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首页> 外文期刊>Journal of tissue engineering and regenerative medicine >Engineered neural tissue with Schwann cell differentiated human dental pulp stem cells: potential for peripheral nerve repair?
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Engineered neural tissue with Schwann cell differentiated human dental pulp stem cells: potential for peripheral nerve repair?

机译:用施万细胞分化的人牙髓干细胞设计的神经组织:外周神经修复的潜力?

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Abstract Despite the spontaneous regenerative capacity of the peripheral nervous system, large gap peripheral nerve injuries (PNIs) require bridging strategies. The limitations and suboptimal results obtained with autografts or hollow nerve conduits in the clinic urge the need for alternative treatments. Recently, we have described promising neuroregenerative capacities of Schwann cells derived from differentiated human dental pulp stem cells (d‐hDPSCs) in vitro . Here, we extended the in vitro assays to show the pro‐angiogenic effects of d‐hDPSCs, such as enhanced endothelial cell proliferation, migration and differentiation. In addition, for the first time we evaluated the performance of d‐hDPSCs in an in vivo rat model of PNI. Eight weeks after transplantation of NeuraWrap? conduits filled with engineered neural tissue (EngNT) containing aligned d‐hDPSCs in 15‐mm rat sciatic nerve defects, immunohistochemistry and ultrastructural analysis revealed ingrowing neurites, myelinated nerve fibres and blood vessels along the construct. Although further research is required to optimize the delivery of this EngNT, our findings suggest that d‐hDPSCs are able to exert a positive effect in the regeneration of nerve tissue in vivo . Copyright ? 2017 John Wiley & Sons, Ltd.
机译:摘要尽管外周神经系统的自发再生能力,但大型间隙周围神经损伤(PNI)需要桥接策略。在临床中使用自体移植物或空心神经管道获得的限制和次优效果促使需要替代治疗方法。最近,我们已经描述了在体外衍生自分化的人牙髓干细胞(D-HDPSCs)的施旺细胞的神经营养能力。在这里,我们扩展了体外测定以显示D-HDPSC的促血管生成效应,例如增强的内皮细胞增殖,迁移和分化。此外,我们首次评估了在PNI的体内大鼠模型中的D-HDPSCS的性能。八周移植后神经曲折?填充有工程神经组织(ENGNT)的导管含有对准的D-HDPSC,在15mm大鼠坐骨神经缺陷中,免疫组织化学和超微结构分析显示了沿着构建体的植入神经癖者,肌肉神经纤维和血管。虽然需要进一步的研究来优化该engnt的递送,但我们的研究结果表明D-HDPSC能够在体内对神经组织的再生产生积极影响。版权? 2017年John Wiley& SONS,LTD.

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