Modulation of the oxidative stress associated with respiratory chain dysfunction and mPTP opening

Annie Borgne Sanchez, M. Porceddu, N. Buron, C. Pertuiset
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Abstract

The mitochondrion is deeply involved in ROS production through electron leak that occur in the respiratory chain. Measurement of mitochondrial ROS is useful to evaluate the consequences of MRC inhibition, electron leak, complex I dysfunction and stimulation of some oxidative pathways induced by chemicals or natural products. These parameters measured on isolated mitochondria allow identification of direct mitochondrial impairment with subsequent toxicity on skin, blood or organs. On the other hand, the mitochondrion is itself a target of ROS (vicious circle or cellular ROS) which may lead to irreversible damage of mtDNA or mitochondrial membrane lipids and proteins, resulting in mitochondrial dysfunction. For example, permeability transition pore (mPTP) susceptibility to oxidative stress is observed in various pathological cases (aging, neuronal injury, cardiac reperfusion injury...). Such damages can be reproduced on isolated mitochondria to identify mitochondrial protective molecules against oxidative stress induced-mPTP opening. In conclusion, simultaneous assessment of mitochondrial integrity, function and ROS production is a valuable toolbox to identify the risk of compound-induced liability in human, in particular regarding organ toxicity. Such approach can also be used to identify antioxidant properties of compounds in order to preserve mitochondrial integrity and cell life.
与呼吸链功能障碍和mPTP开放相关的氧化应激调节
线粒体通过在呼吸链中发生的电子泄漏深入参与ROS的产生。线粒体ROS的测量有助于评估化学物质或天然产物诱导的MRC抑制、电子泄漏、复合物I功能障碍和某些氧化途径的刺激的后果。在分离的线粒体上测量的这些参数可以识别直接的线粒体损伤以及随后对皮肤、血液或器官的毒性。另一方面,线粒体本身是ROS(恶性循环或细胞ROS)的靶标,可导致mtDNA或线粒体膜脂质和蛋白质的不可逆损伤,导致线粒体功能障碍。例如,在各种病理情况(衰老、神经元损伤、心脏再灌注损伤等)中观察到mPTP对氧化应激的易感性。这种损伤可以在分离的线粒体上复制,以鉴定线粒体保护分子对抗氧化应激诱导的mptp打开。总之,同时评估线粒体完整性、功能和活性氧的产生是一个有价值的工具箱,可以识别人类化合物诱导的责任风险,特别是器官毒性。这种方法也可用于鉴定化合物的抗氧化特性,以保持线粒体的完整性和细胞寿命。
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