盐酸维拉帕米负载胃保留藻酸盐微球的统计优化

Aliaa Ismail, Eman M. Raafat, W. Sakran
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摘要

目的:胃保留性给药系统是许多口服给药系统之一,旨在提高药物的生物利用度和控制药物释放。可延长药物胃停留时间数小时。盐酸维拉帕米具有较窄的吸收窗和较短的半衰期,是胃潴留的理想药物。本研究的目的是为了提高药物的生物利用度,减少给药频率,并对优化后的负载VerHCl的胃保留藻酸盐微球进行配方和评价。方法:采用2 - 3全因子设计,采用离子型乳液凝胶法制备海藻酸盐微球。三个公式变量的影响;考察油浓度(%w/v) (X 1)、聚合物浓度(%w/v) (X 2)和药聚合物比(X 3)的平均直径(Y 1)、载药量% (Y 2)、包封效率(EE%) (Y 3)、1 (Y 4)、5 (Y 5)和8 h (Y 6)时药物释放率。进一步对优化后的配方进行体外漂浮、体外释药、大鼠体内胃潴留、流动性等方面的评价。结果:Design-Expert®数值优化显示,负载VerHCl的海藻酸盐胃保留珠的最佳配方水平为;油浓度(X 1) = 17.2% w/v,聚合物浓度(X 2) = 4.34% w/v,药聚合物比=1.2。优化后的配方具有产率%(85.63±2.65%)、载药量%(13.60±0.89%)、EE%(60.11±2.52%)、可浮性延长且无初始滞后、体外释药8 h以上、大鼠胃潴留8 h以上、流动性好等特点。结论:优化后的藻酸盐微球可使藻酸盐在胃中长时间滞留,具有良好的生物利用度和患者依从性。
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Statistically-Based Optimization of Verapamil Hydrochloride Loaded Gastroretentive Alginate Beads
Objectives: A gastroretentive drug delivery system is one of many oral drug delivery systems developed to improve drug bioavailability and control drug release. It allows prolongation of drug gastric residence period for several hours. Verapamil Hydrochloride (VerHCl) is a good candidate for gastro retention because it has narrow absorption window and short half life. The goal of this study was formulation and evaluation of optimized VerHCl loaded gastroretentive alginate beads for increasing drug bioavailability and decreasing its dosing frequency. Methods: VerHCl loaded alginate beads were prepared according to 2 3 full factorial design using ionotropic emulsion gelation method. The effect of three formulation variables; oil concentration (%w/v) (X 1 ), polymer concentration (%w/v) (X 2 ) and drug to polymer ratio (X 3 ) was investigated on mean diameter (Y 1 ), drug loading % (Y 2 ), entrapment efficiency (EE%) (Y 3 ), % drug released at 1 (Y 4 ), 5 (Y 5 ) and 8 hr (Y 6 ). The optimized formula was further assessed in terms of in vitro floating, in-vitro drug release, in vivo gastro retention in rats and flowability. Results : Design-Expert® numerical optimization revealed that optimum formulation levels for VerHCl loaded alginate gastroretentive beads were; oil concentration (X 1 ) = 17.2 %w/v, polymer concentration (X 2 ) = 4.34 %w/v and drug to polymer ratio=1.2. The optimized formula exhibited yield% (85.63± 2.65%), Drug loading% (13.60±0.89%), EE% (60.11± 2.52%), prolonged floatability with no initial lag time, sustained in vitro drug release over 8 hr, gastroretention in rats over 8 hr and good flowability. Conclusion: The optimized formula of VerHCl loaded alginate beads could be promising for retaining VerHCl in stomach for a prolonged time which could possibly be advantageous in terms of bioavailability and patient compliance.
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