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用于感染伤口治疗的载铜纳米颗粒电纺贴片:从研发到体内应用

Copper Nanoparticle Loaded Electrospun Patches for Infected Wound Treatment: From Development to In-Vivo Application.

作者信息

Butsyk Anna, Varava Yulia, Moskalenko Roman, Husak Yevheniia, Piddubnyi Artem, Denysenko Anastasiia, Korniienko Valeriia, Ramanaviciute Agne, Banasiuk Rafal, Pogorielov Maksym, Ramanavicius Arunas, Korniienko Viktoriia

机构信息

Ukrainian-Swedish Research Center SUMEYA, Medical Institute, Sumy State University, 116, Kharkivska Str., 40007 Sumy, Ukraine.

Biomedical Research Centre, Medical Institute, Sumy State University, 116, Kharkivska Str., 40007 Sumy, Ukraine.

出版信息

Polymers (Basel). 2024 Sep 27;16(19):2733. doi: 10.3390/polym16192733.

Abstract

This study investigates the development and application of electrospun wound dressings based on polylactic acid (PLA) nanofibers, chitosan, and copper nanoparticles (CuNPs) for the treatment of purulent skin wounds. The materials were evaluated for their structural, antibacterial, and wound healing properties using an animal model. PLA/Ch-CuNPs demonstrated the most significant antibacterial activity against , , and , surpassing the other tested materials. The integration of CuNPs into the nanofiber matrices not only enhanced the antimicrobial efficacy but also maintained the structural integrity and biocompatibility of the dressings. In vivo experiments using a rat model showed that PLA/Ch-CuNPs facilitated faster wound healing with reduced exudative and inflammatory responses compared to PLA alone or PLA-CuNPs. Histological and immunohistochemical assessments revealed that the combination of PLA, chitosan, and CuNPs mitigated the inflammatory processes and promoted tissue regeneration more effectively. However, this study identified potential toxicity related to copper ions, emphasizing the need for careful optimization of CuNP concentrations. These findings suggest that PLA/Ch-CuNPs could serve as a potent, cost-effective wound dressing with broad-spectrum antibacterial properties, addressing the challenge of antibiotic-resistant infections and enhancing wound healing outcomes.

摘要

本研究调查了基于聚乳酸(PLA)纳米纤维、壳聚糖和铜纳米颗粒(CuNPs)的电纺伤口敷料在治疗脓性皮肤伤口方面的开发与应用。使用动物模型对这些材料的结构、抗菌和伤口愈合特性进行了评估。PLA/Ch-CuNPs对[具体细菌名称1]、[具体细菌名称2]和[具体细菌名称3]表现出最显著的抗菌活性,超过了其他测试材料。将CuNPs整合到纳米纤维基质中不仅提高了抗菌效果,还保持了敷料的结构完整性和生物相容性。使用大鼠模型进行的体内实验表明,与单独的PLA或PLA-CuNPs相比,PLA/Ch-CuNPs促进了更快的伤口愈合,同时减少了渗出和炎症反应。组织学和免疫组织化学评估显示,PLA、壳聚糖和CuNPs的组合更有效地减轻了炎症过程并促进了组织再生。然而,本研究确定了与铜离子相关的潜在毒性,强调需要仔细优化CuNP浓度。这些发现表明,PLA/Ch-CuNPs可以作为一种有效、经济高效且具有广谱抗菌特性的伤口敷料,应对抗生素耐药性感染的挑战并提高伤口愈合效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f30b/11479054/6bc8a839a68d/polymers-16-02733-g0A1.jpg

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