Elsherif Noha Ibrahim, Shamma Rehab Nabil, Abdelbary Ghada
Department of Pharmaceutics and Industrial Pharmacy, Faculty of Pharmacy, Cairo University, Kasr El-Aini Street, Cairo, Egypt.
AAPS PharmSciTech. 2017 Feb;18(2):551-562. doi: 10.1208/s12249-016-0528-9. Epub 2016 May 2.
Treating a nail infection like onychomycosis is challenging as the human nail plate acts as a formidable barrier against all drug permeation. Available oral and topical treatments have several setbacks. Terbinafine hydrochloride (TBH), belonging to the allylamine class, is mainly used for treatment of onychomycosis. This study aims to formulate TBH in a nanobased spanlastic vesicular carrier that enables and enhances the drug delivery through the nail. The nanovesicles were formulated by ethanol injection method, using either Span® 60 or Span® 65, together with Tween 80 or sodium deoxycholate as an edge activator. A full factorial design was implemented to study the effect of different formulation and process variables on the prepared TBH-loaded spanlastic nanovesicles. TBH entrapment efficiency percentages, particle size diameter, percentage drug released after 2 h and 8 h were selected as dependent variables. Optimization was performed using Design-Expert® software to obtain an optimized formulation with high entrapment efficiency (62.35 ± 8.91%), average particle size of 438.45 ± 70.5 nm, and 29.57 ± 0.93 and 59.53 ± 1.73% TBH released after 2 and 8 h, respectively. The optimized formula was evaluated using differential scanning calorimetry and X-ray diffraction and was also morphologically examined using transmission electron microscopy. An ex vivo study was conducted to determine the permeation and retainment of the optimized formulation in a human cadaver nail plate, and confocal laser scanning microscope was used to show the extent of formulation permeation. In conclusion, the results confirmed that spanlastics exhibit promising results for the trans-ungual delivery of TBH.
治疗像甲癣这样的指甲感染具有挑战性,因为人类指甲板对所有药物渗透都构成了强大的屏障。现有的口服和外用治疗方法有一些不足之处。盐酸特比萘芬(TBH)属于烯丙胺类,主要用于治疗甲癣。本研究旨在将TBH制成基于纳米的弹性脂质囊泡载体,以实现并增强药物透过指甲的递送。通过乙醇注入法制备纳米囊泡,使用司盘®60或司盘®65,以及吐温80或脱氧胆酸钠作为边缘活化剂。采用全因子设计来研究不同配方和工艺变量对制备的载TBH弹性脂质纳米囊泡的影响。选择TBH包封率百分比、粒径、2小时和8小时后药物释放百分比作为因变量。使用Design-Expert®软件进行优化,以获得具有高包封率(62.35±8.91%)、平均粒径为438.45±70.5nm、2小时和8小时后分别释放29.57±0.93%和59.53±1.73%TBH的优化配方。使用差示扫描量热法和X射线衍射对优化后的配方进行评估,并使用透射电子显微镜对其形态进行检查。进行了一项体外研究,以确定优化配方在人尸体指甲板中的渗透和保留情况,并使用共聚焦激光扫描显微镜来显示配方的渗透程度。总之,结果证实弹性脂质囊泡在TBH经指甲递送方面显示出有前景的结果。