Exosomes: a promising microenvironment modulator for spinal cord injury treatment.

IF 10 2区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
International Journal of Biological Sciences Pub Date : 2025-06-05 eCollection Date: 2025-01-01 DOI:10.7150/ijbs.115242
Yanming Ma, Xiaojun Yu, Jingxin Pan, Yingguang Wang, Ruoyu Li, Xiaodong Wang, Huimin Hu, Dingjun Hao
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引用次数: 0

Abstract

Spinal cord injury (SCI) remains a severely disabling disorder that impacts millions globally by causing irreversible damage to the nervous system. Although cell - based therapies have shown notable progress, the post - injury microenvironment presents significant obstacles that hinder the survival and effectiveness of implanted cells, ultimately limiting sustained functional restoration. Exosomes have emerged as a promising cell - free therapeutic alternative due to their stability, low immunogenicity, and ability to carry bioactive molecules such as proteins, microRNAs, and lipids. These vesicles can modulate the injured microenvironment, support neuroprotection, and facilitate repair. This review begins by discussing the pathological alterations that disrupt the microenvironment following SCI. The review then outlines the process of exosome formation and highlights their structural features. Furthermore, the review delves into the diverse cellular sources of exosomes and evaluates their therapeutic relevance in the context of SCI. Special attention is given to the multifaceted roles exosomes play in neuroprotection, such as reinforcing the blood - spinal cord barrier, stimulating axonal regeneration, promoting new blood vessel formation, suppressing programmed cell death in neurons, and modulating inflammatory responses. The synergistic use of exosomes in combination with biomaterials is also explored, with the aim of optimizing their therapeutic potential. Lastly, the review addresses the key obstacles that must be overcome to bring exosome - based treatments into clinical application and offers perspectives on future advancements in this evolving field. In summary, exosomes offer a novel and promising avenue for SCI intervention, holding considerable promise as an alternative to traditional therapeutic approaches.

外泌体:一种有前途的脊髓损伤治疗微环境调节剂。
脊髓损伤(SCI)是一种严重致残的疾病,通过对神经系统造成不可逆转的损害,影响着全球数百万人。尽管基于细胞的治疗已经取得了显著的进展,但损伤后的微环境存在显著障碍,阻碍了植入细胞的存活和有效性,最终限制了持续的功能恢复。外泌体由于其稳定性、低免疫原性和携带生物活性分子(如蛋白质、microrna和脂质)的能力,已成为一种有前途的无细胞治疗替代方案。这些囊泡可以调节损伤的微环境,支持神经保护,促进修复。本文首先讨论脊髓损伤后破坏微环境的病理改变。然后概述了外泌体形成的过程,并强调了它们的结构特征。此外,该综述深入研究了外泌体的多种细胞来源,并评估了它们在脊髓损伤治疗中的相关性。特别关注外泌体在神经保护中的多方面作用,如加强血脊髓屏障、刺激轴突再生、促进新血管形成、抑制神经元程序性细胞死亡和调节炎症反应。还探讨了外泌体与生物材料的协同使用,以优化其治疗潜力。最后,综述了将基于外泌体的治疗方法引入临床应用必须克服的关键障碍,并对这一不断发展的领域的未来发展提出了展望。综上所述,外泌体为脊髓损伤干预提供了一种新颖而有前途的途径,作为传统治疗方法的替代方案,具有相当大的前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal of Biological Sciences
International Journal of Biological Sciences 生物-生化与分子生物学
CiteScore
16.90
自引率
1.10%
发文量
413
审稿时长
1 months
期刊介绍: The International Journal of Biological Sciences is a peer-reviewed, open-access scientific journal published by Ivyspring International Publisher. It dedicates itself to publishing original articles, reviews, and short research communications across all domains of biological sciences.
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