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一石三鸟:磺胺嘧啶银调节水凝胶的稳定性和动力学,用于感染性伤口愈合。

One Stone Three Birds: Silver Sulfadiazine Modulates the Stability and Dynamics of Hydrogels for Infected Wound Healing.

机构信息

State Key Laboratory of Advanced Technology for Materials Synthesis and Processing, Biomedical Materials and Engineering Research Center of Hubei Province, Wuhan University of Technology, Wuhan, 430070, China.

National Energy Key Laboratory for New Hydrogen-ammonia Energy Technologies, Foshan Xianhu Laboratory, Foshan, 528200, China.

出版信息

Adv Healthc Mater. 2024 Jul;13(19):e2400242. doi: 10.1002/adhm.202400242. Epub 2024 Mar 29.

Abstract

Dynamic covalent bond hydrogels have demonstrated significant application potential in biomedical fields for their dynamic reversibility. However, the contradiction between the stability and dynamics of the hydrogel restricts its application. Here, utilizing silver sulfadiazine (AgSD) as a catalyst, hyaluronic acid-based hydrogels are constructed through imine bond crosslinking and incorporated disulfide bonds within the same crosslinking chain. It is found that AgSD can accelerate the formation of imine crosslinking bonds to improve the stability of hydrogels, thereby shortening the gelation time by ≈36.9 times, enhancing compression strength and adhesion strength by ≈2.4 times and 1.7 times, respectively, while inhibiting swelling and degradation rates to ≈2.1 times and 3.7 times. Besides, AgSD can coordinate with disulfide bonds to enhance the dynamics of hydrogel, enhancing the hydrogel self-healing efficiency by ≈2.3 times while reducing the relaxation time by ≈25.1 times. Significantly, AgSD imparts remarkable antibacterial properties to the hydrogel, thereby effectively facilitating the healing of bacterial infected wounds. Consequently, introducing AgSD enables hydrogels to possess concurrent stability, dynamics, and antibacterial properties. This strategy of regulating hydrogels by introducing AgSD provides a valuable reference for the application of dynamic covalent bonds.

摘要

动态共价键水凝胶因其动态可逆性在生物医学领域表现出了巨大的应用潜力。然而,水凝胶的稳定性和动态性之间的矛盾限制了其应用。在这里,利用磺胺嘧啶银(AgSD)作为催化剂,通过亚胺键交联构建了基于透明质酸的水凝胶,并在同一交联链中引入了二硫键。研究发现,AgSD 可以加速亚胺交联键的形成,从而提高水凝胶的稳定性,使凝胶时间缩短约 36.9 倍,压缩强度和粘附强度分别提高约 2.4 倍和 1.7 倍,同时抑制溶胀和降解速率,分别降低约 2.1 倍和 3.7 倍。此外,AgSD 可以与二硫键协同作用,增强水凝胶的动力学性能,使水凝胶的自修复效率提高约 2.3 倍,松弛时间缩短约 25.1 倍。值得注意的是,AgSD 赋予水凝胶显著的抗菌性能,从而有效促进了细菌感染伤口的愈合。因此,引入 AgSD 使水凝胶同时具有稳定性、动力学和抗菌性能。通过引入 AgSD 来调节水凝胶的策略为动态共价键的应用提供了有价值的参考。

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