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HTS in the new millennium: the role of pharmacology and flexibility.

机译:新世纪的HTS:药理作用和灵活性。

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Over the past decade, high throughput screening (HTS) has become the focal point for discovery programs within the pharmaceutical industry. The role of this discipline has been and remains the rapid and efficient identification of lead chemical matter within chemical libraries for therapeutics development. Recent advances in molecular and computational biology, i.e., genomic sequencing and bioinformatics, have resulted in the announcement of publication of the first draft of the human genome. While much work remains before a complete and accurate genomic map will be available, there can be no doubt that the number of potential therapeutic intervention points will increase dramatically, thereby increasing the workload of early discovery groups. One current drug discovery paradigm integrates genomics, protein biosciences and HTS in establishing what the authors refer to as the "gene-to-screen" process. Adoption of the "gene-to-screen" paradigm results in a dramatic increase in the efficiency of the process of converting a novel gene coding for a putative enzymatic or receptor function into a robust and pharmacologically relevant high throughput screen. This article details aspects of the identification of lead chemical matter from HTS. Topics discussed include portfolio composition (molecular targets amenable to small molecule drug discovery), screening file content, assay formats and plating densities, and the impact of instrumentation on the ability of HTS to identify lead chemical matter.
机译:在过去的十年中,高通量筛选(HTS)已成为制药行业发现计划的重点。该学科的作用一直是并且仍然是快速有效地识别化学文库中的铅化学物质以用于治疗药物的开发。分子和计算生物学(即基因组测序和生物信息学)的最新进展已导致宣布公布人类基因组第一稿。尽管在获得完整,准确的基因组图谱之前还有许多工作要做,但是毫无疑问,潜在的治疗干预点的数量将急剧增加,从而增加了早期发现小组的工作量。当前一种药物发现范例将基因组学,蛋白质生物科学和HTS整合在一起,建立了作者所说的“基因筛选”过程。 “基因筛选”范式的采用导致将编码推定酶或受体功能的新型基因转换为健壮且与药理相关的高通量筛选的过程效率显着提高。本文详细介绍了从HTS鉴定铅化学物质的各个方面。讨论的主题包括投资组合组成(适合小分子药物发现的分子靶标),筛选文件内容,测定格式和接种密度,以及仪器对HTS识别铅化学物质能力的影响。

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