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Convergence Science Transforming Biomedicine, MIT Report says

We thought our readers would like to know about “Convergence and the Future of Health,” a  report released today by the Massachusetts Institute of Technology. (Slightly self-serving full disclosure: New Cambridge Observer‘s Anita Harris was one of the writers).  

MIT Graphic, Convergence Report 2016

MIT Graphic, Convergence Report 2016

CAMBRIDGE, MA — What if lost limbs could be regrown? Cancers detected early with blood or urine tests, instead of invasive biopsies? Drugs delivered via nanoparticles to specific tissues or even cells, minimizing unwanted side effects? While such breakthroughs may sound futuristic, scientists are already exploring these and other promising techniques.

But the realization of these transformative advances is not guaranteed. The key to bringing them to fruition, a landmark new report argues, will be strategic and sustained support for “convergence”: the merging of approaches and insights from historically distinct disciplines such as engineering, physics, computer science, chemistry, mathematics, and the life sciences.

The report, “Convergence: The Future of Health,” was co-chaired by Tyler Jacks, the David H. Koch Professor of Biology and director of MIT’s Koch Institute for Integrative Cancer ResearchSusan Hockfield, noted neuroscientist and president emerita of MIT; and Phillip Sharp, Institute Professor at MIT and Nobel laureate, and will be presented at the National Academies of Sciences, Engineering, and Medicine in Washington on June 24.Convergence Image

The report, available at http://www.convergencerevolution.net/2016-report draws on insights from several dozen expert participants at two workshops, as well as input from scientists and researchers across academia, industry, and government. Their efforts have produced a wide range of recommendations for advancing convergence research, but the report emphasizes one critical barrier above all: the shortage of federal funding for convergence fields.

“Convergence science has advanced across many fronts, from nanotechnology to regenerative tissue,” says Sharp. “Although the promise has been recognized, the funding allocated for convergence research in biomedical science is small and needs to be expanded. In fact, there is no federal agency with the responsibility to fund convergence in biomedical research.”

National Insitutes of Health

National Insitutes of Health

The National Institutes of Health (NIH) are the primary source of research funding for biomedical science in the United States. In 2015, only 3 percent of all principal investigators funded by NIH were from departments of engineering, bioengineering, physics, biophysics, or mathematics. Accordingly, the report’s authors call for increasing NIH funding for convergence research to at least 20 percent of the agency’s budget.

Progress and potential

MIT Dome, Convergence ReportIn 2011, MIT released a white paper that outlined the concept of convergence. More than just interdisciplinary research, convergence entails the active integration of these diverse modes of inquiry into a unified pursuit of advances that will transform health and other sectors, from agriculture to energy.

The new report lays out a more comprehensive vision of what convergence-based research could achieve, as well as the concrete steps required to enable these advances.

“The 2011 report argued that convergence was the next revolution in health research, following molecular biology and genomics,” says Jacks. “That report helped identify the importance and growing centrality of convergence for health research. This report is different. It starts us off on a true strategy for convergence-based research in health.”

The report released today makes clear that, despite such obstacles, this “third revolution” is already well underway. Convergence-based research has become standard practice at MIT, most notably at the Koch Institute and the Institute for Medical Engineering and Science. dna

“About a third of all MIT engineers are involved in some aspect of convergence,” says Sharp. “These faculty are having an enormous impact on biomedical science and this will only grow in the future. Other universities are beginning to evolve along similar paths.”

Indeed, convergence-based approaches are becoming more common at many other pioneering university programs, including the Wyss Institute for Biologically Inspired Engineering at Harvard University, and the University of Chicago’s new Institute for Molecular Engineering, among others.

The report also points to several new federal initiatives that are harnessing the convergence research model to solve some of society’s most pressing health challenges.

For example, the Brain Research through Advancing Innovative Neurotechnologies (BRAIN) Initiative, launched by the Obama administration in 2013, seeks to improve our understanding of how individual cells and neural circuits interact, in order to develop new ways to treat and prevent brain disorders. And the National Cancer Moonshot Initiative, launched earlier this year to accelerate research to develop cancer vaccines and early detection methods and genomic tumor analysis, will also operate largely using convergence tools and approaches.Brain-Initiative

But the integration of new technologies and methods from genomics, information science, nanotechnology, and molecular biology could take us even farther.

