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动脉粥样硬化中的血管平滑肌细胞表型转换

Vascular smooth muscle cell phenotypic switching in atherosclerosis.

作者信息

Yu Yanqiao, Cai Yajie, Yang Furong, Yang Yankai, Cui Zhuorui, Shi Dazhuo, Bai Ruina

机构信息

Xiyuan Hospital, China Academy of Chinese Medical Sciences, Beijing, 100091, China.

National Clinical Research Center for Chinese Medicine Cardiology, Beijing, 100091, China.

出版信息

Heliyon. 2024 Sep 10;10(18):e37727. doi: 10.1016/j.heliyon.2024.e37727. eCollection 2024 Sep 30.

Abstract

Atherosclerosis (AS) is a complex pathology process involving intricate interactions among various cells and biological processes. Vascular smooth muscle cells (VSMCs) are the predominant cell type in normal arteries, and under atherosclerotic stimuli, VSMCs respond to altered blood flow and microenvironment changes by downregulating contractile markers and switching their phenotype. This review overviews the diverse phenotypes of VSMCs, including the canonical contractile VSMCs, synthetic VSMCs, and phenotypes resembling macrophages, foam cells, myofibroblasts, osteoblasts/chondrocytes, and mesenchymal stem cells. We summarize their presumed protective and pro-atherosclerotic roles in AS development. Additionally, we underscore the molecular mechanisms and regulatory pathways governing VSMC phenotypic switching, encompassing transcriptional regulation, biochemical factors, plaque microenvironment, epigenetics, miRNAs, and the cytoskeleton, emphasizing their significance in AS development. Finally, we outline probable future research directions targeting VSMCs, offering insights into potential therapeutic strategies for AS management.

摘要

动脉粥样硬化(AS)是一个复杂的病理过程,涉及多种细胞和生物学过程之间的复杂相互作用。血管平滑肌细胞(VSMC)是正常动脉中的主要细胞类型,在动脉粥样硬化刺激下,VSMC通过下调收缩标记物并转换其表型来响应血流改变和微环境变化。本综述概述了VSMC的多种表型,包括典型的收缩型VSMC、合成型VSMC以及类似于巨噬细胞、泡沫细胞、肌成纤维细胞、成骨细胞/软骨细胞和间充质干细胞的表型。我们总结了它们在AS发展中假定的保护作用和促动脉粥样硬化作用。此外,我们强调了控制VSMC表型转换的分子机制和调节途径,包括转录调控、生化因子、斑块微环境、表观遗传学、微小RNA(miRNA)和细胞骨架,强调它们在AS发展中的重要性。最后,我们概述了针对VSMC的可能的未来研究方向,为AS管理的潜在治疗策略提供见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f30e/11416558/355f2b995d9b/gr1.jpg

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