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一种针对癌症分子药理学的信息密集型方法。

An information-intensive approach to the molecular pharmacology of cancer.

作者信息

Weinstein J N, Myers T G, O'Connor P M, Friend S H, Fornace A J, Kohn K W, Fojo T, Bates S E, Rubinstein L V, Anderson N L, Buolamwini J K, van Osdol W W, Monks A P, Scudiero D A, Sausville E A, Zaharevitz D W, Bunow B, Viswanadhan V N, Johnson G S, Wittes R E, Paull K D

机构信息

Laboratory of Molecular Pharmacology (LMP), Division of Basic Science, National Cancer Institute (NCI), National Institutes of Health, Bethesda, MD 20892, USA.

出版信息

Science. 1997 Jan 17;275(5298):343-9. doi: 10.1126/science.275.5298.343.

Abstract

Since 1990, the National Cancer Institute (NCI) has screened more than 60,000 compounds against a panel of 60 human cancer cell lines. The 50-percent growth-inhibitory concentration (GI50) for any single cell line is simply an index of cytotoxicity or cytostasis, but the patterns of 60 such GI50 values encode unexpectedly rich, detailed information on mechanisms of drug action and drug resistance. Each compound's pattern is like a fingerprint, essentially unique among the many billions of distinguishable possibilities. These activity patterns are being used in conjunction with molecular structural features of the tested agents to explore the NCI's database of more than 460,000 compounds, and they are providing insight into potential target molecules and modulators of activity in the 60 cell lines. For example, the information is being used to search for candidate anticancer drugs that are not dependent on intact p53 suppressor gene function for their activity. It remains to be seen how effective this information-intensive strategy will be at generating new clinically active agents.

摘要

自1990年以来,美国国家癌症研究所(NCI)针对一组60种人类癌细胞系对60000多种化合物进行了筛选。任何单个细胞系的50%生长抑制浓度(GI50)仅仅是细胞毒性或细胞生长停滞的一个指标,但是60个这样的GI50值的模式却意外地编码了关于药物作用机制和耐药性的丰富、详细信息。每种化合物的模式就像一个指纹,在数十亿种可区分的可能性中基本上是独一无二的。这些活性模式正与受试药物的分子结构特征一起用于探索NCI的460000多种化合物的数据库,并且它们正在为60种细胞系中潜在的靶分子和活性调节剂提供见解。例如,该信息正被用于寻找其活性不依赖完整p53抑癌基因功能的候选抗癌药物。这种信息密集型策略在产生新的临床活性剂方面的效果还有待观察。

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