched at the end of February. And Laurenz Baltzer from Karger presented an ambitious scientific publication project on the subject of digital biomarkers.

Following these presentations, it was left to Frank Kumli, a co-initiator of DayOne from Ernst & Young, to show what the hub involves and how it fits into the innovation landscape of the region and offers added support.

report Production Technologies

Austausch unlimited: Grenzüberschreitende Industrie 4.0

07.11.2017

report Invest in Basel region

Oettinger Davidoff commits to Basel

26.10.2017

report Invest in Basel region

Roivant Sciences establishes global HQ in Basel

19.12.2016

Basel – The biopharmaceutical company Roivant Sciences is opening its global headquarters in Basel. Several of its affiliates are also moving to Basel. The city is a hub for pharmaceutical innovation and talent.

BaselArea.swiss assisted Roivant Sciences and its affiliated companies in evaluating and relocating to the site. The business location promotion organisation for northwest Switzerland welcomes the new companies to the region and is pleased that such exciting and fast-growing companies chose Basel for their headquarters.

"Roivant's mission is to reduce the time and cost of developing new medicines for patients," said Vivek Ramaswamy, founder of the Roivant group of companies, in a statement announcing the new global headquarters in Basel. "We believe this location in the hub of European pharmaceutical innovation and talent will support our vision."

With offices in the US, Switzerland and Bermuda, the biopharmaceutical company pursues innovative drug development, collaborating closely major industry players such as Eisai, GlaxoSmithKline and Takeda Pharmaceuticals. Roivant Sciences specialises in the fields of neurology, oncology, endocrinology, dermatology, and hepatology.

Several Roivant Sciences affiliates have opened their headquarters in Basel simultaneously, according to the statement. One of them is Axovant Sciences Ltd., a clinical-stage biopharmaceutical company focused on the treatment of dementia.

From its new headquarters in Basel, Axovant  Sciences intends to “build a fully integrated organization to manage global commercial and medical strategies, manufacturing and supply chain, intellectual property, and other business functions,” said Mark Altmeyer, President and Chief Commercial Officer of Axovant Sciences. “Our presence in Basel will provide access to a high-quality talent pool that will be key to our future success."

report BaselArea.swiss

BaselArea.swiss opens Representative Office in Shanghai

12.10.2017

report

The changing healthcare system in China

03.10.2017

report Life Sciences

“The Basel region should not simply be part of the transformation, but should be helping t...

07.12.2016

Dr Falko Schlottig is Director of the School of Life Sciences at the University of Applied Sciences and Arts, Northwest Switzerland (FHNW), in Muttenz. He advises start-up companies in the life sciences and has founded start-ups himself.

In our interview, he explains how the School of Life Sciences would like to develop, why close interdisciplinary collaboration is so important and what future he foresees for the health system.

You come from industry and have also been engaged in start-ups yourself. Is it not atypical now to work in the academic field?
Falko Schlottig*:
If it were atypical, we would be doing something wrong as a university of applied sciences. Many of the staff at the FHNW come from industry. That’s important, because otherwise we could not provide an education that qualifies students for their profession and because through this network we can drive applied research and development forwards. With our knowledge and know-how we can make a significant contribution to product developments and innovation processes.

Is this how the FHNW differs from the basic research done at universities?
It’s not about making political distinctions, but about a technical differentiation. As a university of applied sciences, we are focused on technology, development and products. The focus of universities and the ETH lies in the field of basic research. Together this results in a unique value chain that goes beyond the life sciences cluster of Northwest Switzerland. This requires good collaboration. At the level of our lecturers and researchers, this collaboration works outstandingly well, for example through the sharing of lectures and numerous joint projects. On the other hand, there is still a lot of potential in the collaboration to strengthen the life sciences cluster further, for instance in technology-oriented education or in the field of personalized health.

Does “potential” mean recognition? Or is it a question of funding?
Neither nor! The distinction between applied research and basic research must not become blurred – also from the students’ perspective. A human resources manager has to know whether the applicant has had a practice-oriented education or first has to go through a trainee programme. It’s a question of working purposefully together in technology-driven fields even better than we do today in the interest of our region.

Are there enough students? It’s often said there are too few scientists?
Our student numbers are slightly increasing at the moment, but we would like to see some more growth. But the primary focus is on the quality of education and not on the quantity. What is important for our students is that they continue to have excellent chances on the jobs market. Like all institutions, however, we are feeling the current lack of interest in the natural sciences. For this reason, we at the FHNW are committed in all areas of education to subjects in the fields of science, technology, engineering and mathematics - or STEM subjects.

You have now been head of the School of Life Sciences at the FHNW for just over a year. What plans do you have?
We want to remain an indispensable part of the life sciences cluster of Northwest Switzerland. We also want to continue providing a quality of education which ensures that 98 percent of our students can find a job after graduation. In concrete terms, this means that we keep developing our teaching in terms of content, didactics and structure and follow the developments of the industrial environment and of individualization with due sense of proportion. In this respect, we’ve managed to attract people with experience in the strategic management of companies in the industrial field and people from institutions in the healthcare and environment sectors to assist us on our advisory board.
In research, we will organize ourselves around technologies based on our disciplinary strengths and expertise in the future and will be even more interdisciplinary in our work. We will be helped by the fact that we are moving to a new building in the autumn of 2018 and will have one location instead of two. In terms of content, we will establish the subject of “digital transformation” as an interdisciplinary field in teaching and research with much greater emphasis than is the case today. Finally, we should not simply be part of this transformation, but should be helping to shape it.

Apropos “digital transformation”, IT will also become increasingly important for natural sciences. Will the FHNW train more computer scientists?
Here at the School of Life Sciences we are successfully focused on medical informatics; the FHNW is training computer scientists in Brugg and business IT specialists in Basel. But we also have to ask ourselves what a chemist who has attended the School of Life Sciences at the FHNW should also offer in the way of advanced IT know-how in future – for example in data sciences. The same applies to our bioanalytics specialists, pharmaceutical technology specialists and process and environmental engineers. Nevertheless, natural science must remain the basis, enriched with a clear understanding of data and related processes. Conversely, an IT specialist who studies with us at the School of Life Sciences also has to come to grips with natural science issues. This knowledge is essential if you want to find a life sciences job in the region.

