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Bone marrow mesenchymal stem cells in treatment of peripheral nerve injury

再生(生物学) 间充质干细胞 移植 医学 细胞外基质 周围神经损伤 干细胞疗法 神经营养因子 骨髓干细胞 干细胞 组织工程 骨髓 癌症研究 细胞生物学 病理 生物医学工程 外科 生物 内科学 受体
作者
Xiong-Fei Zou,Baozhong Zhang,Wenwei Qian,Florence Mei Cheng
出处
期刊:World Journal of Stem Cells [Baishideng Publishing Group]
卷期号:16 (8): 799-810 被引量:11
标识
DOI:10.4252/wjsc.v16.i8.799
摘要

Peripheral nerve injury (PNI) is a common neurological disorder and complete functional recovery is difficult to achieve. In recent years, bone marrow mesenchymal stem cells (BMSCs) have emerged as ideal seed cells for PNI treatment due to their strong differentiation potential and autologous transplantation ability. This review aims to summarize the molecular mechanisms by which BMSCs mediate nerve repair in PNI. The key mechanisms discussed include the differentiation of BMSCs into multiple types of nerve cells to promote repair of nerve injury. BMSCs also create a microenvironment suitable for neuronal survival and regeneration through the secretion of neurotrophic factors, extracellular matrix molecules, and adhesion molecules. Additionally, BMSCs release pro-angiogenic factors to promote the formation of new blood vessels. They modulate cytokine expression and regulate macrophage polarization, leading to immunomodulation. Furthermore, BMSCs synthesize and release proteins related to myelin sheath formation and axonal regeneration, thereby promoting neuronal repair and regeneration. Moreover, this review explores methods of applying BMSCs in PNI treatment, including direct cell transplantation into the injured neural tissue, implantation of BMSCs into nerve conduits providing support, and the application of genetically modified BMSCs, among others. These findings confirm the potential of BMSCs in treating PNI. However, with the development of this field, it is crucial to address issues related to BMSC therapy, including establishing standards for extracting, identifying, and cultivating BMSCs, as well as selecting application methods for BMSCs in PNI such as direct transplantation, tissue engineering, and genetic engineering. Addressing these issues will help translate current preclinical research results into clinical practice, providing new and effective treatment strategies for patients with PNI.
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