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Metabolic Toxicity Screening Using Electrochemiluminescence Arrays Coupled with Enzyme-DNA Biocolloid Reactors and Liquid Chromatography–Mass Spectrometry

机译:使用电化学发光阵列与酶-DNA生物胶质反应器和液相色谱 - 质谱筛选的代谢毒性筛选

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摘要

New chemicals or drugs must be guaranteed safe before they can be marketed. Despite widespread use of bioassay panels for toxicity prediction, products that are toxic to a subset of the population often are not identified until clinical trials. This article reviews new array methodologies based on enzyme/DNA films that form and identify DNA-reactive metabolites that are indicators of potentially genotoxic species. This molecularly based methodology is designed in a rapid screening array that utilizes electrochemiluminescence (ECL) to detect metabolite-DNA reactions, as well as biocolloid reactors that provide the DNA adducts and metabolites for liquid chromatography–mass spectrometry (LC-MS) analysis. ECL arrays provide rapid toxicity screening, and the biocolloid reactor LC-MS approach provides a valuable follow-up on structure, identification, and formation rates of DNA adducts for toxicity hits from the ECL array screening. Specific examples using this strategy are discussed. Integration of high-throughput versions of these toxicity-screening methods with existing drug toxicity bioassays should allow for better human toxicity prediction as well as more informed decision making regarding new chemical and drug candidates.
机译:在销售之前,必须保证新的化学品或药物。尽管对毒性预测的生物测定面板广泛使用,但在临床试验之前仍未鉴定对群体的子集有毒的产品。本文介绍了基于酶/ DNA薄膜的新阵列方法,其形式和鉴定DNA-活性代谢物,其是潜在的遗传毒性物质的指标。该分子基方法设计在快速筛选阵列中,该阵列利用电化学发光(ECL)来检测代谢物-DNA反应,以及为液相色谱 - 质谱(LC-MS)分析提供DNA加合物和代谢物的生物胶质反应器。 ECL阵列提供快速毒性筛选,Biocolloid反应器LC-MS方法提供了来自ECL阵列筛选的DNA加合物的DNA加合物的结构,鉴定和形成速率的有价值的随访。讨论了使用此策略的具体示例。具有现有药物毒性生物测定的这些毒性筛选方法的高通量版本的整合应允许更好的人类毒性预测,以及关于新化学和毒品候选者的更明智的决策。

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