Throughout Switzerland – but also especially in the Basel region – there is a lot of know-how in bioinformatics. But from the outside, the region is not perceived as an IT centre. Should something not be done to counteract this perception?
We do indeed have some catching up to do in the life sciences cluster of Northwest Switzerland. The important questions are what priorities to focus on and how to link them up. Is it data mining – which is important for the University of Basel and the University Hospital? Or is it the linking of patient data with the widest variety of databases in order to raise cost-effectiveness in hospitals, for example? Or does the future lie in data sciences and data visualization to simplify and support planning and decision-making, which is one of the things we are already doing at the School of Life Sciences? The key issue is to know what data will serve as the basis of future decision-making in healthcare. Here it is also a question of who the data belongs to and both how and by whom the data may be used. This is one of the prerequisites for new business models. Since we are engaged in applied research, these issues are just as important for us as they are for industry. This hugely exciting discussion will remain with us for some years to come.

The School of Life Sciences at the FHNW covers widely differing areas such as chemistry, environmental technology, nanoscience and data visualization – how does it all fit together?
It is only at first glance that these areas seem so different – their basis is always natural science, often in conjunction with engineering science. The combining of our disciplines will be even better when they are all brought together in 2018, at the very latest. You can see it already, for example, in environmental technology: at first glance, you wonder what it has to do with bioanalytics, nanoscience or computer science. But the School of Life Sciences is strong in the field of water analysis and bioanalytics, and one of the biggest problems at the moment is antibiotic resistance. To find solutions here, you need a knowledge of chemistry, biology, analytics, computer science and also process engineering know-how. As from 2018/19 we will have a unique process and technology centre in the new building, where we will be able to visualize all the process chains driving the life sciences industry today and in the future – from chemistry, through pharmaceutical technology and environmental technology to biotechnology, including analytics and automation.

You’ve been - and still are - involved in start-ups. Will spin-offs from the School of Life sciences be encouraged in future?
We are basically not doing badly today when you compare the number of students and staff with the number of start-ups. But we do like to encourage young spin-off companies; at our school, start-ups tend to spring from the ideas of our teaching staff. Our Bachelor students have hardly any time to devote themselves to starting up a company. On the other hand, entrepreneurial thinking and engagement form part of the education provided at the School of Life Sciences. After all, our students should also develop an understanding of the way a company works. A second aspect is entrepreneurial thinking in relation to founding a company. The founding of a start-up calls for flexibility and openness on our part: How do we deal with a patent application? Who does it belong to? How are royalties arranged? Our staff have the freedom to develop their own projects. Our task is to define the necessary framework conditions. We already offer the possibility today of a start-up remaining on our premises and continuing to use these facilities. We have reserved extra space for this in the new building. We also make use of all the opportunities that the life sciences cluster of Northwest Switzerland offers today. This includes, for example, the life sciences start-up agency EVA, the incubator, Swiss Biotech, Swissbiolabs, the Switzerland Innovation Park Basel Area, BaselArea.swiss and also venture capitalists, to name just a few. We are well-networked, and here too we are doing what we can to help foster the development of our region

Why do you think it is apparently so difficult in Switzerland to establish a successful start-up?
There are two factors in Northwest Switzerland that play a part: a very successful medium-sized and large life sciences industry means the hurdles to becoming independent are much higher. When you found a start-up, you give up a secure, well-paid job and expose yourself to the possible financial risks associated with the start-up. The second big hurdle is funding, especially overcoming the so-called Valley of Death. Compared with the second step, it is easy to obtain seed capital. Persevering all the way to market with a capital requirement of between one and five million francs is very difficult.

That should change with the future fund.
It would of course be fantastic if there were a future fund of this kind to provide finance of between one and two million francs. This would finance start-up projects for two or three years. In this respect, it is incredibly exciting, challenging and moving to see the whole value chain from research to product in use, to be familiar with networks and to be involved. Today this is almost only possible with a start-up or a small company. But in the end, every potential founder has to decide whether he or she would prefer to be a wheel or a cog in a wheel.

Will the healthcare sector look dramatically different in five or ten years?
Forecasts are always difficult and often wrong. The big players will probably wait and see how the market develops. The healthcare sector may well look different in five to ten years, but not disruptively different. We will see new business models, and insurers will try exploring new avenues. This may lead to shifts. At the moment we are experiencing the shift from patient to consumer. On the product side, the sector is extremely regulated, so it is not easy to launch a new and innovative product onto the market. In my view, many regulations inhibit innovation and do not always lead to greater safety for the patients, which is actually what they should do.

How could this transformation be kick-started?
I believe that we at the University of Applied Sciences in Northwest Switzerland have a major contribution to make here. For example, we take an interdisciplinary and inter-university approach collaborating on socio-economic issues based on our disciplinary expertise within strategic initiatives. In this way we are trying to our part to help find solutions or answers. Switzerland and our region in particular have huge potential in this pool of collaboration. This now needs to be exploited.

Interview: Thomas Brenzikofer and Nadine Nikulski, BaselArea.swiss

*Prof. Dr. Falko Schlottig is Director of the School of Life Sciences at the University of Applied Sciences and Arts Northwestern Switzerland (FHNW) in Muttenz. He has many years of experience in research and product development and has held a variety of management positions in leading international medical device companies. Falko Schlottig has also co-founded a start-up company in the biotechnology and medical devices sector.

He studied Chemistry and Analytical Chemistry. He holds an Executive MBA from the University of St Gallen.

 

report Precision Medicine

Basel Region - a fertile ground for Precision Medicine

03.10.2017

report Invest in Basel region

Un atout opérationnel pour le soutien de l’innovation dans le Jura

03.10.2017

report ICT

Dr App – Digital transformation in the life sciences

30.11.2016

The future belongs to data-driven forms of therapy. The Basel region is taking up this challenge and investing in so-called precision medicine.
An article by Fabian Streiff* and Thomas Brenzikofer, which first appeared on Friday, 14 October 2016, in the NZZ supplement on the Swiss Innovation Forum.

So now the life sciences as well: Google, Apple and other technology giants have discovered the healthcare market and are bringing not only their IT expertise to the sector, but also many billions of dollars in venture capital. Completely new, data-driven, personalized forms of therapy – in short: precision medicine – promise to turn the healthcare sector on its head. And where there is change, there is a lot to be gained. At least from the investor’s point of view.

