首页> 外文期刊>Cells tissues organs >Neurotrophin-3 gene-modified Schwann cells promote TrkC gene-modified mesenchymal stem cells to differentiate into neuron-like cells in poly(lactic-acid-co-glycolic acid) multiple-channel conduit
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Neurotrophin-3 gene-modified Schwann cells promote TrkC gene-modified mesenchymal stem cells to differentiate into neuron-like cells in poly(lactic-acid-co-glycolic acid) multiple-channel conduit

机译:Neurotrophin-3基因修饰的雪旺细胞促进TrkC基因修饰的间充质干细胞在聚乳酸-乙醇酸多通道导管中分化为神经元样细胞

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摘要

Rapid progress in the field of nerve tissue engineering has opened up the way for new therapeutic strategies for spinal cord injury (SCI). Bone marrow-derived mesenchymal stem cells (MSCs) could be differentiated into neural lineages, which can be used as a potential cell source for nerve repair. Schwann cells (SCs) have been reported to support structural and functional recovery of SCI. In this study, we co-cultured neurotrophin-3 (NT-3) gene-modified SCs and NT-3 receptor tyrosine protein kinase C (TrkC) gene-modified MSCs in a three-dimensional porous poly(lactic-acid-co-glycolic acid) (PLGA) conduit with multiple channels in vitro for 14 days. Our results showed that more than 50% of the grafted MSCs were MAP2-and β-III-tubulin- positive cells, and the MSCs expressed a high level of β-III-tubulin detected by Western blotting, indicating a high rate of neuronal differentiation. Furthermore, immunostaining of PSD95 revealed the formation of a synapse-like structure, which was confirmed under electron microscopy. In conclusion, co-culture of NT-3 gene-modified SCs and TrkC gene-modified MSCs in the PLGA multiple-channeled conduit can promote MSCs' differentiation into neuron-like cells with synaptogenesis potential. Our study provides a biological basis for future application of this artificial MSCs/SCs/PLGA complex in the SCI treatment.
机译:神经组织工程领域的快速进步为脊髓损伤(SCI)的新治疗策略开辟了道路。骨髓来源的间充质干细胞(MSC)可以分化为神经谱系,可以用作神经修复的潜在细胞来源。雪旺细胞(SCs)已报道支持SCI的结构和功能恢复。在这项研究中,我们在三维多孔聚乳酸-乳酸菌共培养物中将Neurotrophin-3(NT-3)基因修饰的SC和NT-3受体酪氨酸蛋白激酶C(TrkC)基因修饰的MSC共培养。乙醇酸(PLGA)导管,体外具有多通道,持续14天。我们的结果表明,超过50%的MSC移植为MAP2和β-III-微管蛋白阳性细胞,并且通过Western印迹检测到MSC表达高水平的β-III-微管蛋白,表明神经元分化率很高。此外,PSD95的免疫染色揭示了突触样结构的形成,这在电子显微镜下得到了证实。总之,在PLGA多通道导管中NT-3基因修饰的SC和TrkC基因修饰的MSC的共培养可以促进MSC分化为具有突触形成潜力的神经元样细胞。我们的研究为这种人工MSCs / SCs / PLGA复合物在SCI治疗中的未来应用提供了生物学基础。

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