Encapsulation of water-insoluble drug by a cross-linking technique: effect of process and formulation variables on encapsulation efficiency, particle size, and in vitro dissolution rate.

AAPS PharmSci Pub Date : 2004-03-22 DOI:10.1208/ps060112
Pralhad T Tayade, Rajendrakumar D Kale
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引用次数: 58

Abstract

Ibuprofen-gelatin micropellets were prepared by the cross-linking technique using formaldehyde. Spherical micropellets having an entrapment efficiency of 65% to 85% were obtained. The effect of core to coat ratio, speed of agitation, temperature, and volume of oil phase was studied with respect to entrapment efficiency, micropellet size, and surface characteristics. Fourier transform infrared spectroscopy and differential scanning calorimetric analysis confirmed the absence of any drug-polymer interaction. X-ray diffraction patterns showed that there is a decrease in crystallinity of the drug. The micromeritic properties of micropellets were found to be slightly changed by changing various processing parameters to give micropellets of good flow property. The in vitro release profile could be altered significantly by changing various processing parameters to give a controlled release of drug from the micropellets. The stability studies of the drug-loaded micropellets showed that the drug was stable at storage conditions of room temperature, 37 degrees C, 25 degrees/60% relative humidity (RH) and 45 degrees/60% RH, for 12 weeks.

交联技术对水不溶性药物的包封:工艺和配方变量对包封效率、粒径和体外溶出率的影响。
采用甲醛交联法制备了布洛芬-明胶微球。获得了包封效率为65% ~ 85%的球形微球。研究了芯衣比、搅拌速度、温度和油相体积对捕集效率、微球尺寸和表面特性的影响。傅里叶变换红外光谱和差示扫描量热分析证实没有任何药物-聚合物相互作用。x射线衍射图显示药物的结晶度有所下降。通过改变各种工艺参数,使微球具有良好的流动性能,微球的微力学性能略有变化。通过改变各种工艺参数,可以显著改变微球的体外释放谱,从而使药物从微球中可控释放。对载药微球的稳定性研究表明,在室温、37℃、25℃/60%相对湿度和45℃/60%相对湿度条件下,载药微球在12周内保持稳定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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