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A rapid mitochondrial toxicity assay utilizing rapidly changing cell energy metabolism

机译:利用快速变化的细胞能量代谢的快速线粒体毒性测定

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Drug-induced liver injury is a major cause of safety-related drug-marketing withdrawals. Several drugs have been reported to disrupt mitochondrial function, resulting in hepatotoxicity. The development of a simple and effective in vitro assay to identify the potential for mitochondrial toxicity is thus desired to minimize the risk of causing hepatotoxicity and subsequent drug withdrawal. An in vitro test method called the "glucose-galactose" assay is often used in drug development but requires prior-culture of cells over several passages for mitochondrial adaptation, thereby restricting use of the assay. Here, we report a rapid version of this method with the same predictability as the original method. We found that replacing the glucose in the medium with galactose resulted in HepG2 cells immediately shifting their energy metabolism from glycolysis to oxidative phosphorylation due to drastic energy starvation; in addition, the intracellular concentration of ATP was reduced by mitotoxicants when glucose in the medium was replaced with galactose. Using our proposed rapid method, mitochondrial dysfunction in HepG2 cells can be evaluated by drug exposure for one hour without a pre-culture step. This rapid assay for mitochondrial toxicity may be more suitable for high-throughput screening than the original method at an early stage of drug development.
机译:药物性肝损伤是与安全性相关的药物销售撤回的主要原因。据报道有几种药物会破坏线粒体功能,导致肝毒性。因此,需要开发一种简单有效的体外测定法来鉴定线粒体毒性的潜力,以使引起肝毒性和随后停药的风险降至最低。在药物开发中经常使用一种称为“葡萄糖-半乳糖”测定法的体外测试方法,但该方法需要先经过数代传代培养细胞才能进行线粒体适应,从而限制了该测定法的使用。在这里,我们报告此方法的快速版本,具有与原始方法相同的可预测性。我们发现,用半乳糖替代培养基中的葡萄糖会导致HepG2细胞由于剧烈的能量饥饿而立即将其能量代谢从糖酵解转移到氧化磷酸化。此外,当用半乳糖代替培养基中的葡萄糖时,细胞毒性剂降低了ATP的细胞内浓度。使用我们提出的快速方法,无需预先培养即可通过暴露一小时的药物来评估HepG2细胞中的线粒体功能障碍。这种线粒体毒性的快速检测方法可能比药物开发早期的原始方法更适合于高通量筛选。

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