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Toxicology in the fast lane: application of high-throughput bioassays to detect modulation of key enzymes and receptors.

机译:快速通道中的毒理学:高通量生物测定法在检测关键酶和受体调节中的应用。

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BACKGROUND: Legislation at state, federal, and international levels is requiring rapid evaluation of the toxicity of numerous chemicals. Whole-animal toxicologic studies cannot yield the necessary throughput in a cost-effective fashion, leading to a critical need for a faster and more cost-effective toxicologic evaluation of xenobiotics. OBJECTIVES: We tested whether mechanistically based screening assays can rapidly provide information on the potential for compounds to affect key enzymes and receptor targets, thus identifying those compounds requiring further in-depth analysis. METHODS: A library of 176 synthetic chemicals was prepared and examined in a high-throughput screening (HTS) manner using nine enzyme-based and five receptor-based bioassays. RESULTS: All the assays have high Z' values, indicating good discrimination among compounds in a reliable fashion, and thus are suitable for HTS assays. On average, three positive hits were obtained per assay. Although we identified compounds that were previously shown to inhibit a particular enzyme class or receptor, we surprisingly discovered that triclosan, a microbiocide present in personal care products, inhibits carboxylesterases and that dichlone, a fungicide, strongly inhibits the ryanodine receptors. CONCLUSIONS: Considering the need to rapidly screen tens of thousands of anthropogenic compounds, our study shows the feasibility of using combined HTS assays as a novel approach toward obtaining toxicologic data on numerous biological end points. The HTS assay approach is very useful to quickly identify potentially hazardous compounds and to prioritize them for further in-depth studies.
机译:背景:州,联邦和国际各级的立法要求对多种化学品的毒性进行快速评估。全动物毒理学研究无法以具有成本效益的方式产生必要的通量,因此迫切需要对异生物进行更快,更具成本效益的毒理学评估。目的:我们测试了基于机理的筛选测定法是否可以快速提供有关化合物影响关键酶和受体靶标潜力的信息,从而鉴定出需要进一步深入分析的化合物。方法:制备了176种合成化学物质的库,并使用9种基于酶和5种基于受体的生物测定法以高通量筛选(HTS)的方式进行了检查。结果:所有测定均具有较高的Z'值,表明以可靠的方式对化合物进行了良好的区分,因此适用于HTS测定。平均每个分析获得三个阳性结果。尽管我们确定了以前显示出可抑制特定酶类别或受体的化合物,但我们惊讶地发现,个人护理产品中存在的杀微生物剂三氯生可抑制羧酸酯酶,而杀真菌剂地氯龙则可强烈抑制瑞丹碱受体。结论:考虑到需要快速筛选成千上万的人为化合物的需要,我们的研究表明了使用联合HTS分析作为获取众多生物学终点毒理学数据的新方法的可行性。 HTS分析方法对于快速识别潜在危险的化合物并确定其优先级以进行进一步的深入研究非常有用。

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