Faculty of Pharmacy, Bahauddin Zakariya University, Multan, Pakistan.
Adv Clin Exp Med. 2013 Mar-Apr;22(2):177-83.
The aim of the present work was to formulate flurbiprofen (FLB) loaded microspheres of hydroxypropylmethycellulose and ethylcellulose polymers to study the effect of different proportions of the polymer mixture on the release behavior of the drug.
A series of microspheres were prepared using tween-80 as a surfactant. The prepared microspheres were evaluated for entrapment efficiency (%) and percentage recovery. Drug release was performed in USP phosphate buffers of pH 1.2 and 6.8. Drug release data were plotted in various kinetic models, including zero-order, first-order, Higuchi and Korsmeyer-Peppas models to investigate the optimum composition suitable for sustained drug delivery.
A significant difference in drug release kinetics was observed by varying the composition of hydroxypropylmethycellulose/ethylcellulose. As the ratio of EC/HPMC was increased, the release rate of flurbiprofen decreased.
This study demonstrated the potential of polymer combinations in the formulation of microspheres for water-insoluble drugs utilizing HPMC and EC as release retardant materials, using a simple solvent evaporation microencapsulation technique. It was observed that various physico-chemical properties of the microspheres varied according to the change in polymer concentrations used in the formulations.
本工作旨在将氟比洛芬(FLB)载入羟丙甲纤维素和乙基纤维素聚合物微球中,研究不同比例聚合物混合物对药物释放行为的影响。
采用吐温-80 作为表面活性剂,制备一系列微球。对包封效率(%)和回收率进行评估。在 pH 值为 1.2 和 6.8 的 USP 磷酸盐缓冲液中进行药物释放。通过零级、一级、Higuchi 和 Korsmeyer-Peppas 等多种动力学模型绘制药物释放数据,研究适合持续药物释放的最佳组合。
通过改变羟丙甲纤维素/乙基纤维素的组成,观察到药物释放动力学的显著差异。随着 EC/HPMC 比例的增加,氟比洛芬的释放速率降低。
本研究利用 HPMC 和 EC 作为缓释材料,采用简单的溶剂蒸发微囊化技术,展示了聚合物组合在水不溶性药物微球制剂中的潜力。观察到微球的各种物理化学性质随制剂中使用的聚合物浓度的变化而变化。