小胶质细胞
髓鞘
白质
下调和上调
化学
细胞生物学
鞘脂
转录组
脂滴
脂质过氧化
脂质代谢
调节器
神经胶质
脂质积聚
神经保护
少突胶质细胞
炎症
生物
脑损伤
内生
生物化学
作者
Shu Shu,Yonghui Gan,Jia Li,Lilin Li,Hailan Meng,Sun Mh,Lei Ye,Rui Mao,XL Cao,Shengnan Xia,Xinyu Bao,Renyuan Liu,Meijuan Zhang,Yun Xu
标识
DOI:10.1002/advs.202517825
摘要
ABSTRACT Ischemic white matter injury leads to long‐term neurological deficits but currently lacks effective therapies. Although AXL has been implicated in debris clearance and inflammatory regulation, its role in post‐stroke myelin repair remains unclear. Here, we report robust upregulation of microglial AXL in mice after tMCAO. Microglial AXL cKO mice exhibited worse motor and cognitive deficits up to 28 days after tMCAO, accompanied by more severe white matter damage, increased myelin debris, and greater lipid droplets (LDs) accumulation in microglia than WT controls. Longitudinal analysis showed that AXL‐deficient microglia had reduced early phagocytic capacity but increased LDs accumulation and lipid peroxidation at later stages. Transcriptomic profiling revealed altered inflammatory and sphingolipid metabolism pathways in AXL‐deficient microglia. Mechanistically, AXL regulates Smpd1 transcription via EGR1, thereby modulating sphingolipid metabolism and LDs accumulation. Remarkably, supplement with ASM (the Smpd1 ‐encoded enzyme) in AXL cKO mice reduced LDs accumulation and attenuated ischemic white matter injury. Collectively, these findings identify microglial AXL as an endogenous regulator of myelin repair after ischemic stroke.
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