首页> 外文期刊>The Journal of Clinical Investigation: The Official Journal of the American Society for Clinical Investigation >Human muscle-derived stem/progenitor cells promote functional murine peripheral nerve regeneration
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Human muscle-derived stem/progenitor cells promote functional murine peripheral nerve regeneration

机译:人肌肉来源的干细胞/祖细胞促进功能性小鼠周围神经再生

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摘要

Peripheral nerve injuries and neuropathies lead to profound functional deficits. Here, we have demonstrated that muscle-derived stem/progenitor cells (MDSPCs) isolated from adult human skeletal muscle (hMDSPCs) can adopt neuronal and glial phenotypes in vitro and ameliorate a critical-sized sciatic nerve injury and its associated defects in a murine model. Transplanted hMDSPCs surrounded the axonal growth cone, while hMDSPCs infiltrating the regenerating nerve differentiated into myelinating Schwann cells. Engraftment of hMDSPCs into the area of the damaged nerve promoted axonal regeneration, which led to functional recovery as measured by sustained gait improvement. Furthermore, no adverse effects were observed in these animals up to 18 months after transplantation. Following hMDSPC therapy, gastrocnemius muscles from mice exhibited substantially less muscle atrophy, an increase in muscle mass after denervation, and reorganization of motor endplates at the postsynaptic sites compared with those from PBS-treated mice. Evaluation of nerve defects in animals transplanted with vehicle-only or myoblast-like cells did not reveal histological or functional recovery. These data demonstrate the efficacy of hMDSPC-based therapy for peripheral nerve injury and suggest that hMDSPC transplantation has potential to be translated for use in human neuropathies.
机译:周围神经损伤和神经病变会导致严重的功能缺陷。在这里,我们已经证明,从成人骨骼肌 (hMDSPCs) 中分离的肌肉来源的干细胞/祖细胞 (MDSPCs) 可以在体外采用神经元和神经胶质表型,并改善小鼠模型中临界大小的坐骨神经损伤及其相关缺陷。移植的 hMDSPC 围绕轴突生长锥,而浸润再生神经的 hMDSPC 分化为髓鞘雪旺细胞。将 hMDSPC 植入受损神经区域可促进轴突再生,从而通过持续步态改善来衡量功能恢复。此外,在移植后18个月内,这些动物没有观察到不良反应。在hMDSPC治疗后,与PBS治疗的小鼠相比,小鼠的腓肠肌表现出更少的肌肉萎缩,去神经支配后肌肉质量的增加以及突触后部位的运动终板重组。对移植仅载体细胞或成肌细胞样细胞的动物的神经缺陷的评估未显示组织学或功能恢复。这些数据证明了基于 hMDSPC 的治疗对周围神经损伤的疗效,并表明 hMDSPC 移植有可能转化为人类神经病变。

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