首页> 美国卫生研究院文献>Acta Pharmacologica Sinica >Multichannel polymer scaffold seeded with activated Schwann cells and bone mesenchymal stem cells improves axonal regeneration and functional recovery after rat spinal cord injury
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Multichannel polymer scaffold seeded with activated Schwann cells and bone mesenchymal stem cells improves axonal regeneration and functional recovery after rat spinal cord injury

机译:活化雪旺细胞和骨间充质干细胞接种的多通道聚合物支架可改善大鼠脊髓损伤后的轴突再生和功能恢复

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摘要

The adult mammalian CNS has a limited capacity to regenerate after traumatic injury. In this study, a combinatorial strategy to promote axonal regeneration and functional recovery after spinal cord injury (SCI) was evaluated in adult rats. The rats were subjected to a complete transection in the thoracic spinal cord, and multichannel scaffolds seeded with activated Schwann cells (ASCs) and/or rat bone marrow-derived mesenchymal stem cells (MSCs) were acutely grafted into the 3-mm-wide transection gap. At 4 weeks post-transplantation and thereafter, the rats receiving scaffolds seeded with ASCs and MSCs exhibited significant recovery of nerve function as shown by the Basso, Beattie and Bresnahan (BBB) score and electrophysiological test results. Immunohistochemical analyses at 4 and 8 weeks after transplantation revealed that the implanted MSCs at the lesion/graft site survived and differentiated into neuron-like cells and co-localized with host neurons. Robust bundles of regenerated fibers were identified in the lesion/graft site in the ASC and MSC co-transplantation rats, and neurofilament 200 (NF) staining confirmed that these fibers were axons. Furthermore, myelin basic protein (MBP)-positive myelin sheaths were also identified at the lesion/graft site and confirmed via electron microscopy. In addition to expressing mature neuronal markers, sparse MSC-derived neuron-like cells expressed choline acetyltransferase (ChAT) at the injury site of the ASC and MSC co-transplantation rats. These findings suggest that co-transplantation of ASCs and MSCs in a multichannel polymer scaffold may represent a novel combinatorial strategy for the treatment of spinal cord injury.
机译:成年哺乳动物中枢神经系统在受伤后的再生能力有限。在这项研究中,评估了成年大鼠脊髓损伤(SCI)后促进轴突再生和功能恢复的组合策略。大鼠在胸脊髓中完全横断,并将接种了活化雪旺细胞(ASC)和/或大鼠骨髓间充质干细胞(MSC)的多通道支架急性移植到3毫米宽的横断中间隙。移植后4周及其后,接受BSC,Beattie和Bresnahan(BBB)评分和电生理学测试结果显示,接受接种ASC和MSC的支架的大鼠表现出明显的神经功能恢复。移植后第4和第8周的免疫组织化学分析显示,在病变/移植部位植入的MSC存活并分化为神经元样细胞,并与宿主神经元共定位。在ASC和MSC共移植大鼠的病变/移植部位鉴定出了坚固的再生纤维束,并且神经丝200(NF)染色证实了这些纤维是轴突。此外,在病变/移植部位还鉴定出髓鞘碱性蛋白(MBP)阳性的髓鞘,并通过电子显微镜确认。除了表达成熟的神经元标记,稀疏MSC衍生的神经元样细胞还在ASC和MSC共移植大鼠的损伤部位表达胆碱乙酰转移酶(ChAT)。这些发现表明,在多通道聚合物支架中共移植ASCs和MSCs可能代表一种新型的联合治疗脊髓损伤的策略。

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