Nair Anroop B, Al-Dhubiab Bandar E, Shah Jigar, Gorain Bapi, Jacob Shery, Attimarad Mahesh, Sreeharsha Nagaraja, Venugopala Katharigatta N, Morsy Mohamed A
Department of Pharmaceutical Sciences, College of Clinical Pharmacy, King Faisal University, Al-Ahsa 31982, Saudi Arabia.
Department of Pharmaceutics, Institute of Pharmacy, Nirma University, Ahmedabad 382481, India.
Pharmaceutics. 2021 Oct 15;13(10):1692. doi: 10.3390/pharmaceutics13101692.
Topical therapy of antifungals is primarily restricted due to the low innate transport of drugs through the thick multi-layered keratinized nail plate. The objective of this investigation was to develop a gel formulation, and to optimize and evaluate the transungual delivery of terbinafine using the constant voltage iontophoresis technique. Statistical analysis was performed using Box-Behnken design to optimize the transungual delivery of terbinafine by examining crucial variables namely concentration of polyethylene glycol, voltage, and duration of application (2-6 h). Optimization data in batches (F1-F17) demonstrated that chemical enhancer, applied voltage, and application time have influenced terbinafine nail delivery. Higher ex vivo permeation and drug accumulation into the nail tissue were noticed in the optimized batch (F8) when compared with other batches (F1-F17). A greater amount of terbinafine was released across the nails when the drug was accumulated by iontophoresis than the passive counterpart. A remarkably higher zone of inhibition was observed in nails with greater drug accumulation due to iontophoresis, as compared to the passive process. The results here demonstrate that the optimized formulation with low voltage iontophoresis could be a viable and alternative tool in the transungual delivery of terbinafine, which in turn could improve the success rate of topical nail therapy in onychomycosis.
由于药物通过厚的多层角化甲板的固有转运率低,抗真菌药的局部治疗主要受到限制。本研究的目的是开发一种凝胶制剂,并使用恒压离子电渗疗法技术优化和评估特比萘芬的经甲递送。使用Box-Behnken设计进行统计分析,通过检查关键变量,即聚乙二醇浓度、电压和应用持续时间(2-6小时),来优化特比萘芬的经甲递送。批次(F1-F17)的优化数据表明,化学增强剂、施加电压和应用时间对特比萘芬的甲递送有影响。与其他批次(F1-F17)相比,优化批次(F8)中观察到更高的体外渗透和药物在甲组织中的积累。当通过离子电渗法积累药物时,与被动积累相比,在整个指甲上释放出更多的特比萘芬。与被动过程相比,在因离子电渗法而药物积累更多的指甲中观察到明显更高的抑菌圈。此处结果表明,采用低电压离子电渗疗法的优化制剂可能是特比萘芬经甲递送的一种可行且替代的工具,这反过来可以提高甲真菌病局部甲治疗的成功率。