Department of Pharmaceutics, Faculty of Pharmacy, Zagazig University, Zagazig, Egypt.
Department of Pharmaceutics, College of Pharmacy, Hail University, Hail, Kingdom of Saudi Arabia.
AAPS PharmSciTech. 2019 Mar 4;20(3):134. doi: 10.1208/s12249-018-1211-0.
Nasal nanovesicular gels of buspirone hydrochloride (BH) were prepared and characterized aiming for sustained delivery and enhancing bioavailability. Buspirone hydrochloride has low bioavailability of about 4% after oral administration due to first pass metabolism. Buspirone hydrochloride nanovesicles were formulated by thin film hydration method (TFH). The selected nanovesicular formulation was incorporated into two types of in situ gels (pH-induced and thermoreversible) using carbopol 974P and poloxamer 407 (P407), respectively, together with different mucoadhesive polymers. The in situ gels were examined for pH, gelling capability, viscosity, content uniformity, mucoadhesiveness, and in vitro drug release. The ex vivo permeation performance of the in situ gel formulations that showed the most sustained release was also assessed. The in vivo study was done by the determination of BH blood level in albino rabbits after nasal administration. Results revealed that nanovesicles prepared using Span 60 and cholesterol in a ratio of 80:20 showed the highest EE% (70.57 ± 1.00%). The ex vivo permeation data confirmed higher permeability figures for carbopol formulation in comparison to poloxamer formulations. The in vivo study data showed an increase of 3.26 times in BH bioavailability when formulated into the carbopol nanovesicular in situ gel relative to control (nasal drug solution).
盐酸丁螺环酮鼻腔纳米囊凝胶的制备及特性研究,旨在实现药物的持续释放并提高生物利用度。盐酸丁螺环酮口服生物利用度较低,约为 4%,这是由于首过代谢所致。采用薄膜水化法(TFH)制备盐酸丁螺环酮纳米囊。选择的纳米囊制剂分别与两种原位凝胶(pH 诱导型和温度响应型)结合使用,其中原位凝胶分别使用卡波姆 974P 和泊洛沙姆 407(P407)以及不同的黏膜黏附聚合物制备。考察了原位凝胶的 pH 值、成胶能力、黏度、含量均匀性、黏膜黏附性和体外药物释放。还评估了显示出最持续释放的原位凝胶制剂的体外透皮性能。通过测定鼻内给予白化兔后的 BH 血药浓度进行体内研究。结果表明,采用 80:20 的比例的 Span 60 和胆固醇制备的纳米囊具有最高的 EE%(70.57±1.00%)。体外透皮数据证实,与泊洛沙姆制剂相比,卡波姆制剂具有更高的透皮性能。体内研究数据表明,与对照(鼻用药物溶液)相比,将丁螺环酮制成卡波姆纳米囊原位凝胶后,其生物利用度增加了 3.26 倍。