The report outlines three major disease areas — brain disorders, infectious diseases and immunology, and cancer — and promising convergence-based approaches to tackling them. It also presents case studies of four emerging technology categories: advanced imaging in the body, nanotechnology for drug and therapy delivery, regenerative engineering, and big data and health information technology.

A sampling gives a sense of their transformative potential. Convergence techniques could enable rewiring the genes of mosquitoes to eliminate Zika, dengue, and malaria. They could help solve the emerging threat of drug-resistant bacterial strains, which infect over two million people in the U.S. every year. Convergence-based immunotherapy could activate a person’s immune system to fight cancer, reprogramming a person’s T-cells or antibodies to find and attack tumor cells. Big-data techniques could be used to generate and analyze huge amounts of data on people’s exposures to industrial chemicals, environmental toxins, and infectious agents, creating a new field of “chemistry of nurture,” to complement the “chemistry of nature” developed by the documentation of the human genome.

“Convergence might come just in time,” says Hockfield, “given our rapidly aging population, increasing levels of chronic disease, and mounting healthcare costs due to demographic trends throughout the developed world. But we must overcome significant barriers to get to convergence.”

Cultivating convergence

Realizing the full potential of the convergence revolution will require much more ambitious and strategic coordination and collaboration across industry, government, and academia, the report argues.

The report accordingly calls for a concerted joint effort by federal agencies, universities, and industry to develop a new strategic roadmap to support convergence-based research. As a concrete next step, the report’s authors recommend establishing an interagency working group on convergence with participation from NIH, the National Science Foundation, and other federal agencies involved in funding scientific research, such as the Food and Drug Administration and the Department of Energy.

Other pressing challenges include grant review processes based on narrow, outdated disciplinary structures, which limit the availability of resources for cross-functional research teams. The report also proposes new practices to foster “cultures of convergence” within academic institutions: cross-department hiring and tenure review, convergence “cluster hiring” and career grants, and new PhD programs wherein students design their own degree programs across disciplinary boundaries.

If the potential of convergence is great, so are the stakes.

“Convergence has grown from a little seedling to a sprouting plant, but to become a great tree and orchard yielding fruit for decades into the future, it needs to be nourished, expanded, and cultivated now,” says Sharp. “Students need to be educated, collaborations need to be encouraged, and resources need to be committed to make sure convergence thrives.”

“This integration is important to deal with the great challenges of the future: continued growth in the accessibility and quality of healthcare, growth of the economy, and providing resources for future populations.”

Funding for the report was provided by the Raymond and Beverly Sackler Foundation, The Kavli Foundation, and the Burroughs Wellcome Fund.

The report is available at http://www.convergencerevolution.net/2016-report

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Written by Jonathan Mingle, MIT News correspondent

New Cambridge Observer is a publication of the Harris Communications Group, a Cambridge, MA, PR & marketing firm specializing in health, science and technology.




Companies Receive $1.3 M in MA-Israeli Collaboration Grants

Four Massachusetts-Israeli business collaborations have received a total of $1.3M in grant funding under the  Massachusetts-Israel Innovation Partnership (MIIP)–a  formal collaboration between the State of Israel and the Commonwealth of Massachusetts to encourage and support innovation and entrepreneurship between Massachusetts’ and Israel’s life sciences, clean energy and technology sectors.

The grants were announced yesterday at the  2012 BIO International Convention in Boston by Massachusetts  Governor Deval Patrick and  Israeli Chief Scientist Avi Hasson, of  MATIMOP, the  Israel Ministry of Industry, Trade and Labor.

