细胞外小泡
间充质干细胞
脊髓损伤
细胞外
表型
细胞生物学
脊髓
生物
化学
神经科学
基因
生物化学
作者
Zhelun Yang,Zeyan Liang,Jian Rao,Haishu Xie,Maochao Zhou,Xiongjie Xu,Yike Lin,Fabin Lin,Chun‐Hua Wang,Chunmei Chen
摘要
Secondary injury after spinal cord injury (SCI) is a major obstacle to their neurological recovery. Among them, changes in astrocyte phenotype regulate secondary injury dominated by neuroinflammation. Hypoxia-preconditioned mesenchymal stem cells (MSCs)-derived extracellular vesicle (H-EV) plays a multifaceted role in secondary injury by interacting with cellular components and signaling pathways. They possess anti-inflammatory properties, regulate oxidative stress, and modulate apoptotic pathways, promoting cell survival and reducing neuronal loss. Given the unique aspects of secondary injury, H-EV shows promise as a therapeutic approach to mitigate its devastating consequences. Our study aimed to determine whether H-EV could promote SCI repair by altering the phenotype of astrocytes.
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