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Formulation and Optimization of Gastric Bioadhesive Tablets of Diltiazem Hydrochloride using Central Composite Design

机译:中央复合设计法制备盐酸地尔硫ze胃生物粘附片

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Purpose: To develop bioadhesive tablets of diltiazem hydrochloride with a unique combination of bioadhesion and drug release. Method: Tablets were prepared by physical blending of diltiazem hydrochloride with two polymers, viz., carbopol and hydroxylpropyl methyl cellulose in different ratio along with other excipients. A 32 central composite design was employed to optimize the formulations on the basis of phycochemical properties, bioadhesive strength (measured as force of detachment from gastric mucosa) and in vitro drug release. HPMC K 4M and Carbopol 934P were taken as the independent variables. Contour plots were drawn and optimum formulations were selected by feasibility and grid searches. Results: The tablets showed excellent bioadhesive strength which varied from 7.6 to 21 g. Both polymers had effect on the bioadhesive strength of the tablets and maximum bioadhesion was observed at the highest level of both the polymers. The drug release from the formulation varied from 79.74 to 94.54 % in 12 h. The diffusion exponent (n) of Korsmeyer-Peppas model ranged from 0.491 to 0.658 which indicates the mechanism of drug release was anomalous transport; the diffusion exponent (n) increased with increase in the amount of either polymer in the bioadhesive tablet. Conclusion: Floating bioadhesive tablets of diltiazem hydrochloride with good bioadhesion and controlled release characteristics is feasible.
机译:目的:开发具有生物粘附力和药物释放的独特组合的盐酸地尔硫卓生物粘附剂。方法:通过将盐酸地尔硫卓与两种聚合物(不同比例的卡波姆和羟丙基甲基纤维素)与其他赋形剂物理混合,制备片剂。采用3 2 中心复合设计,根据其理化性质,生物粘附强度(以从胃粘膜脱离的力来衡量)和体外药物释放来优化配方。 HPMC K 4M和Carbopol 934P作为自变量。绘制等高线图,并通过可行性和网格搜索选择最佳配方。结果:片剂显示出优异的生物粘附强度,从7.6到21 g不等。两种聚合物均对片剂的生物粘附强度有影响,并且在两种聚合物的最高含量下均观察到最大的生物粘附性。制剂中的药物释放在12小时内从79.74%到94.54%不等。 Korsmeyer-Peppas模型的扩散指数(n)介于0.491至0.658之间,这表明药物释放的机制是异常运输。扩散指数(n)随生物粘附片剂中任一种聚合物含量的增加而增加。结论:具有良好的生物粘附性和控释特性的盐酸地尔硫卓漂浮生物粘附片是可行的。

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