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具有协同抗菌/抗炎作用的pH响应性双层水凝胶用于感染伤口愈合

pH-Responsive Bilayer Hydrogel with Synergistic Antibacterial/Anti-inflammatory Effect for Infected Wound Healing.

作者信息

Huangfu Mengxin, Ren Yuankun, Yang Wei, Liu Yu, Li Xiyu

机构信息

State Key Laboratory of Oral Diseases, National Center for Stomatology, and National Clinical Research Center for Oral Diseases, West China Hospital of Stomatology, Sichuan University, Chengdu 610041, Sichuan, China.

出版信息

ACS Appl Mater Interfaces. 2025 Jul 16;17(28):40258-40275. doi: 10.1021/acsami.5c08728. Epub 2025 Jul 3.

Abstract

Hydrogels are promising candidates for wound dressings owing to their good biocompatibility, high-water retention, and extracellular matrix-mimicking structure. However, conventional single-layer hydrogels are hard to cope with given the dynamic pH fluctuations (pH 6-8.9) of infected wounds, which exacerbate bacterial colonization and oxidative stress. Here, we engineered a multifunctional bilayer hydrogel (named PPTC) comprising a hydrophobic polydimethylsiloxane (PDMS) top layer and a polyacrylamide (PAM)-based bottom layer integrated with tannic acid (TA) and curcumin-loaded alginate microspheres (Alg@Cur). The PDMS top layer was adopted to prevent external contamination and moisture loss, while the adhesive PAM-TA-Alg@Cur (PTC) bottom layer was designed to achieve a pH-responsive therapeutic synergy. In vitro studies showed that TA exhibited a rapid release (76.66% within 12 h) to suppress bacterial proliferation and inflammation, while Alg@Cur could slowly release curcumin in a pH-dependent manner (90.32% at pH 8.5 vs 38.06% at pH 6, cumulatively), targeting alkaline microenvironments to mitigate oxidative stress. Their synergy demonstrated potent antibacterial activity (≥99.90% inhibition against and ) and reactive oxygen species scavenging ability (93.89% DPPH elimination). In a rat-infected wound model, the PPTC bilayer hydrogel synergistically accelerated infected wound healing by reducing inflammation, enhancing collagen deposition, and promoting angiogenesis. This work pioneers a pH-driven therapeutic platform for advancing smart dressings for infected wound management.

摘要

水凝胶因其良好的生物相容性、高保水性和模仿细胞外基质的结构,是伤口敷料的理想候选材料。然而,鉴于感染伤口的动态pH波动(pH 6 - 8.9),传统的单层水凝胶难以应对,这种波动会加剧细菌定植和氧化应激。在此,我们设计了一种多功能双层水凝胶(命名为PPTC),它由疏水的聚二甲基硅氧烷(PDMS)顶层和基于聚丙烯酰胺(PAM)的底层组成,底层整合了单宁酸(TA)和负载姜黄素的海藻酸盐微球(Alg@Cur)。采用PDMS顶层来防止外部污染和水分流失,而具有粘性的PAM - TA - Alg@Cur(PTC)底层旨在实现pH响应性治疗协同作用。体外研究表明,TA表现出快速释放(12小时内释放76.66%)以抑制细菌增殖和炎症,而Alg@Cur可以以pH依赖的方式缓慢释放姜黄素(pH 8.5时累计释放90.32%,pH 6时为38.06%),靶向碱性微环境以减轻氧化应激。它们的协同作用表现出强大的抗菌活性(对 和 的抑制率≥99.90%)和活性氧清除能力(DPPH清除率为93.89%)。在大鼠感染伤口模型中,PPTC双层水凝胶通过减轻炎症、增强胶原蛋白沉积和促进血管生成,协同加速感染伤口愈合。这项工作开创了一个pH驱动的治疗平台,以推进用于感染伤口管理的智能敷料。

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