Hindustan Gum & Chemicals Ltd., Bhiwani 127021, Haryana, India.
Int J Biol Macromol. 2013 Jul;58:296-300. doi: 10.1016/j.ijbiomac.2013.04.002. Epub 2013 Apr 12.
pH dependent hydrogels of modified tamarind kernel polysaccharide (TKP) were synthesized by grafting with polyacrylamide chains on TKP backbone in presence of microwave irradiation and initiator. The present study is carried out to design oral controlled drug delivery systems for aspirin using synthesized hydrogels as carrier in form of tablets. TKP-g-PAM based hydrogels show significant enhancement for control release of aspirin. Release behavior of aspirin has been evaluated using USP type I apparatus in 900 mL of buffer solutions (pH 1.2, 6.8, 7.4), maintained at 37°C at 100 rpm. It is observed that with increase in percentage of grafting (% G), swelling of matrices increases whereas erosion and rate of drug release decrease. The effect of % G onto t50 value (time taken for release of 50% drug) has also been discussed. The release characteristics from the matrices under study show non-Fickian diffusion mechanism, suggesting the controlled release of aspirin.
通过在微波辐射和引发剂存在下在 TKP 主链上接枝聚丙烯酰胺链,合成了改性罗望子胶多糖(TKP)的 pH 依赖性水凝胶。本研究旨在设计使用合成水凝胶作为载体的阿司匹林口服控释给药系统,以片剂形式。TKP-g-PAM 基水凝胶对阿司匹林的控制释放有显著的增强作用。使用 USP 型 I 装置在 900 mL 的缓冲溶液(pH 1.2、6.8、7.4)中,在 37°C 和 100 rpm 下,评估了阿司匹林的释放行为。结果表明,随着接枝率(%G)的增加,基质的溶胀增加,而侵蚀和药物释放速率降低。还讨论了%G 对 t50 值(释放 50%药物所需的时间)的影响。研究中的基质的释放特性显示非 Fickian 扩散机制,表明阿司匹林的控制释放。