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Floating Matrix Tablets of Domperidone Formulation and Optimization Using Simplex Lattice Design

机译:多潘立酮的漂浮基质片剂的配制及单晶格设计的优化

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摘要

The purpose of this research was to prepare a floating matrix tablet containing domperidone as a model drug. Polyethylene oxide (PEO) and hydroxypropyl methylcellulose (HPMC) were evaluated for matrix-forming properties. A simplex lattice design was applied to systemically optimize the drug release profile. The amounts of PEO WSR 303, HPMC K15M and sodium bicarbonate were selected as independent variables and floating lag time, time required to release 50% of drug (t50) and 80% of drug (t80), diffusion coefficient (n) and release rate (k) as dependent variables. The amount of PEO and HPMC both had significant influence on the dependent variables. It was found that the content of PEO had dominating role as drug release controlling factor, but using suitable concentration of sodium bicarbonate, one can tailor the desired drug release from hydrophilic matrixes. The linear regression analysis and model fitting showed that all these formulations followed Korsmeyer and Peppas model, which had a higher value of correlation coefficient (r). The tablets of promising formulation were found to be stable for 3 months under accelerated (40°C / 75% RH) stability testing.
机译:这项研究的目的是制备一种含有多潘立酮作为模型药物的漂浮基质片剂。评价了聚环氧乙烷(PEO)和羟丙基甲基纤维素(HPMC)的基质形成性能。应用单纯形格子设计来系统地优化药物释放曲线。选择PEO WSR 303,HPMC K15M和碳酸氢钠的量作为自变量和浮动滞后时间,释放50%药物(t50)和80%药物(t80)所需的时间,扩散系数(n)和释放速率(k)作为因变量。 PEO和HPMC的量均对因变量有重大影响。发现PEO的含量起着药物释放控制因子的主导作用,但是使用适当浓度的碳酸氢钠,可以调节亲水性基质中所需的药物释放。线性回归分析和模型拟合表明,所有这些公式均遵循Korsmeyer和Peppas模型,它们的相关系数(r)值较高。发现有前途的片剂在加速(40°C / 75%RH)稳定性测试中可稳定3个月。

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