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首页> 外文期刊>Physiological Research >Remote Preconditioning as a Novel 'Conditioning' Approach to Repair the Broken Heart: Potential Mechanisms and Clinical Applications
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Remote Preconditioning as a Novel 'Conditioning' Approach to Repair the Broken Heart: Potential Mechanisms and Clinical Applications

机译:远程预处理作为修复破碎心脏的新“条件”方法:潜在机制和临床应用

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Remote ischemic preconditioning (RIPC) is a novel strategy of protection against ischemia-reperfusion (IR) injury in the heart (and/or other organs) by brief episodes of non-lethal IR in a distant organ/tissue. Importantly, RIPC can be induced noninvasively by limitation of blood flow in the extremity implying the applicability of this method in clinical situations. RIPC (and its delayed phase) is a form of relatively short-term adaptation to ischemia, similar to ischemic PC, and likely they both share triggering mechanisms, whereas mediators and end-effectors may differ. It is hypothesized that communication between the signals triggered in the remote organs and protection in the target organ may be mediated through substances released from the preconditioned organ and transported via the circulation (humoral pathways), by neural pathways and/or via systemic anti-inflammatory and antiapoptotic response to short ischemic bouts. Identification of molecules involved in RIPC cascades may have therapeutic and diagnostic implications in the management of myocardial ischemia. Elucidation of the mechanisms of endogenous cardioprotection triggered in the remote organ could lead to the development of diverse pharmacological RIPC mimetics. In the present article, the authors provide a short overview of RIPC-induced protection, proposed underlying mechanisms and factors modulating RIPC as a promising cardioprotective strategy.
机译:远程缺血预处理(RIPC)是一种新颖的策略,可以通过短暂的非致命性IR在远处器官/组织中发作来防止心脏(和/或其他器官)缺血再灌注(IR)。重要的是,可以通过限制肢体中的血流来无创地诱导RIPC,这暗示了该方法在临床情况下的适用性。 RIPC(及其延迟期)是对缺血的相对短期适应的一种形式,类似于缺血性PC,可能它们都共享触发机制,而介质和最终执行者可能有所不同。假设远程器官中触发的信号与靶器官的保护之间的通讯可能是通过从预处理器官释放并通过循环(体液途径),通过神经途径和/或通过系统性抗炎物质转运的物质介导的。对短暂性缺血性发作的抗凋亡反应。识别参与RIPC级联的分子可能在心肌缺血的治疗中具有治疗和诊断意义。阐明在远端器官中触发的内源性心脏保护机制可能会导致多种药理学RIPC模拟物的发展。在本文中,作者简要概述了RIPC诱导的保护作用,提出了潜在的机制和调节RIPC的因素作为有前途的心脏保护策略。

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