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首页> 外文期刊>Journal of biomaterials science >Evaluation of a matrix tablet prepared with polyacrylamide-g-sodium alginate co-polymers and their partially hydrolyzed co-polymers for sustained release of diltiazem hydrochloride
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Evaluation of a matrix tablet prepared with polyacrylamide-g-sodium alginate co-polymers and their partially hydrolyzed co-polymers for sustained release of diltiazem hydrochloride

机译:用聚丙烯酰胺-海藻酸钠共聚物及其部分水解的共聚物制备的基质片剂对盐酸地尔硫卓的持续释放的评价

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摘要

Diltiazem hydrochloride (DTZ) matrix tablets were prepared using polyacrylamide-grafted sodium alginate (PAam-g-SA) co-polymers having different percentages of grafting and their partially hydrolyzed products with a view to achieve sustained release of the highly water-soluble drug. PAam-g-SA co-polymers having different percentages of grafting were synthesized by free radical polymerization using acrylamide (Aam) as monomer and ammonium persulphate (APS) as initiator, and the resulting co-polymers were subjected to alkaline hydrolysis to produce their corresponding partially hydrolyzed co-polymers. Matrix tablets of DTZ were prepared by wet granulation using either PAam-g-SA co-polymers or partially hydrolyzed PAam-g-SA co-polymers. The effect of percentage grafting, drug load and calcium gluconate (CG), used as excipient, was studied in simulated gastrointestinal fluid. While the tablets prepared using the co-polymer having higher percentages of grafting provided faster drug release (100% in 5.5 h), the tablets prepared with the corresponding hydrolyzed co-polymer released the drug slowly (71% in 12 h). This behaviour in release appeared to be controlled by the relative magnitude of the viscosity and the swelling capacity of the copolymers. Moreover, increase in drug load tended to decrease the drug release from all types of tablets and increase in the amount of CG increased the drug release. FT-IR and DSC studies revealed the absence of any interaction between the drug and the co-polymers. The matrix tablet made of partially hydrolyzed graft co-polymer having the highest percentage of grafting provided the most sustained release of the drug.
机译:使用具有不同接枝百分比的聚丙烯酰胺接枝海藻酸钠(PAam-g-SA)共聚物及其部分水解的产品制备盐酸地尔硫卓(DTZ)基质片剂,以实现高度水溶性药物的持续释放。以丙烯酰胺(Aam)为单体,过硫酸铵(APS)为引发剂,通过自由基聚合反应合成了接枝率不同的PAam-g-SA共聚物,并对所得共聚物进行碱水解得到相应的共聚物。部分水解的共聚物。通过使用PAam-g-SA共聚物或部分水解的PAam-g-SA共聚物进行湿法制粒来制备DTZ基质片剂。在模拟胃肠道液中研究了接枝百分数,药物载量和葡萄糖酸钙(CG)作为赋形剂的影响。虽然使用接枝百分比更高的共聚物制备的片剂提供了更快的药物释放(5.5小时内为100%),但使用相应的水解共聚物制备的片剂却缓慢地释放了药物(12小时内为71%)。释放的这种行为似乎是由共聚物的相对粘度和溶胀能力控制的。此外,药物负荷的增加趋于减少从所有类型的片剂中的药物释放,并且CG量的增加增加药物的释放。 FT-IR和DSC研究表明,药物与共聚物之间没有任何相互作用。由具有最高接枝百分比的部分水解的接枝共聚物制成的基质片剂提供了最持久的药物释放。

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