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Preparation and characterization of pH-sensitive hydrogels based on chitosan, itaconic acid and methacrylic acid

机译:基于壳聚糖,衣康酸和甲基丙烯酸的pH敏感水凝胶的制备和表征

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摘要

Novel pH-sensitive hydrogels based on chitosan, itaconic acid and methacrylic acid were prepared in two steps. Chitosan was first ionically crosslinked with itaconic acid, after which a free radical polymerization and crosslinking of the chitosan/itaconic acid network was performed by adding methacrylic acid and a crosslinker in order to achieve better mechanical properties and tunable swelling. The samples were characterized using Fourier transform infrared spectroscopy, scanning electron microscopy, thermogravimetric analysis. X-ray diffraction, dynamic mechanical analysis and the swelling ratios of the hydrogels at various pH values (2.0-8.0). The hydrogel composition is found to have a great impact on the hydrogel structure, mechanical and thermal properties, morphology and swelling kinetics. The highly porous morphology of the gels is probably connected with the bulky chitosan/itaconic acid network which reduces the degree of crosslinking in the second step of the synthesis due to steric hindrances. The gels demonstrate substantial change in buffer absorbency with change of pH, low for acid buffers and the higher for pH values above 6 where the swelling is considerably slow, thus suggesting their strong candidature for use as oral drug-delivery systems in the lower parts of the gastrointestinal tract and for drugs that require longer release times.
机译:分两步制备了基于壳聚糖,衣康酸和甲基丙烯酸的新型pH敏感水凝胶。首先将壳聚糖与衣康酸进行离子交联,然后通过加入甲基丙烯酸和交联剂进行自由基聚合和壳聚糖/衣康酸网络的交联,以实现更好的机械性能和可调溶胀。使用傅立叶变换红外光谱,扫描电子显微镜,热重分析对样品进行表征。 X射线衍射,动态力学分析以及在各种pH值(2.0-8.0)下水凝胶的溶胀率。发现水凝胶组合物对水凝胶的结构,机械和热性能,形态和溶胀动力学具有很大的影响。凝胶的高度多孔形态可能与庞大的壳聚糖/衣康酸网络有关,由于空间位阻,其降低了合成第二步的交联度。凝胶表现出随着pH的变化缓冲液吸收能力的实质性变化,对于酸性缓冲液而言较低,而对于高于6的pH值则较高,在这种情况下,溶胀非常缓慢,因此表明它们具有较强的候选资格,可以用作口腔下部的口服药物递送系统胃肠道以及需要更长释放时间的药物。

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