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Self-Assembling Peptide-Polymer Hydrogels Designed From the Coiled Coil Region of Fibrin

机译:从纤维蛋白的卷曲螺旋区域设计的自组装肽聚合物水凝胶。

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摘要

Biomaterials constructed from self-assembling peptides, peptide derivatives, and peptide-polymer conjugates are receiving increasing attention as defined matrices for tissue engineering, controlled therapeutic release, and in vitro cell expansion, but many are constructed from peptide structures not typically found in the human extracellular matrix. Here we report a self-assembling biomaterial constructed from a designed peptide inspired by the coiled coil domain of human fibrin, the major protein constituent of blood clots and the provisional scaffold of wound healing. Targeted substitutions were made in the residues forming the interface between coiled coil strands for a 37-amino acid peptide from human fibrinogen to stabilize the coiled coil peptide bundle, while the solvent-exposed residues were left unchanged to provide a surface similar to that of the native protein. This peptide, which self-assembled into coiled coil dimers and tetramers, was then used to produce triblock peptide-PEG-peptide bioconjugates that self-assembled into viscoelastic hydrogel biomaterials.
机译:自组装肽,肽衍生物和肽-聚合物共轭物构成的生物材料正越来越受到人们的关注,它们被定义为用于组织工程,控制性治疗释放和体外细胞扩增的基质,但是许多是由人体中通常不存在的肽结构构成的细胞外基质。在这里,我们报告了一种自组装生物材料,该材料是由受人血纤蛋白的卷曲螺旋结构域,血凝块的主要蛋白质成分和伤口愈合的临时支架启发而设计的肽构成的。在残基中形成靶向取代基,以形成人纤维蛋白原的37个氨基酸肽段的卷曲螺旋链之间的界面,以稳定卷曲的螺旋肽束,而溶剂暴露残基则保持不变,以提供与天然蛋白质。自组装成卷曲螺旋二聚体和四聚体的该肽然后用于产生自组装成粘弹性水凝胶生物材料的三嵌段肽-PEG-肽生物缀合物。

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