Long-term observation of auto-cell transplantation in non-human primate reveals safety and efficiency of bone marrow stromal cell-derived Schwann cells in peripheral nerve regeneration

雪旺细胞 移植 间质细胞 再生(生物学) 病理 间充质干细胞 细胞疗法 免疫染色 骨髓 坐骨神经 周围神经损伤 生物 医学 细胞 干细胞 细胞生物学 解剖 免疫组织化学 外科 遗传学
作者
Shohei Wakao,Takuya Hayashi,Masaaki Kitada,Misaki Kohama,Dai Matsue,Noboru Teramoto,Takayuki Ose,Yutaka Itokazu,Kazuhiro Koshino,Hiroshi Watabe,Hidehiro Iida,Tomoaki Takamoto,Yasuhiko Tabata,Mari Dezawa
出处
期刊:Experimental Neurology [Elsevier]
卷期号:223 (2): 537-547 被引量:111
标识
DOI:10.1016/j.expneurol.2010.01.022
摘要

Based on their differentiation ability, bone marrow stromal cells (MSCs) are a good source for cell therapy. Using a cynomolgus monkey peripheral nervous system injury model, we examined the safety and efficacy of Schwann cells induced from MSCs as a source for auto-cell transplantation therapy in nerve injury. Serial treatment of monkey MSCs with reducing agents and cytokines induced their differentiation into cells with Schwann cell properties at a very high ratio. Expression of Schwann cell markers was confirmed by both immunocytochemistry and reverse transcription-polymerase chain reaction. Induced Schwann cells were used for auto-cell transplantation into the median nerve and followed-up for 1 year. No abnormalities were observed in general conditions. Ki67-immunostaining revealed no sign of massive proliferation inside the grafted tube. Furthermore, 18F-fluorodeoxygluocose-positron emission tomography scanning demonstrated no abnormal accumulation of radioactivity except in regions with expected physiologic accumulation. Restoration of the transplanted nerve was corroborated by behavior analysis, electrophysiology and histological evaluation. Our results suggest that auto-cell transplantation therapy using MSC-derived Schwann cells is safe and effective for accelerating the regeneration of transected axons and for functional recovery of injured nerves. The practical advantages of MSCs are expected to make this system applicable for spinal cord injury and other neurotrauma or myelin disorders where the acceleration of regeneration is expected to enhance functional recovery.
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