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[基于细胞疗法的周围神经再生的未来展望与挑战]

[Future views and challenges to the peripheral nerve regeneration by cell based therapy].

作者信息

Dezawa Mari

机构信息

Department of Anatomy and Neurobiology, Kyoto University Graduate School of Medicine.

出版信息

Rinsho Shinkeigaku. 2005 Nov;45(11):877-9.

Abstract

Chronic degenerative diseases and traumatic injuries are responsible for a decline in neuronal function. Cell transplantation is one of the strategies with potential for treatment of such neural disorders, and many kinds of cells including embryonic stem cells and neural stem cells have been considered as candidates for transplantation therapy. Bone marrow stromal cells (MSCs) have great potential as therapeutic agents since they are easy to isolate and can be expanded from patients without serious ethical and technical problems. We found a method for the highly efficient and specific induction of functional neurons, skeletal muscle cells and Schwann cells from both rat and human MSCs. Induced neurons and Schwann cells were transplanted to animal models of Parkinson's disease, stroke, peripheral nerve injury, and spinal cord injury, resulting in the successful integration of transplanted cells and improvement in behavior of transplanted animals. Induced skeletal muscle cells differentiate into muscle fibers upon transplantation into degenerated muscles of rats and mdx-nude mice. The induced population contained Pax7-positive cells that contribute to subsequent regeneration of muscle upon repetitive damage without additional transplantation of cells. Here we focus on the respective potentials of MSC-derived cells and discuss the possibility of clinical application in neurodegenerative and muscle degenerative diseases.

摘要

慢性退行性疾病和创伤性损伤会导致神经元功能下降。细胞移植是治疗此类神经疾病的潜在策略之一,包括胚胎干细胞和神经干细胞在内的多种细胞都被视为移植治疗的候选细胞。骨髓基质细胞(MSCs)作为治疗剂具有巨大潜力,因为它们易于分离,并且可以从患者体内扩增,不存在严重的伦理和技术问题。我们发现了一种从大鼠和人骨髓基质细胞高效特异性诱导功能性神经元、骨骼肌细胞和雪旺细胞的方法。将诱导产生的神经元和雪旺细胞移植到帕金森病、中风、周围神经损伤和脊髓损伤的动物模型中,移植细胞成功整合,移植动物的行为得到改善。诱导产生的骨骼肌细胞移植到大鼠和mdx - 裸鼠的退化肌肉中后会分化为肌纤维。诱导群体中含有Pax7阳性细胞,在反复损伤后有助于肌肉的后续再生,而无需额外的细胞移植。在这里,我们重点关注骨髓基质细胞衍生细胞的各自潜力,并讨论其在神经退行性疾病和肌肉退行性疾病临床应用的可能性。

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