首页> 美国卫生研究院文献>Journal of Translational Medicine >Mechanisms by which hydrogen sulfide attenuates muscle function following ischemia–reperfusion injury: effects on Akt signaling mitochondrial function and apoptosis
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Mechanisms by which hydrogen sulfide attenuates muscle function following ischemia–reperfusion injury: effects on Akt signaling mitochondrial function and apoptosis

机译:缺血再灌注损伤后硫化氢减弱肌肉功能的机制:对Akt信号转导线粒体功能和凋亡的影响

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摘要

Ischemia–reperfusion injury is caused by a period of ischemia followed by massive blood flow into a tissue that had experienced restricted blood flow. The severity of the injury is dependent on the time the tissue was restricted from blood flow, becoming more severe after longer ischemia times. This can lead to many complications such as tissue necrosis, cellular apoptosis, inflammation, metabolic and mitochondrial dysfunction, and even organ failure. One of the emerging therapies to combat ischemic reperfusion injury complications is hydrogen sulfide, which is a gasotransmitter that diffuses across cell membranes to exert effects on various signaling pathways regulating cell survival such as Akt, mitochondrial activity, and apoptosis. Although commonly thought of as a toxic gas, low concentrations of hydrogen sulfide have been shown to be beneficial in promoting tissue survival post-ischemia, and modulate a wide variety of cellular responses. This review will detail the mechanisms of hydrogen sulfide in affecting the Akt signaling pathway, mitochondrial function, and apoptosis, particularly in regards to ischemic reperfusion injury in muscle tissue. It will conclude with potential clinical applications of hydrogen sulfide, combinations with other therapies, and perspectives for future studies.
机译:缺血再灌注损伤是由一段时期的缺血引起的,随后大量血液流入经历了受限血液流动的组织。损伤的严重程度取决于组织受血流限制的时间,在更长的缺血时间后变得更严重。这可能导致许多并发症,例如组织坏死,细胞凋亡,炎症,代谢和线粒体功能障碍,甚至器官衰竭。对抗缺血性再灌注损伤并发症的新兴疗法之一是硫化氢,它是一种跨细胞膜扩散的气体递质,对调节细胞存活(例如Akt,线粒体活性和细胞凋亡)的各种信号通路产生影响。尽管通常被认为是有毒气体,但低浓度的硫化氢已显示出对促进缺血后组织存活并调节多种细胞反应的有益作用。这篇综述将详细介绍硫化氢影响Akt信号传导途径,线粒体功能和细胞凋亡的机制,尤其是在肌肉组织中缺血再灌注损伤方面。它将总结硫化氢的潜在临床应用,与其他疗法的组合以及对未来研究的展望。

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