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Sustained release characteristics of tablets prepared with mixed matrix of sodium carrageenan and chitosan: effect of polymer weight ratio, dissolution medium, and drug type.

机译:角叉菜胶钠和壳聚糖混合基质制备的片剂的缓释特性:聚合物重量比,溶出介质和药物类型的影响。

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The interpolymeric complexation of carrageenan and chitosan was investigated for its effect on drug release from polymeric matrices in comparison to single polymers. For this purpose, matrices with carrageenan: chitosan (CG:CS) ratios of 100%, 75%, 50%, 25%, and 0% were prepared at 1:1 drug to polymer ratio. The effect of dissolution medium and drug type on drug release from the formulations was addressed. Two model drugs were utilized: diltiazem HCl (DZ) as a salt of a basic drug and diclofenac Na (DS) as a salt of an acidic drug. Three dissolution media were used: water, simulated gastric fluid (SGF), and simulated intestinal fluid (SIF). Some combinations of the two polymers showed remarkable sustained release effect on DZ in comparison to the single polymers in water and SGF. However, no apparent effect for the combination on DZ release was shown in SIF. The medium effect was explained by the necessity of chitosan ionization, which could be attained by the acidic SGF or microacidic environment created by the used acidic salt of DZ in water, but not in SIF. An interaction between the medium type and CG:CS ratio was also found. With DS, the polymer combinations had similar dissolution profiles to those of the single polymers in water and SIF, which was explained by the lack of chitosan ionization by the medium or the drug basic salt. The dissolution profiles could not be obtained in SGF, which was attributed to the conversion of DS into diclofenac free acid. The importance of chitosan ionization for its interaction with CG to have an effect on the release of DS was demonstrated by performing dissolution of SGF presoaked tablets of DS in SIF, which showed an effect of combining the two polymers on sustaining the drug release.
机译:与单一聚合物相比,研究了角叉菜胶和壳聚糖的共聚络合物对聚合物基质中药物释放的影响。为此,制备了角叉菜胶:壳聚糖(CG:CS)比率为100%,75%,50%,25%和0%的基质,药物与聚合物的比率为1:1。研究了溶出介质和药物类型对制剂中药物释放的影响。使用了两种模型药物:盐酸地尔硫卓(DZ)作为碱性药物的盐,双氯芬酸钠(DS)作为酸性药物的盐。使用了三种溶出介质:水,模拟胃液(SGF)和模拟肠液(SIF)。与水和SGF中的单一聚合物相比,两种聚合物的某些组合对DZ表现出显着的持续释放作用。然而,在SIF中没有显示出该组合对DZ释放的明显作用。壳聚糖电离的必要性可以解释这种中等效应,这可以通过在水中使用DZ的酸性盐而不是在SIF中使用酸性SGF或微酸性环境来实现。还发现了培养基类型与CG:CS比之间的相互作用。使用DS,聚合物组合在水中和SIF中的溶出曲线与单个聚合物相似,这可以通过介质或药物碱性盐缺乏壳聚糖电离来解释。在SGF中无法获得溶出曲线,这归因于DS转化为双氯芬酸游离酸。壳聚糖电离与其与CG相互作用对DS释放具有影响的重要性已通过在SIF中进行DS的SGF预浸片剂的溶解而得到证明,这表明将两种聚合物结合在维持药物释放上的作用。

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