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间充质干细胞作为雪旺细胞的来源:它们在周围神经再生中的预期用途。

Mesenchymal stem cells as a source of Schwann cells: their anticipated use in peripheral nerve regeneration.

作者信息

Wakao Shohei, Matsuse Dai, Dezawa Mari

出版信息

Cells Tissues Organs. 2014;200(1):31-41. doi: 10.1159/000368188. Epub 2015 Mar 4.

Abstract

Schwann cells form myelin, sustain axons and provide the microenvironment for nerve fibers, thereby playing a key role in the peripheral nervous system (PNS). Schwann cells also provide support for the damaged PNS by producing factors that strongly promote axonal regrowth and contribute to remyelination, which is crucial for the recovery of neural function. These advantages are not confined to the PNS and also apply to the central nervous system. Many diseases, including peripheral nerve injury, neuropathy, multiple sclerosis and spinal cord injury, are targets for Schwann cell therapy. The collection of Schwann cells, however, causes new damage to other peripheral nerve segments. Furthermore, the doubling time of Schwann cells is not very fast, and thus adequate amounts of Schwann cells for clinical use cannot be collected within a reasonable amount of time. Mesenchymal stem cells, which are highly proliferative, are easily accessible from various types of mesenchymal tissues, such as the bone marrow, umbilical cord and fat tissue. Because these cells have the ability to cross oligolineage boundaries between mesodermal to ectodermal lineages, they are capable of differentiating into Schwann cells with step-by-step cytokine stimulation. In this review, we summarize the properties of mesenchymal stem cell-derived Schwann cells, which are comparable to authentic Schwann cells, and discuss future perspectives.

摘要

施万细胞形成髓鞘,维持轴突并为神经纤维提供微环境,从而在周围神经系统(PNS)中发挥关键作用。施万细胞还通过产生强烈促进轴突再生并有助于髓鞘再生的因子,为受损的PNS提供支持,这对神经功能的恢复至关重要。这些优势不仅限于PNS,也适用于中枢神经系统。许多疾病,包括周围神经损伤、神经病变、多发性硬化症和脊髓损伤,都是施万细胞治疗的目标。然而,施万细胞的采集会对其他周围神经节段造成新的损伤。此外,施万细胞的倍增时间不是很快,因此无法在合理时间内采集到足够数量用于临床的施万细胞。间充质干细胞具有高度增殖性,易于从各种间充质组织中获取,如骨髓、脐带和脂肪组织。由于这些细胞具有跨越中胚层到外胚层谱系之间的寡谱系界限的能力,它们能够在逐步的细胞因子刺激下分化为施万细胞。在这篇综述中,我们总结了间充质干细胞来源的施万细胞的特性,这些特性与真正的施万细胞相当,并讨论了未来的前景。

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