From the Big Pharma perspective, things look rather different. There is quite a lot at stake for this industry. According to Frank Kumli from Ernst & Young, the entry hurdles have been relatively high until now: “We operate in a highly regulated market, where it takes longer for innovations to be accepted and become established.” But Kumli, too, is convinced that the direction of travel has been set and digitalization is forging ahead. But he sees more opportunities than risks: Switzerland - and Basel in particular - is outstandingly well-positioned to play a leading role here. With the University of Basel, the Department of Biosystems Science and Engineering ETH, the University of Applied Sciences Northwest Switzerland, the FMI and the University Hospital Basel, the region offers enormous strength in research. It also covers the entire value chain, from basic research, applied research and development, production, marketing and distribution to regulatory affairs and corresponding IT expertise. The most important drivers of digital transformation towards precision medicine include digital tools that allow real-time monitoring of patients – so-called feedback loops. The combination of such data with information from clinical trials and genetic analysis is the key to new biomedical insights and hence to innovations.

Standardized nationwide data organization
In rather the same way that the invention of the microscope in the 16th century paved the way to modern medicine, so data and algorithms today provide the basis for offering the potential for much more precise and cheaper medical solutions and treatments for patients in the future. At present, however, the crux of the problem is that the data are scattered over various locations in different formats and mostly in closed systems. This is where the project led by Professor Torsten Schwede at the Swiss Institute of Bioinformatics (SIB) comes into play.

As part of the national initiative entitled Swiss Personalized Health Network, a standardized nationwide data organization is to be set up between university hospitals and universities under centralized management at the Stücki Science Park Basel. Canton Basel-Stadt has already approved start-up funding for the project. The standardization of data structures, semantics and formats for data sharing is likely to substantially enhance the quality and attractiveness of clinical research in Switzerland – both at universities and in industry. There is no lack of interest in conducting research and developing new business ideas on the basis of such clinical data. This was apparent on the occasion of Day One, a workshop event supported by BaselArea.swiss for the promotion of innovation and economic development and organized by the Precision Medicine Group Basel Area during Basel Life Sciences Week.

More than 100 experts attended the event to address future business models. Altogether 14 project and business ideas were considered in greater depth. These ranged from the automation of imaging-based diagnosis through the development of sensors in wearables to smartphone apps for better involvement of patients in the treatment process.

Big Pharma is also engaged
“The diversity of project ideas was astonishing and shows that Switzerland can be a fertile breeding ground for the next innovation step in biomedicine,” Michael Rebhan from Novartis and founding member of the Precision Medicine Group Basel Area says with complete conviction. The precision medicine initiative now aims to build on this: “Despite the innovative strength that we see in the various disciplines, precision medicine overall is making only slow progress. The advances that have been made are still insufficient on the whole, which is why we need to work more closely together and integrate our efforts. A platform is therefore required where experts from different disciplines can get together,” says Peter Groenen from Actelion, likewise a member of Precision Medicine Group Basel.

There is also great interest among industry representatives in an Open Innovation Hub with a Precision Medicine Lab as an integral component. The idea is that it will enable the projects of stakeholders to be driven forward in an open and collaborative environment. In addition, the hub should attract talents and project ideas from outside the Basel region. The novel innovation ecosystem around precision medicine is still in its infancy. In a pilot phase, the functions and dimensions of the precision medicine hub will be specified more precisely based on initial concrete cases, so that the right partners can then be identified for establishing the entire hub.

Leading the digital transformation
The most promising projects will finally be admitted to an accelerator programme, where they will be further expedited and can mature into a company within the existing innovation infrastructures, such as the Basel Incubator, Technologiepark Basel or Switzerland Innovation Park Basel Area.

Conclusion: the Basel region creates the conditions for playing a leading role in helping to shape digital transformation in the life sciences sector and hence further expanding this important industrial sector for Switzerland and preserving the attractiveness of the region for new companies seeking a location to set up business.

* Dr Fabian Streiff is Head of Economic Development with Canton Basel-Stadt

report Precision Medicine

Patient Data – Faster but with Respect and Trust

14.09.2017

report

BaseLaunch Accelerator gains another healthcare partner

08.09.2017

report Production Technologies

Production Technologies – der neue Bereich von BaselArea.swiss

02.11.2016

Derzeit reicht es nicht aus, einfach zu produzieren. Unternehmen müssen zu geringeren Kosten produzieren, sparsam mit Ressourcen umgehen, die Wünsche der Kunden berücksichtigen – alles in kürzester Zeit und möglichst ohne Lagerbestand. Neue Produktionstechnologien versprechen Lösungen. Additive Fertigung, Robotik oder Internet of Things: Die Produktion von Gütern wird sich in den nächsten Jahren stark verändern.

Neu bearbeitet BaselArea.swiss den Fachbereich „Production Technologies“. Die Region Basel ist gekennzeichnet durch die Präsenz von High-Tech-Unternehmen, die komplexe, qualitativ hochwertige Produkte zu hohen Lohnkosten herstellen. Die Lage Basels an der Grenze zum Elsass und zu Baden bietet ihnen eine echte Chance für den Austausch und die Zusammenarbeit zur Verbesserung der Wettbewerbsfähigkeit sowie zur Entwicklung neuer Geschäftsmodelle.

Im Zentrum des Technologiefelds Production Technologies steht der sorgfältige Umgang mit Ressourcen und der Einsatz von sauberen Technologien. Der Fokus liegt dabei auf den folgenden 6 Bereichen:

  • 3D-Druck, additive Fertigung: BaselArea.swiss organisiert Informations- und Networking-Veranstaltungen sowie Workshops zu diesem Thema und den neuen Geschäftsmodellen. Darüber hinaus existiert eine LinkedIn-Gruppe mit rund 100 Forschern und Themenbegeisterten. 
     
  • Industrie 4.0: In Zusammenarbeit mit Schulen und Forschungszentren bietet BaselArea.swiss Informationsveranstaltungen und technologieorientierte Networking-Veranstaltungen auf regionaler und internationaler Ebene. Darüber hinaus bringt der Technology Circle „Industrie 4.0“ Unternehmen zusammen, um sich zu informieren und das Know-how in der Region weiter zu entwickeln.
     
  • Organische und gedruckte Elektronik: Die druckfähige Elektronik hat das Auftauchen neuer Produkte ermöglicht, beispielsweise OPV, OLED oder Anwendungen in den Bereichen Gesundheit oder Sensoren. BaselArea.swiss initiiert die Zusammenarbeit zwischen Unternehmen und Forschungszentren bei technischen Projekten sowie im Vertrieb und entwickelt zusammen mit der Industrie ein Netzwerk von Kompetenzen im Rahmen des Technology Circles „Printed Electronics“.
     
