间充质间质细胞作为脊髓损伤治疗的选择

L. Fracaro, B. Zoehler, C. Rebelatto
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引用次数: 2

摘要

脊髓损伤(SCI)是一个严重的临床问题,在美国每年约有17,500名新患者受到影响。造成脊髓损伤的主要原因是车辆碰撞、跌倒、暴力(主要是枪伤)和体育/娱乐活动。损伤的最终严重程度由原发性和继发性机制决定,这些机制在受伤时开始,并在创伤后持续数月。为了减少损伤的程度,已经提出了几种治疗方法。这篇综述总结了几项研究的结果,这些研究指出细胞治疗是神经再生治疗的主要形式。间充质基质细胞(MSCs)是组织再生的重要候选者,由于其释放的生物活性因子,以及抗凋亡作用,疤痕抑制剂和血管生成作用。研究表明,间充质干细胞对损伤组织有多种作用,如对炎症环境的免疫调节、释放生物活性因子、修复轴突髓磷脂、防止神经元凋亡、神经再生等。目前使用间充质干细胞的研究旨在预防继发性损伤,促进再生,并取代受损的脊髓组织。这篇综述介绍了脊髓损伤后原发和继发事件的损伤,通常使用的治疗方法,以及针对MSCs作为组织再生策略的细胞治疗的临床前和临床结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mesenchymal stromal cells as a choice for spinal cord injury treatment
Spinal cord injury (SCI) is a serious clinical problem that affects approximately 17,500 new patients per year in the United States. The main causes of SCI are vehicle collisions, falls, violence (mainly gunshot wounds), and sports/recreational activities. The final severity of the damage results from primary and secondary mechanisms that begin at the time of injury and last for months after trauma. To reduce the extent of damage, several treatments have been proposed. This review summarizes results from several studies that have pointed to cell therapy as the main form of neuroregenerative treatment. Mesenchymal stromal cells (MSCs) are important candidates for tissue regeneration due to the release of bioactive factors, as well as antiapoptotic effects, scar inhibitors, and angiogenic effects. Studies have shown that MSCs act in various ways on injured tissue, such as immunomodulation of the inflamed environment, release of bioactive factors, restoration of axon myelin, prevention of neuronal apoptosis, and neuroregeneration. Current research using MSCs aims to prevent secondary injury, promote regeneration, and replace destroyed spinal cord tissue. This review presents information about the damage from primary and secondary events after SCI, treatments usually used, and preclinical and clinical results aiming at the cell therapy using MSCs as a tissue regeneration strategy.
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