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首页> 外文期刊>Journal of tissue engineering and regenerative medicine >Regenerative effects of human embryonic stem cell-derived neural crest cells for treatment of peripheral nerve injury
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Regenerative effects of human embryonic stem cell-derived neural crest cells for treatment of peripheral nerve injury

机译:人胚胎干细胞衍生神经嵴细胞治疗外周神经损伤的再生效果

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Surgical intervention is the current gold standard treatment following peripheral nerve injury. However, this approach has limitations, and full recovery of both motor and sensory modalities often remains incomplete. The development of artificial nerve grafts that either complement or replace current surgical procedures is therefore of paramount importance. An essential component of artificial grafts is biodegradable conduits and transplanted cells that provide trophic support during the regenerative process. Neural crest cells are promising support cell candidates because they are the parent population to many peripheral nervous system lineages. In this study, neural crest cells were differentiated from human embryonic stem cells. The differentiated cells exhibited typical stellate morphology and protein expression signatures that were comparable with native neural crest. Conditioned media harvested from the differentiated cells contained a range of biologically active trophic factors and was able to stimulate in vitro neurite outgrowth. Differentiated neural crest cells were seeded into a biodegradable nerve conduit, and their regeneration potential was assessed in a rat sciatic nerve injury model. A robust regeneration front was observed across the entire width of the conduit seeded with the differentiated neural crest cells. Moreover, the up-regulation of several regeneration-related genes was observed within the dorsal root ganglion and spinal cord segments harvested from transplanted animals. Our results demonstrate that the differentiated neural crest cells are biologically active and provide trophic support to stimulate peripheral nerve regeneration. Differentiated neural crest cells are therefore promising supporting cell candidates to aid in peripheral nerve repair.
机译:外周神经损伤后的手术干预是目前的黄金标准治疗。然而,这种方法具有局限性,并且对电机和感觉方式的全部恢复通常仍然不完整。因此,人工神经移植物的开发,其补充或更换电流手术程序是至关重要的。人造移植物的基本组分是可生物降解的导管和移植细胞,其在再生过程中提供营养载体。神经嵴细胞是有前途的支持细胞候选者,因为它们是许多外周神经系统谱系的父母种群。在该研究中,神经嵴细胞与人胚胎干细胞的分化。分化的细胞表现出与天然神经嵴相当的典型星状形态和蛋白表达签名。从分化的细胞收获的条件介质含有一系列生物活性营养因子,并且能够刺激体外神经突的过度生长。将分化的神经嵴细胞接种成可生物降解的神经导管,并在大鼠坐骨神经损伤模型中评估它们的再生电位。在用分化的神经顶部细胞接种的导管的整个宽度上观察到鲁棒再生前面。此外,在从移植动物收获的背根神经节和脊髓段内观察到若干再生相关基因的上调。我们的结果表明,分化的神经嵴细胞是生物活性的,并提供营养载体以刺激周围神经再生。因此,分化的神经顶部细胞是有前途的支持细胞候选者,以帮助外周神经修复。

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