Development and Evaluation of Luliconazole Nail Lacquer ContainingPotential Permeation Enhancers for an Enhanced Transungual DrugDelivery

渗透 钉子(扣件) 钉板 色谱法 化学 材料科学 皮肤病科 医学 生物化学 银屑病 冶金
作者
Preeti Chauhan,Rimpy Pahwa,Pooja Kumari,Tarun Kumar,Munish Ahuja
出处
期刊:Drug delivery letters [Bentham Science Publishers]
卷期号:13 (1): 35-47 被引量:2
标识
DOI:10.2174/2210303113666221117085703
摘要

Background: Topical therapy for nail infection has a serious drawback of drug permea-tion via keratinized human nail plate. Onychomycosis, or tinea unguium, is a human nail fungal infection affecting nearly 19% of the world’s population. Aim: Purposely, we aimed to develop and evaluate nail lacquer formulations incorporated with lu-liconazole utilizing different permeation enhancers for targeted transungual drug delivery. Nail clippings were treated with luliconazole solution (5% w/v) with or without permeation enhancers and screened by determining the hydration enhancement factor and retention of the drug in the nail clippings. Different batches of nail lacquer formulations were prepared to employ Eudragit, poly-ethylene glycol 400, Tween 80, and permeation enhancer with the highest hydration enhancement factor value. Methods: Successively, the formulations were evaluated for studies like compatibility, application, gloss, blush, smoothness of flow, adhesion, non-volatile content, etc. Based on the results of physi-cal characterization and in vitro release study, formulations based on Eudragit RLPO and RSPO containing N-acetylcysteine and urea and the Eudragit RL100 containing urea as penetration en-hancer were found to be potentially useful. Furthermore, a comparative ex vivo evaluation of the formulations for permeation across the nail clippings revealed that the luliconazole-loaded Eudragit RLPO formulations containing N-acetylcysteine and urea provided the highest flux (5.12 μg/cm2/min) and shortest lag time (17.4 min). Results: Morphological analysis showed an increase in the number of pores on the nail surface, leading to the enhancement of drug diffusion across the nail matrix and nail bed. Conclusion: Furthermore, the luliconazole nail lacquer formulation exhibited higher antifungal ac-tivity, viscosity, and stability properties. Hence, the results suggest that the developed luliconazole nail lacquer formulation is an efficient topical transungual drug delivery system.
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