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首页> 外文期刊>Biomaterials Science >Promotion of neurite outgrowth by rationally designed NGF-beta binding peptide nanofibers
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Promotion of neurite outgrowth by rationally designed NGF-beta binding peptide nanofibers

机译:通过合理设计的NGF-Beta结合肽纳米纤维促进神经突幼虫

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Promotion of neurite outgrowth is an important limiting step for regeneration in nerve injury and depends strongly on the local expression of nerve growth factor (NGF). The rational design of bioactive materials is a promising approach for the development of novel therapeutic methods for nerve regeneration, and biomaterials capable of presenting NGF to nerve cells are especially suitable for this purpose. In this study, we show bioactive peptide amphiphile (PA) nanofibers capable of promoting neurite outgrowth by displaying high density binding epitopes for NGF. A high-affinity NGF-binding sequence was identified by phage display and combined with a beta-sheet forming motif to produce a self-assembling PA molecule. The bioactive nanofiber had higher affinity for NGF compared to control nanofibers and in vitro studies revealed that the NGF binding peptide amphiphile nanofibers (NGFB-PA nanofiber) significantly promote the neurite outgrowth of PC-12 cells. In addition, the nanofibers induced differentiation of PC-12 cells into neuron-like cells by enhancing NGF/high-activity NGF receptor (TrkA) interactions and activating MAPK pathway elements. The NGFB-PA nanofiber was further shown as a promising material to support axonal outgrowth from primary sensory neurons. These materials will pave the way for the development of new therapeutic agents for peripheral nervous system injuries.
机译:Neureate Forgrowth的促进是神经损伤中再生的重要限制步骤,并且强烈依赖于神经生长因子(NGF)的局部表达。生物活性材料的理性设计是开发新的治疗方法的神经再生治疗方法,并且能够呈现NGF至神经细胞的生物材料尤其适用于此目的。在这项研究中,我们通过显示NGF的高密度结合表位,显示生物活性肽两亲(PA)纳米纤维能够通过显示高密度结合表位而能够促进神经沸石产物。通过噬菌体显示器鉴定高亲和力NGF结合序列并与β-片材形成基序结合以产生自组装PA分子。与对照纳米纤维和体外研究相比,生物活性纳米纤维对NGF具有更高的亲和力,并且在体外研究表明,NGF结合肽两亲亚纤维(NGFB-PA纳米纤维)显着促进了PC-12细胞的神经突生出。此外,纳米纤维通过增强NGF /高活性NGF受体(TRKA)相互作用和激活MAPK途径元件,诱导PC-12细胞对神经元样细胞的分化。 NGFB-PA纳米纤维进一步示出为有希望的材料,以支持原发性感觉神经元的轴突越来越多。这些材料将为外周神经系统损伤的新治疗剂的发展铺平。

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