Pericytes in the brain and heart: functional roles and response to ischaemia and reperfusion.

IF 10.2 1区 医学 Q1 CARDIAC & CARDIOVASCULAR SYSTEMS
Turgay Dalkara, Leif Østergaard, Gerd Heusch, David Attwell
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引用次数: 0

Abstract

In the last 20 years, there has been a revolution in our understanding of how blood flow is regulated in many tissues. Whereas it used to be thought that essentially all blood flow control occurred at the arteriole level, it is now recognized that control of capillary blood flow by contractile pericytes plays a key role both in regulating blood flow physiologically and in reducing it in clinically relevant pathological conditions. In this article, we compare and contrast how brain and cardiac pericytes regulate cerebral and coronary blood flow, focusing mainly on the pathological events of cerebral and cardiac ischaemia. The cerebral and coronary capillary beds differ dramatically in morphology, yet in both cases, pericyte-mediated capillary constriction plays a key role in restricting blood flow after ischaemia and possibly in other pathological conditions. We conclude with suggestions for therapeutic approaches to relaxing pericytes, which may prove useful in the long-term for reducing pericyte-induced ischaemia.

大脑和心脏中的周细胞:功能作用以及对缺血和再灌注的反应。
在过去 20 年中,我们对许多组织中血流调节方式的认识发生了革命性的变化。过去,人们认为所有的血流控制基本上都发生在动脉一级,而现在人们认识到,收缩性周细胞对毛细血管血流的控制在生理性血流调节和临床相关病理条件下减少血流方面都起着关键作用。在这篇文章中,我们比较和对比了大脑和心脏周细胞如何调节大脑和冠状动脉血流,主要侧重于大脑和心脏缺血的病理事件。大脑和冠状动脉毛细血管床在形态上有很大不同,但在这两种情况下,由包膜细胞介导的毛细血管收缩在缺血后以及可能在其他病理情况下限制血流方面起着关键作用。最后,我们就放松周细胞的治疗方法提出了一些建议,从长远来看,这些方法可能有助于减轻周细胞诱导的缺血。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Cardiovascular Research
Cardiovascular Research 医学-心血管系统
CiteScore
21.50
自引率
3.70%
发文量
547
审稿时长
1 months
期刊介绍: Cardiovascular Research Journal Overview: International journal of the European Society of Cardiology Focuses on basic and translational research in cardiology and cardiovascular biology Aims to enhance insight into cardiovascular disease mechanisms and innovation prospects Submission Criteria: Welcomes papers covering molecular, sub-cellular, cellular, organ, and organism levels Accepts clinical proof-of-concept and translational studies Manuscripts expected to provide significant contribution to cardiovascular biology and diseases
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