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微循环与线粒体:关键单元

Microcirculation and Mitochondria: The Critical Unit.

作者信息

Wang Guangjian, Lian Hui, Zhang Hongmin, Wang Xiaoting

机构信息

Department of Critical Care Medicine, Peking Union Medical College Hospital, Peking Union Medical College, Chinese Academy of Medical Sciences, Beijing 100730, China.

Department of Health Care, Peking Union Medical College Hospital, Peking Union Medical College, Chinese Academy of Medical Sciences, Beijing 100730, China.

出版信息

J Clin Med. 2023 Oct 11;12(20):6453. doi: 10.3390/jcm12206453.

Abstract

Critical illness is often accompanied by a hemodynamic imbalance between macrocirculation and microcirculation, as well as mitochondrial dysfunction. Microcirculatory disorders lead to abnormalities in the supply of oxygen to tissue cells, while mitochondrial dysfunction leads to abnormal energy metabolism and impaired tissue oxygen utilization, making these conditions important pathogenic factors of critical illness. At the same time, there is a close relationship between the microcirculation and mitochondria. We introduce here the concept of a "critical unit", with two core components: microcirculation, which mainly comprises the microvascular network and endothelial cells, especially the endothelial glycocalyx; and mitochondria, which are mainly involved in energy metabolism but perform other non-negligible functions. This review also introduces several techniques and devices that can be utilized for the real-time synchronous monitoring of the microcirculation and mitochondria, and thus critical unit monitoring. Finally, we put forward the concepts and strategies of critical unit-guided treatment.

摘要

危重症常伴有大循环与微循环之间的血流动力学失衡以及线粒体功能障碍。微循环障碍导致组织细胞氧供应异常,而线粒体功能障碍导致能量代谢异常和组织氧利用受损,使这些情况成为危重症的重要致病因素。同时,微循环与线粒体之间存在密切关系。我们在此引入“关键单元”的概念,它有两个核心组成部分:微循环,主要由微血管网络和内皮细胞组成,尤其是内皮糖萼;以及线粒体,主要参与能量代谢,但也执行其他不可忽视的功能。本综述还介绍了几种可用于微循环和线粒体实时同步监测从而进行关键单元监测的技术和设备。最后,我们提出了关键单元导向治疗的概念和策略。

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