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首页> 外文期刊>Pharmaceutical development and technology >Sustained release spherical agglomerates of polymethacrylates containing mefenamic acid: in vitro release, micromeritic properties and histological studies
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Sustained release spherical agglomerates of polymethacrylates containing mefenamic acid: in vitro release, micromeritic properties and histological studies

机译:含有甲芬那酸的聚甲基丙烯酸酯缓释球形团聚体:体外释放,微胶凝性质和组织学研究

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摘要

Mefenamic acid (MA) spherical agglomerates (SAs) were prepared with various polymethacrylates having different permeability characteristics (Eudragit RS 100, Eudragit RL 100 and Eudragit L 100) and also with combination of Eudragit RS 100 and Eudragit L 100 in different ratios. SAs were prepared by spherical crystallization method using ethanol/dichloromethane solvent (crystallization) system. The influence of various formulation factors on the encapsulation efficiency, as in vitro drug release, and micromeritic properties was investigated. Target release profile of MA was also drawn. The yields of preparation and the encapsulation efficiencies were high for all formulations. The shape and surface characteristics of SAs were observed by a scanning electron microscope. The particle sizes are in the range of 0.219 +/- 0.1 to 0.482 +/- 0.25 mm (mean +/- confidence interval t(95%)). In addition, histological studies showed that the administration of MA in SAs containing Eudragit RS/L provided a distinct tissue protection in the stomach and duodenum. Differential scanning calorimetry and X-ray diffraction of powder studies showed that MA particles crystallized in the presence of polymethacrylates did not undergo structural modifications.
机译:用具有不同渗透率特性的各种聚甲基丙烯酸酯(Eudragit RS 100,Eudragit RL 100和Eudragit L 100)以及Eudragit RS 100和Eudragit L 100的不同比例制备甲芬那酸(MA)球形附聚物(SA)。通过使用乙醇/二氯甲烷溶剂(结晶)系统通过球形结晶法制备SA。研究了各种制剂因素对包封效率,体外药物释放和微胶凝性能的影响。还绘制了MA的目标释放曲线。所有制剂的制备产率和包封效率均很高。通过扫描电子显微镜观察SA的形状和表面特性。粒度在0.219 +/- 0.1至0.482 +/- 0.25mm的范围内(平均+/-置信区间t(95%))。此外,组织学研究表明,在含有Eudragit RS / L的SA中,MA的给药对胃和十二指肠具有明显的组织保护作用。粉末的差示扫描量热法和X射线衍射研究表明,在聚甲基丙烯酸酯存在下结晶的MA颗粒没有进行结构修饰。

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