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首页> 外文期刊>Journal of Tissue Engineering >Extracellular matrix formation in self-assembled minimalistic bioactive hydrogels based on aromatic peptide amphiphiles
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Extracellular matrix formation in self-assembled minimalistic bioactive hydrogels based on aromatic peptide amphiphiles

机译:基于芳香族肽两亲物的自组装简约生物活性水凝胶的细胞外基质形成

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The hitherto inconsistency in clinical performance for engineered skin drives the current development of novel cell-scaffolding materials; one challenge is to only extract essential characteristics from the complex native ECM (extracellular matrix) and incorporate them into a scaffold with minimal complexity to support normal cell functions. This study involved small-molecule-based bioactive hydrogels produced by the co-assembly of two aromatic peptide amphiphiles: Fmoc-FF (Fluorenylmethoxycarbonyl-diphenylalanine) and Fmoc-RGD (arginine–glycine–aspartic acid). Three-dimensionally cultured human dermal fibroblasts deposited dense ECM networks including fibronectin and collagen I within the hydrogels in a 14-day culture. The fibroblasts organized the fibrous ECM and contracted the gel without differentiating into myofibroblasts. The stiffness of the cell-gel constructs increased dramatically due to ECM formation and gel contraction. This created an economical biomimetic model-scaffold to further understand skin reconstruction in vitro and supplied a design pathway to create versatile cell-scaffolds with varied bioactivities and simplicity.
机译:迄今为止,工程皮肤的临床表现上的不一致推动了新型细胞支架材料的发展。一个挑战是仅从复杂的天然ECM(细胞外基质)中提取基本特征,并将其整合到支架中,以最小的复杂度来支持正常的细胞功能。这项研究涉及由两种芳香族肽两亲物共同组装产生的基于小分子的生物活性水凝胶:Fmoc-FF(氟烯基甲氧基羰基-二苯丙氨酸)和Fmoc-RGD(精氨酸-甘氨酸-天冬氨酸)。三维培养的人类真皮成纤维细胞在14天的培养中在水凝胶中沉积了密集的ECM网络,包括纤连蛋白和胶原蛋白I。成纤维细胞组织了纤维状ECM并收缩了凝胶,而没有分化为成肌纤维细胞。由于ECM的形成和凝胶的收缩,细胞凝胶结构的刚度急剧增加。这创建了一种经济的仿生模型支架,以进一步了解体外皮肤重建,并提供了设计途径,以创建具有多种生物活性和简单性的多功能细胞支架。

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