The four winning projects are:

  • SBH Sciences (Natick) and Improdia (Israel) will work together toward the development and manufacture of a chronic inflammation-dependent immunosuppression prognostic kit. SBH will receive $184,000 from the Center and Improdia will receive $202,000 from Israel’s OCS.SBH Sciences is a discovery and preclinical contract research organization with expertise in production and analysis of cytokines and biomarkers. Improdia is a life science start-up focused on implementing novel biomarkers for immune system modulating therapies– using  simple blood tests for patients with chronic disease.
  •  Automated Medical Instruments (AMI – Needham) and STI Lasers (Israel) will develop new technology involving radio frequency energy to perform circumferential ablation of the pulmonary veins. AMI will receive $116,000 from the Center and STI Lasers will receive $110,000 from OCS. AMI is a start-up medical device company developing novel technology to perform atrial fibrillation treatment. STI Lasers is a medical device company specializing in laser cutting, micromachining and finishing of miniature metal components.“AMI is developing the CircumBlator™,  to offer a reliable and curative, minimally invasive treatment for millions of patients with atrial fibrillation, a disease that causes over 20 percent of strokes and untold misery,” said Martin Sklar, President and CEO of Automated Medical Instruments.
  • Lantheus Medical Imaging, Inc. (North Billerica) and Check-Cap (Israel) will  develop a novel 3-D imaging capsule that can be used to screen for polyps and lesions associated with colorectal cancer. Lantheus will receive $300,000 from MTC and Check-Cap has been selected to receive at least an equal amount from OCS. Lantheus  develops, manufactures and distributes innovative diagnostic imaging agents. Check Cap is a medical device company located in Mount Carmel, Israel with a “breakthrough” solution for Colorectal Cancer Screening.  “As a global leader in diagnostic imaging, Lantheus is dedicated to providing physicians with breakthrough new tools to enhance patient care. Teaming up with Check-Cap to develop and manufacture a cutting-edge imaging capsule further advances this ongoing commitment,” said Don Kiepert, President and CEO, Lantheus Medical Imaging.
  • FloDesign Sonics (Wilbraham) and Transbiodiesel (Israel)  will use FloDesign’s acoustic molecule separation technology to separate oil that can be used to create fuel from Transbiodiesel’s oil-generating algae. FloDesign Sonics will receive $55,000 from MassCEC and Transbiodiesel will receive $20,958 from OCS. FloDesign Sonics uses a novel ultrasonic acoustophoretic separation technology developed at Western New England University for a more efficient approach to wastewater treatment and micro-algae harvesting for biofuels. Transbiodiesel is a start- up company with a novel technology for producing biodiesel fuels from a variety of oils

The MIIP program was first announced in June 2011 at the BIO International Convention in Washington, D.C. and the first joint solicitation for proposals was launched in September 2011 by MATIMOP on the Israeli side and by the three participating Massachusetts agencies: the Massachusetts Life Sciences Center, the Massachusetts Technology Collaborative (MTC) and the Massachusetts Clean Energy Center (MassCEC). Total funding for the current projects is approximately $3m.

The partnership came as a result of a 2011 trade mission in which  Governor Patrick and a coalition of Massachusetts business executives and senior government officials explored growth opportunities of common interest for Massachusetts’ and Israel’s innovation industries. During that mission Governor Patrick and Shalom Simhon, Israeli Minister of Industry, Trade and Labor, signing on behalf of their respective states, signed a Memorandum of Understanding (MOU) in Jerusalem. MIIP was established to implement the MOU’s framework.

Massachusetts is the first U.S. state to establish a significant industrial R&D program with the State of Israel, according to a press release issued yesterday by Patrick’s office.

Today there are nearly 100 companies with Israeli founders or Israeli-licensed technologies in Massachusetts, according to the release.  In 2009, these companies employed nearly 6,000 people and generated $2.4 billion in direct revenue for the state. Local firms exported over $180 million worth of goods to Israel in 2009. Home to 377 hospitals and 37,000 practicing physicians, Israel is an important market for health-related technologies.

The New England-Israel Business Council, the US-Israel Science and Technology Foundation, the Government of Israel Economic Mission to North America, the Consulate General of Israel to New England and MOITI have all played an important role in promoting the program, according to the release.

