首页> 外文期刊>International Journal of Pharmaceutics >Preparation and in vitro evaluation of a multiple-unit floating drug delivery system based on gas formation technique.
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Preparation and in vitro evaluation of a multiple-unit floating drug delivery system based on gas formation technique.

机译:基于气体形成技术的多单元漂浮药物递送系统的制备和体外评估。

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A multiple-unit floating drug delivery system based on gas formation technique was developed in order to prolong the gastric residence time and to increase the overall bioavailability of the dosage form. The system consists of the drug-containing core pellets prepared by extrusion-spheronization processes, which are coated with double layers of an inner effervescent layer (sodium bicarbonate) and an outer gas-entrapped polymeric membrane of an aqueous colloidal polymer dispersion (Eudragit) RL 30D, RS 30D, NE 30D). Only the system using Eudragit RL 30D as a gas-entrapped polymeric membrane could float. The time to float decreased as amount of the effervescent agent increased and coating level of gas-entrapped polymeric membrane decreased. The optimum system could float completely within 3min and maintained the buoyancy over a period of 24h. The drug release was sustained and linear with the square root of time. Increasing coating level of gas-entrapped polymeric membrane decreased the drug release. Both the rapid floating and the sustained release properties were achieved in the multiple-unit floating drug delivery system developed in this present study.
机译:为了延长胃停留时间并增加剂型的整体生物利用度,开发了基于气体形成技术的多单元漂浮药物递送系统。该系统由通过挤出滚圆法制备的含药物核心药丸组成,这些药丸的内层是泡腾剂层(碳酸氢钠)和胶体聚合物水分散体(Eudragit)RL的包裹气体的聚合物外膜30D,RS 30D,NE 30D)。只有使用Eudragit RL 30D作为捕获气体的聚合物膜的系统才能漂浮。随着起泡剂的量增加和气体包裹的聚合物膜的涂层水平降低,漂浮时间减少。最佳系统可以在3分钟内完全漂浮,并在24小时内保持浮力。药物释放是持续的,并且与时间的平方根成线性关系。夹带气体的聚合物膜的涂层水平增加会降低药物释放。在本研究中开发的多单元漂浮药物递送系统中实现了快速漂浮和持续释放特性。

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