Showing posts with label MIT. Show all posts
Showing posts with label MIT. Show all posts

Monday, September 12, 2016

Top 5 Ways to Innovate in Biotech

Everyone likes to talk about innovation, but how can you stop simply talking about and start driving real innovation in biotech? We looked at some of the most ground-breaking, silo-busting movers and shakers around to bring you the "Top 5 Ways to Innovate in Biotech".


  • #1 Diversity is not just good business, it makes for good science. People who grew up in the same parts of a country and went to similar schools often have comparable approaches to solving problems. As such, homogeneous groups of these individuals tend to get stuck on problems at the same point. Diverse teams, in contrast, come at problems from lots of different angles, enabling them to find creative solutions. Jeffrey Karp, Principal Investigator and Founder of Karp Lab populates his clinic with scientists from around the world: “We’ve had people from over thirty different countries,” he said. “I think this has been important because people in different places, they have different ways of thinking, different ways of solving problems.”
  • #2 Hire Outside the Life Sciences. Traditionally distinct disciplines such as engineering, mathematics, computer science, chemistry, physics and the life sciences are increasingly coming together to advance the management and prevention of disease in the US. Tufts Allen Discovery Center, UCSF, Caltech, U of Illinois at Urbana-Champaign, ICES at U Texas at Austin, Carnegie Mellon and U Pittsburgh, Johns Hopkins Biomedical Engineering, Duke and U of Michigan, The Wyss and the Broad Institutes are examples of organizations combining either elements of computer science or engineering with the life sciences into their various programs. Jeffrey Karp of Cambridge’s Karp Lab has worked with heart surgeons, mechanical engineers, polymer chemists, and a fiber optics expert. Karp creates an environment designed to make the most of everyone’s capabilities, specifically by minimizing overlap in expertise. “When people get together to brainstorm, everybody can bring something unique,” Karp said. “Everybody feels validated, everybody’s motivated because they’re the only ones who can bring that particular perspective or expertise.”
  • #3 Balance competitiveness with valuable data sharing. Stacy Springs, Biomanufacturing Program (BioMAN) and executive director of the Consortium on Adventitious Agent Contamination in Biomanufacturing (CAACB) at the MIT Center for Biomedical Innovation (CBI), has the recipe for successful collaboration between industry, government and academia when it comes to biotech: “truth, transparency, and trust. Setting the ground rules and understanding how you want to work together is definitely very helpful.” CAACB brings together more than 20 leading drug product and equipment companies, such as Amgen, Biogen, Genentech, and Sanofi Pasteur, to gather confidential information on viral contamination. Such contaminations are too rare for any individual company to have enough data to develop best practices, but, by pooling resources at the neutral forum of MIT CBI, companies can learn from their collective experience.
  • #4 Go outside science for your brain trust. When Kristin Ardlie’s team at Broad Institute’s Genotype-Expression Program (GTEx) was formed, there simply weren’t enough samples for the breadth and scale of the sequencing program envisaged for that organization. They realized they needed to look into sourcing samples from people who had died recently to alleviate their tissue supply bottleneck. But this created a whole new set of ethical and legal questions. So what did GTEx do? GTEx established a separate wing of ethical and legal experts. Not only did this solve the issue of having enough samples, it also turned GTEx into an unusually broad, multidisciplinary initiative that, through an ethical, legal, and, social issue substudy, has driven advances in fields far beyond genetics. Notably, the substudy has supported the development of best practices and training resources for people who have to ask grieving families to donate tissues. It has created an invaluable dialogue between biospecimen specialists, ethicists, geneticists, and the families of donors. GTEx has also opened up the data to scientists outside of the consortium and holding outreach meetings with the wider community. Through these and as-yet-unstarted analyses, the data derived from years of work and sacrifice by the families of donors, ethicists, legal experts, biospecimen specialists, geneticists, and others will continue to yield scientific discoveries.
  • #5 Get your superhero on. Sometimes it takes a far-fetched idea to solve a problem; a picture of Spiderman in an article on a colleagues’ desk at MIT gave Jeffrey Karp of Karp Lab the wild idea to develop a surgical patch that was degradable, elastic and transparent (inspired by Spiderman's sticky hands and a gecko's sticky feet). Karp Lab has used everything from porcupine quills to jellyfish tentacles as the basis for a breakthrough. From Karp Lab’s bioinspiration to recent discoveries about the microbiome and advances in T-Cell therapy, the jury is out on whether future generations will look back on the 21st century as a time of technological advances or a time when science brought us closer to harnessing the innate power of our own bodies as well as those of the natural world. 

