含牛至花和麝香草精油及生物银纳米粒子的指甲油用于治疗甲癣:开发、表征和抗真菌功效评估

Sara Scandorieiro, Natalia Rodrigues de Oliveira, Monique de Souza, Lidiane Vizioli de Castro-Hoshino, Mauro Luciano Baesso, Gerson Nakazato, Renata Katsuko Takayama Kobayashi, Luciano Aparecido Panagio, Audrey Alesandra Stinghen Garcia Lonni
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引用次数: 0

摘要

甲癣是一种常见的真菌性指甲感染,需要新的抗真菌药物来克服抗菌素耐药性和传统治疗方法的局限性。本研究报告了含有牛至精油(OEO)、迷迭香精油(REO)和生物银纳米粒子(bioAgNPs)的抗真菌甲油的开发情况。利用琼脂扩散、体内外指甲感染和扫描电子显微镜技术对配方(F)进行了抗皮真菌测试。对这些制剂的药理特性进行了评估,并通过傅立叶变换红外光谱仪(FTIR-PAS)评估了它们在指甲中的渗透性。F-OEO 和 F-OEO/bioAgNPs 很有希望成为最终指甲油配方的候选物质,因为它们可渗透指甲,并在处理 5 天后显示出对皮癣菌污染指甲的抗真菌功效。与未处理的对照组相比,处理过的指甲显示出菌丝和孢子的减少;菌丝呈不典型的扁平状,这表明细胞质膜受损导致细胞质含量减少。这些制剂在离心和热应力后都很稳定,保持了感官和理化特性。F-OEO 和 F-OEO/bioAgNPs 的 pH 值都与指甲相容,干燥时间(59-90 秒)也在指甲油的参考值范围内。这是首次在指甲油中加入 OEO 和生物氮化镁,从而开发出一种天然的纳米技术产品,用于治疗甲癣,并能消除微生物的抗药性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nail Lacquer Containing Origanum vulgare and Rosmarinus officinalis Essential Oils and Biogenic Silver Nanoparticles for Onychomycosis: Development, Characterization, and Evaluation of Antifungal Efficacy
Onychomycosis is a common fungal nail infection for which new antifungals are needed to overcome antimicrobial resistance and the limitations of conventional treatments. This study reports the development of antifungal nail lacquers containing oregano essential oil (OEO), rosemary essential oil (REO), and biogenic silver nanoparticles (bioAgNPs). The formulations (F) were tested against dermatophytes using agar diffusion, ex vivo nail infection, and scanning electron microscopy techniques. They were evaluated for their pharmacotechnical characteristics and by FTIR-PAS to assess permeation across the nail. F-OEO and F-OEO/bioAgNPs were promising candidates for the final nail lacquer formulation, as they permeated through the nail and showed antifungal efficacy against dermatophytes-contaminated nails after 5 days of treatment. Treated nails exhibited decreased hyphae and spores compared to the untreated control; the hyphae were atypically flattened, indicating loss of cytoplasmic content due to damage to the cytoplasmic membrane. The formulations were stable after centrifugation and thermal stress, maintaining organoleptic and physicochemical characteristics. Both F-OEO and F-OEO/bioAgNPs had pH compatible with the nail and drying times (59–90 s) within the reference for nail lacquer. For the first time, OEO and bioAgNPs were incorporated into nail lacquer, resulting in a natural and nanotechnological product for onychomycosis that could combat microbial resistance.
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