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仿生焦性没食子酸基自粘性水凝胶的快速制备及其具有机械可调、自修复、抗菌、伤口愈合和止血性能。

Rapid fabrication of bionic pyrogallol-based self-adhesive hydrogel with mechanically tunable, self-healing, antibacterial, wound healing, and hemostatic properties.

机构信息

College of Materials Engineering, Fujian Agriculture and Forestry University, Fuzhou 350002, PR China.

Fujian Medical University Cancer Hospital, Fujian Cancer Hospital, Fuzhou 350011, Fujian, PR China.

出版信息

Biomater Adv. 2022 May;136:212765. doi: 10.1016/j.bioadv.2022.212765. Epub 2022 Mar 17.

Abstract

Hydrogels are functional materials that are similar to human skin and have received much attention in recent years for biomedical applications. However, the preparation of nontoxic, highly adhesive, and antimicrobial hydrogels in an efficient way remains a great challenge. Inspired by adhesive mussel foot proteins (mfps) which consist of abundant catecholic amino acids and lysine (Lys) residues, gallic acid-modified ε-poly-L-lysine (EPL/GA) was synthesized, and an active functional monomer (AA-EPL/GA) was then created through a reaction with acrylic acid (AA). The polymerization of AA-EPL/GA occurred rapidly (30-160 s) under blue light (λ = 405 nm) irradiation to produce a biomimetic PAA-EPL/GA hydrogel under mild conditions. The biomimetic pyrogallol-Lys distribution endowed the PAA-EPL/GA hydrogels with superior adhesion in humid environments (with an adhesive strength of 50.02 kPa toward wet porcine skin) and tunable mechanical and self-healing properties. Additionally, the PAA-EPL/GA hydrogels exhibited outstanding antibacterial ability due to the inherent characteristics of GA and EPL. In a mouse model, PAA-EPL/GA adhered firmly around the wound tissues. Photographs of the wound and the histological results demonstrated the ability of the hydrogel to promote wound healing, control wound infection, and suppress scar formation. Moreover, the hydrogel had a good hemostatic effect on liver bleeding. Our results highlighted the promising application potential of GA-based hydrogels, which were easily, harmlessly, and efficiently fabricated by blue light irradiation.

摘要

水凝胶是一种类似人体皮肤的功能材料,近年来在生物医学应用中受到广泛关注。然而,以高效的方式制备无毒、高粘性和抗菌水凝胶仍然是一个巨大的挑战。受富含儿茶酚氨基酸和赖氨酸(Lys)残基的贻贝足蛋白(Mfps)的启发,合成了没食子酸修饰的 ε-聚-L-赖氨酸(EPL/GA),并通过与丙烯酸(AA)反应生成活性功能单体(AA-EPL/GA)。AA-EPL/GA 的聚合在蓝光(λ=405nm)照射下迅速发生(30-160s),在温和条件下生成仿生 PAA-EPL/GA 水凝胶。仿生焦儿茶酚-Lys 分布使 PAA-EPL/GA 水凝胶具有优异的潮湿环境下的粘附性(对湿猪皮的粘附强度为 50.02kPa)和可调的机械性能和自修复性能。此外,由于 GA 和 EPL 的固有特性,PAA-EPL/GA 水凝胶表现出优异的抗菌能力。在小鼠模型中,PAA-EPL/GA 牢固地粘附在伤口组织周围。伤口照片和组织学结果表明,该水凝胶具有促进伤口愈合、控制伤口感染和抑制疤痕形成的能力。此外,该水凝胶对肝脏出血具有良好的止血效果。我们的结果突出了基于 GA 的水凝胶的有前途的应用潜力,这些水凝胶可以通过蓝光照射轻松、无害和高效地制备。

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