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首页> 外文期刊>International Journal of Pharmaceutics >Compaction properties, drug release kinetics and fronts movement studies from matrices combining mixtures of swellable and inert polymers. II. Effect of HPMC with different degrees of methoxy/hydroxypropyl substitution.
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Compaction properties, drug release kinetics and fronts movement studies from matrices combining mixtures of swellable and inert polymers. II. Effect of HPMC with different degrees of methoxy/hydroxypropyl substitution.

机译:结合可溶胀和惰性聚合物混合物的基质的压实特性,药物释放动力学和前沿运动研究。二。 HPMC具有不同程度的甲氧基/羟丙基取代作用。

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摘要

The aim of this paper is the modification of the release behaviour of hydrophilic HPMC-based matrices of different substitution degree (E4M, F4M, K4M) by the introduction of a new inert polymeric excipient hydroxypropylcellulose-methyl methacrylate (HCMMA) at different proportions (75:25, 50:50 and 25:75). The product (HCMMA) was dried either in a vacuum oven--OD copolymers--or freeze-dried-FD copolymers. HPMC E4M formulations showed the worst compaction properties. All mixtures presented a percentage of theophylline release between 47% and 32% at 1440 min. The drying methods employed had only influence over the drug release in E4M and K4M formulations, at higher proportions of HCMMA, showing the highest release the mixtures containing OD-HCMMA. Combinations of diffusion and erosion release mechanisms were found to matrix tablets. All mixtures with F4M did not modify relaxation rate constant values of Peppas and Shalin equation (k(r)) respect to F4M 100%. However, all mixtures with K4M showed the highest k(r) values, which decreased when HCMMA proportion decreased. Only K4M mixtures showed a different diffusion front movement than the other mixtures. The modulation of theophylline monoaxial release was obtained using a high percentage of HCMMA, and HPMCs with a substantial difference of hydroxypropyl groups (F4M and K4M or E4M).
机译:本文的目的是通过引入不同比例的新型惰性聚合物赋形剂羟丙基纤维素-甲基丙烯酸甲酯(75)来改变不同取代度的亲水性HPMC基基质(E4M,F4M,K4M)的释放行为:25、50:50和25:75)。产品(HCMMA)在真空烘箱中干燥-OD共聚物-或冷冻干燥FD共聚物。 HPMC E4M配方的压实性能最差。在1440分钟时,所有混合物的茶碱释放百分比在47%至32%之间。所用的干燥方法仅对HCMMA比例较高的E4M和K4M制剂中的药物释放有影响,显示出含有OD-HCMMA的混合物的最高释放。发现扩散和侵蚀释放机制的组合对基质片剂。相对于100%F4M,所有具有F4M的混合物均未改变Peppas和Shalin方程(k(r))的弛豫速率常数。但是,所有含K4M的混合物均显示出最高的k(r)值,当HCMMA比例降低时,k(r)值降低。只有K4M混合物显示出与其他混合物不同的扩散前移。使用高百分比的HCMMA和具有明显不同羟丙基(F4M和K4M或E4M)的HPMC可获得茶碱单轴释放的调节作用。

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