首页> 外文期刊>Journal of biomedical materials research, Part A >Acceleration of peripheral nerve regeneration using nerve conduits in combination with induced pluripotent stem cell technology and a basic fibroblast growth factor drug delivery system
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Acceleration of peripheral nerve regeneration using nerve conduits in combination with induced pluripotent stem cell technology and a basic fibroblast growth factor drug delivery system

机译:使用神经导管结合诱导性多能干细胞技术和基本的成纤维细胞生长因子药物递送系统,促进周围神经再生

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摘要

Various modifications including addition of Schwann cells or incorporation of growth factors with bioabsorbable nerve conduits have been explored as options for peripheral nerve repair. However, no reports of nerve conduits containing both supportive cells and growth factors have been published as a regenerative therapy for peripheral nerves. In the present study, sciatic nerve gaps in mice were reconstructed in the following groups: nerve conduit alone (control group), nerve conduit coated with induced pluripotent stem cell (iPSc)-derived neurospheres (iPSc group), nerve conduit coated with iPSc-derived neurospheres and basic fibroblast growth factor (bFGF)-incorporated gelatin microspheres (iPSc + bFGF group), and autograft. The fastest functional recovery and the greatest axon regeneration occurred in the autograft group, followed in order by the iPSc + bFGF group, iPSc group, and control group until 12 weeks after reconstruction. Thus, peripheral nerve regeneration using nerve conduits and functional recovery in mice was accelerated by a combination of iPSc-derived neurospheres and a bFGF drug delivery system. The combination of all three fundamental methodologies, iPSc technology for supportive cells, bioabsorbable nerve conduits for scaffolds, and a bFGF drug delivery system for growth factors, was essential for peripheral nerve regenerative therapy.
机译:作为周围神经修复的选择,已经探索了各种修饰,包括添加雪旺氏细胞或将生长因子与可生物吸收的神经导管结合。然而,尚未有关于包含支持性细胞和生长因子的神经导管作为外周神经再生疗法的报道。在本研究中,在以下组中重建了小鼠的坐骨神经间隙:单独的神经导管(对照组),被诱导多能干细胞(iPSc)衍生的神经球包被的神经导管(iPSc组),被iPSc-衍生的神经球和掺入碱性成纤维细胞生长因子(bFGF)的明胶微球(iPSc + bFGF组)和自体移植。自体移植组的功能恢复最快,轴突再生最大,其后依次为iPSc + bFGF组,iPSc组和对照组,直到重建后12周。因此,通过iPSc衍生的神经球和bFGF药物递送系统的组合,可加速使用神经导管的外周神经再生和小鼠的功能恢复。三种基本方法的结合,iPSc技术用于支持细胞,生物吸收性神经支架用于支架,bFGF药物递送系统用于生长因子,对于周围神经再生治疗至关重要。

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