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药物重定位在化学生物基因组学中的应用:我们能否从前人经验中吸取教训,以改善未来?

Drug repurposing in chemical genomics: can we learn from the past to improve the future?

机构信息

Oregon State University, Environmental Health Sciences Center, Department of Environmental and Molecular Toxicology, Corvallis, OR 97331, United States.

出版信息

Curr Top Med Chem. 2012;12(17):1883-8. doi: 10.2174/156802612804547344.

Abstract

More needs to be done by the private sector to optimize the drug discovery and development pipeline. In addition, significant efforts should also be focused on the understanding of mechanism of diseases, on the characterization of unexplored biochemical pathways and on the validation of new protein targets. Chemical genomics, which uses chemical probes to help understand the complexity of biological systems at the gene and protein levels, has proven in recent years to be an important tool. Experimental and computational chemical genomic screenings have been used by the private sector and recently also by academia and non-profit institutions for drug repurposing or repositioning to find new indications for known drugs. A detailed overview of the current initiatives in drug repurposing, initiated by the major governmental funding agencies around the world is reported. The push towards greater efficiency is encouraging drug repurposing and other techniques in chemical genomics. Finding the best ways to improve translational research and accelerate the regulation of clinical phases means being able to launch safer drugs into the market faster.

摘要

还需要私营部门做更多的工作来优化药物发现和开发的渠道。此外,还应集中精力深入了解疾病的发病机制,对尚未开发的生化途径进行描述,并验证新的蛋白质靶标。化学基因组学利用化学探针来帮助了解基因和蛋白质水平上生物系统的复杂性,近年来已被证明是一种重要的工具。私营部门、学术界和非营利机构最近也在使用实验和计算化学基因组筛选来进行药物再利用或重新定位,以寻找已知药物的新适应症。本文详细介绍了当前由世界主要政府资助机构发起的药物再利用的相关举措。提高效率的推动作用鼓励药物再利用和化学基因组学的其他技术。寻找改善转化研究和加速临床阶段监管的最佳方法意味着能够更快地将更安全的药物推向市场。

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