首页> 美国卫生研究院文献>International Journal of Biological Sciences >Comparison of the Effects of BMSC-derived Schwann Cells and Autologous Schwann Cells on Remyelination Using a Rat Sciatic Nerve Defect Model
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Comparison of the Effects of BMSC-derived Schwann Cells and Autologous Schwann Cells on Remyelination Using a Rat Sciatic Nerve Defect Model

机译:使用大鼠坐骨神经缺损模型比较BMSC衍生的雪旺细胞和自体雪旺细胞对髓鞘再生的作用的比较

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摘要

Schwann cells (SCs) are primarily responsible for the formation of myelin sheaths, yet bone marrow mesenchymal stem cell (BMSC)-derived SCs are often used to replace autologous SCs and assist with the repair of peripheral nerve myelin sheaths. In this study, the effects of the two cell types on remyelination were compared during the repair of peripheral nerves. Methods: An acellular nerve scaffold was prepared using the extraction technique. Rat BMSCs and autologous SCs were extracted. BMSCs were induced to differentiate into BMSC-derived SCs (B-dSCs) in vitro. Seed cells (BMSCs, B-dSCs, and autologous SCs) were cocultured with nerve scaffolds (Sca) in vitro. Rats with severed sciatic nerves were used as the animal model. A composite scaffold was used to bridge the broken ends. After surgery, electrophysiology, cell tracking analyses (EdU labeling), immunofluorescence staining (myelin basic protein (MBP)), toluidine blue staining, and transmission electron microscopy were conducted to compare remyelination between the various groups and to evaluate the effects of the seed cells on myelination. One week after transplantation, only a small number of B-dSCs expressed MBP, which was far less than the proportion of MBP-expressing autologous SCs (P<0.01) but was higher than the proportion of BMSCs expressing MBP (P<0.05). Four weeks after surgery, the electrophysiology results (latency time, conductive velocity and amplitude) and various quantitative indicators of remyelination (thickness, distribution, and the number of myelinated fibers) showed that the Sca+B-dSC group was inferior to the Sca+autologous SC group (P<0.05) but was superior to the Sca+BMSC group (P<0.05). Conclusions: Within 4 weeks after surgery, the use of an acellular nerve scaffold combined with B-dSCs promotes remyelination to a certain extent, but the effect is significantly less than that of the scaffold combined with autologous SCs.
机译:雪旺细胞(SCs)主要负责髓鞘的形成,然而,骨髓间充质干细胞(BMSC)衍生的SC经常被用来代替自体SC,并协助修复周围神经髓鞘。在这项研究中,在修复周围神经时比较了两种细胞类型对髓鞘再生的作用。方法:采用提取技术制备脱细胞神经支架。提取大鼠骨髓间充质干细胞和自体SC。在体外诱导BMSC分化为BMSC衍生的SC(B-dSC)。种子细胞(BMSC,B-dSC和自体SC)在体外与神经支架(Sca)共培养。用坐骨神经切断的大鼠作为动物模型。使用复合支架桥接断端。手术后,进行电生理学,细胞追踪分析(EdU标记),免疫荧光染色(髓磷脂碱性蛋白(MBP)),甲苯胺蓝染色和透射电镜观察,以比较各组之间的髓鞘再生并评估种子细胞的作用髓鞘化。移植后一周,只有少量B-dSCs表达MBP,远低于表达MBP的自体SCs的比例(P <0.01),但高于表达MBP的BMSCs的比例(P <0.05)。手术后四周,电生理结果(潜伏时间,传导速度和幅度)以及各种髓鞘再生定量指标(厚度,分布和有髓纤维数量)显示,Sca + B-dSC组的疗效低于Sca +自体SC组(P <0.05),但优于Sca + BMSC组(P <0.05)。结论:术后4周内,脱细胞神经支架与B-dSCs联合使用可在一定程度上促进髓鞘再生,但效果明显少于自体SCs。

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