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Bio-inspired self-healing structural color hydrogel

机译:生物启发的自修复结构彩色水凝胶

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摘要

Biologically inspired self-healing structural color hydrogels were developed by adding a glucose oxidase (GOX)- and catalase (CAT)-filled glutaraldehyde cross-linked BSA hydrogel into methacrylated gelatin (GelMA) inverse opal scaffolds. The composite hydrogel materials with the polymerized GelMA scaffold could maintain the stability of an inverse opal structure and its resultant structural colors, whereas the protein hydrogel filler could impart self-healing capability through the reversible covalent attachment of glutaraldehyde to lysine residues of BSA and enzyme additives. A series of unprecedented structural color materials could be created by assembling and healing the elements of the composite hydrogel. In addition, as both the GelMA and the protein hydrogels were derived from organisms, the composite materials presented high biocompatibility and plasticity. These features of self-healing structural color hydrogels make them excellent functional materials for different applications.
机译:通过将葡萄糖氧化酶(GOX)和过氧化氢酶(CAT)填充的戊二醛交联BSA水凝胶添加到甲基丙烯酸明胶(GelMA)反蛋白石支架中,开发出了具有生物学启发的自修复结构彩色水凝胶。具有聚合的GelMA支架的复合水凝胶材料可以保持蛋白石反面结构的稳定性以及由此产生的结构颜色,而蛋白质水凝胶填料可以通过戊二醛与BSA赖氨酸残基和酶添加剂的可逆共价结合来赋予自愈能力。 。通过组装和修复复合水凝胶的元素,可以创建一系列前所未有的结构彩色材料。此外,由于GelMA和蛋白质水凝胶均来自生物体,因此复合材料具有很高的生物相容性和可塑性。自修复结构彩色水凝胶的这些特征使其成为用于不同应用的出色功能材料。

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