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血管稳态和健康与疾病中的炎症——单细胞技术的启示。

Vascular Homeostasis and Inflammation in Health and Disease-Lessons from Single Cell Technologies.

机构信息

Helmholtz Institute for Metabolic, Obesity and Vascular Research (HI-MAG) of the Helmholtz Zentrum München at the University of Leipzig and University Hospital Leipzig, Philipp-Rosenthal-Str. 27, 04103 Leipzig, Germany.

出版信息

Int J Mol Sci. 2020 Jun 30;21(13):4688. doi: 10.3390/ijms21134688.

Abstract

The vascular system is critical infrastructure that transports oxygen and nutrients around the body, and dynamically adapts its function to an array of environmental changes. To fulfil the demands of diverse organs, each with unique functions and requirements, the vascular system displays vast regional heterogeneity as well as specialized cell types. Our understanding of the heterogeneity of vascular cells and the molecular mechanisms that regulate their function is beginning to benefit greatly from the rapid development of single cell technologies. Recent studies have started to analyze and map vascular beds in a range of organs in healthy and diseased states at single cell resolution. The current review focuses on recent biological insights on the vascular system garnered from single cell analyses. We cover the themes of vascular heterogeneity, phenotypic plasticity of vascular cells in pathologies such as atherosclerosis and cardiovascular disease, as well as the contribution of defective microvasculature to the development of neurodegenerative disorders such as Alzheimer's disease. Further adaptation of single cell technologies to study the vascular system will be pivotal in uncovering the mechanisms that drive the array of diseases underpinned by vascular dysfunction.

摘要

血管系统是运输氧气和营养物质的关键基础设施,它能够动态地适应各种环境变化来调整其功能。为了满足各种器官的需求,每个器官都具有独特的功能和要求,因此血管系统表现出巨大的区域异质性和特化的细胞类型。我们对血管细胞的异质性以及调节其功能的分子机制的理解,正开始从单细胞技术的快速发展中受益匪浅。最近的研究已经开始以单细胞分辨率分析和绘制健康和患病状态下各种器官的血管床图谱。本综述重点介绍了从单细胞分析中获得的关于血管系统的最新生物学见解。我们涵盖了血管异质性、动脉粥样硬化和心血管疾病等病理条件下血管细胞的表型可塑性,以及微血管缺陷对阿尔茨海默病等神经退行性疾病发展的影响等主题。进一步适应单细胞技术来研究血管系统对于揭示驱动血管功能障碍相关疾病的机制至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f17e/7369864/bc0ee9bcb28b/ijms-21-04688-g001.jpg

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