硫化氢减轻心肌缺血再灌注损伤机制及相关信号通路研究进展
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R714.252

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四川省第一批省级科技计划项目(2022YFS0365);川北医学院附属医院科研发展计划项目(2023JC033)


Mechanism of hydrogen sulfide alleviating myocardial ischemia-reperfusion injury and related signaling pathways
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    摘要:

    缺血/再灌注(I/R)损伤指组织缺血后血流快速恢复过程中,出现细胞肿胀、坏死等结构和功能的变化,导致组织 损伤加重的综合征。I/R损伤与心、肝、脑、肾等重要脏器许多疾病相关。心血管疾病是人类最常见的死亡原因,而心肌缺血/ 再灌注损伤(MIRI)与心血管疾病的发生密切相关。目前,关于 MIRI的研究备受关注,但其确切机制尚不完全清楚。硫化氢 (H2S)是一种重要的气体分子,它在体内具有调控体内自由基平衡态,对抗自由基以及缓解自由基引起的损伤,因此,在许多 疾病的病理生理过程中起重要作用。研究发现,H2S可通过抗氧化、抗凋亡、抗炎、抗坏死等多种分子机制,对心肌梗死、心力 衰竭等疾病引起的 MIRI具有保护作用,但其具体作用机制不完全清楚,尤其是涉及的信号通路。本文就 H2S对 MIRI的保 护作用具体机制及所涉及的信号通路进行综述,为今后的深入研究提供理论参考。

    Abstract:

    Ischemia/reperfusion injury is a syndrome characterized by structural and functional changes such as cell swelling and necrosis during rapid blood flow recovery after tissue ischemia, which result in aggravated tissue damage. Ischemia/reperfusion injury is associated with many organs such as heart, liver, brain, kidney. Cardiovascular disease is the most common cause of death in humans, and myocardial ischemia/reperfusion injury is strongly associated with cardiovascular disease. Currently, the research on myocardial ischemia/reperfusion injury has attracted much attention, but the exact mechanism is not fully understood. Hydrogen sulfide is an important gas molecule, it can regulate the equilibrium state of free radicals in the body, combat and alleviate damage caused by free radicals. As a result, hydrogen sulfide plays an important role in the pathophysiological processes of many diseases. In recent years, studies have found that H?S could protect myocardial ischemia/reperfusion injury caused by myocardial infarction, heart failure and other diseases through a variety of molecular mechanisms such as anti-oxidation, anti-apoptosis, anti-inflammation, anti-necrosis, etc., but the specific mechanism was not completely clear, especially the involved signaling pathways. In this paper, the protective mechanism of hydrogen sulfide against myocardial ischemia/reperfusion injury and the involved signaling pathways were reviewed, providing theoretical reference for further research.

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彭泰峦;向军;刘勇.硫化氢减轻心肌缺血再灌注损伤机制及相关信号通路研究进展[J].川北医学院学报,2026,41(8):1020-1024.

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  • 在线发布日期: 2026-07-22
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