首页> 外文期刊>Canadian Journal of Physiology and Pharmacology >Noninvasive approach to mend the broken heart: Is “remote conditioning” a promising strategy for application in humans?
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Noninvasive approach to mend the broken heart: Is “remote conditioning” a promising strategy for application in humans?

机译:不冒险的方法来修补破碎的心:是“遥气调节”在人类中的应用策略?

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摘要

Currently, there are no satisfactory interventions to protect the heart against the detrimental effects of ischemia–reperfusion injury. Although ischemic preconditioning (PC) is the most powerful form of intrinsic cardioprotection, its application in humans is limited to planned interventions, due to its short duration and technical requirements. However, many organs/tissues are capable of producing “remote” PC (RPC) when subjected to brief bouts of ischemia–reperfusion. RPC was first described in the heart where brief ischemia in one territory led to protection in other area. Later on, RPC started to be used in patients with acute myocardial infarction, albeit with ambiguous results. It is hypothesized that the connection between the signal triggered in remote organ and protection induced in the heart can be mediated by humoral and neural pathways, as well as via systemic response to short sublethal ischemia. However, although RPC has a potentially important clinical role, our understanding of the mechanistic pathways linking the local stimulus to the remote organ remains incomplete. Nevertheless, RPC appears as a cost-effective and easily performed intervention. Elucidation of protective mechanisms activated in the remote organ may have therapeutic and diagnostic implications in the management of myocardial ischemia and lead to development of pharmacological RPC mimetics.
机译:目前,没有令人满意的干预措施来保护心脏免受缺血再灌注损伤的不利影响。虽然缺血预处理(PC)是最强大的内在心脏保护形式的形式,但由于其短期和技术要求,其在人类的应用仅限于计划的干预措施。然而,当进行短暂的缺血再灌注时,许多器官/组织能够产生“远程”PC(RPC)。 RPC首先在一家领域的短暂缺血导致其他地区保护的心脏中描述。后来,RPC开始用于急性心肌梗死的患者,尽管患有含糊不清的结果。假设是,在心脏中诱导的远程器官和保护中触发的信号之间的连接可以通过体液和神经途径介导,以及通过对短核缺血的系统性反应来介导。然而,虽然RPC具有潜在的重要临床作用,但我们对将局部刺激与偏远器官的机械通路的理解仍然不完整。然而,RPC表现为具有成本效益和容易进行的干预。在远程器官中激活的保护机制阐明可能对心肌缺血的管理具有治疗和诊断影响,并导致药理学RPC模拟物的发展。

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