Bone Marrow Derived Cells Mediated Regulation of Schwann Cells Proliferation and Migration In vitro

Jun Yan, Min Wu
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Abstract

Schwann cells (SCs) are the unique glial cells in the peripheral nerve. After peripheral nerve injury, SCs change their morphology, function, and play a new role as repair cells, through this process, factors that enhance SCs proliferation and promote SCs migration will benefit nerve regeneration and functional recovery. Bone marrow-derived cells (BMDCs), which has been proved to offer several regenerative benefits for tissue and organ injuries. However, whether BMDCs support nerve regeneration by affect the proliferation and migration of SCs, remains unclear. Here, we taken BMDCs co-cultured with nerve segments, and then investigated the proliferation and migration of SCs In vitro. Results demonstrated that BMDCs can enhance the proliferation of SCs, and then promoted SCs migration, forming Bungner’s brand-liked structure In vitro. These finding provide a potential new method for repair of injured peripheral nerves in clinical.
骨髓源性细胞介导的雪旺细胞增殖和迁移的体外调控
雪旺细胞(SCs)是周围神经中独特的胶质细胞。周围神经损伤后,SCs改变形态、功能,发挥修复细胞的新作用,通过这一过程,增强SCs增殖、促进SCs迁移的因子有利于神经再生和功能恢复。骨髓源性细胞(bmdc)已被证明对组织和器官损伤具有多种再生益处。然而,BMDCs是否通过影响SCs的增殖和迁移来支持神经再生尚不清楚。本研究采用神经节段共培养BMDCs,在体外研究SCs的增殖和迁移。结果表明,BMDCs能够促进SCs的增殖,进而促进SCs的迁移,在体外形成Bungner’s brand- likestructure。这些发现为临床修复周围神经损伤提供了一种可能的新方法。
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