–Anita M. Harris

New Cambridge Observer is a publication of the Harris Communications Group, an award-winning strategic public relations,  marketing communications and thought leadership firm in Cambridge, MA.

 




Pasteur Institute Spin-out Ariana Pharma Opens Cambridge Office; Analytics Tech to Streamline Clinical Trials

SHANAHAN NAMED VP OF BUSINESS DEVELOPMENT

—One of the newest international companies to expand into Cambridge is Ariana (R)  Pharma–a 2003 spin-out of the Pasteur Institute in Paris.  Its  subsidiary, Ariana Data Intelligence, Inc., located in the Cambridge Innovation Center at 1 Broadway,  will provide novel non-statistical clinical data analysis technology to pharma and the FDA,  Ariana announced today.

The technology,  “Knowledge Extraction and Management Technology (KEM)” is aimed at reducing cost, bias, and risk in clinical trials.

“The US pharma and biotech markets tend  to be early technology adopters and are searching for better data analytics tools to advance personalized medicine using all the new biomarker, genomic, proteomic and metabolomic data now being generated,” said  Dr. Mohammad Afshar, Ariana’s President and CEO.

KEM   “is the only FDA-tested technology that  can simultaneously analyze all these variables and pull out patient responder sub-groups, optimize biomarker signatures and remove bias from clinical trials,” Afshar said.

A “unique” association rules-based (non-statistical) analytical technology, KEM  finds patient responder sub-populations and biomarker signatures that statistical methods are unable to detect, according to Afshar.  KEM thus optimizes clinical trial inclusion/exclusion criteria, thereby lowering the number of patients needed to reach clinical endpoints and saving sponsors both time and cash, and reducing clinical drug development risk.

In conjunction with the opening, Ariana has appointed James M. Shanahan as Vice President  of Business Development.  Shanahan was previously a co-founder and is currently a  board member of SynDevRx, Inc., an oncology-focused biotech company. He was also a co-founder and VP Corporate Development of JAM Technologies, Inc.

Ariana offers something “special and desperately needed “by the pharmaceutical industry, Shanahan said.   “Companies spend tens of millions generating data.  Now, it’s all about making sense of that data.  KEM identifies useful, complex biological relationships that statistics routinely miss.”

More information is available at  http://www.arianapharma.com/  .

–Anita M. Harris

 




Bio-IT World Review: BIG Data; BIG Promise; BIG CHALLENGES.

Earlier this week,  I had the privilege of attending the tenth annual “BIO-IT World Conference and Expo,” at which some 2500  information technology professionals participated in a 12-track program featuring more than 200 presentations on scientific and technologic developments.

From  keynote speakers Jill Mesirov, PhD, and Martin Leach, PhD,  respectively the Associate Director and Chief Information Officer  of the Harvard-MIT Broad Institute,  I learned that exponential increases  in computing power promise to bring personalized medicine –allowing highly individualized diagnosis and treatment –to doctors offices within ten years. I also learned how hard it is to keep track of the petabytes  ( a PBs is a unit of information equal to one quadrillion  bytes, or 1024 terabytes )  used to keep it all going.

Mesirov announced the upcoming launch of “Genome Space“–a new Web-based technology to help scientists make sense of and collaborate in using such data.

And in a talk entitled “BIG,”  Leach described the difficulty of defining “big data,” because the amount of available information is growing so rapidly.   He described an event held recently at the Broad to celebrate the Institute’s ability to store and analyze ten pedabytes of data –his glee soon tempered by  his recollection that in 1993, NIH’s Institute of Medicine was thrilled with its ability store 16 gigabytes–which anyone can now do on a cell phone.

Today,  Leach said, we are  seeing “increasing big data with a decreasing footprint.” [that is, smaller systems needed for gathering and retrieval].

Mentioning that he has an autistic son and would like to be able to figure out what causes the disorder, Leach  asked, “Why is there no Google search for data, no way to access thousands of data repositories?

“We need a new application ecosystem and a breed of data scientist who knows how and where to push this data, ” he said.  He predicted that there will soon be 50 thousand jobs in the  “big data” arena.

