小胶质细胞
炎症
脂质积聚
脂质代谢
生物
脂质信号
化学
神经科学
细胞生物学
生物物理学
免疫学
生物化学
作者
Wei Wei,Seyed Siyawasch Justus Lattau,Wenqiang Xin,Yongli Pan,Lars Tatenhorst,Lin Zhang,Irina Graf,Yaoyun Kuang,Xuan Zheng,Zhongnan Hao,Aurel Popa‐Wagner,Stefan T. Gerner,Sabine Huber,Manuel Nietert,Christian Klose,Ertuğrul Kılıç,Dirk M. Hermann,Mathias Bähr,Hagen B. Huttner,Hua Liu,Dirk Fitzner,Thorsten R. Doeppner
标识
DOI:10.1002/advs.202306863
摘要
Abstract Microglia are critically involved in post‐stroke inflammation affecting neurological outcomes. Lipid droplet (LD) accumulation in microglia results in a dysfunctional and pro‐inflammatory state in the aged brain and worsens the outcome of neuroinflammatory and neurodegenerative diseases. However, the role of LD‐rich microglia (LDRM) under stroke conditions is unknown. Using in vitro and in vivo stroke models, herein accumulation patterns of microglial LD and their corresponding microglial inflammatory signaling cascades are studied. Interactions between temporal and spatial dynamics of lipid profiles and microglial phenotypes in different post‐stroke brain regions are found. Hence, microglia display enhanced levels of LD accumulation and elevated perilipin 2 (PLIN2) expression patterns when exposed to hypoxia or stroke. Such LDRM exhibit high levels of TNF‐α, IL‐6, and IL‐1β as well as a pro‐inflammatory phenotype and differentially expressed lipid metabolism‐related genes. These post‐ischemic alterations result in distinct lipid profiles with spatial and temporal dynamics, especially with regard to cholesteryl ester and triacylglycerol levels, further exacerbating post‐ischemic inflammation. The present study sheds new light on the dynamic changes of brain lipid profiles and aggregation patterns of LD in microglia exposed to ischemia, demonstrating a mutual mechanism between microglial phenotype and function, which contributes to progression of brain injury.
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