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Collagen-Based Materials Modified by Phenolic Acids—A Review

机译:基于蛋白酶的酚醛酸改性材料 - 评论

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摘要

Collagen-based biomaterials constitute one of the most widely studied types of materials for biomedical applications. Low thermal and mechanical parameters are the main disadvantages of such structures. Moreover, they present low stability in the case of degradation by collagenase. To improve the properties of collagen-based materials, different types of cross-linkers have been researched. In recent years, phenolic acids have been studied as collagen modifiers. Mainly, tannic acid has been tested for collagen modification as it interacts with a polymeric chain by strong hydrogen bonds. When compared to pure collagen, such complexes show both antimicrobial activity and improved physicochemical properties. Less research reporting on other phenolic acids has been published. This review is a summary of the present knowledge about phenolic acids (e.g., tannic, ferulic, gallic, and caffeic acid) application as collagen cross-linkers. The studies concerning collagen-based materials with phenolic acids are summarized and discussed.
机译:基于胶原基的生物材料构成了生物医学应用的最广泛研究的材料类型之一。低热和机械参数是这种结构的主要缺点。此外,它们在胶原酶降解的情况下呈现低稳定性。为了改善基于胶原基材料的性质,已经研究了不同类型的交联剂。近年来,已经研究了酚醛酸作为胶原蛋白改性剂。主要是,通过强氢键与聚合物链相互作用,已经测试了单宁酸的胶原酸。与纯胶原相比,这种复合物显示抗微生物活性和改善的物理化学性质。较少关于其他酚醛酸的研究报告已发表。本综述是作为胶原蛋白交联剂的酚醛酸(例如,鞣制,毛酸,GALLIC和咖啡酸)应用的本知识概述。总结了酚醛酸的胶原基材料的研究总结和讨论。

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