The role of metabolic reprogramming of oxygen‐induced macrophages in the dynamic changes of atherosclerotic plaques

Author:

Shen Lin12,Chen Weiyue12,Ding Jiayi12,Shu Gaofeng12,Chen Minjiang12,Zhao Zhongwei12,Xia Shuiwei12,Ji Jiansong12

Affiliation:

1. Key Laboratory of Imaging Diagnosis and Minimally Invasive Intervention Research The Fifth Affiliated Hospital of Wenzhou Medical University Lishui China

2. Department of Interventional Radiology Clinical College of the Affiliated Central Hospital of Lishui University Lishui China

Abstract

AbstractAtherosclerosis (As) is a chronic vascular inflammatory disease. Macrophages are the most important immune cells in atherosclerotic plaques, and the phenotype of plaque macrophages shifts dynamically to adapt to changes in the plaque microenvironment. The aerobic microenvironment of early atherosclerotic plaques promotes the transformation of M2/alternatively activated macrophages mainly through oxidative phosphorylation; the anoxic microenvironment of advanced atherosclerotic plaques mainly promotes the formation of M1/classically activated macrophages through anaerobic glycolysis; and the adventitia angiogenesis of aged atherosclerotic plaques leads to an increase in the proportion of M2/M1 macrophages. Therefore, this review deeply elucidates the dynamic change mechanism of plaque macrophages and the regulation of plaque oxygen content and immune metabolism to find new targets for the treatment of As.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Genetics,Molecular Biology,Biochemistry,Biotechnology

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