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首页> 外文期刊>Archives of Toxicology >Stem cells are the most sensitive screening tool to identify toxicity of GATA4-targeted novel small-molecule compounds
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Stem cells are the most sensitive screening tool to identify toxicity of GATA4-targeted novel small-molecule compounds

机译:干细胞是最敏感的筛查工具,用于鉴定GATA4靶向新型小分子化合物的毒性

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Safety assessment of drug candidates in numerous in vitro and experimental animal models is expensive, time consuming and animal intensive. More thorough toxicity profiling already in the early drug discovery projects using human cell models, which more closely resemble the physiological cell types, would help to decrease drug development costs. In this study we aimed to compare different cardiac and stem cell models for in vitro toxicity testing and to elucidate structure–toxicity relationships of novel compounds targeting the cardiac transcription factor GATA4. By screening the effects of eight compounds at concentrations ranging from 10?nM up to 30?μM on the viability of eight different cell types, we identified significant cell type- and structure-dependent toxicity profiles. We further characterized two compounds in more detail using high-content analysis. The results highlight the importance of cell type selection for toxicity screening and indicate that stem cells represent the most sensitive screening model, which can detect toxicity that may otherwise remain unnoticed. Furthermore, our structure–toxicity analysis reveals a characteristic dihedral angle in the GATA4-targeted compounds that causes stem cell toxicity and thus helps to direct further drug development efforts towards non-toxic derivatives.
机译:在许多体外和实验动物模型中对药物候选者的安全评估是昂贵,耗时和动物密集的。使用人体细胞模型的早期药物发现项目已经在早期药物发现项目中更彻底的毒性,这将有助于降低药物开发成本。在这项研究中,我们旨在比较用于体外毒性测试的不同心脏和干细胞模型,并阐明靶向心脏转录因子GATA4的新化合物的结构毒性关系。通过在八种不同细胞类型的活力的可生存能力下筛选8℃的浓度为10·nm的浓度的效果。我们使用高含量分析进一步详细阐述了两种化合物。结果突出了细胞类型选择对毒性筛选的重要性,并表明干细胞代表最敏感的筛选模型,其可以检测可能否则仍未被注意的毒性。此外,我们的结构毒性分析揭示了GATA4靶向化合物中的特征二面角,导致干细胞毒性,从而有助于将进一步的药物开发促进无毒衍生物。

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