首页> 外文期刊>European journal of pharmaceutics and biopharmaceutics: official journal of Arbeitsgemeinschaft fuer Pharmazeutische Verfahrenstechnik e.V >Comparative studies on polyelectrolyte complexes and mixtures of chitosan-alginate and chitosan-carrageenan as prolonged diltiazem clorhydrate release systems.
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Comparative studies on polyelectrolyte complexes and mixtures of chitosan-alginate and chitosan-carrageenan as prolonged diltiazem clorhydrate release systems.

机译:聚电解质复合物以及壳聚糖-海藻酸盐和壳聚糖-角叉菜胶混合物作为延长的地尔硫卓氯水合物释放系统的比较研究。

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摘要

The aim of this work was to evaluate the possibility of using mixtures and/or polyelectrolyte complexes from both chitosan-alginate and chitosan-carrageenan as prolonged drug release systems. Different dissolution profiles were obtained by changing the polymer matrix system (chitosan-alginate or chitosan-carrageenan) and the method used to include these polymers into the formulation (physical mixture or polyelectrolyte complex). Drug dissolution profiles from the matrices have been discussed by considering the swelling behavior of the polymers used. The swelling behavior of the chitosan-carrageenan and chitosan-alginate systems was analyzed by using the Hopfenberg model which permits to separate the diffusional contribution, kf, from the relaxational contribution, kr, involved in solvent penetration/sorption in glassy polymers. The chitosan-alginate system is better than the chitosan-carrageenan system as prolonged drug release matrix because the drug release is controlled at low percentage of the polymers in the formulation, the mean dissolution time is high, and different dissolution profiles could be obtained by changing the mode of inclusion of the polymers. Good agreement between td and kf/kr values for the system chitosan-alginate was found, which means that the swelling behavior of the polymers controlled the drug release from the matrix. In the case of the system chitosan-carrageenan, the high capacity of carrageenan promotes the entry of water into the tablet and therefore the main mechanism of drug release would be the disintegration instead of the swelling of the matrix.
机译:这项工作的目的是评估使用壳聚糖-海藻酸盐和壳聚糖-角叉菜胶的混合物和/或聚电解质复合物作为延长药物释放系统的可能性。通过改变聚合物基质体系(壳聚糖-藻酸盐或壳聚糖-角叉菜胶),以及将这些聚合物包括在制剂中的方法(物理混合物或聚电解质复合物),可获得不同的溶出曲线。通过考虑所用聚合物的溶胀行为,已经讨论了来自基质的药物溶出曲线。通过使用Hopfenberg模型分析了壳聚糖-角叉菜胶和壳聚糖-藻酸盐系统的溶胀行为,该模型允许将扩散贡献kf与涉及玻璃聚合物中溶剂渗透/吸收的松弛贡献kr分开。壳聚糖-海藻酸酯系统比壳聚糖-角叉菜胶系统具有更长的药物释放基质,因为药物释放控制在制剂中低百分比的聚合物中,平均溶出时间长,并且通过改变可以获得不同的溶出曲线聚合物的包含方式。发现壳聚糖-藻酸盐体系的td和kf / kr值之间具有良好的一致性,这意味着聚合物的溶胀行为控制了药物从基质中的释放。就壳聚糖-角叉菜胶系统而言,角叉菜胶的高容量促进水进入片剂,因此药物释放的主要机理将是崩解而不是基质溶胀。

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