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Which Country Ranks Highest In Biotech Innovation
In a first of its kind study, Scientific American cut through the marketing messages to take a hard look at what countries across the globe are doing to bolster biotech programs within their borders. Many rankings compare Europe, Asia, and the US -- the Scientific American Worldview: A Global Biotechnology Perspective digs deeper, examining all the elements that impact overall biotech innovation. You might be surprised by some of the results.
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Scientists Develop Mathematical Model To Predict The Immune Response To Influenza
Researchers at the University of Rochester have developed a mathematical model to predict immune responses to infection with influenza A viruses, including novel viruses such as the emergent 2009 influenza A (H1N1). This model examines the contributions of specific sets of immune cells in fighting influenza A virus. The model also helps predict when during the immune response to viral infection antiviral therapy would be most effective.
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AcelRx Announces Perfect Performance Of Handheld Component Of ARX-01 Sufentanil NanoTab PCA System In A Phase 2 Study
AcelRx Pharmaceuticals, Inc. announced positive results from its first Phase 2 clinical study evaluating the functionality of the handheld device component of its ARX-01 Sufentanil NanoTab(TM) PCA System for management of acute post-operative pain in patients requiring opioid analgesia during hospitalization. Patients reliably self-administered sufentanil NanoTabs repeatedly over the 12-hour study without any ARX-01 System failures or dosing errors of any kind.
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$1.3 Million Grant Awarded To LSUHSC To Develop New Cancer Vaccine

Eduardo Davila, PhD, Assistant Professor of Pediatrics, Microbiology, and Immunology at LSU Health Sciences Center New Orleans School of Medicine and Stanley S. Scott Cancer Center, has been awarded a $1.3 million grant over five years by the National Cancer Institute of the National Institutes of Health to develop new immunotherapies, including a vaccine, for cancer. Two years of the research will be supported by the American Recovery and Reinvestment Act (ARRA). Dr. Davila"s research lab has been working with T lymphocytes, immune cells, which can detect cancer. The LSUHSC research team has identified a novel signaling pathway in T lymphocytes, and they have demonstrated that the stimulation of specific proteins called toll-like receptors (TLRs) on the surface of human T lymphocytes boosts the production of molecules involved in tumor destruction. They have shown that TLRs can induce potent and long-lived anti-tumor activity against a highly aggressive melanoma tumor. "One arm of this grant is looking at generating/optimizing a cancer vaccine against melanoma and breast cancer," notes Dr. Davila. "Our preclinical data have indicated very promising results showing that we can activate and sustain high numbers of tumor-specific immune cells. Data using human cells parallel these studies and demonstrate the ability to activate human cells indicating promise in treating cancer patients." The LSUHSC researchers are working to increase our understanding of the underlying mechanisms of TLR activation and to define strategies to maintain potent TLR signals in T cells with the aim of prolonging antitumor T cell responses. "We envision these studies will make possible new approaches for the development of effective T lymphocyte-based therapies against cancer through a greater understanding of molecular signals that enhance T cell activation to weakly immunogenic tumors in patients," says Dr. Davila. "These are the tumors that grow aggressively because the body"s immune response to them is weak." The ARRA funding is supporting the retention of a research technician and a postdoctoral fellow in Dr. Davila"s laboratory, as well as the creation of one new position. Leslie Capo Louisiana State University Health Sciences Center


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