We hope you enjoyed our Top 5 List! We are proud to say that three innovators featured in this Top 5 article will be speaking at Biotech Week Boston this October 2016. You can catch up with Jeffrey Karp’s newest discoveries and research at Biotech Week Boston's Cell and Gene Therapy Bioprocessing and Commercialization event. Jeffrey's talk is entitled "MSCs on steroids". Stacy Springs will be on a panel entitled "Industry-Academia Collaboration in Translational Research and Biomanufacturing of Next Generation Biologics at the Bioprocess International Conference and Exhibition. And Kristin Ardlie will discuss GTEx Data and Analysis at Biorepositories and Sample Management.

We also invite you to download “Convergence in Boston: How multidisciplinary R&D is driving bench-to-bedside breakthroughs" to get more detailed information on the types of innovations Ardlie, Karp and Springs are working on. The report is free and no email address or registration is required - so go ahead and share the link!



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Thursday, September 1, 2016

New Report: Convergence in Boston: How multidisciplinary R&D is driving bench-to-bedside breakthroughs

The area in and around Boston, Massachusetts is as dense with world-renowned scientific experts as anywhere on earth. Here, in an area a little larger than one square mile, researchers from Harvard University, Massachusetts Institute of Technology (MIT), and a multitude of biotechs and Big Pharmas are driving the evolution of the technology and business of science. In doing so, research teams are increasingly looking to share data, research, and ideas.

Download the Report

Collaboration has always been key to science, but, as researchers have taken on ever-more complex projects, the need to work with people from different disciplines, backgrounds, and organizations has increased. Such collaborations run counter to the secretive, ego-driven, or financially-motivated sides of science, but have nonetheless taken root, even in for-profit fields, as organizations have realized the value of expanding the breadth of their internal expertise while looking outside of their walls for collaborators. We at Biotech Week Boston are excited by the possibilities that this new era of collaboration can bring to biotech. We’ve asked writer Nick Paul Taylor (Nature, Fierce Biotech, Regulatory Focus) to report on several innovators who are contributing to this convergence of disciplines and ideas here in Boston.

In this report, Nick looks at three people: "who have embraced the collaborative, multidisciplinary ethos and, in doing so, have influenced science, business, and the lives of patients to a far-greater degree than would have been possible through an isolationist approach. Their goals are diverse. One is working to improve drug availability in low and middle-income countries through the advance of biomanufacturing. Another is looking to nature for answers to biomedical problems that blight the lives of patients. Our third is coordinating a global campaign to unlock the secrets of the genome."

Nick continues: "What links the three researchers is not the type of science they do, but the way they do it. Each is an example of what scientists, particularly in hotspots such as Boston, can achieve when they are open to the sharing of data, research, and ideas."

We hope you enjoy Nick’s in-depth report. We are proud to say that all three innovators featured in this report will be speaking at Biotech Week Boston this October 2016. You can catch up with Jeffrey Karp’s newest discoveries and research at Biotech Week Boston's Cell and Gene Therapy Bioprocessing and Commercialization event. Jeffrey's talk is entitled "MSCs on steroids". Stacy Springs will be on a panel entitled "Industry-Academia Collaboration in Translational Research and Biomanufacturing of Next Generation Biologics at the Bioprocess International Conference and Exhibition. And Kristin Ardlie will discuss discuss GTEx Data and Analysis at Biorepositories and Sample Management.

We invite you to download “Convergence in Boston: How multidisciplinary R&D is driving bench-to-bedside breakthroughs.” The report is free and no email address or registration is required - so go ahead and share the link!



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Wednesday, August 31, 2016

From bench to bedside: Stacy Springs and the BioMAN program connect theoretical concepts to real world application

In 1978, there were just 30 patents granted for biopharmaceuticals. Now biologic drugs make up more than 28% of all pharmaceutical sales - $41.7 billion in 2013. MIT CBI’s BioMAN program is focused on translating all of the research into successful manufacturing, so theoretical concepts can be turned into real world applications. They do this by bringing together thought leaders from across the biopharmaceutical industry including manufacturers, vendors, the FDA and academia. They also leverage the MIT research they have access to in order to advance new technologies as well as assess the global landscape.

Stacy Springs


This year MIT put out a report called “Convergence: The Future of Health” which states: “Convergence comes as a result of the sharing of methods and ideas by chemists, physicists, computer scientists, engineers, mathematicians, and life scientists across multiple fields and industries…it needs to be applied to help solve many of the world’s grand challenges.” To that we can add - as scientific discoveries progress collaboration between the academic world, the government and manufacturers is key to solving these challenges. That is what BioMAN was set up to do.

