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首页> 外文期刊>CNS neuroscience & therapeutics. >Polypyrrole/polylactic acid nanofibrous scaffold cotransplanted with bone marrow stromal cells promotes the functional recovery of spinal cord injury in rats
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Polypyrrole/polylactic acid nanofibrous scaffold cotransplanted with bone marrow stromal cells promotes the functional recovery of spinal cord injury in rats

机译:聚吡咯/聚乳酸纳米纤维支架与骨髓基质细胞共移植促进大鼠脊髓损伤的功能恢复

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Aims The objective of this study was to analyze the efficacy of polypyrrole/polylactic acid (PPy/PLA) nanofibrous scaffold cotransplanted with bone marrow stromal cells (BMSCs) in promoting the functional recovery in a rat spinal cord injury (SCI). Methods Female Sprague‐Dawley rats were randomly divided into three groups (n?=?18/group): control group, PPy/PLA group, and PPy/PLA/BMSCs group. The SCI was induced in all rats. Consequently, rats in PPy/PLA/BMSCs group were transplanted with 1?×?10sup5/sup BMSCs after implantation of PPy/PLA, while those in the PPy/PLA group were implanted with PPy/PLA only; no implantation was performed in the control group. Six weeks after surgery, immunofluorescence microscopy, electron microscope, and polymerase chain reaction (PCR) techniques were performed to assess the changes in the injured spinal cord tissues. Results Electrophysiology and locomotor function testing suggested that PPy/PLA nanofibrous scaffold cotransplanted with BMSCs could promote the functional recovery of the spinal cord. Six weeks after the operation, lower amount of scar tissue was found in the PPy/PLA group compared with the control group. Abundant neurofilament (NF) and neuron‐specific marker (NeuN) positive staining, and myelin formations were detected in the injured area. In addition, the transplantation of BMSCs not only improved the efficacy of PPy/PLA but also managed to survive well and was differentiated into neural and neuroglial cells. Conclusions The implantation of PPy/PLA nanofibrous scaffold and BMSCs has a great potential to restore the electrical conduction and to promote functional recovery by inhibiting the scar tissue formation, promoting axon regeneration, and bridging the gap lesion.
机译:目的本研究的目的是分析与骨髓基质细胞(BMSCs)共移植的聚吡咯/聚乳酸(PPy / PLA)纳米纤维支架在促进大鼠脊髓损伤(SCI)中的功能恢复中的功效。方法将雌性Sprague-Dawley大鼠随机分为三组(n = 18)/组:对照组,PPy / PLA组和PPy / PLA / BMSCs组。在所有大鼠中均诱导出SCI。因此,PPy / PLA / BMSCs组的大鼠在植入PPy / PLA后移植了1?×?10 5 BMSCs,而PPy / PLA组的大鼠仅移植了PPy / PLA。对照组未进行植入。手术六周后,进行了免疫荧光显微镜,电子显微镜和聚合酶链反应(PCR)技术,以评估受损脊髓组织的变化。结果电生理和运动功能测试表明,与骨髓间充质干细胞共移植的PPy / PLA纳米纤维支架可以促进脊髓的功能恢复。术后六周,与对照组相比,PPy / PLA组的瘢痕组织减少。在受伤区域检测到丰富的神经丝(NF)和神经元特异性标记(NeuN)阳性染色以及髓磷脂形成。此外,骨髓间充质干细胞的移植不仅提高了PPy / PLA的功效,而且还能够很好地存活,并分化为神经胶质细胞和神经胶质细胞。结论PPy / PLA纳米纤维支架和BMSCs的植入通过抑制瘢痕组织形成,促进轴突再生和弥合间隙病变,具有恢复电导和促进功能恢复的巨大潜力。

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