  • Effizienz bei der Nutzung von Ressourcen und Energie in der Produktion: Im Rahmen eines Technolgy Circles hat BaselArea.swiss ein Netzwerk von Unternehmern aufgebaut, das diesen regelmässigen Austausch pflegt.
     
  • Wassertechnologien: Die effiziente Nutzung von Ressourcen steht im Mittelpunkt. Die Forschung konzentriert sich auf Problemstellungen wie Mikroverunreinigungen, die Rückgewinnung von Phosphor oder auch die im Wasser vorhandenen antibiotikaresistenten Gene. Einmal pro Jahr veranstaltet BaselArea.swiss eine Veranstaltung in Zusammenarbeit mit der Hochschule für Life Sciences der Fachhochschule Nordwestschweiz (FHNW).
     
  • Biotechnologien für die Umwelt: Die Nutzung von lebenden Organismen in industriellen Prozessen ist nicht neu, gewinnt aber an Bedeutung, zum Beispiel bei der Behandlung von Ölunfällen. Dank Biokunststoffen aus erneuerbaren Rohstoffen (wie Lignin) bieten ökologischere Lösungen echte Alternativen zu den herkömmlichen chemischen Prozessen. BaselArea.swiss organisiert regelmässig Veranstaltungen zu diesem Thema und schafft Verbindungen zwischen Forschern, Industrie und Verwaltung.

Die gemeinsame LinkedIn-Gruppe „Production Technologies by BaselArea.swiss“ zählt heute bereits 46 Mitglieder, die sich gegenseitig über die neuesten Entwicklungen in den oben genannten Gebieten austauschen. Die Gruppe ist offen für neue Teilnehmer – melden Sie sich an!

Wenn Sie Interesse am Austausch mit Unternehmern und Forschern zum Thema „Production Technologies“ haben oder weitere Informationen über unsere Services wünschen, dann kontaktieren Sie einfach Sébastien Meunier (siehe Kontaktdaten links).

report Invest in Basel region

Halozyme Therapeutics opens European headquarters

05.09.2017

report Life Sciences

The Congress “Basel Life” combines science and business

05.09.2017

report Micro, Nano & Materials

The Chemical Industry is ALIVE in the Basel region!

07.09.2016

“The chemical industry is dead…” this was the provoking first sentence of the invitation to the Business Event «Chemical Industry: Opportunities in the Basel area», Sept. 1st 2016, at Infrapark Baselland (Link). And it really provoked the speakers to demonstrate the opposite! Over 90 people gathered at the Infrapark Baselland to listen to the stories of change and new successes.

Thomas Weber, cantonal counciler of Baselland, welcomed the audience. “The benefits of Chemical Parks” were quite obvious after the talk of Dr. Ulrich Ott, Head of Clariant Europe – make your own core process, but buy everything else, from analytics to logistics and technical services. Currently, the third wave in park development just happens: the business incubation of new companies.

Distribution of chemicals and prototype testing
Three speakers from three different companies at the Infrapark illustrated very nicely the different benefits for different needs. Dr. Albrecht Metzger of Bayer Crop Science Schweiz AG illustrated the very successful expansion of the production facilities of Bayer Crop Science. Within 8 years, the number of employees triplet and more than 100m CHF investments were taken to expand and improve the production. The engineering and services of the Infrapark were essential for this success.

Smart distribution of chemicals and conditioning is the core business of Brenntag, as Dr. Thomas Heinrich, of the Brenntag Schweizerhall AG explained. With a global turnover of over a billion Swiss Francs, there is no question that a company can make money by just distribution! Their service adds real value to the supply chain. At the Infrapark, there are not only many users of chemicals, there is also a very smart distribution system established by the right mix of tanks and piping. This saves the chemical companies a lot of own handling, decreases truck movements and increases safety. Really a smart business – right at the Infrapark.

The facilities provide also the ideal location for young companies. AVA Biochem has patented processes to turn sugars into valuable chemicals which might make plastic bottles 100% renewable. Already 20 tons per year of 5-HydroxyMethylFurfural (5-HMF) can be produced in Muttenz, as Dr. Thomas M. Kläusli of AVA Biochem BSL AG explained. This test production is the prototype for much larger capacities – and it is ideally suited at the Infrapark with all the infrastructure and the fast responses of the different service units.

Chemical industry economically important for the region
The chemical industry is very well alive! Renaud Spitz, Head of Infrapark Baselland AG and Country Head Clariant Switzerland, explained how Clariant developed the vision of an Infrapark in 2011 at what benefits it already has today for 15 different companies. Vaguely, he outlined an even larger vision of a great common Infrapark in this area with benefits for many stakeholders, even though the realization might take many years. Finally, Thomas Kübler of Economic Promotion Baselland, illustrated how important the chemical industry is economically for this area. He reminded us also that many products for the pharma industry are being produced chemically, even though pharma and chemistry are often taken as two very different industries.

In conclusion, a very impressive demonstration of the strength of the chemical industries here. Definitely, the chemical industry is very much alive in this region!

report Innovation

3D im Spital

24.08.2017

report BaselArea.swiss

Pratteln to get a new research site

16.08.2017

report Invest in Basel region

BaselArea.swiss welcomes Biopharmaceutical Company Ultragenyx

06.07.2016

BaselArea.swiss Economic Promotion is pleased to announce that Ultragenyx, a biopharmaceutical company focused on the development of novel products for rare and ultra-rare diseases based in the San Francisco Bay Area, California, is opening their European headquarters in the city of Basel, Switzerland. Stefano Portolano, M.D., has been appointed Senior Vice President and head of Ultragenyx Europe. In this role, Dr. Portolano will be responsible for building and leading the Ultragenyx commercialization efforts across Europe and developing the company's European organization.

«Ultragenyx selected Basel as our European headquarters because of the area’s thriving life sciences community, accessibility to the rest of Europe, business-friendly environment and strong international talent pool,» said Dr. Portolano. «On behalf of Ultragenyx, I would like to thank the team at BaselArea.swiss for their partnership throughout this process, as they have been invaluable as we look to establish our European presence and help bring promising therapies to patients throughout the region. We are focusing on key hires to establish necessary capabilities so that we are ready to launch if we receive approval, and we are confident we will be able to find and attract key talents in Basel».

