Toxicology Unit, Institute of Environmental Medicine, Karolinska Institutet, Stockholm, Sweden.
Departamento de Bioquímica y Biología Molecular, Facultad de Farmacia, Universidad de Sevilla, Sevilla, Spain.
EMBO J. 2019 Sep 2;38(17):e101997. doi: 10.15252/embj.2019101997. Epub 2019 Aug 2.
Microglia are brain-resident macrophages forming the first active immune barrier in the central nervous system. They fulfill multiple functions across development and adulthood and under disease conditions. Current understanding revolves around microglia acquiring distinct phenotypes upon exposure to extrinsic cues in their environment. However, emerging evidence suggests that microglia display differences in their functions that are not exclusively driven by their milieu, rather by the unique properties these cells possess. This microglial intrinsic heterogeneity has been largely overlooked, favoring the prevailing view that microglia are a single-cell type endowed with spectacular plasticity, allowing them to acquire multiple phenotypes and thereby fulfill their numerous functions in health and disease. Here, we review the evidence that microglia might form a community of cells in which each member (or "subtype") displays intrinsic properties and performs unique functions. Distinctive features and functional implications of several microglial subtypes are considered, across contexts of health and disease. Finally, we suggest that microglial subtype categorization shall be based on function and we propose ways for studying them. Hence, we advocate that plasticity (reaction states) and diversity (subtypes) should both be considered when studying the multitasking microglia.
小胶质细胞是驻留于脑内的巨噬细胞,构成中枢神经系统内第一道主动免疫防线。它们在发育和成年期以及疾病状态下发挥多种功能。目前的认识围绕着小胶质细胞在暴露于环境中的外在信号时获得不同的表型展开。然而,新出现的证据表明,小胶质细胞在功能上存在差异,这些差异不仅仅是由其所处的环境驱动的,而是由这些细胞所具有的独特特性驱动的。这种小胶质细胞内在的异质性在很大程度上被忽视了,这有利于流行的观点,即小胶质细胞是一种具有惊人可塑性的单一细胞类型,使它们能够获得多种表型,从而在健康和疾病中发挥其众多功能。在这里,我们回顾了小胶质细胞可能形成一个细胞群体的证据,其中每个成员(或“亚型”)都表现出内在特性并执行独特的功能。考虑了几种小胶质细胞亚型在健康和疾病背景下的独特特征和功能意义。最后,我们建议小胶质细胞亚型分类应基于功能,并提出了研究它们的方法。因此,我们主张在研究多任务小胶质细胞时,应同时考虑可塑性(反应状态)和多样性(亚型)。