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原位光交联丝素基水凝胶通过抗菌和抗氧化加速糖尿病伤口愈合。

In situ photo-crosslinking silk fibroin based hydrogel accelerates diabetic wound healing through antibacterial and antioxidant.

机构信息

State Key Laboratory of Advanced Technology for Materials Synthesis and Processing, Wuhan University of Technology, Wuhan 430070, PR China; Foshan Xianhu Laboratory of the Advanced Energy Science and Technology Guangdong Laboratory, Xianhu hydrogen Valley, Foshan 528200, PR China; Biomedical Materials and Engineering Research Center of Hubei Province, Wuhan University of Technology, Wuhan 430070, PR China.

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

出版信息

Int J Biol Macromol. 2023 Jul 1;242(Pt 3):125028. doi: 10.1016/j.ijbiomac.2023.125028. Epub 2023 May 25.

Abstract

Bacterial infection and excessive reactive oxygen species (ROS) in diabetic wounds lead to a prolonged inflammatory phase, and injuries are highly susceptible to developing into chronic wounds. Improving the poor microenvironment is vital to achieving effective diabetic wound healing. In this work, methacrylated silk fibroin (SFMA) was combined with ε-polylysine (EPL) and manganese dioxide nanoparticles (BMNPs) to form an SF@(EPL-BM) hydrogel with in situ forming, antibacterial and antioxidant properties. EPL imparted high antibacterial activity (>96 %) to the hydrogel. BMNPs and EPL showed good scavenging activity against a variety of free radicals. SF@(EPL-BM) hydrogel had low cytotoxicity and could alleviate HO-induced oxidative stress in L929 cells. In diabetic wounds infected with Staphylococcus aureus (S. aureus), the SF@(EPL-BM) hydrogel exhibited better antibacterial properties and reduced wound ROS levels more significantly than that of the control in vivo. In this process, the pro-inflammatory factor TNF-α was down-regulated, and the vascularization marker CD31 was up-regulated. H&E and Masson staining showed a rapid transition from the inflammatory to the proliferative phase of the wounds, with significant new tissue and collagen deposition. These results confirm that this multifunctional hydrogel dressing holds well potential for chronic wound healing.

摘要

细菌感染和糖尿病伤口中过量的活性氧(ROS)导致炎症期延长,且伤口极易发展成慢性伤口。改善不良的微环境对于实现有效的糖尿病伤口愈合至关重要。在这项工作中,将甲基丙烯酰化丝素蛋白(SFMA)与 ε-聚赖氨酸(EPL)和二氧化锰纳米颗粒(BMNPs)结合,形成具有原位形成、抗菌和抗氧化性能的 SF@(EPL-BM)水凝胶。EPL 赋予水凝胶高的抗菌活性(>96%)。BMNPs 和 EPL 对多种自由基表现出良好的清除活性。SF@(EPL-BM)水凝胶具有低细胞毒性,并能减轻 L929 细胞中 HO 诱导的氧化应激。在金黄色葡萄球菌(S. aureus)感染的糖尿病伤口中,SF@(EPL-BM)水凝胶在体内表现出更好的抗菌性能,并且比对照更显著地降低了伤口 ROS 水平。在这个过程中,促炎因子 TNF-α 被下调,血管生成标志物 CD31 被上调。H&E 和 Masson 染色显示伤口从炎症期快速过渡到增殖期,有明显的新组织和胶原蛋白沉积。这些结果证实,这种多功能水凝胶敷料具有良好的慢性伤口愈合潜力。

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