中国神经再生研究(英文版) ›› 2021, Vol. 16 ›› Issue (11): 2170-2176.doi: 10.4103/1673-5374.310941

• 综述:周围神经损伤修复保护与再生 • 上一篇    下一篇

间充质干细胞治疗周围神经损伤

  

  • 出版日期:2021-11-15 发布日期:2021-04-13

Mesenchymal stem cell treatment for peripheral nerve injury: a narrative review

Rui-Cheng Zhang, Wen-Qi Du, Jing-Yuan Zhang, Shao-Xia Yu, Fang-Zhi Lu, Hong-Mei Ding, Yan-Bo Cheng, Chao Ren, De-Qin Geng   

  1. 1Department of Neurology, Affiliated Hospital of Xuzhou Medical University, Xuzhou, Jiangsu Province, China; 2Department of Human Anatomy, Xuzhou Medical University, Xuzhou, Jiangsu Province, China; 3Department of Neurosurgery, The Affiliated Yantai Yuhuangding Hospital of Qingdao University, Yantai, Shandong Province, China; 4Department of Neurology, The Affiliated Yantai Yuhuangding Hospital of Qingdao University, Yantai, Shandong Province, China
  • Online:2021-11-15 Published:2021-04-13
  • Contact: De-Qin Geng, MD, gengdeqintg@126.com; Chao Ren, MD, renchaotg@126.com; Yan-Bo Cheng, PhD, 163chengyanbo@163.com.
  • Supported by:
    This work was funded by Clinical Medicine Key Project from the Social Development and Collaborative Innovation Plans in Xuzhou City of China, No. KC14SX016 (to DQG).

摘要:

Neural Regen Res间充质干细胞移植修复损伤周围神经

 

周围神经损伤是临床中常见的神经系统疾病,其预后差、致残率高,给患者带来痛苦。间充质干细胞是一种具有高度的自我更新能力和多向分化潜能的成体干细胞,近年来在周围神经损伤修复方面备受研究者青睐。虽然间充质干细胞可以分化为神经细胞,调节损伤区的微环境,加速周围神经的再生,达到理想的修复效果,但间充质干细胞分化的机制及分泌神经递质的能力仍有待进一步研究。

来自徐州医科大学附属医院的Rui-Cheng Zhang团队建立了一套检测间充质干细胞衰老程度和比例的系统,对预防或延缓间充质干细胞的衰老具有重要意义。间充质干细胞的临床应用引起了一些伦理和安全问题。在中国,对干细胞的临床应用十分重视其伦理问题和安全、有效性的问题。然而,随着全球临床干细胞试验研究项目的增多和经验的积累,干细胞移植的安全性和有效后果以及费用等问题仍是临床应用前亟待解决的问题。尽管人们认为间充质干细胞治疗周围神经损伤前景非常广阔,但怎样使效果最优化,是否可大规模用于临床尚待进一步探讨。

这项成果撰写的文章发表在《中国神经再生研究(英文版)》杂志2021 11 期。

https://orcid.org/0000-0002-2522-0312 (Yan-Bo Cheng); 

https://orcid.org/0000-0002-5418-3354 (Chao Ren);

https://orcid.org/0000-0002-3279-7056 (De-Qin Geng)

Abstract:

Peripheral nerve injuries occur as the result of sudden trauma and lead to reduced quality of life. The peripheral nervous system has an inherent capability to regenerate axons. However, peripheral nerve regeneration following injury is generally slow and incomplete that results in poor functional outcomes such as muscle atrophy. Although conventional surgical procedures for peripheral nerve injuries present many benefits, there are still several limitations including scarring, difficult accessibility to donor nerve, neuroma formation and a need to sacrifice the autologous nerve. For many years, other therapeutic approaches for peripheral nerve injuries have been explored, the most notable being the replacement of Schwann cells, the glial cells responsible for clearing out debris from the site of injury. Introducing cultured Schwann cells to the injured sites showed great benefits in promoting axonal regeneration and functional recovery. However, there are limited sources of Schwann cells for extraction and difficulties in culturing Schwann cells in vitro. Therefore, novel therapeutic avenues that offer maximum benefits for the treatment of peripheral nerve injuries should be investigated. This review focused on strategies using mesenchymal stem cells to promote peripheral nerve regeneration including exosomes of mesenchymal stem cells, nerve engineering using the nerve guidance conduits containing mesenchymal stem cells, and genetically engineered mesenchymal stem cells. We present the current progress of mesenchymal stem cell treatment of peripheral nerve injuries.

Key words: axonal regeneration, exosomes, genetic engineering, mesenchymal stem cells, neural conduit, peripheral nerve, peripheral nerve injury, peripheral nerve regeneration, Schwann cells, sudden trauma