Willem G E J Schoonen, Walter M A Westerink, G Jean Horbach
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引用次数: 62
摘要
在过去的十年中,组合化学和高通量筛选(HTS)技术在制药工业中的影响是巨大的。但在此期间,临床中药物因毒性的磨耗率仍保持在40-50%。减少毒性失败的需要导致了早期毒性筛选试验的发展。本章描述了遗传毒性、细胞毒性、致癌性、I期和II期代谢中特定酶的诱导、I期和II期代谢酶的竞争分析、胚胎毒性以及内分泌干扰和生殖毒性等领域的最新检测技术。关于遗传毒性,完整的Ames, Ames II, Vitotox, GreenScreen GC, RadarScreen和非遗传毒性致癌性分析进行了讨论。对于细胞毒性,细胞增殖,钙黄蛋白摄取,氧气消耗,线粒体活性,自由基形成,谷胱甘肽消耗以及细胞凋亡进行了描述。对于高含量筛选(HCS),分析细胞毒性,微核,中心体形成和磷脂病的可能性进行了检查。在胚胎毒性、内分泌干扰和生殖毒性方面,对核受体和膜受体的快速分析方法进行了综述。此外,还给出了AhR、CAR、PXR、PPAR、FXR、LXR、TR和RAR等核受体活化酶诱导分析的解决方案。
High-throughput screening for analysis of in vitro toxicity.
The influence of combinatorial chemistry and high-throughput screening (HTS) technologies in the pharmaceutical industry during the last 10 years has been enormous. However, the attrition rate of drugs in the clinic due to toxicity during this period still remained 40-50%. The need for reduced toxicity failure led to the development of early toxicity screening assays. This chapter describes the state of the art for assays in the area of genotoxicity, cytotoxicity, carcinogenicity, induction of specific enzymes from phase I and II metabolism, competition assays for enzymes of phase I and II metabolism, embryotoxicity as well as endocrine disruption and reprotoxicity. With respect to genotoxicity, the full Ames, Ames II, Vitotox, GreenScreen GC, RadarScreen, and non-genotoxic carcinogenicity assays are discussed. For cytotoxicity, cellular proliferation, calcein uptake, oxygen consumption, mitochondrial activity, radical formation, glutathione depletion as well as apoptosis are described. For high-content screening (HCS), the possibilities for analysis of cytotoxicity, micronuclei, centrosome formation and phospholipidosis are examined. For embryotoxicity, endocrine disruption and reprotoxicity alternative assays are reviewed for fast track analysis by means of nuclear receptors and membrane receptors. Moreover, solutions for analyzing enzyme induction by activation of nuclear receptors, like AhR, CAR, PXR, PPAR, FXR, LXR, TR and RAR are given.