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BIO Commends Senate Committee On Small Business And Entrepreneurship's SBIR Reauthorization
Under legislation reported by the Senate Committee on Small Business and Entrepreneurship, small companies that receive the majority of their financing from venture capital will once again be considered eligible to compete for Small Business Innovation Research (SBIR) grants. The change will allow more small biotechnology start-ups to compete for these funds and continue critical research and development of medical advancements and breakthroughs. Biotechnology Industry Organization (BIO) President and CEO Jim Greenwood made the following statement today:
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New AHRQ Study Finds Mixed Evidence On Use Of Radiofrequency Catheter Ablation For Treating Atrial Fibrillation
A procedure that sends targeted energy into the heart through a catheter can be used to treat a common type of irregular heartbeat, but little is known about the treatment"s long-term benefits and the best methods and circumstances for applying it, according to a new report funded by HHS" Agency for Healthcare Research and Quality.
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Trius Announces Positive Results From Phase 2 Clinical Trial Of Torezolid In Patients With Complicated Skin And Skin Structure Infections
Trius Therapeutics, Inc. announced results from its Phase 2 clinical trial evaluating the safety and efficacy of oral torezolid (TR-701), its investigational antibiotic for the treatment of severe complicated skin and skin structure infections (cSSSI) caused by gram-positive bacteria, especially drug-resistant strains such as methicillin-resistant Staphylococcus aureus (MRSA). The study achieved its primary goals of establishing safety and efficacy in all doses evaluated.
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Zebrafish Provide A Model For Cancerous Melanoma In Humans

In a new study published in Disease Models & Mechanisms, scientists use the zebrafish to gain insight into the influence of known cancer genes on the development and progression of melanoma, an aggressive form of human skin cancer with limited treatment options. Inside the cell, signals are delivered that direct the cell on whether to divide, migrate or even die. Cancer often results when the molecules that relay these signals become mutated so that they do not function normally. In cancer, cells divide, grow and migrate when they should not, therefore resulting in an aggressive disease that can spread throughout the body. A key molecule in this signaling pathway is RAS, and mutations in it are known to lead to cancer. In some cases, the type of RAS mutation is a predictor of a patient"s response to treatment and their overall prognosis. Therefore, scientists at the University of Manchester in England and the University Hospital ZÃørich in Switzerland generated several zebrafish with changes in RAS or other RAS-regulated proteins to create a useful model that can be used to study and understand human melanoma. Zebrafish are a useful tool to understand human disease because they are small, transparent, and easy to propagate and maintain. Tumors created from the pigmented cells of zebrafish, known as melanocytes, are easy to see against their thin, light colored bodies. The research team notes that these fish may be a useful experimental tool for human disease. Many of the changes they made caused melanoma in the zebrafish, indicating that zebrafish respond similarly to changes in these signals as do humans. Zebrafish that were born from the original mutant fish displayed abnormal growth of their melanocytes, reminiscent of familial atypical mole and melanoma syndrome (FAMM) seen in humans. By producing other signaling molecules in the mutant fish, the researchers were able to identify a pathway that reduced the effects of RAS mutations on melanoma progression in zebrafish. The report titled "Dissecting the roles of Raf- and PI3K-signalling pathways in melanoma formation and progression in a zebrafish model" was written by Christina Michailidou, Mary Jones, Paul Walker, Amanda Kelly, and Adam Hurlstone at the University of Manchester and Jivko Kamarashev at University Hospital ZÃørich. The study is published in the July/August issue of the new research journal, Disease Models & Mechanisms (DMM), published by The Company of Biologists, a non-profit based in Cambridge, UK. Sarah Sharpe The Company of Biologists


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