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由具有长脂肪族侧链的儿茶酚衍生物制成的坚韧且按需可分离的湿纸巾粘合剂水凝胶。

Tough and On-Demand Detachable Wet Tissue Adhesive Hydrogel Made from Catechol Derivatives with a Long Aliphatic Side Chain.

作者信息

Chen Yiming, Ni Peng, Xu Renfeng, Wang Xueli, Fu Chunhui, Wan Kaixuan, Fang Yan, Liu Haiqing, Weng Yunxiang

机构信息

College of Chemistry and Materials Science, Fujian Normal University, Fuzhou, 350117, China.

College of Life Science, Fujian Normal University, Fuzhou, 350117, China.

出版信息

Adv Healthc Mater. 2023 Nov;12(29):e2301913. doi: 10.1002/adhm.202301913. Epub 2023 Aug 3.

Abstract

Wet adhesion is critical in cases of wound closure, but it is usually deterred by the hydration layer on tissues. Inspired by dopamine-mediated underwater adhesion in mussel foot proteins, wet tissue adhesives containing catechol with 2-3 carbons side chains are reported mostly. To make wet adhesion of this type of adhesives much tougher, catechol derivatives with a long aliphatic side chain (≈10 atoms length) are synthesized. Then, a series of strong wet tissue adhesive hydrogels are prepared through photoinduced copolymerization of acrylic acid with synthetic monomers. The adhesive hydrogel has a high cohesion strength, that is, tensile strength and strain, and toughness of ≈1800 kPa, ≈540%, and ≈4100 kJ m , respectively. Its interfacial toughness on wet and underwater porcine skin is respectively ≈1300 and ≈1100 J m , and its adhesion strength to wet porcine skin is ≈153 kPa. These values are much higher than those of dopamine-based adhesives in the same conditions, demonstrating that the long aliphatic side chain on catechol can greatly improve the wet tissue-adhesion. Additionally, the tough interfacial adhesion can be broken on demand with 5 wt.% aqueous urea solution. This adhesive hydrogel is highly promising in safe wound closure.

摘要

在伤口闭合的情况下,湿粘附至关重要,但它通常会受到组织上水化层的阻碍。受贻贝足蛋白中多巴胺介导的水下粘附启发,大多报道了含有2-3个碳原子侧链儿茶酚的湿组织粘合剂。为了使这类粘合剂的湿粘附力更强,合成了具有长脂肪族侧链(≈10个原子长度)的儿茶酚衍生物。然后,通过丙烯酸与合成单体的光引发共聚制备了一系列强力湿组织粘合剂水凝胶。该粘合剂水凝胶具有高内聚强度,即拉伸强度和应变,韧性分别约为1800 kPa、约540%和约4100 kJ m 。其在湿态和水下猪皮上的界面韧性分别约为1300和1100 J m ,其对湿猪皮的粘附强度约为153 kPa。这些值远高于相同条件下基于多巴胺的粘合剂的值,表明儿茶酚上的长脂肪族侧链可大大提高湿组织粘附力。此外,用5 wt.%的尿素水溶液可按需破坏坚韧的界面粘附。这种粘合剂水凝胶在安全伤口闭合方面极具前景。

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