Microglial M1/M2 polarization and metabolic states

小胶质细胞 先天免疫系统 细胞生物学 生物 炎症 免疫系统 表型 线粒体 巨噬细胞极化 神经科学 免疫学 生物化学 基因
作者
Rubén Orihuela,Christopher A. McPherson,G. Jean Harry
出处
期刊:British Journal of Pharmacology [Wiley]
卷期号:173 (4): 649-665 被引量:1310
标识
DOI:10.1111/bph.13139
摘要

Microglia are critical nervous system‐specific immune cells serving as tissue‐resident macrophages influencing brain development, maintenance of the neural environment, response to injury and repair. As influenced by their environment, microglia assume a diversity of phenotypes and retain the capability to shift functions to maintain tissue homeostasis. In comparison with peripheral macrophages, microglia demonstrate similar and unique features with regards to phenotype polarization, allowing for innate immunological functions. Microglia can be stimulated by LPS or IFN ‐ γ to an M 1 phenotype for expression of pro‐inflammatory cytokines or by IL‐4/IL‐13 to an M 2 phenotype for resolution of inflammation and tissue repair. Increasing evidence suggests a role of metabolic reprogramming in the regulation of the innate inflammatory response. Studies using peripheral immune cells demonstrate that polarization to an M 1 phenotype is often accompanied by a shift in cells from oxidative phosphorylation to aerobic glycolysis for energy production. More recently, the link between polarization and mitochondrial energy metabolism has been considered in microglia. Under these conditions, energy demands would be associated with functional activities and cell survival and thus, may serve to influence the contribution of microglia activation to various neurodegenerative conditions. This review examines the polarization states of microglia and their relationship to mitochondrial metabolism. Additional supporting experimental data are provided to demonstrate mitochondrial metabolic shifts in primary microglia and the BV ‐2 microglia cell line induced under LPS ( M1 ) and IL ‐4/ IL‐13 ( M2 ) polarization. Linked Articles This article is part of a themed section on Inflammation: maladies, models, mechanisms and molecules. To view the other articles in this section visit http://dx.doi.org/10.1111/bph.2016.173.issue-4
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