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使用枳壳负载的柑橘果胶水凝胶绿色合成银纳米颗粒用于加速耐甲氧西林金黄色葡萄球菌感染的糖尿病伤口愈合

Green synthesis of silver nanoparticles using Fructus Aurantii-loaded Citrus pectin hydrogel for accelerated healing of MRSA-infected diabetic wounds.

作者信息

Chang Li, Ahmad Bilal, Tong Aidi, Wu Zhou, Xu Pengxiang, Gao Zexin, Yin Caiyun, Luan Mingbao, Tong Chunyi, Liu Bin

机构信息

College of Biology, Hunan University, Changsha 410082, China; Institute of Bast Fiber Crop, Chinese Academy of Agriculture Sciences, Changsha 410304, China.

College of Biology, Hunan University, Changsha 410082, China.

出版信息

Int J Biol Macromol. 2025 Jun;315(Pt 1):144222. doi: 10.1016/j.ijbiomac.2025.144222. Epub 2025 May 15.

DOI:10.1016/j.ijbiomac.2025.144222
PMID:40381789
Abstract

To address the challenges of bacterial infection and wound healing in diabetic wounds, we developed a multi-bioactive citrus pectin hydrogel (CPH) loaded with Fructus Aurantii-derived green synthesized silver nanoparticles (FA-Ag NPs), termed FA-Ag NPs/CPH. Here, FA-Ag NPs exhibited excellent antibacterial activity alongside antioxidant, anti-inflammatory and wound-healing activities. When combined with CPH, this formulation significantly enhanced biocompatibility and accelerated wound repair processes. In vitro experiments demonstrated sustained release of FA-Ag NPs, achieving a 97.66 % eradication rate against methicillin-resistant Staphylococcus aureus (MRSA) through disrupting bacterial membrane integrity by inducing intracellular content leakage and inhibiting ATP synthesis. The hydrogel also demonstrated antioxidant and anti-inflammatory activities, promoting cell migration and angiogenesis. In vivo assays showed that FA-Ag NPs/CPH reduced wound area to 8 % by day 11 (vs. 23.4 % in control group). This therapeutic effect was attributable to suppressing MRSA infection, promoting macrophage polarization from pro-inflammatory M1 to reparative M2 phenotype, accelerating cellular migration and neovascularization, stimulating collagen deposition, and promoting skin appendage development. Collectively, these findings confirm the combined antibacterial and wound-healing efficacy of FA-Ag NPs/CPH with superior biocompatibility, highlighting its promising clinical application potential. However, further validation of long-term biological effects through large animal studies is still required.

摘要

为应对糖尿病伤口细菌感染和伤口愈合的挑战,我们开发了一种负载有枳壳衍生的绿色合成银纳米颗粒(FA-Ag NPs)的多生物活性柑橘果胶水凝胶(CPH),称为FA-Ag NPs/CPH。在此,FA-Ag NPs表现出优异的抗菌活性以及抗氧化、抗炎和伤口愈合活性。当与CPH结合时,该制剂显著提高了生物相容性并加速了伤口修复过程。体外实验表明FA-Ag NPs能持续释放,通过诱导细胞内物质泄漏破坏细菌膜完整性并抑制ATP合成,对耐甲氧西林金黄色葡萄球菌(MRSA)的根除率达到97.66%。该水凝胶还表现出抗氧化和抗炎活性,促进细胞迁移和血管生成。体内试验表明,到第11天,FA-Ag NPs/CPH将伤口面积缩小至8%(对照组为23.4%)。这种治疗效果归因于抑制MRSA感染、促进巨噬细胞从促炎M1表型向修复性M2表型极化、加速细胞迁移和新血管形成、刺激胶原蛋白沉积以及促进皮肤附属器发育。总的来说,这些发现证实了FA-Ag NPs/CPH具有联合抗菌和伤口愈合功效以及卓越的生物相容性,突出了其有前景的临床应用潜力。然而,仍需要通过大型动物研究进一步验证其长期生物学效应。

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