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心血管疾病中“衰老”中性粒细胞的表型和功能。

Phenotypes and functions of "aged" neutrophils in cardiovascular diseases.

机构信息

School of Integrative Medicine, Shanghai University of Traditional Chinese Medicine, Shanghai 201203, China.

Institute of Interdisciplinary Medical Science, Shanghai University of Traditional Chinese Medicine, Shanghai 201203, China.

出版信息

Biomed Pharmacother. 2024 Oct;179:117324. doi: 10.1016/j.biopha.2024.117324. Epub 2024 Aug 30.

Abstract

Neutrophils are important effector cells of innate immunity and undergo several phenotypic changes after release from the bone marrow. Neutrophils with a late life cycle phenotype are often referred to as "aged" neutrophils. These neutrophils undergo functional changes that accompany stimuli of inflammation, tissue senescence and injury, inducing their maturation and senescence in the circulation and locally in damaged tissues, forming a unique late-life neutrophil phenotype. "Aged" neutrophils, although attenuated in antibacterial capacity, are more active in aging and age-related diseases, exhibit high levels of mitochondrial ROS and mitochondrial DNA leakage, promote senescence of neighboring cells, and exacerbate cardiac and vascular tissue damage, including vascular inflammation, myocardial infarction, atherosclerosis, stroke, abdominal aortic aneurysm, and SARS-CoV-2 myocarditis. In this review, we outline the phenotypic changes of "aged" neutrophils characterized by CXCR4/CD62L, investigate the mechanisms driving neutrophil aging and functional transformation, and analyze the damage caused by "aged" neutrophils to various types of heart and blood vessels. Tissue injury and senescence promote neutrophil infiltration and induce neutrophil aging both in the circulation and locally in damaged tissues, resulting in an "aged" neutrophil phenotype characterized by CXCR4/CD62L. We also discuss the effects of certain agents, such as neutralizing mitochondrial ROS, scavenging IsoLGs, blocking VDAC oligomers and mPTP channel activity, activating Nrf2 activity, and inhibiting neutrophil PAD4 activity, to inhibit neutrophil NET formation and ameliorate age-associated cardiovascular disease, providing a new perspective for anti-aging therapy in cardiovascular disease.

摘要

中性粒细胞是先天免疫的重要效应细胞,从骨髓释放后会经历几种表型变化。具有晚期生命周期表型的中性粒细胞通常被称为“衰老”中性粒细胞。这些中性粒细胞经历伴随炎症、组织衰老和损伤刺激的功能变化,在循环中和受损组织局部诱导其成熟和衰老,形成独特的晚期中性粒细胞表型。“衰老”中性粒细胞,尽管在抗菌能力上减弱,但在衰老和与年龄相关的疾病中更为活跃,表现出高水平的线粒体 ROS 和线粒体 DNA 泄漏,促进邻近细胞的衰老,并加剧心脏和血管组织损伤,包括血管炎症、心肌梗死、动脉粥样硬化、中风、腹主动脉瘤和 SARS-CoV-2 心肌炎。在这篇综述中,我们概述了以 CXCR4/CD62L 为特征的“衰老”中性粒细胞的表型变化,研究了驱动中性粒细胞衰老和功能转化的机制,并分析了“衰老”中性粒细胞对各种类型的心脏和血管组织损伤和衰老的损伤。在循环中和受损组织局部,中性粒细胞的浸润和衰老促进中性粒细胞的衰老,并诱导 CXCR4/CD62L 为特征的“衰老”中性粒细胞表型。我们还讨论了某些药物的作用,如中和线粒体 ROS、清除 IsoLGs、阻断 VDAC 寡聚物和 mPTP 通道活性、激活 Nrf2 活性和抑制中性粒细胞 PAD4 活性,以抑制中性粒细胞 NET 形成和改善与年龄相关的心血管疾病,为心血管疾病的抗衰老治疗提供了新的视角。

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