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一种用于多种抗生物膜治疗药物共递送的纳米复合水凝胶,以增强治疗细菌生物膜相关感染的效果。

A nanocomposite hydrogel for co-delivery of multiple anti-biofilm therapeutics to enhance the treatment of bacterial biofilm-related infections.

机构信息

School of Pharmaceutical Sciences (Shenzhen), Sun Yat-sen University, Shenzhen 518107, China.

School of Pharmaceutical Sciences (Shenzhen), Sun Yat-sen University, Shenzhen 518107, China; Precise Genome Engineering Center, School of Life Sciences, Guangzhou University, Guangzhou 510006, China.

出版信息

Int J Pharm. 2024 Jan 5;649:123638. doi: 10.1016/j.ijpharm.2023.123638. Epub 2023 Nov 24.

Abstract

The characteristics of biofilms have exacerbated the issue of clinical antibiotic resistance, rendering it a pressing challenge in need of resolution. The combination of biofilm-dispersing agents and antibiotics can eliminate biofilms and promote healing synergistically in infected wounds. In this study, we developed a novel nanocomposite hydrogel (NC gel) comprised of the poly(lactic acid)-hyperbranched polyglycerol (PLA-HPG) based bioadhesive nanoparticles (BNPs) and a hydrophilic carboxymethyl chitosan (CS) network. The NC gel was designed to co-deliver two biofilm-dispersing agents (an NO-donor SNO, and an α-amylase Am) and an antibiotic, cefepime (Cef), utilizing a synergistic anti-biofilm mechanism in which Am loosens the matrix structure and NO promotes the release of biofilm bacteria via quorum sensing, and Cef kills bacteria. The drug-loaded NC gel (SNO/BNP/CS@Am-Cef) demonstrated sustained drug release, minimal cytotoxicity, and increased drug-bacterial interactions at the site of infection. When applied to mice infected with methicillin-resistant Staphylococcus aureus (MRSA) biofilms in vivo, SNO/BNP/CS@Am-Cef enhanced biofilm elimination and promoted wound healing compared to traditional antibiotic treatments. Our work demonstrates the feasibility of the co-delivery of biofilm-dispersing agents and antibiotics using the NC gel and presents a promising approach for the polytherapy of bacterial biofilm-related infections.

摘要

生物膜的特性加剧了临床抗生素耐药性问题,成为亟待解决的挑战。生物膜分散剂和抗生素的联合使用可以协同消除生物膜并促进感染伤口的愈合。在本研究中,我们开发了一种新型纳米复合水凝胶(NC 凝胶),由基于聚乳酸-超支化聚甘油(PLA-HPG)的生物粘附纳米颗粒(BNP)和亲水性羧甲基壳聚糖(CS)网络组成。NC 凝胶旨在共同递送两种生物膜分散剂(NO 供体 SNO 和α-淀粉酶 Am)和一种抗生素头孢吡肟(Cef),利用协同抗生物膜机制,Am 疏松基质结构,NO 通过群体感应促进生物膜细菌的释放,Cef 杀死细菌。载药 NC 凝胶(SNO/BNP/CS@Am-Cef)表现出持续的药物释放、最小的细胞毒性和增加的药物-细菌相互作用在感染部位。当应用于体内感染耐甲氧西林金黄色葡萄球菌(MRSA)生物膜的小鼠时,与传统抗生素治疗相比,SNO/BNP/CS@Am-Cef 增强了生物膜的消除并促进了伤口愈合。我们的工作证明了使用 NC 凝胶共递送生物膜分散剂和抗生素的可行性,并为细菌生物膜相关感染的多疗法提供了一种有前途的方法。

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