Dr. Portolano brings over 20 years of experience in the biopharmaceutical industry, in medical, commercial and general management roles in both Europe and the United States. He has worked both on pre-launch and launches of products for rare diseases, both at Genzyme and Celgene. Before joining Ultragenyx, he spent ten years at Celgene Corporation in increasing leadership roles, most recently as Vice President of Strategy & Commercial Operations, EMEA. Prior to Celgene, he worked at Genzyme for eight years. Dr. Portolano received his M.D. degree from Federico II University in Napoli, Italy. He completed his postdoctoral fellowship and served as Adjunct Assistant Professor of Medicine at the University of California at San Francisco.

About Ultragenyx
Ultragenyx is a clinical-stage biopharmaceutical company committed to bringing to market novel products for the treatment of rare and ultra-rare diseases, with a focus on serious, debilitating genetic diseases. Founded in 2010, the company has rapidly built a diverse portfolio of product candidates with the potential to address diseases for which the unmet medical need is high, the biology for treatment is clear, and for which there are no approved therapies.

The company is led by a management team experienced in the development and commercialization of rare disease therapeutics. Ultragenyx’s strategy is predicated upon time and cost-efficient drug development, with the goal of delivering safe and effective therapies to patients with the utmost urgency.

The company's website for more information on Ultragenyx

About BaselArea.swiss
BaselArea.swiss is responsible for the international promotion of the economic region of Basel, Switzerland. In a joint effort, the economic promotion agencies of the Swiss cantons of Basel-Stadt, Basel-Landschaft, and the Jura support expansion and relocation projects of foreign companies, and offer consulting services to entrepreneurs and startups. The identification and procurement of suitable real estate and properties for international and national companies is an important service of BaselArea. BaselArea’s consulting services for interested parties are provided free of charge.

report BaselArea.swiss

SkyWork Airlines offers more flights out of EuroAirport

04.07.2017

report BaselArea.swiss

Roche acquires diabetes platform

30.06.2017

report Micro, Nano & Materials

«My experience with nanomaterials is welcomed in Bern»

10.09.2015

The company Polycompound from Sissach specializes in the incorporation of nanoparticles in plastics. Each year it processes amongst other things more than 1000 kilograms of carbon nanotubes (CNTs), which are long cylindrical structures with a diameter of less than 10 nanometers. Safety in the processing of these tiny particles is extremely important, especially since the effects of CNTs in the human body have not yet been conclusively studied.

Peter Imhof, Sales Manager at Polycompound, has been working with nanomaterials himself for around 10 years. He is not only a regular guest in the i-net Technology Circle NanoSafety, but also serves as adviser to the Federal Offices for the Environment (FOEN) and Public Health (FOPH). In this interview, he explains what measures are needed when working with nanoparticles and what regulations still need to be defined more precisely.

How did Polycompound come to work with nanomaterials?
Peter Imhof: To some extent that has something to do with me. In 2004 I was working as Product-Manager with a well-known company trading in polymers, raw materials and fine chemicals in Basel, where I came into contact with nano products for the first time in the field of phyllosilicates. In 2008 I had the privilege of presenting the first version of the safety matrix for nanomaterials in Bern, where I was one of the first people from industry to offer practical experience. In 2009 I moved to Polycompound and remained true to nanotechnology. Besides phyllosilicates and CNTs, nanosilver was also a topic of interest. Other additives in the nano field, such as flame retardants, came along later.

What are carbon nanotubes actually used for?
CNTs can reinforce a material or increase its electrical conductivity. Soot is usually added to cables to make then conductive. But the soot also reduces their flexibility and makes the cables more brittle. When CNTs are added, the same conductivity can be achieved with a much lower concentration and without essentially altering the mechanical properties, making the cables more durable. CNTs are used in a variety of applications, especially when the product has to meet more stringent requirements without the positive properties of the basic material being lost. The problem is that additives with nanotubes are still very expensive. This is a psychological barrier – as are the safety issues that remain to be clarified and the uncertainty surrounding nanomaterials.

report BaselArea.swiss

Cantons agree on service mandate for FHNW

08.06.2017

report BaselArea.swiss

More money for start-ups and reaching for the stars toward the digital future

08.06.2017

report Production Technologies

«Ungenutzte Biomasse hat ökonomisches Potenzial - dieses Bewusstsein ist enorm gewachsen»

09.04.2015

«Biotechnological use of untapped biomass for the future bioeconomy of Switzerland» heisst der i-net Cleantech Technology Event, der am 21. April 2015 an der Hochschule für Life Sciences FHNW (HLS) in Muttenz stattfindet. Philippe Corvini, Professor für «Environmental Biotechnology» und Leiter des Institutes für Ecopreneurship an der HLS, erklärt im i-net-Interview, warum der Anlass einen Besuch wert ist und welche Chancen die Biotechnologie für die Nordwestschweiz birgt.

Sie leiten das Institut für Ecopreneurship an der Hochschule für Life Sciences an der Fachhochschule Nordwestschweiz. Was heisst Ecopreneurship genau?
Philippe Corvini: Der Begriff «Ecopreneurship» verweist auf die Tatsache, dass Umwelttechnologie auch zur effizienteren Ressourcennutzung sowie zu weniger Energieverbrauch beitragen kann und damit auch ökonomisch sinnvoll ist. Das heisst, neben Forschung zu betreiben möchten wir auch zum unternehmerischen Handeln beim Einsatz von Umwelttechnologien anregen. Wir tun dies in drei Bereichen: Bei der Umweltbiotechnologie und Umwelttechnik geht es um den biologischen Abbau und den physikalisch-chemischen Rückhalt von Schadstoffen wie auch um die Rückgewinnung von wertvollen Stoffen. In der Ökotoxikologie untersuchen wir die Effekte von Chemikalien oder neuen Materialien auf Organismen und in der Gruppe für nachhaltiges Ressourcenmanagement geht es um Gesamtbetrachtungen die zu ressourceneffizienter und umweltfreundlicher Produktion führen.

Wie kann Biotechnologie unsere Umweltprobleme lösen?
In der Umweltbiotechnologie macht man sich lebendige Organismen zunutze, die Schadstoffe entweder zurückhalten beziehungsweise akkumulieren oder aber als Nahrung aufnehmen und in weniger toxische Stoffe umwandeln können. Dabei kommen nicht nur Bakterien zum Einsatz, sondern auch Pilze, Algen und andere Pflanzen. Ein gutes Beispiel ist die Abwasserreinigung: Bakterien werden dem Abwasser zugesetzt und ernähren sich, indem sie gewisse Stoffe aus dem Abwasser abbauen. An einem bestimmten Punkt gibt es dann zu viele Bakterien und es entsteht überschüssiger Schlamm. In einem Faulturm wird dieser Schlamm dann von anderen Mikroorganismen verdaut und dabei entsteht Biogas. Ein weiteres Beispiel dafür, wie Biotechnologie Umweltprobleme lösen kann, sind Biofilter: In diesen wirken Bakterien, die sich von Lösungsmitteln aus der Abluft ernähren und so Schadstoffe abbauen.

