TAILIEUCHUNG - Báo cáo y học: "Digital drug discovery"

Tuyển tập các báo cáo nghiên cứu về y học được đăng trên tạp chí y học Wertheim cung cấp cho các bạn kiến thức về ngành y đề tài: Digital drug discovery. | Meeting report Digital drug discovery Michael A Goldman Address Department of Biology San Francisco State University San Francisco CA 94132-1722 USA. E-mail goldman@ Published 30 September 2005 Genome Biology 2005 6 348 doi gb-2005-6-l0-348 The electronic version of this article is the complete one and can be found online at http 2005 6 l0 348 2005 BioMed Central Ltd A report of the Cambridge Healthtech Institute conference Beyond Genome San Franciso USA 13-16 June 2005. Fallout from the completion of the Human Genome Project and the growing application of our knowledge to medicine includes a blurring of the borders between academia and industry. More than 1 000 individuals from universities government agencies financial biotechnology and pharmaceutical companies - from established scientists and graduate students to financiers - came together in June at the Cambridge Healthtech Beyond Genome conference. This included the 14th annual Bioinformatics and Genome Research meeting and this years s specialist topics included RNA interference systems biology proteomics and genomic variation. Expectations are high. What we are looking at according to Leroy Hood Institute for Systems Biology Seattle USA is the digitalizing of biology and medicine - a revolution coming . Hood s long-term vision includes new platforms for the analysis of the billions of data points about human biology that we will acquire over the next ten years. These data will be of different kinds and must be integrated. His institute s database can handle more than a dozen different types of data but said Hood we will need a new math . Beginning with the analysis of model systems such as yeast and sea urchin Hood ultimately envisions a study of neurobiology that starts from stem cells and moves up to nervous systems. Working with Eric Davidson CalTech Pasadena USA Hood has modeled a network of 35 genes that control early development in the sea urchin. On the medical front

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