Fujian Key Laboratory of Polymer Materials, College of Chemistry and Materials Science, Fujian Normal University, Fujian, 350007, China.
Adv Healthc Mater. 2023 Jul;12(18):e2203342. doi: 10.1002/adhm.202203342. Epub 2023 Mar 21.
Wet adhesion is highly demanded in noninvasive wound closure, tissue repair, and biomedical devices, but it is still a big challenge for developing biosafe and tough wet bioadhesives due to low or even nonadhesion in the wet state for conventional adhesives. Inspired by the wet-adhesion-contributing factors of mussel foot proteins, a water-responsive dry robust tissue adhesive PAGU tape is made with thickness of <0.5 mm through fast UV-initiated copolymerization of acrylic acid (AA), gelatin (Gel), and hexadecenyl-1,2-catechol (UH). The tape shows strong cohesive mechanical properties and strong interfacial adhesion bonds. Upon application onto wet tissue, the adhesive tape can conform to the tissue, quickly dry tissue surface through absorbing surface/interfacial water and then allows formation of interfacial bonding with a high interfacial toughness of ≈818 J m . Furthermore, it can be readily detached by treating with aq. urea solution. A highly efficient avenue is provided here for producing conformable, tough, and easy detachable wet bioadhesive tapes.
湿黏合在无创伤口闭合、组织修复和生物医学设备中有着高度的需求,但由于传统黏合剂在湿润状态下的黏附性低甚至没有黏附性,因此开发生物安全且坚韧的湿生物黏合剂仍然是一个巨大的挑战。受贻贝足部蛋白质的湿黏合促进因素的启发,通过快速的紫外光引发丙烯酸 (AA)、明胶 (Gel) 和十六碳烯-1,2-邻苯二酚 (UH) 的共聚反应,制备了厚度 <0.5mm 的水响应性干强组织黏合 PAGU 胶带。该胶带具有较强的内聚机械性能和较强的界面黏附键。将其应用于湿润的组织上时,胶带可以贴合组织,通过吸收表面/界面水快速干燥组织表面,然后形成具有高界面韧性 ≈818Jm 的界面黏合键。此外,它可以通过处理含尿素的溶液来轻松地去除。这里为制备顺应性强、坚韧且易于去除的湿生物黏合剂胶带提供了一种高效的途径。