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首页> 外文期刊>Brazilian Journal of Pharmaceutical Sciences >Formulation and in vitro evaluation of mucoadhesive controlled release matrix tablets of flurbiprofen using response surface methodology
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Formulation and in vitro evaluation of mucoadhesive controlled release matrix tablets of flurbiprofen using response surface methodology

机译:氟比洛芬粘膜粘附控释基质片剂的配制及体外评价

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The objective of the current study was to formulate mucoadhesive controlled release matrix tablets of flurbiprofen and to optimize its drug release profile and bioadhesion using response surface methodology. Tablets were prepared via a direct compression technique and evaluated for in vitro dissolution parameters and bioadhesive strength. A central composite design for two factors at five levels each was employed for the study. Carbopol 934 and sodium carboxymethylcellulose were taken as independent variables. Fourier transform infrared (FTIR) spectroscopy studies were performed to observe the stability of the drug during direct compression and to check for a drug-polymer interaction. Various kinetic models were applied to evaluate drug release from the polymers. Contour and response surface plots were also drawn to portray the relationship between the independent and response variables. Mucoadhesive tablets of flurbiprofen exhibited non-Fickian drug release kinetics extending towards zero-order, with some formulations (F3, F8, and F9) reaching super case II transport, as the value of the release rate exponent (n) varied between 0.584 and 1.104. Polynomial mathematical models, generated for various response variables, were found to be statistically significant (P0.05). The study also helped to find the drug's optimum formulation with excellent bioadhesive strength. Suitable combinations of two polymers provided adequate release profile, while carbopol 934 produced more bioadhesion.
机译:当前研究的目的是配制氟比洛芬的粘膜粘附控释基质片剂,并使用响应表面方法优化其药物释放曲线和生物粘附。通过直接压片技术制备片剂,并评估其体外溶出参数和生物粘附强度。该研究采用了针对五个水平的两个因子的中央复合设计。将Carbopol 934和羧甲基纤维素钠作为自变量。进行了傅里叶变换红外(FTIR)光谱研究,以观察药物在直接压片期间的稳定性,并检查药物与聚合物之间的相互作用。应用了各种动力学模型来评估聚合物中的药物释放。还绘制了轮廓和响应面图以描绘独立变量和响应变量之间的关系。氟比洛芬的粘膜粘膜片显示非菲克药物释放动力学趋向于零级,某些制剂(F3,F8和F9)达到II类超级转运,因为释放速率指数(n)的值在0.584和1.104之间变化。发现针对各种响应变量生成的多项式数学模型具有统计学意义(P <0.05)。该研究还有助于找到具有出色生物粘附强度的药物最佳配方。两种聚合物的适当组合可提供足够的释放特性,而carbopol 934可产生更多的生物粘附力。

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