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首页> 外文期刊>AAPS PharmSciTech >Response Surface Methodology to Optimize Novel Fast Disintegrating Tablets Using β Cyclodextrin as Diluent
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Response Surface Methodology to Optimize Novel Fast Disintegrating Tablets Using β Cyclodextrin as Diluent

机译:响应面方法优化以β-环糊精为稀释剂的新型快速崩解片

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摘要

The objective of this work was to apply response surface approach to investigate main and interaction effects of formulation parameters in optimizing novel fast disintegrating tablet formulation using β cyclodextrin as a diluent. The variables studied were diluent (β cyclodextrin, X 1), superdisintegrant (Croscarmellose sodium, X 2), and direct compression aid (Spray dried lactose, X 3). Tablets were prepared by direct compression method on B2 rotary tablet press using flat plain-face punches and characterized for weight variation, thickness, disintegration time (Y 1), and hardness (Y 2). Disintegration time was strongly affected by quadratic terms of β cyclodextrin, croscarmellose sodium, and spray-dried lactose. The positive value of regression coefficient for β cyclodextrin suggested that hardness increased with increased amount of β cyclodextrin. In general, disintegration of tablets has been reported to slow down with increase in hardness. However in the present study, higher concentration of β cyclodextrin was found to improve tablet hardness without increasing the disintegration time. Thus, β cyclodextrin is proposed as a suitable diluent to achieve fast disintegrating tablets with sufficient hardness. Good correlation between the predicted values and experimental data of the optimized formulation validated prognostic ability of response surface methodology in optimizing fast disintegrating tablets using β cyclodextrin as a diluent.
机译:这项工作的目的是应用响应面方法研究配方参数的主要和相互作用效应,以β环糊精为稀释剂优化新型快速崩解片剂。研究的变量包括稀释剂(β环糊精,X 1 ),超崩解剂(交联羧甲基纤维素钠,X 2 )和直接压片助剂(喷雾干燥乳糖,X 3)。 )。通过直接压片法在B2旋转压片机上使用平整的平面冲头制备片剂,并表征其重量变化,厚度,崩解时间(Y 1 )和硬度(Y 2 )。 β环糊精,交联羧甲基纤维素钠和喷雾干燥的乳糖的二次方强烈影响崩解时间。 β-环糊精的回归系数为正值,表明硬度随β-环糊精含量的增加而增加。通常,据报道片剂的崩解随着硬度的增加而减慢。然而,在本研究中,发现较高浓度的β-环糊精可改善片剂硬度,而不会增加崩解时间。因此,有人提出将β-环糊精作为合适的稀释剂来获得具有足够硬度的快速崩解片剂。优化配方的预测值与实验数据之间的良好相关性验证了响应面方法在使用β-环糊精作为稀释剂优化快速崩解片中的预后能力。

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