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载有香芹酚、香茅醇和肉桂酸的抗菌环糊精辅助电纺纤维用于伤口愈合。

Antimicrobial cyclodextrin-assisted electrospun fibers loaded with carvacrol, citronellol and cinnamic acid for wound healing.

机构信息

Departamento de Farmacología, Farmacia y Tecnología Farmacéutica, I+D Farma (GI-1645), Faculty of Pharmacy, Institute of Materials (iMATUS), and Health Research Institute of Santiago de Compostela (IDIS), Universidade de Santiago de Compostela, Spain.

LEPABE - Department of Chemical Engineering, Faculty of Engineering, University of Porto, Portugal; ALiCE - Associate Laboratory in Chemical Engineering, Faculty of Engineering, University of Porto, Portugal.

出版信息

Int J Biol Macromol. 2024 Oct;277(Pt 3):134154. doi: 10.1016/j.ijbiomac.2024.134154. Epub 2024 Aug 9.

Abstract

This work aimed to explore an alternative to the use of antibiotics for prevention and treatment of wounds infection caused by two common bacterial pathogens Staphylococcus aureus and Pseudomonas aeruginosa. For this purpose, three different essential oil components (EOCs), namely carvacrol, citronellol and cinnamic acid, were loaded into electrospun fibers of poly-ε-caprolactone (PCL) aided by alpha-cyclodextrin (αCD) and hydroxypropyl-β-cyclodextrin (HPβCD). Electrospun-fibers prepared with each EOC and their mixtures were screened for antimicrobial capability and characterized regarding morphological, mechanical, thermal, surface polarity, antibiofilm and antioxidant properties. αCD formed poly(pseudo)rotaxanes with PCL and weakly interacted with EOCs, while HPβCD facilitated EOC encapsulation and formation of homogeneous fibers (500-1000 nm diameter) without beads. PCL/HPβCD fibers with high concentration of EOCs (mainly carvacrol and cinnamic acid) showed strong antibiofilm (>3 log CFU reduction) and antioxidant activity (10-50% DPPH scavenging effects). Different performances were recorded for the EOCs and their mixtures; cinnamic acid migrated to fiber surface and was released faster. Fibers biocompatibility was verified using hemolysis tests and in ovo tissue integration and angiogenesis assays. Overall, HPβCD facilitates complete release of EOCs from the fibers to the aqueous medium, being an environment-friendly and cost-effective strategy for the treatment of infected wounds.

摘要

本研究旨在探索一种替代抗生素的方法,用于预防和治疗两种常见细菌病原体金黄色葡萄球菌和铜绿假单胞菌引起的伤口感染。为此,将三种不同的精油成分(EOC),即香芹酚、香茅醇和肉桂酸,负载到聚己内酯(PCL)的电纺纤维中,同时使用α-环糊精(αCD)和羟丙基-β-环糊精(HPβCD)作为载体。对负载每种 EOC 及其混合物的电纺纤维进行了抗菌能力筛选,并对其形态、机械、热学、表面极性、抗生物膜和抗氧化性能进行了表征。αCD 与 PCL 形成假轮烷,与 EOC 弱相互作用,而 HPβCD 有利于 EOC 的包封和形成均匀的纤维(500-1000nm 直径),无珠状物。高浓度 EOC(主要是香芹酚和肉桂酸)的 PCL/HPβCD 纤维表现出强烈的抗生物膜(>3logCFU 减少)和抗氧化活性(10-50%DPPH 清除效果)。EOC 及其混合物的性能不同;肉桂酸迁移到纤维表面并更快释放。溶血试验、鸡胚组织整合和血管生成试验验证了纤维的生物相容性。总之,HPβCD 促进了 EOC 从纤维完全释放到水性介质中,是一种环保且具有成本效益的治疗感染性伤口的策略。

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