Durch Biotechnologie versucht man also biochemische Prozesse so zu steuern, dass sie für die Umwelt keine ungünstigen Auswirkungen mehr haben?
Tatsächlich dominieren die Themen «Minimierung der Auswirkungen» und «Sanierung» im Umwelttechnologie-Bereich. Es geht darum, den Schaden, der durch menschliche Aktivitäten entstanden ist, zu minimieren oder rückgängig zu machen. Die Forschung an der Hochschule für Life Sciences FHNW geht aber darüber hinaus. So untersuchen wir auch, wie neue Substanzen, die etwa über Medikamente in die Umwelt gelangen, abgebaut werden können. Von daher haben wir viele Schnittstellen zur pharmazeutischen Biotechnologie. Denn wenn man weiss, wie Bakterien einen Stoff abbauen können, ist das auch für die pharmazeutische Industrie interessant. Ein Beispiel ist das Antibiotikum Sulfamethoxazol. Wir haben ein neues Bakterium gefunden, das infolge einer Genmutation gegenüber Sulfamethoxazol resistent ist und sich sogar von diesem ernähren kann.

Wo sehen Sie derzeit das grösste Potenzial für Umweltbiotechnologie?
Neben den oben erwähnten Einsatzmöglichkeiten bietet die Nutzung von lebenden Mikroorganismen aber noch viel mehr. Sie sind auch wichtige Hilfsmittel, um ungenutzte Ressourcen weiter zu verwerten. Abwasser und Bioabfälle aus agro-industriellen und kommunalen Quellen werden gereinigt, beziehungsweise «hygienisiert», verbrannt oder noch in Biogas umgewandelt. Für die Schweiz am Relevantesten ist sicherlich Holz. Diese Biomassequelle sollte noch besser verwertet werden. Altholz oder Holzabfälle zu verbrennen bedeutet, die stofflichen Verwertungsmöglichkeiten nicht zu nutzen. Im Holz stecken wertvolle Moleküle und chemische Verbindungen, die man extrahieren kann. Neben Zellulose für die Produktion von Bioethanol ist besonders Lignin von grossem Interesse. Dabei handelt es sich um ringförmige Strukturen, die zur Herstellung von Chemikalien für die Industrie sehr wichtig sind. Bis heute werden diese ringförmigen Verbindungen ausschliesslich aus fossilen Quellen gewonnen. Holz wäre hierfür die sehr viel nachhaltigere Ressource.
Vielversprechend ist auch die Konvergenz von Umweltbiotechnologie und neuen Technologien wie die Nanotechnologie. Zum Beispiel kann der Einsatz von Nanomaterialien die biologische Sanierung von ausgelaufenem Öl effizienter machen. Zwar existieren im Meer natürlicherweise Mikroorganismen, die Öl abbauen können. Doch dafür brauchen sie viel Zeit, weil ihr Wachstum durch die Verfügbarkeit von Nährstoffen wie Stickstoff und Phosphor limitiert ist. Durch gezielte Zufuhr der limitierenden Nährstoffe kann die Abbaurate beschleunigen werden. Dies geschieht in der Regel durch Beigabe von herkömmlichem Dünger. Allerdings verdünnt sich dieser im Meer ziemlich schnell. Mit dem HLS-Kollegen Dr. Patrick Shahgaldian haben wir sehr poröse Silica-Partikel, deren Oberfläche wasserabweisend ist, mit Stickstoff und Phosphor gefüllt. Wegen der Eigenschaften dieser Partikel kleben diese dann förmlich am Öl und stellen dort gezielt Stickstoff und Phosphor für das bakterielle Wachstum bereit, was die Abbaurate des Rohöls signifikant erhöht.

Sind solche Anwendungen schon marktreif?
Einige Technologien werden bereits zur Dekontamination von Abwässern im Bergbaubereich, zur Rückgewinnung von Metallen oder für die Fermentierung von Bioabfällen eingesetzt. Zudem springen traditionelle Chemiefirmen hinsichtlich Bioabfallverwertungen auf den Zug auf, und es gibt auch interessante Chancen für Startup-Unternehmen. Generell ist festzustellen, dass derzeit unter dem Begriff Bioökonomie eine sehr diversifizierte Szene mit viel Wachstumspotenzial am Entstehen ist.

Und welche Rolle spielt dabei die Nordwestschweiz?
Es gibt schweizweit, aber auch global gesehen, noch kein etabliertes Bioökonomie-Zentrum. Europa scheint aktuell eine führende Rolle einzunehmen, wobei Asien stark aufholt. Für mich und mein Institut ist die Region Nordwestschweiz sehr interessant, weil wir hier neue Begeisterung für diesen Bereich entfachen können. Das Bewusstsein darüber, dass ungenutzte Biomasse ein ökonomisches Potenzial darstellt, ist in den vergangenen Jahren enorm gewachsen.

Am 21. April 2015 findet an der Hochschule für Life Sciences in Muttenz der i-net Cleantech Technology Event «Biotechnological use of untapped biomass for the future bioeconomy of Switzerland» statt. Was erwartet die Teilnehmer?
Die Veranstaltung, welche die HLS und i-net in Zusammenarbeit mit Swiss Biotech gemeinsam in unserem Haus durchführen, bietet eine tolle Übersicht über die Themen Biotechnologie und Bioökonomie. In den Englischen und Deutschen Referaten geht es um das Potential von Bioökonomie in Europa. Man erfährt von konkreten Beispielen und lernt Zulieferer, Anwendungen oder Forschungsprojekte kennen. Wir hoffen, dass wir interessierte und neugierige Teilnehmer mobilisieren können. Immerhin ist es der erste Anlass in der Region, der sich spezifisch diesem Thema widmet.

