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首页> 外文期刊>Nanoscale >Synergistic effects of dual-presenting VEGF- and BDNF-mimetic peptide epitopes from self-assembling peptide hydrogels on peripheral nerve regeneration
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Synergistic effects of dual-presenting VEGF- and BDNF-mimetic peptide epitopes from self-assembling peptide hydrogels on peripheral nerve regeneration

机译:dual-presenting VEGF和协同效应BDNF-mimetic肽抗原表位从自组装多肽水凝胶在外围神经再生

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摘要

The crosstalk between vascularization and nerve regeneration in the peripheral nervous system has recently been suggested to play an important role in the treatment of peripheral nerve injury. Regenerative strategies via synergistic delivery of multiple biochemical cues have received growing attention, especially the combination of pro-angiogenic factors and neurotrophic factors. Here we developed a self-assembling peptide nanofiber hydrogel dual-functionalized with vascular endothelial growth factor (VEGF)- and brain-derived neurotrophic factor (BDNF)-mimetic peptide epitopes for peripheral nerve reconstruction. It could simultaneously present VEGF- and BDNF-mimetic peptide epitopes and provides a three-dimensional (3D) neurovascular microenvironment for endothelial cell and neural cell growth. In vitro cellular experiments showed that the functionalized peptide hydrogel scaffold effectively promoted the pro-myelination of Schwann cell, as well as the adhesion and proliferation of endothelial cell compared with scaffolds presenting VEGF- or BDNF-mimetic peptide epitope alone. When implanted in a rat model to bridge a critical-size sciatic nerve gap in vivo, the functionalized peptide hydrogel significantly improved the number of newly formed blood vessels, the density of regenerating axons, the morphometric analysis of the regenerated muscles and the electrophysiological findings, indicating the synergistic effect of the two bioactive motifs on peripheral nerve regeneration. Collectively, constructing an artificial neurovascular microenvironment in the lesion area by using the functionalized self-assembling peptide nanofiber hydrogel may have a great potential for promoting nerve tissue engineering and regeneration in other tissues.
机译:形成血管和神经之间的串扰在周围神经系统再生最近建议发挥重要作用在周围神经损伤的治疗。通过协同交付再生策略多种生化信号已经收到越来越多的关注,尤其是的结合pro-angiogenic因素和神经营养因子。我们开发了一个自组装肽纳米纤维水凝胶dual-functionalized与血管内皮生长因子(VEGF)和脑源性神经营养因子(BDNF)模拟为周围神经多肽抗原表位重建。VEGF -和BDNF-mimetic肽抗原表位提供一个三维(3 d)神经与血管的内皮细胞和神经的微环境细胞生长。功能化多肽水凝胶支架有效地促进了pro-myelination许旺细胞粘附和内皮细胞与扩散支架呈现VEGF或BDNF-mimetic多肽抗原决定基。模型桥临界大小的坐骨神经的差距体内,功能化多肽水凝胶显著提高新成立的数量血管再生轴突的密度,形态学分析的再生肌肉和电生理学的研究成果,说明两者的协同效应在周围神经生物活性图案再生。人工血管微环境通过使用功能化病变区域自组装多肽纳米纤维水凝胶有巨大的潜力促进神经组织吗在其他组织工程和再生。

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