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卢立康唑搽剂治疗甲真菌病:制剂、表征及体外和体内评价。

Luliconazole Nail Lacquer for the Treatment of Onychomycosis: Formulation, Characterization and In Vitro and Ex Vivo Evaluation.

机构信息

Department of Pharmaceutical Engineering and Technology, Indian Institute of Technology (BHU), Varanasi, 221005, India.

Department of Microbiology, Institute of Medical Sciences (BHU), Varanasi, 221005, India.

出版信息

AAPS PharmSciTech. 2022 Jun 24;23(6):175. doi: 10.1208/s12249-022-02324-7.

Abstract

Onychomycosis is the most common fungal infection of the nail affecting the skin under the fingertips and the toes. Currently, available therapy for onychomycosis includes oral and topical therapies, either alone or in combination. Oral antifungal medication has been associated with poor drug bioavailability and potential gastrointestinal and systemic side effects. The objective of this study was to prepare and evaluate the luliconazole nail lacquer (LCZ-NL) for the effective treatment of onychomycosis. In the current work, LCZ-NL was formulated in combination with penetration enhancers to overcome poor penetration. A 3 full factorial formulation design of experiment (DOE) was applied for optimization of batches with consideration of dependent (drying time, viscosity, and rate of drug diffusion) and independent (solvent ratio and film former ratio) variables. The optimized formulation was selected based on drying time, viscosity, and rate of drug diffusion. The optimized formulation was further evaluated for % non-volatile content assay, smoothness of flow, water resistance, drug content, scanning electron microscope (SEM), atomic force microscope (AFM), X-ray diffraction (XRD), differential scanning calorimetry (DSC), in vitro drug release, ex vivo transungual permeation, antifungal efficacy, and stability study. The optimized LCZ-NL contained 70:30 solvent ratio and 1:1 film former ratio and was found to have ~ 1.79-fold higher rate of drug diffusion in comparison with LULY™. DSC and XRD studies confirmed that luliconazole retains its crystalline property in the prepared formulation. Antifungal study against Trichophyton spp. showed that LCZ-NL has comparatively higher growth inhibition than LULY™. Hence, developed LCZ-NL can be a promising topical drug delivery system for treating onychomycosis.

摘要

甲真菌病是最常见的指甲真菌感染,影响指尖和脚趾下的皮肤。目前,甲真菌病的治疗方法包括口服和局部治疗,单独或联合使用。口服抗真菌药物的生物利用度差,且有潜在的胃肠道和全身副作用。本研究旨在制备和评估卢立康唑指甲漆(LCZ-NL),以有效治疗甲真菌病。在目前的工作中,LCZ-NL 与渗透增强剂联合使用以克服渗透不良。应用 3 因素完全实验设计(DOE)优化制剂,同时考虑相关(干燥时间、粘度和药物扩散率)和独立(溶剂比和成膜剂比)变量。根据干燥时间、粘度和药物扩散率选择优化的配方。进一步对优化的配方进行非挥发性含量测定、流动性平滑度、耐水性、药物含量、扫描电子显微镜(SEM)、原子力显微镜(AFM)、X 射线衍射(XRD)、差示扫描量热法(DSC)、体外药物释放、经皮渗透、抗真菌功效和稳定性研究。优化的 LCZ-NL 含有 70:30 的溶剂比和 1:1 的成膜剂比,与 LULY™相比,药物扩散率提高了约 1.79 倍。DSC 和 XRD 研究证实,卢立康唑在制备的制剂中保留其结晶特性。对 Trichophyton spp. 的抗真菌研究表明,LCZ-NL 的生长抑制作用比 LULY™更高。因此,开发的 LCZ-NL 可以成为治疗甲真菌病的有前途的局部药物递送系统。

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