Department of Chemistry, Himachal Pradesh University, Shimla 171005, India.
Carbohydr Polym. 2014 Jan 30;101:928-40. doi: 10.1016/j.carbpol.2013.10.022. Epub 2013 Oct 16.
The present article deals with design of tragacanth gum-based pH responsive hydrogel drug delivery systems. The characterization of hydrogels has been carried out by SEMs, EDAX, FTIR, (13)C NMR, XRD, TGA/DTA/DTG and swelling studies. The correlation between reaction conditions and structural parameters of polymer networks such as polymer volume fraction in the swollen state (ϕ), Flory-Huggins interaction parameter (χ), molecular weight of the polymer chain between two neighboring cross links (M¯c), crosslink density (ρ) and mesh size (ξ) has been determined. The different kinetic models such as zero order, first order, Higuchi square root law, Korsmeyer-Peppas model and Hixson-Crowell cube root model were applied and it has been observed that release profile of amoxicillin best followed the first order model for the release of drug from the polymer matrix. The swelling of the hydrogels and release of drug from the drug loaded hydrogels occurred through non-Fickian diffusion mechanism in pH 7.4 solution.
本文涉及基于黄芪胶的 pH 响应水凝胶药物传递系统的设计。通过 SEM、EDAX、FTIR、(13)C NMR、XRD、TGA/DTA/DTG 和溶胀研究对水凝胶进行了表征。已经确定了反应条件与聚合物网络的结构参数之间的相关性,例如溶胀状态下的聚合物体积分数(ϕ)、Flory-Huggins 相互作用参数(χ)、两个相邻交联点之间聚合物链的分子量(M¯c)、交联密度(ρ)和网格尺寸(ξ)。应用了不同的动力学模型,如零级、一级、Higuchi 平方根定律、Korsmeyer-Peppas 模型和 Hixson-Crowell 立方根模型,结果表明,阿莫西林的释放曲线最符合聚合物基质中药物释放的一级模型。水凝胶的溶胀和载药水凝胶中药物的释放是通过非 Fickian 扩散机制在 pH 7.4 溶液中发生的。