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单细胞分辨率下的小鼠和人类小胶质细胞的时空异质性。

Spatial and temporal heterogeneity of mouse and human microglia at single-cell resolution.

机构信息

Institute of Neuropathology, Medical Faculty, University of Freiburg, Freiburg, Germany.

Berta-Ottenstein-Programme for Clinician Scientists, Faculty of Medicine, University of Freiburg, Freiburg, Germany.

出版信息

Nature. 2019 Feb;566(7744):388-392. doi: 10.1038/s41586-019-0924-x. Epub 2019 Feb 13.

Abstract

Microglia have critical roles not only in neural development and homeostasis, but also in neurodegenerative and neuroinflammatory diseases of the central nervous system. These highly diverse and specialized functions may be executed by subsets of microglia that already exist in situ, or by specific subsets of microglia that develop from a homogeneous pool of cells on demand. However, little is known about the presence of spatially and temporally restricted subclasses of microglia in the central nervous system during development or disease. Here we combine massively parallel single-cell analysis, single-molecule fluorescence in situ hybridization, advanced immunohistochemistry and computational modelling to comprehensively characterize subclasses of microglia in multiple regions of the central nervous system during development and disease. Single-cell analysis of tissues of the central nervous system during homeostasis in mice revealed specific time- and region-dependent subtypes of microglia. Demyelinating and neurodegenerative diseases evoked context-dependent subtypes of microglia with distinct molecular hallmarks and diverse cellular kinetics. Corresponding clusters of microglia were also identified in healthy human brains, and the brains of patients with multiple sclerosis. Our data provide insights into the endogenous immune system of the central nervous system during development, homeostasis and disease, and may also provide new targets for the treatment of neurodegenerative and neuroinflammatory pathologies.

摘要

小胶质细胞在中枢神经系统的神经发育和稳态中起着至关重要的作用,而且在神经退行性和神经炎症性疾病中也起着重要作用。这些高度多样化和专业化的功能可能是由已经存在于原位的小胶质细胞亚群执行的,也可能是由特定的小胶质细胞亚群执行的,这些亚群是由同质细胞池中按需发育而来的。然而,对于在发育或疾病过程中中枢神经系统中小胶质细胞的空间和时间受限亚类的存在,人们知之甚少。在这里,我们结合大规模平行单细胞分析、单分子荧光原位杂交、先进的免疫组织化学和计算建模,全面描述了在发育和疾病过程中中枢神经系统多个区域中小胶质细胞的亚类。对处于稳态的小鼠中枢神经系统组织的单细胞分析揭示了特定的、时间和区域依赖性的小胶质细胞亚型。脱髓鞘和神经退行性疾病引起了具有不同分子特征和不同细胞动力学的与上下文相关的小胶质细胞亚型。在健康人的大脑和多发性硬化症患者的大脑中也鉴定到了相应的小胶质细胞簇。我们的数据为中枢神经系统在发育、稳态和疾病过程中的内源性免疫系统提供了新的认识,并可能为神经退行性和神经炎症性病变的治疗提供新的靶点。

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