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小胶质细胞:游走的大脑细胞。

Microglia: Brain cells on the move.

机构信息

UHasselt, BIOMED, Diepenbeek, Belgium; INSERM, UMR-S 1130, CNRS, UMR 8246, Neuroscience Paris Seine, Institute of Biology Paris Seine, Paris, France; Sorbonne Universités, UPMC Université Paris 06, UM CR18, Neuroscience Paris Seine, Paris, France.

UHasselt, BIOMED, Diepenbeek, Belgium.

出版信息

Prog Neurobiol. 2019 Jul;178:101612. doi: 10.1016/j.pneurobio.2019.04.001. Epub 2019 Apr 4.

Abstract

In the last decade, tremendous progress has been made in understanding the biology of microglia - i.e. the fascinating immigrated resident immune cell population of the central nervous system (CNS). Recent literature reviews have largely dealt with the plentiful functions of microglia in CNS homeostasis, development and pathology, and the influences of sex and the microbiome. In this review, the intriguing aspect of their physical plasticity during CNS development will get specific attention. Microglia move around (mobility) and reshape their processes (motility). Microglial migration into and inside the CNS is most prominent throughout development and consequently most of the data described in this review concern mobility and motility in the changing environment of the developing brain. Here, we first define microglia based on their highly specialized age- and region-dependent gene expression signature and associated functional heterogeneity. Next, we describe their origin, the migration route of immature microglial cells towards the CNS, the mechanisms underlying their invasion of the CNS, and their spatiotemporal localization and surveying behaviour inside the developing CNS. These processes are dependent on microglial mobility and motility which are determined by the microenvironment of the CNS. Therefore, we further zoom in on the changing environment during CNS development. We elaborate on the extracellular matrix and the respective integrin receptors on microglia and we discuss the purinergic and molecular signalling in microglial mobility. In the last section, we discuss the physiological and pathological functions of microglia in which mobility and motility are involved to stress the importance of microglial 'movement'.

摘要

在过去的十年中,人们在理解小胶质细胞的生物学方面取得了巨大的进展——即中枢神经系统(CNS)中令人着迷的移民常驻免疫细胞群体。最近的文献综述在很大程度上涉及小胶质细胞在 CNS 稳态、发育和病理学中的丰富功能,以及性别和微生物组的影响。在这篇综述中,将特别关注它们在中枢神经系统发育过程中物理可塑性的有趣方面。小胶质细胞会移动(迁移)并重塑它们的突起(运动性)。小胶质细胞向中枢神经系统内的迁移在发育过程中最为突出,因此本综述中描述的大部分数据都涉及到发育中大脑不断变化的环境中的迁移和运动性。在这里,我们首先根据其高度专业化的年龄和区域依赖性基因表达特征及其相关的功能异质性来定义小胶质细胞。接下来,我们描述它们的起源、未成熟小胶质细胞向中枢神经系统的迁移途径、它们入侵中枢神经系统的机制,以及它们在发育中中枢神经系统内的时空定位和探测行为。这些过程依赖于小胶质细胞的迁移和运动性,而迁移和运动性又取决于中枢神经系统的微环境。因此,我们进一步聚焦于中枢神经系统发育过程中的变化环境。我们详细阐述了细胞外基质和小胶质细胞上相应的整联蛋白受体,并讨论了小胶质细胞迁移中的嘌呤能和分子信号。在最后一节中,我们讨论了小胶质细胞在生理和病理功能中的作用,其中迁移和运动性参与其中,以强调小胶质细胞“运动”的重要性。

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