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Neural stem cell-derived small extracellular vesicles attenuate apoptosis and neuroinflammation after traumatic spinal cord injury by activating autophagy

机译:神经干细胞衍生的小细胞外小泡通过激活自噬减轻脊髓损伤后的凋亡和神经炎症

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摘要

Spinal cord injury (SCI) can cause severe irreversible motor dysfunction and even death. Neural stem cell (NSC) transplantation can promote functional recovery after acute SCI in experimental animals, but numerous issues, including low-transplanted cell survival rate, cell de-differentiation, and tumor formation need to be resolved before routine clinical application is feasible. Recent studies have shown that transplanted stem cells facilitate regeneration through release of paracrine factors. Small extracellular vesicles (sEVs), the smallest known membrane-bound nanovesicles, are involved in complex intercellular communication systems and are an important vehicle for paracrine delivery of therapeutic agents. However, the application of NSC-derived small extracellular vesicles (NSC-sEVs) to SCI treatment has not been reported. We demonstrate that NSC-sEVs can significantly reduce the extent of SCI, improve functional recovery, and reduce neuronal apoptosis, microglia activation, and neuroinflammation in rats. Furthermore, our study suggests that NSC-sEVs can regulate apoptosis and inflammatory processes by inducing autophagy. In brief, NSC-sEVs increased the expression of the autophagy marker proteins LC3B and beclin-1, and promoted autophagosome formation. Following NSC-sEV infusion, the SCI area was significantly reduced, and the expression levels of the proapoptotic protein Bax, the apoptosis effector cleaved caspase-3, and the pro-inflammatory cytokines TNF-α, IL-1β, and IL-6 were significantly reduced, whereas the expression level of the anti-apoptotic protein Bcl-2 was upregulated. In the presence of the autophagy inhibitor 3MA, however, these inhibitory effects of NSC-sEVs on apoptosis and neuroinflammation were significantly reversed. Our results show for the first time that NSC-sEV treatment has the potential to reduce neuronal apoptosis, inhibit neuroinflammation, and promote functional recovery in SCI model rats at an early stage by promoting autophagy.
机译:脊髓损伤(SCI)可能导致严重的不可逆运动功能障碍甚至死亡。神经干细胞(NSC)移植可以促进实验动物在急性SCI后的功能恢复,但是在常规临床应用可行之前,需要解决许多问题,包括低移植细胞存活率,细胞去分化和肿瘤形成。最近的研究表明,移植的干细胞通过释放旁分泌因子促进再生。小型细胞外囊泡(sEVs)是已知的最小的膜结合纳米囊泡,参与复杂的细胞间通讯系统,是旁分泌输送治疗剂的重要载体。但是,尚未报道将NSC衍生的小细胞外囊泡(NSC-sEVs)用于SCI治疗。我们证明,NSC-sEVs可以显着减少SCI的程度,改善功能恢复,并减少大鼠的神经元凋亡,小胶质细胞活化和神经炎症。此外,我们的研究表明,NSC-sEVs可以通过诱导自噬来调节细胞凋亡和炎症过程。简而言之,NSC-sEVs增加自噬标记蛋白LC3B和beclin-1的表达,并促进自噬体的形成。输注NSC-sEV后,SCI面积显着减少,促凋亡蛋白Bax,凋亡效应因子裂解的caspase-3和促炎细胞因子TNF-α,IL-1β和IL-6的表达水平下降。明显降低,而抗凋亡蛋白Bcl-2的表达水平上调。然而,在自噬抑制剂3MA的存在下,NSC-sEVs对细胞凋亡和神经炎症的抑制作用被明显逆转。我们的结果首次表明,NSC-sEV治疗具有通过促进自噬来减少SCI模型大鼠早期神经元凋亡,抑制神经炎症和促进功能恢复的潜力。

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