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Metabolite signatures of doxorubicin induced toxicity in human induced pluripotent stem cell-derived cardiomyocytes

机译:多柔比星诱导人类诱导多能干细胞衍生心肌细胞毒性的代谢物签名

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摘要

Drug-induced off-target cardiotoxicity, particularly following anti-cancer therapy, is a major concern in new drug discovery and development. To ensure patient safety and efficient pharmaceutical drug development, there is an urgent need to develop more predictive cell model systems and distinct toxicity signatures. In this study, we applied our previously proposed repeated exposure toxicity methodology and performed H-1 NMR spectroscopy-based extracellular metabolic profiling in culture medium of human induced pluripotent stem cell-derived cardiomyocytes (hiPSC-CMs) exposed to doxorubicin (DOX), an anti-cancer agent. Single exposure to DOX did not show alteration in the basal level of extracellular metabolites while repeated exposure to DOX caused reduction in the utilization of pyruvate and acetate, and accumulation of formate compared to control culture medium. During drug washout, only pyruvate showed reversible effect and restored its utilization by hiPSC-CMs. On the other hand, formate and acetate showed irreversible effect in response to DOX exposure. DOX repeated exposure increased release of lactate dehydrogenase (LDH) in culture medium suggesting cytotoxicity events, while declined ATP levels in hiPSC-CMs. Our data suggests DOX perturbed mitochondrial metabolism in hiPSC-CMs. Pyruvate, acetate and formate can be used as metabolite signatures of DOX induced cardiotoxicity. Moreover, the hiPSC-CMs model system coupled with metabolomics technology offers a novel and powerful approach to strengthen cardiac safety assessment during new drug discovery and development.
机译:药物诱发的脱靶心毒性,特别是抗癌治疗后,是新药发现和发展的主要关注点。为确保患者安全和有效的药物发育,迫切需要开发更多的预测性细胞模型系统和明显的毒性签名。在这项研究中,我们应用了先前提出的重复暴露毒性方法,并在人诱导的多能干细胞衍生的心肌细胞(HIPSC-CM)暴露于多柔比星(DOX)的培养基中进行H-1 NMR光谱的细胞外代谢分析。抗癌剂。单次接触DOX未显示在细胞外代谢物的基础水平的变化,同时重复接触DOX导致利用丙酮酸和醋酸盐,与对照培养基相比甲酸的积累。在药物冲洗过程中,只有丙酮酸效果显示可逆效果,并通过HIPSC-CMS恢复利用。另一方面,甲状腺物和醋酸酯响应DOX暴露而显示出不可逆的效果。 Dox反复暴露在培养培养基中增加乳酸脱氢酶(LDH)的释放,提示细胞毒性事件,而HIPSC-CMS中下降的ATP水平下降。我们的数据表明HIPSC-CMS中的DOX扰动线粒体代谢。丙酮酸,醋酸盐和甲酸酯可用作DOX诱导心脏毒性的代谢物签名。此外,与代谢元素技术相结合的HIPSC-CMS模型系统提供了一种新的和强大的方法,可以在新药发现和发展中加强心脏安全评估。

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