Smooth Muscle Cell Phenotypic Diversity.

Mingjun Liu, Delphine Gomez
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引用次数: 130

Abstract

Vascular smooth muscle cells (SMC) play a critical role in controlling blood pressure and blood distribution, as well as maintaining the structural integrity of the blood vessel. SMC also participate in physiological and pathological vascular remodeling due to their remarkable ability to dynamically modulate their phenotype. During the past decade, the development of in vivo fate mapping systems for unbiased identification and tracking of SMC and their progeny has led to major discoveries as well as the reevaluation of well-established concepts about the contribution of vascular SMC in major vascular diseases including atherosclerosis. Lineage tracing studies revealed that SMC undergoes multiple phenotypic transitions characterized by the expression of markers of alternative cell types (eg, macrophage-like and mesenchymal-stem cell-like) and populate injured or diseased vessels by oligoclonal expansion of a limited number of medial SMC. With the development of high-throughput transcriptomics and single-cell RNA sequencing (scRNAseq), the field is moving forward towards in-depth SMC phenotypic characterization. Herein, we review the major observations put forth by lineage and clonality tracing studies and as well as the evidence in support for SMC phenotypic diversity in healthy and diseased vascular tissue. We will also discuss the opportunities and remaining challenges of combining lineage tracing and single-cell transcriptomics technologies, as well as studying the functional relevance of SMC phenotypic transitions and identifying the mechanisms controlling them.
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平滑肌细胞表型多样性。
血管平滑肌细胞(SMC)在控制血压和血液分布以及维持血管结构完整性方面起着至关重要的作用。SMC还参与生理性和病理性血管重塑,因为它们具有显著的动态调节其表型的能力。在过去的十年中,用于无偏识别和跟踪SMC及其后代的体内命运定位系统的发展已经导致了重大发现,以及对血管SMC在包括动脉粥样硬化在内的主要血管疾病中的贡献的既定概念的重新评估。谱系追踪研究表明,SMC经历了多种表型转变,其特征是表达替代细胞类型(如巨噬细胞样和间充质干细胞样)的标记,并通过有限数量的medial SMC的寡克隆扩增填充损伤或病变血管。随着高通量转录组学和单细胞RNA测序(scRNAseq)的发展,该领域正朝着深入的SMC表型表征迈进。在此,我们回顾了谱系和克隆追踪研究提出的主要观察结果,以及支持SMC在健康和病变血管组织中表型多样性的证据。我们还将讨论结合谱系追踪和单细胞转录组学技术的机遇和仍然存在的挑战,以及研究SMC表型转变的功能相关性和确定控制它们的机制。
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Editors and Editorial Board. Correction to: Role of LpL (Lipoprotein Lipase) in Macrophage Polarization In Vitro and In Vivo. Tribute to Paul M. Vanhoutte, MD, PhD (1940-2019). Correction to: 18F-Sodium Fluoride Imaging of Coronary Atherosclerosis in Ambulatory Patients With Diabetes Mellitus. Extracellular MicroRNA-92a Mediates Endothelial Cell-Macrophage Communication.
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