小胶质细胞
视网膜
神经科学
视网膜
生物
CX3CR1型
免疫系统
视网膜变性
吞噬作用
转分化
神经炎症
双重角色
免疫学
细胞生物学
炎症
干细胞
化学
趋化因子
生物化学
组合化学
趋化因子受体
作者
Wei Fan,Weidi Huang,Jiayi Chen,Na Li,Liming Mao,Shengping Hou
出处
期刊:Immunology
[Wiley]
日期:2022-04-11
卷期号:166 (3): 268-286
被引量:134
摘要
Microglia, the resident immune cells in the retina and nervous system, make irreplaceable contributions to the maintenance of normal homeostasis and immune surveillance of these systems. Recently, great progress has been made in determining the origin, distribution, features and functions of retinal microglia and in identifying their roles in retinal diseases. In the retinal microenvironment, microglia constantly monitor changes in their surroundings and maintain balanced functions by communicating with other retinal cells. When disturbed, activated microglia may kill degenerated neurons and photoreceptors through phagocytosis and exacerbate retinal injury by producing multiple proinflammatory mediators. Numerous animal studies and in situ analyses of human tissue have shown that retinal microglia are involved in multiple retinal diseases. The functions and mechanisms of activated microglia in retinal disorders are gradually being elucidated. Increasing evidence points towards the dual roles of microglia in the retina and they are regulated by many factors. How to inhibit the detrimental effects of microglia and promote beneficial effects are worth studying. This review focuses primarily on the features and functions of microglia and how they participate in retinal diseases based on existing research findings. We also discuss current opinions about microglial transdifferentiation.
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