El Taweel Mai M, Aboul-Einien Mona H, Kassem Mohammed A, Elkasabgy Nermeen A
Department of Pharmaceutics and Industrial Pharmacy, Faculty of Pharmacy, Cairo University, Kasr El-Aini Street, Cairo 11562, Egypt.
Pharmaceutics. 2021 Nov 1;13(11):1828. doi: 10.3390/pharmaceutics13111828.
This study aimed at delivering intranasal zolmitriptan directly to the brain through preparation of bilosomes incorporated into a mucoadhesive in situ gel with extended nasal mucociliary transit time. Zolmitriptan-loaded bilosomes were constructed through a thin film hydration method applying Box-Behnken design. The independent variables were amount of sodium deoxycholate and the amount and molar ratio of cholesterol/Span 40 mixture. Bilosomes were assessed for their entrapment efficiency, particle size and in vitro release. The optimal bilosomes were loaded into mucoadhesive in situ gel consisting of poloxamer 407 and hydroxypropyl methylcellulose. The systemic and brain kinetics of Zolmitriptan were evaluated in rats by comparing intranasal administration of prepared gel to an IV solution. Statistical analysis suggested an optimized bilosomal formulation composition of sodium deoxycholate (5 mg) with an amount and molar ratio of cholesterol/Span 40 mixture of 255 mg and 1:7.7, respectively. The mucoadhesive in situ gel containing bilosomal formulation had a sol-gel temperature of 34.03 °C and an extended mucociliary transit time of 22.36 min. The gelling system possessed enhanced brain bioavailability compared to bilosomal dispersion (1176.98 vs. 835.77%, respectively) following intranasal administration. The gel revealed successful brain targeting with improved drug targeting efficiency and direct transport percentage indices. The intranasal delivery of mucoadhesive in situ gel containing zolmitriptan-loaded bilosomes offered direct nose-to-brain drug targeting with enhanced brain bioavailability.
本研究旨在通过制备包封于具有延长鼻黏膜纤毛转运时间的黏膜黏附原位凝胶中的双分子层脂质体,将鼻内用佐米曲普坦直接递送至脑内。采用Box-Behnken设计,通过薄膜水化法构建了载佐米曲普坦双分子层脂质体。自变量为脱氧胆酸钠的量以及胆固醇/司盘40混合物的量和摩尔比。对双分子层脂质体的包封率、粒径和体外释放进行了评估。将最佳双分子层脂质体载入由泊洛沙姆407和羟丙基甲基纤维素组成的黏膜黏附原位凝胶中。通过比较将制备的凝胶经鼻内给药与静脉注射溶液,评估了大鼠体内佐米曲普坦的全身和脑动力学。统计分析表明,优化后的双分子层脂质体制剂组成为脱氧胆酸钠(5mg),胆固醇/司盘40混合物的量和摩尔比分别为255mg和1:7.7。含有双分子层脂质体制剂的黏膜黏附原位凝胶的溶胶-凝胶温度为34.03℃,黏膜纤毛转运时间延长至22.36分钟。与经鼻内给药后的双分子层脂质体分散体相比,该凝胶系统具有更高的脑生物利用度(分别为1176.98%和835.77%)。该凝胶显示出成功的脑靶向作用,具有提高的药物靶向效率和直接转运百分比指标。含载佐米曲普坦双分子层脂质体的黏膜黏附原位凝胶经鼻内给药可实现直接的鼻-脑药物靶向,提高脑生物利用度。