伏立康唑微乳基聚合物凝胶治疗皮肤真菌病的配方研究。

IF 5.5 3区 医学 Q1 PHARMACOLOGY & PHARMACY
Michał Gackowski, Anna Froelich, Oliwia Kordyl, Jolanta Długaszewska, Dorota Kamińska, Raphaël Schneider, Tomasz Osmałek
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引用次数: 0

摘要

背景:皮肤真菌病影响全球约10%的人口,有效的局部抗真菌药物的范围仍然有限。伏立康唑(Voriconazole, VRC)是一种广谱三唑类药物,已证实对耐药真菌感染有效。本研究旨在开发和优化含有vrc的微乳液(ME)聚合物凝胶(Carbopol®为基础),用于皮肤递送。所选制剂还含有薄荷醇(2%)作为渗透增强剂和潜在的协同抗真菌剂。方法:采用伪三元相图进行综合筛选,以确定稳定的油/表面活性剂/助表面活性剂/水体系。选定的MEs用triacetin、Etocas™35和Transcutol®制备,然后用Carbopol®凝胶化。对配方进行了pH、液滴大小、多分散性指数(PDI)和粘度的表征。体外VRC释放采用扩散细胞法,体外透入和皮肤沉积研究采用全层人体皮肤。流变特性(流动曲线、屈服应力)和织构(铺展性)进行了评价。对白色念珠菌标准菌株和包括氟康唑耐药菌株在内的临床分离株进行了抗真菌活性测试。结果:优化后的ME (pH≈5.2,液滴尺寸≈2.8 nm)在VRC和薄荷醇中均清晰稳定。凝胶作用产生的非牛顿、剪切变薄的水凝胶具有低触变性,有利于局部应用。在对人体皮肤进行的离体研究中,两种负载vrc的凝胶都将药物沉积在表皮和真皮层,24小时后在受体期没有检测到药物的含量,表明药物在皮肤内保留。薄荷醇增加VRC沉积。抗真菌试验表明,含vrc的凝胶对白色念珠菌产生较大的抑制区,包括耐药菌株。vrc -薄荷醇凝胶的抑制区明显大于纯vrc凝胶,证实了协同作用。结论:me基水凝胶能有效地将VRC输送到皮肤中。薄荷醇增强药物沉积,并与伏立康唑表现出协同抗真菌活性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Formulation Studies on Microemulsion-Based Polymer Gels Loaded with Voriconazole for the Treatment of Skin Mycoses.

Background: Skin mycoses affect approximately 10% of the global population, and the range of effective topical antifungal agents remains limited. Voriconazole (VRC) is a broad-spectrum triazole with proven efficacy against drug-resistant fungal infections. This study aimed to develop and optimize VRC-loaded microemulsion (ME) polymer gels (Carbopol®-based) for cutaneous delivery. Selected formulations also contained menthol (2%) as a penetration enhancer and potential synergistic antifungal agent. Methods: A comprehensive screening was performed using pseudoternary phase diagrams to identify stable oil/surfactant/co-surfactant/water systems. Selected MEs were prepared with triacetin, Etocas™ 35, and Transcutol®, then gelled with Carbopol®. Formulations were characterized for pH, droplet size, polydispersity index (PDI), and viscosity. In vitro VRC release was assessed using diffusion cells, while ex vivo permeation and skin deposition studies were conducted on full-thickness human skin. Rheological behavior (flow curves, yield stress) and texture (spreadability) were evaluated. Antifungal activity was tested against standard strain of Candida albicans and clinical isolates including a fluconazole-resistant strain. Results: The optimized ME (pH ≈ 5.2; droplet size ≈ 2.8 nm) was clear and stable with both VRC and menthol. Gelation produced non-Newtonian, shear-thinning hydrogels with low thixotropy, favorable for topical application. In ex vivo studies, performed with human skin, both VRC-loaded gels deposited the drug in the epidermis and dermis, with no detectable amounts in the receptor phase after 24 h, indicating retention within the skin. Menthol increased VRC deposition. Antifungal testing showed that VRC-containing gels produced large inhibition zones against C. albicans, including the resistant isolate. The VRC-menthol gel exhibited significantly greater inhibition zones than the VRC-only gel, confirming synergistic activity. Conclusions: ME-based hydrogels effectively delivered VRC into the skin. Menthol enhanced drug deposition and demonstrated synergistic antifungal activity with voriconazole.

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来源期刊
Pharmaceutics
Pharmaceutics Pharmacology, Toxicology and Pharmaceutics-Pharmaceutical Science
CiteScore
7.90
自引率
11.10%
发文量
2379
审稿时长
16.41 days
期刊介绍: Pharmaceutics (ISSN 1999-4923) is an open access journal which provides an advanced forum for the science and technology of pharmaceutics and biopharmaceutics. It publishes reviews, regular research papers, communications,  and short notes. Covered topics include pharmacokinetics, toxicokinetics, pharmacodynamics, pharmacogenetics and pharmacogenomics, and pharmaceutical formulation. Our aim is to encourage scientists to publish their experimental and theoretical details in as much detail as possible. There is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced.
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