In the exhibit hall,  I was pleased to see that  see that Wingu, headquartered in the Cambridge Innovation Center, where I work, had been nominated for a best of show award for its pharmaceutical, contract research and academic collaboration software.

The winners, announced last night, were Recentris, Opscode, Clear Trial, and Cambridge Semantics. [More info at http://www.bio-itworld.com/2012/04/26/2012-best-of-show-winners.html]. Best Practice Grand Prizes went to big Pharma: Merck, Pfizer, and Merck KGaA (Germany)  went to and two genomics organizations, BGI Shenzhen and the University of Utah/Omicia. http://www.bio-itworld.com/2012/04/25/bio-it-world-announces-winners-2012-best-practices-awards.html.

BIO-IT World is sponsored by  Insight Pharma Reports, Samsung, and the Portland Group. It runs through April 27, 2012.

—Anita M. Harris

 




Bob Langer: inspiration for job seekers

As a graduating  PhD, Robert Langer, now Institute Professor at MIT, was having trouble finding work.

As he told the Health Innovators Group of Combined Jewish Philanthropies on Friday, most of his classmates took jobs with oil companies but  he knew that wasn’t for him.  Having helped found an alternative high school in Cambridge, he  applied for 50 or 60 jobs in curriculum development, but no one wrote him back. Then he tried medical schools and hospitals, but “they didn’t write back, either.”  Finally, someone  in his lab told him that someone at Children’s Hospital sometimes hired “unusual people.”

That “someone” was Judah Folkman, who, in 1974,  was beginning to work on angiogenesis, which involved the idea that cutting the blood flow to tumors could halt  their growth.  The possibility  intrigued Langer, who  was hired–but made a rather inauspicious start.

As a post doc, he spent half of his time scraping meat off of cow bones delivered from a South Boston slaughterhouse. He   discovered 200 methods that didn’t work;. He  faced  hostile scientists who told him they didn’t believe anything he said, and,  as time went on,  was denied many patents by officers who were were unwilling to accept his proof.

It took until 2002 for  the first angiogenisis drug to gain FDA approved.  By then, Bob, who wouldn’t take “no” for an answer, was MIT’s most prolific inventor and a University Professor who had helped found many companies and   inspired countless students–who now run departments, labs, and companies of their own.

I’ve known Bob since the 7th grade…and was in the 8th-grade English class  in which, he tells people , he was so shy that he froze during a public speaking exercise, and got an F.  We both went to Cornell, where, he’s told me, he found that he learned more studying on his own (and playing bridge) than going to class.  And I remember sitting in a pizza parlor with him in  1982, watching as he diagrammed  his ideas on a mechanism for “slow release” for pharmaceuticals–on a napkin.

Despite his success, a recent writeup in Nature,  and much  excitement about possible “pharmacies on a chip,”,  a stem cell device to help individuals with spinal cord injuries,  and an adhesive for heart surgery based on the sticky-stuff that allows gekkos to climb up walls, Bob  remains the same old Bob, who sometimes gets  ideas for new devices, materials and methods  from television and magazine magazines.    He’s still down-to-earth, supportive, and even funny.   (Did  you know that the most  surgical devices are invented by doctors who use household materials to fit their operating needs…which is why the “stretchiness” material used in artificial heart is the same stuff used in ladies’ girdles? )

So- for job hunters out there the message is simple but profound. Believe in yourself and your ideas, treat people kindly, and  keep on going.

Great talk, Bob. Once again, bravo.

AMH

New Cambridge Observer is a publication of the Harris Communications Group of Cambridge, MA.




Non-invasive test predicts risk of sudden cardiac arrest

I’m  helping Cambridge Heart and Kogs Communications get out the good news that the company’s non-invasive test, which is administered much like a stress test, on a treadmill, accurately predicts the risk of sudden cardiac arrest–the leading killer in the US.

