a Department of Plastic and Reconstructive Surgery, Vascularized Composite Allotransplantation Laboratory , Johns Hopkins Hospital , Baltimore , Maryland.
b The Solomon H Snyder Department of Neuroscience , Johns Hopkins University , Baltimore , Maryland.
Expert Opin Ther Targets. 2018 Dec;22(12):1009-1016. doi: 10.1080/14728222.2018.1539706. Epub 2018 Oct 28.
Stem cell therapy for peripheral nerve repair is a rapidly evolving field in regenerative medicine. Although most studies to date have investigated stem cells originating from bone marrow or adipose, skeletal muscle has recently been recognized as an abundant and easily accessible source of stem cells. Muscle-derived stem cells (MDSCs) are a diverse population of multipotent cells with pronounced antioxidant and regenerative capacity. Areas covered: The current literature on the various roles MDSCs serve within the micro- and macro-environment of nerve injury. Furthermore, the exciting new research that is establishing MDSC-cellular therapy as an important therapeutic modality to improve peripheral nerve regeneration. Expert opinion: MDSCs are a promising therapeutic agent for the repair of peripheral nerves; MDSCs not only undergo gliogenesis and angiogenesis, but they also orchestrate larger pro-regenerative host responses. However, the isolation, transformation, and in-vivo behavior of MDSCs require further evaluation prior to clinical application.
干细胞疗法在外周神经修复中是再生医学中一个快速发展的领域。尽管迄今为止的大多数研究都集中在来源于骨髓或脂肪的干细胞上,但骨骼肌最近已被认为是丰富且易于获取的干细胞来源。肌源性干细胞(MDSCs)是一种具有明显抗氧化和再生能力的多能细胞的多样化群体。涵盖领域:目前关于 MDSCs 在神经损伤的微环境和宏环境中发挥的各种作用的文献。此外,还有令人兴奋的新研究将 MDSC 细胞疗法确立为改善外周神经再生的重要治疗方式。专家意见:MDSCs 是修复周围神经的有前途的治疗剂;MDSCs 不仅经历神经胶质形成和血管生成,而且还协调更大的促再生宿主反应。然而,在临床应用之前,需要进一步评估 MDSCs 的分离、转化和体内行为。