Interview: Sébastien Meunier und Nadine Nikulski, i-net

Philippe Corvini ist Professor für «Environmental Biotechnology» und Leiter des Institutes für Ecopreneurship an der Hochschule für Life Sciences FHNW. Er arbeitet an verschiedenen wissenschaftlichen internationalen und nationalen Projekten. Er ist Vize-Präsident der European Federation of Biotechnology und repräsentiert und leitet die Sektion «Environmental Biotechnology». Daneben ist er Scientific Advisor und Mitbegründer der Inofea AG und gehört einem Beratungsgremium des Bundesamtes für Umwelt an. Weiter ist er Co-Leiter der Plattform «Bioresource Technology» des KTI F&E Konsortiums Swiss Biotech und hält zwei Professuren am Yancheng Institute of Environmental Technology and Engineering der Nanjing University.

Philippe Corvini hat in Nancy Biotechnologie studiert und erforschte nach seinem PhD in einem interdisziplinären Projekt in Deutschland, wie Bakterien Schadstoffe abbauen. Er hat die Habilitation an der RWTH Aachen bekommen und hat sich nun an die Universität Basel umhabilitiert.

report Life Sciences

Roivant forms spin-off to treat urology

07.06.2017

report Life Sciences

Actelion to get new global head

16.05.2017

report BaselArea.swiss

Domenico Scala: «The Basel region is clearly undersold»

28.01.2015

In Domenico Scala, former CEO of Nobel Biocare, CFO at Syngenta and Group Treasurer of Roche, i-net appointed an experienced top manager from the life sciences industry as its president at the beginning of 2015. In an interview with «i-net Innovation report» Scala explains why Northwest Switzerland as an innovation hub for the life sciences should do more on its own account – and not only in terms of communication.

When it comes to innovation, US companies and startups leave the rest of the world standing. Why is this?
Domenico Scala: Is that really true? I’m not a fan of sweeping statements. I also don’t believe that we in Switzerland or in Europe are less innovative than the USA. But the fact is that the USA is very much more successful in the commercialization of innovation and, above all, also in self-presentation. The list of technical achievements developed in Europe but successfully launched on the market in the USA is long. Just think of the World Wide Web. And in medical technology it is largely American companies that are dominant today. This looked completely different ten years ago. Plant gene technology is also no longer a topic in Europe today, although we once led the world here.

The last example you mention has to do mainly with stricter regulations. An innovation killer?
Regulatory factors of course play a role. Plant gene technology was rejected in Europe. Today more than 80 percent of global soya and maize production is genetically modified. These products are also consumed by Europeans. When you look at it like this, people have quite clearly been cutting off their nose to spite their face. But the main difference between the USA and Europe is to be found elsewhere: historically, Europe’s economy has been built on debt ever since the Second World War. On the other hand, the USA has always set great store by entrepreneurship and venture capital.

Can you be more explicit?
The cantonal banks in Switzerland were founded in the 19th century to finance the development of infrastructure. What do the cantonal banks do today? They provide mortgages and that’s it. The venture capital function virtually no longer exists. In the pension funds, 60 percent of the money is invested in bonds and 40 percent in the stocks of listed companies. But in the USA, a much higher proportion of assets is invested in the establishment of new companies through venture funds.

The consequence of this system is that it supports the structure-preserving forces in Europe, from which mainly established companies benefit. And these companies less innovative. Is that also how you see it?
I’m constantly hearing that big companies are not innovative. But is that true? The perception in Basel should actually be quite different. We still have two mega-companies here today that have been among the most successful pharmaceutical companies in the world for decades thanks to their innovativeness. Most innovations in chemistry were driven by European companies, including also major companies from Northwest Switzerland. I don’t believe the size of a company alone is decisive – Apple and Google are also big companies. It is rather a question of mentality. Large companies are also more likely to take risks.

Does this mean we’ve lost our culture of innovation in Europe?
Yes, and this is drummed in at an early age. In the USA, it already begins with education: Americans largely have to pay for their education themselves. So for them even the university degree represents an investment that they somehow have to finance and that should eventually also pay off. And it does not stop there. The universities, too, are constantly seeking funds to finance their projects. Every president of a private US university gets up in the morning and tells himself: «Today I have to find ten million dollars.» There are no blank checks. This creates pressure, of course, and ultimately leads to innovators having to be very much more consistent in the commercial focus of their projects. This is lacking here. The Federal Institute of Technology and the Biozentrum of Basel University can match up to the best in the world academically. But when it comes to the number of spin-offs, then they are mediocre at most. Both systems have their pros and cons. The fact is simply that, in this way, more startups emerge from universities in the USA than here with us.

Universities are not the only resource of new companies. Basilea and Actelion are examples of very successful spin-offs of large companies. Should we not focus there instead?
That’s certainly an interesting idea. Innovations in established structures do indeed have a difficult time of it. There’s a lot of truth in the view that if you have a really innovative idea in a big corporation, you should push ahead with it unnoticed for as long as possible. In many large companies, more innovations are shot down than are driven forwards. For me, Kodak is the most striking example: They had all the patents for digital photography and still they let themselves get wrong-footed.

How can this be prevented? What can state-run innovation promotion organization like i-net do?
The question is whether a big corporation even allows the spin-off of an idea that it does not want to pursue further or not. Ultimately they never know whether the project might not perhaps be of benefit and at the same time they don’t want to create a potential competitor. So there are far fewer spin-offs from big companies than you might actually expect and would probably also be possible. When it comes down to it, such spin-offs also have to be decided and implemented top down. This is exactly how it happened with Actelion and Basilea. Bottom-up is much less feasible.

Unless there is sufficient venture capital and a suitable infrastructure, as well as other support services for entrepreneurs, such as coaching. This is precisely one of the objectives behind promoting start-ups. Do you see a conflict of interests with big industry?
An economist would say the state should keep its nose out of it and leave such developments to the market. But there is also a reservation: The market is focused on the short term; innovations on the other hand need the long-term view. New things don’t emerge from one day to the next. From the idea through proof of concept and funding to market launch quite often takes more than a decade. To this extent it is certainly not wrong if state institutions get involved here with the injection of appropriate resources in the right place.

And where will you apply the levers in future as president of i-net?
Basically, i-net is well positioned. I find it right, for example, that the emphasis is on the thematic promotion of innovation. And the choice of technology fields is right as well. The focus of i-net is on the networking of people and topics; this is an important service that cannot be provided in this form by the private sector. Many innovations today occur at the interface between the various technology fields. By offering a neutral platform here for the exchange of ideas and stimulating cooperation, i-net can make an important contribution to the future development of our economic region.
To some extent, Basel is something of a «one-trick Pony» and largely dependent on the life sciences.

