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FORMULATION, CHARACTERIZATION AND IN VITRO EVALUTION OF GABAPENTIN FLOATING MICROSPHERES

机译:加布邦浮动微球的制剂,表征和体外评价

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The present study involves the design and characterization of floating microspheres with gabapentin as model drug for prolongation of gastric residence time. Gabapentin floating microspheres were prepared by o/w/o emulsification solvent diffusion technique using ethyl cellulose as the rate controlling polymer at various concentrations. The shape and surface morphology of microspheres were characterized by optical and scanning electron microscopy. Absence of drug-polymer interaction was confirmed by FTIR analysis. In vitro drug release studies were performed and drug release kinetics was evaluated using the linear regression method. Effects of polymer concentration, solvent composition, particle size, drug entrapment efficiency and drug release were also studied. The synthesized microspheres exhibited prolonged drug release (> 12 h) and remained buoyant for > 24 h. The drug entrapment efficiency was in the range 46-70 %. At higher polymer concentration, the average particle size was increased and the drug release rate decreased. In vitro studies revealed diffusion-controlled drug release from the microspheres. Among all the formulations (F1-F5), F4 is the optimized formulation.
机译:本研究涉及浮动微球的设计和表征,与加巴文丁作为模型药物,用于延长胃停留时间。通过O / W / O乳化溶剂扩散技术制备Gabapentin浮动微球,其使用乙基纤维素作为各种浓度的速率控制聚合物。通过光学和扫描电子显微镜表征微球的形状和表面形态。通过FTIR分析证实了药物 - 聚合物相互作用。进行体外药物释放研究,使用线性回归法评估药物释放动力学。还研究了聚合物浓度,溶剂组合物,粒度,药物夹带效率和药物释放的影响。合成的微球延长药物释放(> 12小时),仍然浮动> 24小时。药物夹带效率为46-70%。在较高的聚合物浓度下,增加了平均粒度,药物释放速率降低。体外研究揭示了来自微球的扩散控制的药物释放。在所有制剂(F1-F5)中,F4是优化的制剂。

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