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多酚介导的壳聚糖自组装构建高强度和高韧性的完全天然资源水凝胶。

Polyphenol-mediated chitin self-assembly for constructing a fully naturally resourced hydrogel with high strength and toughness.

机构信息

College of Chemistry and Molecular Sciences, Hubei Engineering Center of Natural Polymer-based Medical Materials, and Key Laboratory of Biomedical Polymers of Ministry of Education, Wuhan University, Wuhan 430072, China.

出版信息

Mater Horiz. 2021 Aug 31;8(9):2503-2512. doi: 10.1039/d1mh00878a.

Abstract

Natural polymeric hydrogels are expected to serve as potential structural biomaterials, but, most of them are usually soft and fragile. Herein, a polyphenol-mediated self-assembly (PMS) strategy was developed to significantly enhance the chitin hydrogel strength and toughness at the same time, which is distinctive from the rigid-soft double-network energy-dissipation approaches. A polyphenol (tannic acid, TA as a model compound) was introduced to compete with the chitin chains self-assembly for simultaneously forming the weak chitin-TA and strong chitin-chitin networks. High-density noncovalent crosslinking involving hydrogen bonding and ionic and hydrophobic interactions endowed the PMS hydrogels with a high modulus and strength. The relatively weaker chitin-TA crosslinking acted as the sacrificial bonds to dissipate the energy, leading to the high toughness. The mechanical properties of the PMS chitin hydrogels depended on the TA concentration and ethanol aqueous coagulation, which mainly contributed to the hydrophobic and hydrophilic interactions formation, respectively. The fully naturally robust chitin-TA hydrogels exhibited considerable antibacterial properties, stomach acid solubility, and excellent biocompatibility and degradability, enabling their potential in food, biomedical, and sustainable applications.

摘要

天然高分子水凝胶有望作为潜在的结构生物材料,但它们大多数通常是柔软易碎的。在此,开发了一种多酚介导的自组装(PMS)策略,可同时显著提高甲壳素水凝胶的强度和韧性,这有别于刚性-柔软双网络能量耗散方法。引入一种多酚(单宁酸 TA 作为模型化合物)与甲壳素链自组装竞争,同时形成弱的甲壳素-TA 和强的甲壳素-甲壳素网络。涉及氢键、离子和疏水相互作用的高密度非共价交联赋予 PMS 水凝胶高模量和高强度。相对较弱的甲壳素-TA 交联作为牺牲键来耗散能量,从而实现高韧性。PMS 甲壳素水凝胶的机械性能取决于 TA 浓度和乙醇水溶液的凝结,这主要有助于形成疏水性和亲水性相互作用。完全天然坚固的甲壳素-TA 水凝胶表现出相当好的抗菌性能、胃酸溶解度以及优异的生物相容性和可降解性,使其在食品、生物医学和可持续应用方面具有潜力。

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