Here’s today’s release:

Tewksbury, Mass., March 3, 2009 – Cambridge Heart, Inc. (OTCBB-CAMH), today announced the publication of five articles supporting the use of Microvolt T Wave Alternans™ (MTWA) testing in a supplement to the March issue of the Heart Rhythm journal. Featured in the supplement is a comprehensive meta-analysis of 6,000 patients confirming the value of MTWA as a non-invasive marker of risk for sudden cardiac arrest (SCA).

The MTWA test, administered much like a stress test on a treadmill, was developed by Cambridge Heart as a diagnostic tool to help physicians determine a patient’s risk of sudden cardiac arrest — the leading cause of death in the United States.

The meta-analysis, conducted by a group led by Stefan Hohnloser, MD, FHRS, of the JW Goethe University Division of Cardiology in Frankfurt, Germany, assessed 13 MTWA clinical studies involving approximately 6,000 cardiac patients.

“The results demonstrate that MTWA testing is a consistently accurate predictor of sudden cardiac death and cardiac arrest in patients who do not already have implantable cardiac defibrillators (ICDs),” said Dr. Stefan Hohnloser. “These are the patients for whom MTWA testing is intended.”

The meta-analysis authors also conclude that:

· Patients who test negative for MTWA abnormalities are at extremely low risk (0.3%) for SCA in the next 12 months.

· MTWA testing can help doctors guide ICD therapy to appropriate patients and overcome the widespread reluctance of patients and referring physicians to accept ICD therapy.

· In clinical trials, appropriate ICD shocks are an unreliable surrogate endpoint for SCA and can skew results of risk stratification studies.

“This comprehensive analysis confirms the findings of numerous peer-reviewed studies which underscore the important role of MTWA in assessing a patient’s risk of sudden cardiac arrest,” said Ali Haghighi-Mood, PhD, Chief Executive Officer of Cambridge Heart.

The Heart Rhythm supplement also includes:

· A second meta-analysis of MTWA testing in patients with non-ischemic heart disease, authored by Gaetano De Ferrari, MD and Antonio Sanzo, MD of the Department of Cardiology at Fondazione IRCCS Policlinico San Matteo, Pavia Italy. Analyzing eight available trials involving 1,450 patients, the paper indicates that in this population negative MTWA results can help patients and their physicians decide whether ICD therapy may safely be avoided.

· An article by Michael J. Mirro, MD, Medical Director of the Parkview Health System Clinical Research Center in Fort Wayne Indiana, who describes how his center has incorporated MTWA testing into clinical practice to complement other methods for identifying and educating patients about the risk of SCA.

· A review of numerous studies concerning the underlying cellular mechanisms of T-wave alternans. The authors conclude that microvolt T-wave alternans is a marker of cellular changes that make the heart susceptible to sudden cardiac arrest. The review was carried out by Michael Cutler, DO, PhD, and David S. Rosenbaum, MD, of the Heart and Vascular Research Center at the Department of Biomedical Engineering at Case Western Reserve University in Cleveland.

· A review by Navinder Sawhney, MD and Sanjiv Narayan, MD of the University of California at San Diego that underscores the value of MTWA testing in patients who have had heart attacks but do not fall within current guidelines for ICD implantation.

The articles in the supplement can be found on the Heart Rhythm journal website at:

http://www.heartrhythmjournal.com/issues/contents?issue_key=S1547-5271(09)X0006-8

About Cambridge Heart, Inc.

Cambridge Heart develops and commercializes non-invasive diagnostic tests for cardiac disease, with a focus on identifying those at risk for sudden cardiac arrest (SCA). The Company’s products incorporate proprietary Microvolt T-Wave Alternans measurement technologies including the patented Analytic Spectral Method® and ultrasensitive disposable electrode sensors. Medicare reimburses the Analytic Spectral Method® under its National Coverage Policy. Cambridge Heart, founded in 1990, is based in Tewksbury, MA. The company’s Microvolt T-Wave Alternans™ (MTWA) test, developed by Cambridge Heart (OTCBB: CAMH), is based on research originally conducted at the Massachusetts Institute of Technology. http://www.cambridgeheart.com.

