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首页> 外文期刊>Biotechnology Journal: Healthcare,Nutrition,Technology >Bioinspired Load-Bearing Hydrogel Based on Engineered Sea Anemone Skin-Derived Collagen-Like Protein
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Bioinspired Load-Bearing Hydrogel Based on Engineered Sea Anemone Skin-Derived Collagen-Like Protein

机译:基于工程海葵皮肤衍生的胶原蛋白样蛋白的生物悬浮的承载水凝胶

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With the help of recombinant DNA technology, many protein candidates have been investigated and engineered for biomaterial applications. Particularly, several repeat sequences with unique secondary structures have been selected as minimal building blocks for biosynthesis to improve the mechanical properties of biomaterials. However, most of these structural proteins have been limited to silk, elastin, collagen, and resilin for decades. In the present work, new repeat sequence found in sea anemone are characterized and biosynthesized into a recombinant protein (named anegen) for potential use as a load-bearing biomaterial. Because its repeat sequence unit has a unique polyproline II structure, which is prevalently found in the triple-helix of collagen, it is assumed to be a promising structural protein candidate that can provide conformational flexibility and elasticity. Because anegen has approximate to 10% tyrosine residues, inspiration is taken from di-tyrosine crosslinking in the hinge structures of insects, which can be initiated by light activation. It is found that the anegen hydrogel shows higher mechanical properties than a gelatin hydrogel and endures a compression series without deformation. Moreover, the mechanical properties of the anegen hydrogel are controllable through different crosslinking conditions in a wide range of material applications. Importantly, the anegen hydrogel exhibited suitable cell retainability and cell morphology as an implantable biomaterial. Thus, based on its mechanical properties and biocompatibility, the anegen hydrogel can be used as a potential load-bearing and cell-loading scaffolding biomaterial in the tissue and biomedical engineering fields.
机译:在重组DNA技术的帮助下,已经研究了许多蛋白质候选物用于生物材料应用。特别地,已经选择了具有独特二次结构的几种重复序列作为生物合成的最小构建块,以改善生物材料的机械性能。然而,大多数结构蛋白已限于丝绸,弹性蛋白,胶原蛋白和植物植物数十年。在本作的工作中,在海葵中发现的新重复序列的特征和生物合成成重组蛋白(命名为ANEGEN),以潜在用作承载的生物材料。因为其重复序列单元具有独特的多脯氨酸II结构,其在胶原的三螺旋中普遍存在,所以假设是可以提供构象柔韧性和弹性的承诺结构蛋白候选。因为Anegen具有近10%酪氨酸残基的近似,因此从昆虫铰链结构中的二酪氨酸交联取出的灵感,这可以通过光活化引发。发现Anegen Hyder凝胶显示比明胶水凝胶更高的机械性能,并且持续压缩系列而不变形。此外,通过在各种材料应用中,通过不同的交联条件控制Anegen水凝胶的机械性能。重要的是,Anegen Hydrogel表现出合适的细胞保留性和细胞形态作为可植入的生物材料。因此,基于其机械性能和生物相容性,ANEGEN水凝胶可以用作组织和生物医学工程领域的潜在承载和细胞加载脚手架生物材料。

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