We at Biotech Week Boston have asked writer Nick Paul Taylor (Nature, Fierce Biotech, Regulatory Focus) to report on several innovators who are contributing to this convergence of disciplines and institutional boundaries here in Boston, and Nick reports on the work Stacy Springs  is doing at BioMAN Institute. At BioMAN Stacy is the Director of the Biomanufacturing Program and Executive Director of the Consortium on Adventitious Agent Contamination in Biomanufacturing. We’re proud to feature her in our report “Convergence in Boston: How multidisciplinary R&D is driving bench-to-bedside breakthroughs”. BioMAN “fosters a collaborative research environment that brings together thought leaders from industry, the government/FDA and academia.” Click to download and read about Stacy Springs and MIT’s CBI BioMAN program (no email address or registration is required).

We hope you enjoy Nick’s in-depth report. You can catch up with Stacy Spring’s newest research at Biotech Week Boston's Bioprocess International Conference and Exhibition event this October. Stacy will be on a panel entitled "Industry-Academia Collaboration in Translational Research and Biomanufacturing of Next Generation Biologics".





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Tuesday, August 30, 2016

How the Broad Institute’s GTEx uses a multidisciplinary approach to translate research into medicine

MIT’s new report “Convergence: The Future of Health” states: “Convergence comes as a result of the sharing of methods and ideas by chemists, physicists, computer scientists, engineers, mathematicians, and life scientists across multiple fields and industries. It is the integration of insights and approaches from historically distinct scientific and technological disciplines. Convergence is a broad effort across the sciences that will play a crucial role in many fields of endeavor. As noted above it needs to be applied to help solve many of the world’s grand challenges.”

We’ve asked writer Nick Paul Taylor (Nature, Fierce Biotech) to research several innovators who are contributing to a multidisciplinary convergence right here in Boston. The paper is entitled: "Convergence in Boston: How Multidisciplinary R&D is driving bench to bedside breakthroughs".

Kristin Ardlie


Nick reports on what the Broad Institute, specifically in their Genotype-Tissue Expression (GTEx) project, is contributing to understanding disease in their work with genomics. Genomics has, since its earliest days, been a multidisciplinary field. The sequencing, analyzing, and contextualizing of genomes necessitates the input of experts from a broad range of backgrounds. Nick spoke with Kristin Ardlie, Ph.D., the Senior Research Scientist, Director of GTEx at the Broad Institute of MIT and Harvard. The GTEx project started in 2010 “with the goal of creating a comprehensive atlas and open database of gene expression and gene regulation across human tissues.” Nick explores Kristin Ardlie and the Broad Institute’s work to discover how and why the field of genomics needs to draw on a diversity of skills and disciplines to handle the myriad of tasks involved in understanding inherited susceptibility to disease.

We hope you enjoy Nick’s in-depth report. You can catch up with Kristin Ardlie and The Broad Institute’s Genotype-Tissue Expression projects newest research at Biotech Week Boston's Biorepositories and Sample Management event this October. Kristin will discuss GTEx Data and Analysis.





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Monday, August 29, 2016

MIT's BioMAN Announces Global Initiative

MIT's Center for Biomedical Innovation Program(BioMAN) has announced a new global health initiative. BioMAN’s mission is to “develop new knowledge, science, technologies and strategies that advance the manufacture and global delivery of high quality biopharmaceuticals”.

Frequency Therapeutics Announces Clinical Trials for Hearing Loss


Stacy Springs, who has been Director of the program since 2008, recently spoke with Nick Paul Taylor: “We have a new global health initiative that hasn't really been publicized yet,” Springs said. “It is very much focused on the different ways we need to think about ... making biologic medicines available and accessible to middle and low-income patients around the world.”

In discussions with the Bill and Melinda Gates Foundation and PATH 

Stacy Springs elaborated on the initiative: “We certainly have been engaged in discussions with the Bill and Melinda Gates Foundation, with PATH, and others about our goals,” Springs said. The Gates Foundation is among the organizations already working to drive down the cost of manufacturing, but its focus is limited to drugs against its target diseases. Springs’ nascent initiative is broader in scope. It may, for example, look at ways to improve the availability of insulin around the world.

For the full interview with Springs download the complete report by journalist Nick Paul Taylor here: “Convergence in Boston: How multidisciplinary R&D is driving bench-to-bedside breakthroughs”. No email or registration is required.

We hope you enjoy Nick’s in-depth report. You can catch up with Stacy Spring’s newest research at Biotech Week Boston's Bioprocess International Conference and Exhibition event this October. Stacy will be on a panel entitled "Industry-Academia Collaboration in Translational Research and Biomanufacturing of Next Generation Biologics".





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