苯磺酸氨氯地平缓释漂浮微丸的研制与评价

K. Manjunath, S. V. Kulkarni
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摘要

本研究的目的是设计和开发苯磺酸氨氯地平缓释微丸配方。氨氯地平是一种口服降压药,常用作钙通道阻滞剂治疗高血压。它经常用于治疗心绞痛等心脏病。高血压或心绞痛时,氨氯地平的剂量最初为每天5毫克,后来口服调整为每天10毫克。氨氯地平在酸性ph中溶解度最大。氨氯地平生物利用度高,可达60% ~ 80%,消除速度慢。采用挤压滚圆技术制备了不同药聚合物比的苯磺酸氨氯地平。研究了聚合物配比对微丸药物释放速度的影响。微丸在0.1盐酸溶液中体外释放12小时。研究表明,药物释放可以通过改变聚合物的浓度来调节。制备了球团,并对其松散容重、攻丝容重、压缩系数和休止角进行了评价,取得了满意的效果。以颗粒性能和体外释药性能为基础,对制剂进行优化。所得到的制剂具有可接受的药物含量和低易碎性。将释放数据拟合到Higuchi、Korsmeyer- Peppas、一阶和零阶数学模型中,评价药物释放的动力学和机制。关键词:缓释,乙基纤维素,HPMC,微丸,苯磺酸氨氯地平
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Formulation and Evaluation of Sustained Release Floating Pellets of Amlodipine Besylate
The aim of the present study is to design and develop sustained release pellets formulations for Amlodipine besylate. Amlodipine is an oral antihypertensive agent, commonly used as calcium channel blocker for treating high blood pressure. It is frequently used to treat heart diseases like angina pectoris. The dose of Amlodipine in case of hypertension or angina initially 5 mg daily later adjusted to 10 mg daily by oral route. Amlodipine has a maximum solubility in acidic pH. Amlodipine has a high bioavailability ranging from 60 to 80 % and slow rate of elimination. Amlodipine besylate at different drug to polymer ratios were prepared by extrusion and spheronization technique. The influence of the proportion of the polymer on the release rate of the drug from the pellets was studied. The in-vitro release studies of pellets were carried out in 0.1N HCl for 12 hours. The studies indicated that the drug release can be modulated by varying the concentration of the polymer. Pellets were prepared and evaluated for loose bulk density, tapped bulk density, compressibility index and angle of repose, shows satisfactory results. Formulation was optimized on the basis of acceptable pellet properties and in-vitro drug release. The resulting formulation produced robust pellets with acceptable drug content and low friability. The release data was fitted to various mathematical models such as, Higuchi, Korsmeyer- Peppas, First-order and Zero-order to evaluate the kinetics and mechanism of the drug release. Keywords: Sustained release, Ethyl cellulose, HPMC, Pellets, Amlodipine besylate
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