Department of Orthopaedics, Affiliated Zhongshan Hospital of Dalian University, Dalian 116001, China.
Department of Orthopaedics, Dongguan Tungwah Hospital, Dongguan 523000, China.
Oxid Med Cell Longev. 2021 Oct 1;2021:1634917. doi: 10.1155/2021/1634917. eCollection 2021.
Exosomes (Exo) exhibit numerous advantages (e.g., good encapsulation, high targeting efficiency, and easy to penetrate the blood-brain barrier to the central nervous system). Exosomes are recognized as prominent carriers of mRNAs, siRNAs, miRNAs, proteins, and other bioactive molecules. As confirmed by existing studies, miR-494 is important to regulate the occurrence, progression, and repair of spinal cord injury (SCI). We constructed miR-494-modified exosomes (Exo-miR-494). As indicated from related research in vitro and vivo, Exo-miR-494 is capable of effectively inhibiting the inflammatory response and neuronal apoptosis in the injured area, as well as upregulating various anti-inflammatory factors and miR-494 to protect neurons. Moreover, it can promote the regeneration of the neurofilament and improve the recovery of behavioral function of SCI rats.
外泌体 (Exo) 表现出许多优势(例如,良好的封装性、高靶向效率,并且容易穿透血脑屏障进入中枢神经系统)。外泌体被认为是 mRNA、siRNA、miRNA、蛋白质和其他生物活性分子的重要载体。现有研究证实,miR-494 对调节脊髓损伤 (SCI) 的发生、进展和修复很重要。我们构建了 miR-494 修饰的外泌体 (Exo-miR-494)。从体外和体内的相关研究结果来看,Exo-miR-494 能够有效抑制损伤区域的炎症反应和神经元凋亡,上调各种抗炎因子和 miR-494 以保护神经元,并且能够促进神经丝的再生,改善 SCI 大鼠行为功能的恢复。