首页> 外文期刊>Journal of Pharmaceutical and Biomedical Analysis: An International Journal on All Drug-Related Topics in Pharmaceutical, Biomedical and Clinical Analysis >High-throughput screening strategy for photogenotoxic potential of pharmaceutical substances using fluorescent intercalating dye.
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High-throughput screening strategy for photogenotoxic potential of pharmaceutical substances using fluorescent intercalating dye.

机译:使用荧光插层染料对药物进行光遗传毒性潜力的高通量筛选策略。

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摘要

The aim of the present study was to provide an intercalator-based photogenotoxicity (IBP) assay as a high-throughput in vitro screening system for predicting the photogenotoxic potential of pharmaceutical substances. The conditions of the high-throughput IBP assay using thiazole orange (TO), a fluorescent intercalating dye, were optimized and validated by a fluorescence titration experiment and reproducibility/robustness test. The IBP assay was applied to 27 phototoxic and 5 weakon-phototoxic commercially available compounds, and other phototoxicity screenings were also carried out for comparison; these included the reactive oxygen species (ROS) assay for overall phototoxic potential and the DNA-photocleavage assay for photogenotoxic risk. According to the results from the comparative experiments, a decreased level of intercalated TO in the IBP assay could theoretically be related to the DNA-photocleaving behaviors of phototoxic drugs, but not to their ROS-generating abilities. The IBP assay could predict the photodynamic DNA impairment caused by irradiated drugs with a prediction accuracy of 78%. These findings suggest that the IBP assay could be a fast and reliable tool for predicting the photogenotoxic potential of a large number of drug candidates at early stages of drug discovery.
机译:本研究的目的是提供一种基于嵌入剂的光遗传毒性(IBP)测定法,作为高通量体外筛选系统,用于预测药物的光遗传毒性潜力。通过荧光滴定实验和重现性/稳健性测试,优化和验证了使用噻唑橙(TO)(一种荧光嵌入染料)的高通量IBP分析的条件。 IBP分析适用于27种光毒性和5种弱/非光毒性市售化合物,还进行了其他光毒性筛选以进行比较;其中包括用于总体光毒性潜力的活性氧(ROS)分析和用于光遗传毒性风险的DNA光解试验。根据比较实验的结果,IBP分析中插入式TO的降低在理论上可能与光毒性药物的DNA光解行为有关,但与它们的ROS产生能力无关。 IBP分析可以预测由辐照药物引起的光动力DNA损伤,预测准确性为78%。这些发现表明,IBP测定法可能是预测药物发现早期阶段大量候选药物的光遗传毒性潜力的快速可靠工具。

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