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心脏远程预处理概述:可翻译性与机制

Remote conditioning the heart overview: translatability and mechanism.

作者信息

Schmidt Michael Rahbek, Redington Andrew, Bøtker Hans Erik

机构信息

Department of Cardiology, Aarhus University Hospital Skejby, Aarhus N, Denmark.

出版信息

Br J Pharmacol. 2015 Apr;172(8):1947-60. doi: 10.1111/bph.12933. Epub 2014 Dec 15.

Abstract

Conditioning the heart to resist predictable and unpredictable ischaemia-reperfusion (IR) injury is one of the fastest growing areas of bench to bedside research within cardiology. Basic science has provided important insights into signalling pathways and protective mechanisms in the heart, and a growing number of clinical studies have, with important exceptions, shown the potential applicability and beneficial effect of various mechanical conditioning strategies achieved by intermittent short-lasting-induced ischaemia of the heart itself or a remote tissue. Remote ischaemic conditioning (RIC) in particular has been utilized in a number of clinical settings with promising results. However, while many novel 'downstream' mechanisms of RIC have been discovered, translation to pharmacological conditioning has not yet been convincingly demonstrated in clinical studies. One explanation for this apparent failure may be that most pharmacological approaches mimic a single instrument in a complex orchestra activated by mechanical conditioning. Recent studies, however, provide important insights into upstream events occurring in RIC, which may allow for development of drugs activating more complex systems of biological organ protection. With this review, we will systematically examine the first generation of pharmacological cardioprotection studies and then provide a summary of the recent discoveries in basic science that could illuminate the path towards more advanced approaches in the next generation of pharmacological agents that may work by reproducing the diverse effects of RIC, thereby providing protection against IR injury.

摘要

使心脏适应可预测和不可预测的缺血再灌注(IR)损伤,是心脏病学领域从 bench 到 bedside 研究中发展最快的领域之一。基础科学已对心脏中的信号通路和保护机制提供了重要见解,并且越来越多的临床研究(有一些重要的例外情况)表明,通过对心脏自身或远处组织进行间歇性短暂缺血所实现的各种机械预处理策略具有潜在的适用性和有益效果。特别是远程缺血预处理(RIC)已在许多临床环境中得到应用并取得了有前景的结果。然而,尽管已经发现了许多 RIC 的新型“下游”机制,但在临床研究中尚未令人信服地证明向药物预处理的转化。这种明显失败的一个解释可能是,大多数药理学方法类似于由机械预处理激活的复杂管弦乐队中的单一乐器。然而,最近的研究为 RIC 中发生的上游事件提供了重要见解,这可能有助于开发激活更复杂生物器官保护系统的药物。在本综述中,我们将系统地审视第一代药理学心脏保护研究,然后总结基础科学中的最新发现,这些发现可能为开发下一代药理学药物的更先进方法指明方向,这些药物可能通过重现 RIC 的多种效应来发挥作用,从而提供针对 IR 损伤的保护。

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