Department of Polymer Engineering and Technology, University of the Punjab, Lahore, Pakistan.
Department of Polymer Engineering and Technology, University of the Punjab, Lahore, Pakistan.
Int J Biol Macromol. 2018 Jul 15;114:890-897. doi: 10.1016/j.ijbiomac.2018.02.107. Epub 2018 Feb 17.
Novel pH-sensitive γ-irradiated low molecular weight (MW) chitosan (CS) (pre-irradiated) and poly (vinyl alcohol) (PVA) blended injectable hydrogels, crosslinked with varying concentrations of glycerol, were fabricated for drug delivery application. The effect of low MW irradiated CS on controlled drug release was evaluated to address the problem of higher viscosity and lower solubility of high MW CS. The FTIR spectra of hydrogels depicted the presence of all the incorporated functional groups and the developed interactions (physical and chemical). The surface morphology of hydrogels assessed by scanning electron microscope exhibited porous microstructure. All hydrogels were subjected to the swelling analysis in different media (water, buffer and electrolytes). The pH sensitive hydrogel samples exhibited less swelling at acidic and neutral pH while higher swelling at basic pH. CPG-0.5 showed the highest swelling at all pH media as compared to other hydrogel samples. CPG-1.0 was selected for the release analysis of drug because of its highest swelling (114.47%) in distilled water having neutral pH. It was loaded with model drug (Montelukast Sodium) during the preparation phase and studied for drug release capability. The in-vitro controlled release evaluation of hydrogel (CPG-1.0) was performed in SGF and SIF using UV-visible spectroscopy. The results confirmed their applications in injectable drug release systems as all the loaded drug was released in 30 min in SGF (pH -1.2) while the release of drug in SIF (pH -6.8) was in controlled manner (99.62% in 3 h). The improved antibacterial activity of these hydrogel films was owing to the fact that the γ-irradiated low MW CS has ruptured the bacterial cell and its metabolism more efficiently by inflowing in the cell.
新型 pH 敏感γ-辐照低分子量(MW)壳聚糖(CS)(预辐照)和聚(乙烯醇)(PVA)混合可注射水凝胶,用不同浓度的甘油交联,用于药物输送应用。评价了低 MW 辐照 CS 对控制药物释放的影响,以解决高 MW CS 粘度高、溶解度低的问题。水凝胶的傅里叶变换红外(FTIR)光谱表明存在所有掺入的官能团和形成的相互作用(物理和化学)。扫描电子显微镜评估的水凝胶表面形态显示出多孔微结构。所有水凝胶均在不同介质(水、缓冲液和电解质)中进行溶胀分析。在酸性和中性 pH 下,pH 敏感水凝胶样品的溶胀较小,而在碱性 pH 下的溶胀较大。与其他水凝胶样品相比,CPG-0.5 在所有 pH 介质中表现出最高的溶胀。由于在中性 pH 的蒸馏水中具有最高的溶胀(114.47%),因此选择 CPG-1.0 进行药物释放分析。在制备阶段,它被加载了模型药物(孟鲁司特钠),并研究了其释放能力。在使用 UV-可见光谱法在 SGF 和 SIF 中进行水凝胶(CPG-1.0)的体外控释评价。结果证实了它们在可注射药物释放系统中的应用,因为所有负载的药物在 SGF(pH-1.2)中 30 分钟内释放,而药物在 SIF(pH-6.8)中的释放以控制方式进行(3 小时内 99.62%)。这些水凝胶膜的抗菌活性得到提高,是因为γ-辐照低 MW CS 有效地破裂了细菌细胞及其新陈代谢,使其更容易流入细胞。