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缺氧神经干细胞通过HIF-1α/RAB17驱动的细胞外囊泡释放增强脊髓修复

Hypoxic Neural Stem Cells Enhance Spinal Cord Repair Through HIF-1a/RAB17-Driven Extracellular Vesicle Release.

作者信息

Qin Tian, Qin Yiming, Wen Haicheng, Wu Tianding, Duan Chunyue, Cao Yong, Sun Yi, Zhou Hongkang, Lu Hongbin, Jiang Liyuan, Hu Jianzhong, Li Chengjun

机构信息

Department of Spine Surgery and Orthopaedics, Xiangya Hospital, Central South University, Changsha, China.

Key Laboratory of Organ Injury, Aging and Regenerative Medicine of Hunan Province, Changsha, China.

出版信息

J Extracell Vesicles. 2025 Jul;14(7):e70126. doi: 10.1002/jev2.70126.

Abstract

Spinal cord injury (SCI) is a severe and complex condition that can lead to significant physical impairments and affect the life quality of patients. Neural stem cells (NSCs) transplantation holds as a promising therapeutic approach for SCI. However, the challenging post-SCI microenvironment limits NSCs effectiveness. Our current research has found that transplanted NSCs, though with lower survival and differentiation, still aided in injury repair. Hypoxia was identified as a stressor inducing the release of extracellular vesicles (EVs) from NSCs through HIF-1α/RAB17 enhancing SCI repair. By extracting and modifying these EVs derived from hypoxia treated NSCs with CAQK/Angiopep2 peptides, we were able to accurately deliver them to the injury site, enhancing recovery without relying on cell survival or differentiation. This study delved into the reparative role and underlying mechanisms of transplanted NSCs in SCI, focusing on their non-cellular contributions and developed an innovative, targeted strategy for the transplantation of EVs derived from NSCs, offering a cell-free, precision therapeutic intervention for the treatment of SCI.

摘要

脊髓损伤(SCI)是一种严重且复杂的病症,可导致严重的身体功能障碍并影响患者的生活质量。神经干细胞(NSCs)移植是一种很有前景的SCI治疗方法。然而,SCI后具有挑战性的微环境限制了神经干细胞的有效性。我们目前的研究发现,移植的神经干细胞虽然存活率和分化率较低,但仍有助于损伤修复。缺氧被确定为一种应激源,可通过HIF-1α/RAB17诱导神经干细胞释放细胞外囊泡(EVs),从而增强SCI修复。通过用CAQK/血管活性肠肽2肽提取和修饰这些源自缺氧处理的神经干细胞的细胞外囊泡,我们能够将它们准确地递送至损伤部位,在不依赖细胞存活或分化的情况下增强恢复。本研究深入探讨了移植的神经干细胞在SCI中的修复作用和潜在机制,重点关注其非细胞贡献,并开发了一种创新的、靶向性的神经干细胞衍生细胞外囊泡移植策略,为SCI治疗提供了一种无细胞的精准治疗干预方法。

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