利用直接压缩技术开发和评估基于羟丙基甲基纤维素的环丙沙星盐酸盐浮动片剂

K. Gopaiah, J. Kumar, M. R. Teja, T. Lokesh, D. S. Sruthi, M. Roja, N. Rushitha, SK. Vahedunnisa
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引用次数: 0

摘要

主要发现和结论包括:目的和目标的配方方法 使用碳酸氢钠和 HPMC 开发浮动片剂,旨在延长胃停留时间,提高药物生物利用度。理化符合性 配制的片剂在各种理化参数上都符合标准,包括尺寸、漂浮时间、片剂密度和药物含量。药物释放动力学研究显示,动力学分析表明 F2、F5、F6 和 F7 制剂遵循 Korsmeyer-Peppas 模型,表明非菲克扩散,'n'值范围为 0.521 至 0.633,稳定性表明最佳稳定性储存条件确定为 2-8°C,储存 60 天。制剂 F2、F5、F6 和 F7 在室温、40°C 和 2-8°C条件下的稳定性分别为 30 天、60 天和 60 天,冷藏条件下的稳定性保持不变。总之,所开发的盐酸环丙沙星水动力平衡片剂具有良好的理化特性、溶出曲线和稳定性。这些片剂具有提高药物生物利用度的潜力,是上消化道局部给药的可行选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development and Assessment of Hydroxypropyl Methylcellulose-Based Floating Tablets for Ciprofloxacin HCL Using Direct Compression Technique
The key findings and conclusions include: such as formulation approaches as aim and objective Development of floating tablets using sodium bicarbonate and HPMC aimed at enhancing gastric residence time for improved drug bioavailability. Physicochemical Compliances The formulated tablets met compliance standards for various physicochemical parameters, including dimensions, floating time, tablet density, and drug content. Method of Formulations F2, F5, and F6 displayed favorable drug release profiles, with the F7 formulation exhibiting excellent release characteristics. in the evaluation the drug release kinetics studies show Kinetic analysis revealed that F2, F5, F6, and F7 formulations followed the Korsmeyer–Peppas model, indicating non-Fickian diffusion with 'n' values ranging from 0.521 to 0.633 and the stability indicates the Optimal storage conditions for stability were determined as 2-8°C for 60 days. Formulations F2, F5, F6, and F7 demonstrated stability at room temperature, 40°C, and 2-8°C for 30 days, with refrigerated storage maintaining stability throughout the 60 days. In conclusion, the developed hydrodynamically balanced tablets of Ciprofloxacin HCl exhibit promising physicochemical characteristics, dissolution profiles, and stability. These tablets hold the potential for enhancing drug bioavailability, making them a viable option for localized drug delivery in the upper gastrointestinal tract.
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