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Succinate metabolism: a new therapeutic target for myocardial reperfusion injury

机译:琥珀酸代谢:心肌再灌注损伤的新治疗靶标

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摘要

Myocardial ischaemia/reperfusion (IR) injury is a major cause of death worldwide and remains a disease for which current clinical therapies are strikingly deficient. While the production of mitochondrial reactive oxygen species (ROS) is a critical driver of tissue damage upon reperfusion, the precise mechanisms underlying ROS production have remained elusive. More recently, it has been demonstrated that a specific metabolic mechanism occurs during ischaemia that underlies elevated ROS at reperfusion, suggesting a unifying model as to why so many different compounds have been found to be cardioprotective against IR injury. This review will discuss the role of the citric acid cycle intermediate succinate in IR pathology focusing on the mechanism by which this metabolite accumulates during ischaemia and how it can drive ROS production at Complex I via reverse electron transport. We will then examine the potential for manipulating succinate accumulation and metabolism during IR injury in order to protect the heart against IR damage and discuss targets for novel therapeutics designed to reduce reperfusion injury in patients.
机译:心肌缺血/再灌注(IR)伤害是全世界死亡的主要原因,仍然是目前临床治疗引人注目的疾病。虽然线粒体反应性氧(ROS)的生产是再灌注后组织损伤的关键驱动因素,但ROS生产的精确机制仍然难以捉摸。最近,已经证明,在缺血期间发生特异性代谢机制,在再灌注下升高的ROS升高,表明为什么已发现许多不同化合物的统一模型被发现对IR损伤进行心脏保护剂。该审查将讨论柠檬酸循环中间体琥珀酸盐在IR病理学中的作用,其专注于该代谢物在缺血期间积累的机制以及如何通过反向电子传输在复杂的I驱动ROS生产。然后,我们将检查IR伤害期间操纵琥珀酸累积和代谢的可能性,以保护心脏免受红外红外损伤,并讨论旨在减少患者再灌注损伤的新型治疗剂的目标。

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