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Bone marrow mesenchymal stem cells repair brachial plexus injury in rabbits through ERK pathway

机译:骨髓间充质干细胞通过ERK途径修复兔子的臂丛神经损伤

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OBJECTIVE: To investigate the effect of bone marrow mesenchymal stem cells (BMSCs) on repairing brachial plexus injury in rabbits and their influence on expression of the extracellular signal-regulated kinase (ERK) pathway. MATERIALS AND METHODS: With big-ear rabbits as the objects, the BMSCs were first isolated, and the cluster of differentiation (CD)45- and CD90+ BMSCs were sorted out via flow cytometry. BMSCs were transfected with red fluorescent protein (RFP), and the transfection effect was detected. Then, the big-ear rabbits were subjected to brachial plexus root avulsion injury (BPAI) to establish injury Model group and sham-operation group (Sham group). Later, the BMSCs were transfected with RFP to construct RFP-BMSCs. The RFP-BMSCs (5×106, Treat group) and normal saline (Model group) were intraperitoneally injected, and the recovery rate of wet weight of the upper limb muscle was measured by weighing. The injured nerve tissues were embedded for hematoxylin and eosin (HE) staining and observation of pathological changes. The electrophysiological measurement of the compound muscle action potential (CMAP) on the injured side was conducted for the rabbits to be sacrificed immediately using an electromyogram instrument, and the CMAP amplitude and latency were applied to evaluate the recovery of upper limb muscle. Finally, the location of RFP-BMSCs in the nerve tissues was traced by a fluorescence microscope, and the protein expression levels of phosphorylated ERK (p-ERK) and phosphorylated mitogen-activated protein kinase (p-MAPK) in the injured nerve tissues were determined by means of Western blotting. RESULTS: Persistently expressed red fluorescence was observed in CD45- and CD90+ BMSCs sorted via flow cytometry under the fluorescence microscope, indicating that the RFP-BMSCs were constructed successfully. Compared with Sham group, Model group had a remarkably decreased recovery rate of wet muscle weight (p0.05), while Treat group exhibited a notably increased recovery rate of wet muscle weight in comparison with Model group. The CMAP amplitude was reduced markedly (p0.05), while the CMAP latency was prolonged significantly (p0.05) in Model group compared with those in Sham group. Moreover, Treat group had distinctly higher CMAP amplitude and evidently shorter CMAP latency than Model group (p0.05). It was discovered under the fluorescence microscope that RFP-BMSCs were visibly arranged on both sides of nerve fibers in Treat group. The expressions of p-MAPK and p-ERK were raised prominently in Model group in comparison with those in Sham group (p0.05), and they were lowered apparently in Treat group compared with those in Model group (p0.05). CONCLUSIONS: BMSCs can repair the impaired brachial plexus neurons and restore their physiological functions, and the protective effect of the BMSCs on the neurons is associated with the mediated MAPK/ERK pathway.
机译:目的:探讨骨髓间充质干细胞(BMSCs)对兔子修复肱骨丛损伤的影响及其对细胞外信号调节激酶(ERK)途径的影响。材料和方法:用大耳朵兔作为对象,首先分离BMSCs,通过流式细胞术分配分化(CD)45-和CD90 + BMSC的簇。用红色荧光蛋白(RFP)转染BMSC,检测转染效果。然后,大耳朵兔子受到臂丛丛根厌恶损伤(BPAI),建立伤害模型组和假手术组(假组)。后来,用RFP转染BMSC以构建RFP-BMSCs。 RFP-BMSCs(5×106,治疗组)和生理盐水(模型组)腹膜内注射,通过称重测量上肢肌肉的湿重的回收率。受伤的神经组织被嵌入苏木精和曙红(He)染色和观察病理变化。使用肌电图仪器进行植物植物的复合肌动作电位(CMAP)的电生理学测量对待处死的兔子进行,并且应用CMAP振幅和等待时间来评估上肢肌肉的恢复。最后,通过荧光显微镜追踪神经组织中RFP-BMSC的位置,磷酸化的ERK(P-ERK)和磷酸化的丝裂丝溶解的蛋白激活蛋白激酶(P-MAPK)的蛋白质表达水平是受伤神经组织的蛋白表达水平通过蛋白质印迹决定。结果:在CD45-和CD90 + BMSC中观察到持续表达的红色荧光通过荧光显微镜下的流式细胞术分选,表明RFP-BMSCs成功构建。与假小组相比,模型组具有显着降低的湿肌肉重量(P <0.05),而治疗组与模型组相比,湿肌肉重量的恢复率显着增加。与假组合相比,CMAP振幅显着降低(P <0.05),而模型组中的CMAP等待时间明显延长(P <0.05)。此外,治疗组的CMAP幅度明显较高,并且显着短的CMAP延迟而不是模型组(P <0.05)。在荧光显微镜下发现RFP-BMSCs在治疗组中神经纤维的两侧被明显地布置。与虚拟组中的那些(P <0.05)相比,在模型组中突出的P-MAPK和P-ERK的表达,与模型组(P <0.05)相比,它们明显降低治疗组。结论:BMSCs可以修复受损的臂丛丛神经元并恢复其生理功能,并且BMSCs对神经元的保护作用与介导的MAPK / ERK途径有关。

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