Singh Baljit, Chauhan G S, Sharma D K, Kant Anil, Gupta I, Chauhan Nirmala
Department of Chemistry, Himachal Pradesh University, Shimla 171005, India.
Int J Pharm. 2006 Nov 15;325(1-2):15-25. doi: 10.1016/j.ijpharm.2006.06.007. Epub 2006 Jun 9.
In order to utilize the psyllium husk, a medicinally important natural polysaccharide, for developing the novel hydrogels for the controlled drug delivery device, we have prepared psyllium and N-hydroxymethylacrylamide based polymeric networks by using N,N'-methylenebisacrylamide (N,N'-MBAAm) as crosslinker. The polymeric networks thus formed were characterized with scanning electron micrography (SEM), FTIR and thermogravimetric analysis (TGA) techniques to study various structural aspects of the networks and also with the swelling response of the polymeric networks as a function of time, temperature, pH and [NaCl]. Equilibrium swelling has been observed to depend on both structural aspects of the polymers and environmental factors. Maximum P(s) 748.3 was observed at 13.0 x 10(-3)mol/L of [N,N'-MBAAm] in 0.5M NaOH solution. The release dynamics of model drugs (salicylic acid and tetracycline hydrochloride) from hydrogels has also been discussed, for the evaluation of the release mechanism and diffusion coefficients. The effect of pH on the release pattern of tetracycline has been studied by varying the pH of the release medium. In release medium of pH 7.4 buffer the release pattern of tetracycline drastically changes to the extent that mechanism of drug diffusion shifted from non-Fickian diffusion to Fickian diffusion. It has been observed that diffusion exponent "n" have 0.71, 0.67 and 0.52 values and gel characteristic constant 'k' have 1.552 x 10(-2), 2.291 x 10(-2) and 5.309 x 10(-2) values in distilled water, pH 2.2 buffer and pH 7.4 buffer, respectively, for tetracycline release. In solution of pH 7.4 buffer, the rate of polymer chain relaxation was more as compare to the rate of drug diffusion from these hydrogels and it follows Fick's law of diffusion. The value of the initial diffusion coefficient for the release of tetracycline hydrochloride was higher than the value of late time diffusion coefficient in each release medium indicating that in the start, the diffusion of drug from the polymeric matrix was fast as compare to the latter stages.
为了利用药用重要天然多糖车前子壳开发用于控释给药装置的新型水凝胶,我们以N,N'-亚甲基双丙烯酰胺(N,N'-MBAAm)为交联剂制备了基于车前子壳和N-羟甲基丙烯酰胺的聚合物网络。通过扫描电子显微镜(SEM)、傅里叶变换红外光谱(FTIR)和热重分析(TGA)技术对如此形成的聚合物网络进行表征,以研究网络的各种结构方面,还研究了聚合物网络作为时间、温度、pH值和[NaCl]函数的溶胀响应。已观察到平衡溶胀取决于聚合物的结构方面和环境因素。在0.5M NaOH溶液中,当[N,N'-MBAAm]浓度为13.0×10⁻³mol/L时,观察到最大溶胀度P(s)为748.3。还讨论了模型药物(水杨酸和盐酸四环素)从水凝胶中的释放动力学,以评估释放机制和扩散系数。通过改变释放介质的pH值研究了pH值对四环素释放模式的影响。在pH 7.4缓冲液的释放介质中,四环素的释放模式发生了巨大变化,以至于药物扩散机制从非菲克扩散转变为菲克扩散。已观察到,对于四环素释放,在蒸馏水、pH 2.2缓冲液和pH 7.4缓冲液中,扩散指数“n”分别具有0.71、0.67和0.52的值,凝胶特征常数“k”分别具有1.552×10⁻²、2.291×10⁻²和5.309×10⁻²的值。在pH 7.4缓冲液溶液中,与药物从这些水凝胶中的扩散速率相比,聚合物链松弛速率更快,并且遵循菲克扩散定律。在每种释放介质中,盐酸四环素释放的初始扩散系数值高于后期扩散系数值,这表明在开始时,药物从聚合物基质中的扩散比后期阶段更快。