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3D Synthetic Peptide-based Architectures for the Engineering of the Enteric Nervous System

机译:用于肠神经系统工程的基于3D合成肽的体系结构

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摘要

Damage of enteric neurons and partial or total loss of selective neuronal populations are reported in intestinal disorders including inflammatory bowel diseases and necrotizing enterocolitis. To develop three-dimensional scaffolds for enteric neurons we propose the decoration of ionic-complementary self-assembling peptide (SAP) hydrogels, namely EAK or EAbuK, with bioactive motives. Our results showed the ability of EAK in supporting neuronal cell attachment and neurite development. Therefore, EAK was covalently conjugated to: RGD, (GRGDSP)4K (fibronectin), FRHRNRKGY (h-vitronectin, named HVP), IKVAV (laminin), and type 1 Insulin-like Growth Factor (IGF-1). Chemoselective ligation was applied for the SAP conjugation with IGF-1 and the other longer sequences. Freshly isolated murine enteric neurons attached and grew on all functionalized EAK but IGF-1. Cell-cell contact was evident on hydrogels enriched with (GRGDSP)4K and HVP. Moreover (GRGDSP)4K significantly increased mRNA expression of neurotrophin-3 and nerve growth factor, two trophic factors supporting neuronal survival and differentiation, whereas IKVAV decoration specifically increased mRNA expression of acetylcholinesterase and choline acetyltransferase, genes involved in synaptic communication between cholinergic neurons. Thus, decorated hydrogels are proposed as injectable scaffolds to support in loco survival of enteric neurons, foster synaptic communication, or drive the differentiation of neuronal subtypes.
机译:在肠道疾病中,包括炎症性肠病和坏死性小肠结肠炎,据报导肠神经元受损和部分或全部选择性神经元丧失。为了开发用于肠神经元的三维支架,我们提出了具有生物活性动机的离子互补自组装肽(SAP)水凝胶,即EAK或EAbuK的装饰。我们的结果显示了EAK支持神经元细胞附着和神经突发育的能力。因此,EAK共价缀合至:RGD,(GRGDSP)4K(纤连蛋白),FRHRNRKGY(h-玻连蛋白,命名为HVP),IKVAV(粘蛋白)和1型胰岛素样生长因子(IGF-1)。化学选择性连接用于与IGF-1和其他更长序列的SAP偶联。新鲜分离的鼠肠神经元附着在所有功能化的EAK上,但在IGF-1上生长。在富含(GRGDSP)4K和HVP的水凝胶上,细胞间的接触是显而易见的。此外,(GRGDSP)4K显着增加了支持神经元存活和分化的两个营养因子Neurotrophin-3和神经生长因子的mRNA表达,而IKVAV修饰则特异性增加了乙酰胆碱酯酶和胆碱乙酰转移酶的mRNA表达,这两个基因与胆碱能神经元之间的突触通讯有关。因此,装饰性水凝胶被提议作为可注射支架,以支持肠神经元的局部存活,促进突触通讯或驱动神经元亚型的分化。

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