Statements contained in this press release are forward-looking statements for purposes of the safe harbor provisions under The Private Securities Litigation Reform Act of 1995. In some cases, we use words such as “believes”, “expects”, “anticipates”, “plans”, “estimates”, “could”, and similar expressions that convey uncertainty of future events or outcomes to identify these forward-looking statements. Actual results may differ materially from those indicated by these forward-looking statements. Factors that may cause or contribute to such differences include failure to achieve broad market acceptance of the Company’s MTWA technology, failure of our sales and marketing organization to market our products effectively, inability to hire and retain qualified clinical applications specialists in the Company’s target markets, failure to obtain or maintain adequate levels of third-party reimbursement for use of the Company’s MTWA test, customer delays in making final buying decisions, decreased demand for the Company’s products, failure to obtain funding necessary to develop or enhance our technology, adverse results in future clinical studies of our technology, failure to obtain or maintain patent protection for our technology and other factors identified in our most recent Annual Report on Form 10‑K/A under “Risk Factors”, which is on file with the SEC and available at www.EDGAR.com. In addition, any forward-looking statements represent our estimates only as of today and should not be relied upon as representing our estimates as of any subsequent date. While we may elect to update forward-looking statements at some point in the future, we specifically disclaim any obligation to do so except as may be legally necessary, even if our estimates should change.

The New Cambridge Observer is a publication of the Harris Communications Group of Cambridge, MA.




Scientia Advisors launches life science "knowledge network"

I’m pleased to announce that Scientia Advisors has launched ScientiaNET,  a “knowledge network” for  health care and the life sciences. ( True,  they are my client, but I AM pleased).

The network now has 10 thousand member/experts and is seeking additional ones.  Members are leading scientists, physicians, practitioners, academics and industry professionals who are  paid their hourly rates to provide Scientia and its clients with analyses, opinions, surveys and consultation on life science tools and technologies, medical devices, diagnostics, biotechnology, pharmaceuticals, functional foods, and regulatory issues.

The member/experts typically consult with business leaders and decision-makers on industry trends and developments, operational problems/solutions, or specific products/services.

If you’d like to become a ScientiaNET member or engage one (or many)   please visit www.scientiaadv.com

AMH

Scientia Advisors, based in Cambridge, MA and Palo Alto, CA, is a global management consulting firm specializing in strategic growth and operational strategies  for major and emerging companies in health care and the life sciences.


New Cambridge Observer is a publication of the Harris Communications Group of Cambridge, MA.




Scientia Advisors Presents Webinars on Medical Industries

Thought you might like to know that my client, Scientia Advisors, is offering five free Webinars aimed at helping major corporations, emerging companies and innovative startups choose strategic directions.

The Webinars, in February, 2009, will present Scientia’s latest industry reviews. The reviews are based on interviews with scientists, clinicians, manufacturers, and product developers as well as on traditional market research.

The Webinars will initially be presented live, with opportunities for interactive participation.  Less-detailed Webcasts will subsequently be available for download from the Scientia Advisors Web site.

Here’s the schedule; click on any of the titles for more information or to register.
Anita


· Riding the High Value In Vitro Diagnostics Wave: Translating Promise Into Clinical Reality With Managing Partner Harry Glorikian, 11 AM Tuesday, February 10

· Back to the Future: Cell Market Entrance Strategies, Post-Stem Cell Deregulation

With Partner Arshad Ahmed, 11 AM Wednesday, February 11

· Drivers of Success in Functional Foods
With Principal Bob Jones 2 PM Wednesday, February 11

· Molecular Diagnostics: Identifying Candidates for Success in an Innovation-Driven Market

With Harry Glorikian, 11 AM Thursday, February 12

· Point of Care: Enabling Broad Product Adoption Through Maximized Access to Health Care Sites
With Harry Glorikian, 11 AM Thursday, February 19

Scientia Advisors, based in Cambridge, MA and Palo Alto, CA, is an international management consulting firm specializing in growth and operational strategies for major and emerging companies in health care, life science and biotechnology.

New Cambridge Observer is a publication of the Harris Communications Group, of Cambridge, MA.