How important do you think it is for a business center to strive for a certain diversification in this respect?
You can see the focus as a course or as a blessing. On the one hand the two big corporations absorb a lot of resources and talents. On the other they also create a lot of value and prestige from which our economic region can profit. I think we should look to this strength and use it as a springboard to new fields. For example, Roche employs more than a thousand ICT specialists in this region alone. That is already an outstanding basis for further development at the interface between life sciences and ICT. I believe there are dozens of such interesting fields that it would be worth advancing.

And how do you see Northwest Switzerland positioned in the global competition for inward investment?
The region is clearly undersold. Basel is not widely perceived as an innovation hotspot for the life sciences. The fact that we are should be much better communicated. In this, too, the Americans are unfortunately a step ahead. But it doesn’t have to stay that way.

Interview: Thomas Brenzikofer and Nadine Nikulski, i-net

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Therapeutic gene editing is taking off – and Basel is right in the middle

28.01.2015

Very rarely can a scientist claim to have had a fundamental and game-changing impact in his field and beyond. But Jennifer Doudna from University of California, Berkeley, and Emmanuelle Charpentier, who was working at the University of Umeå in Sweden at the time, can claim just that. In mid-2012, when they published their discovery of an RNA-programmable tool (termed CRISPR for Clustered Regularly Interspaced Short Palindromic Repeats) which allowed DNA to be cleaved in a very targeted and extremely efficient manner, they created a stir, because this tool could potentially also be used for RNA-programmable genome editing. And only months later, this is exactly what George Church from Harvard and Feng Zhang from the Broad Institute of MIT and Harvard showed in two independent publications: CRISPR could be used to edit the genome of potentially any organism, from yeast to man, whether to introduce new mutations, to correct disease-causing mutations or to insert or remove whole sections of DNA in the genome, and all of this in no time at all. After this the biomedical community was jumping with excitement, and scientists were describing CRISPR as the “holy grail” of genetic engineering and a «jaw-dropping» breakthrough in the fight against genetic disease.

A new era in gene editing
It was not that genomes had not been editable until then. But for higher eukaryotes, such as mice, monkeys, dogs or also human cells, it was a slow, painstaking and expensive process that could potentially take months if not years. But with CRISPR it was possible for the first time to edit the genome very precisely and at unprecedented speed and very little cost. The research community quickly embraced CRISPR as a research tool to engineer custom transgenic lab animals in a matter of weeks—saving about a year's worth of work. This not only enables new model organisms to be established in a very short time for many hitherto hard to treat diseases, such as Alzheimer’s, multiple sclerosis, autism, certain forms of cancer, but also allows cell lines to be edited for drug screening or new approaches to be explored for treating HIV. It might also be possible to for example correct the chromosomal abnormality associated with Down syndrome early in a pregnancy, to reintroduce susceptibility to herbicides in resistant weeds, to bring back extinct animal species and very much more.

On the road to commercialization
From the outset, of course, it was clear that CRISPR would also attract a lot of interest from the biotech world, which is also where Basel enters into the story. So far, three therapeutic biotech companies have been formed around CRISPR, two of them having links to Basel. The first of these was Editas Medicine from Boston, which was launched in late 2013 with $43 million in venture capital from Flagship Ventures, Thirdrock Ventures, Polaris Partners and the Partners Innovation Fund. A few months later, the Basel office of Versant Ventures announced a Series A investment of $25 million to start up CRISPR Therapeutics with headquarters in Basel. And in late 2014, Atlas Ventures and Novartis announced the formation of Intellia Therapeutics (although it had already existed in stealth mode for almost two years) with a Series A investment round of $15 million.

And just recently Novartis also concluded the first biotech-pharma licensing deal in this area with Intelllia, for exclusive rights for ex vivo engineering of chimeric antigen receptor (CAR) T cells (another hot topic in biotech/pharma research these days) and the right to develop a number of targets for ex vivo editing of hematopoietic stem cells. Ex vivo applications, in which cells are extracted from patients and manipulated outside the patient’s body and then re-infused, will very likely be among the first treatments to be developed for Editas Medicine and CRISPR Therapeutics, as this can be addressed with the technology as it stands today. The companies expect clinical trials to begin in as little as three years.

Challenges ahead
One of the big challenges, however, will be to make CRISPR a technology to treat genetic diseases of any kind with a one-time fix that can «edit» out genetic abnormalities and cure disease at the genetic level, potentially in a single treatment, in vivo. But for this to happen, ways have to be figured out for safely and effectively delivering a gene-editing drug into the body, which is still a very big hill to climb.

And there is another issue: The patent situation is in a state of some confusion. The first patent issued went to the Broad Institute of Harvard and MIT and was licensed by Editas Medicine. However, after that patent was granted, Jenifer Doudna, originally one of the co-founders of Editas Medicine, broke off her relationship with the company, and licensed her intellectual property - in the form of her own pending patent - to Intellia Therapeutics. And to confuse the issue further, Emmanuelle Charpentier, who claims that «the fundamental discovery comes from my laboratory», licensed her own rights in the same patent application to CRISPR Therapeutics.

So there appears to be a lot of work for patent lawyers to sort out in the next few months. But despite all the legal wrangling, CRISPR will without doubt continue to transform biomedical research in a way very seldom seen before and be transformative in the way we treat genetic diseases.

More information
General
Youtube Video «Genome Editing with CRISPR-Cas9»
New York Times article «A Powerful New Way to Edit DNA»
The Independent article «The more we looked into the mystery of Crispr, the more interesting it seemed»

Companies
Editas Medecine
CRISPR Theraeputics
i-net article «$25 million in series A financing for Basel-based CRISPR Therapeutics»
Intellia Therapeutics
collaboration with Novartis:
FierceBiotech article «Novartis adopts a CRISPR-Cas9 partner and jumps into the hot new R&D field»
FierceBiotech article «Novartis joins Atlas in launching a CRISPR Cas biotech with a $15M bankroll»
Xconomy article «CART + CRISPR = 1st-Of-Its-Kind Biotech Deal From Novartis, Intellia»

Patents
MIT Technology Review article «Who Owns the Biggest Biotech Discovery of the Century?»
Independent article «Scientific split - the human genome breakthrough dividing former colleagues»
Fiercebiotech article «A biotech war is brewing over control of the revolutionary CRISPR-Cas9 tech»

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