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Effect of freeze-thawing conditions for preparation of chitosan-poly (vinyl alcohol) hydrogels and drug release studies

机译:脱盐条件对壳聚糖 - 聚(乙烯醇)水凝胶和药物释放研究制备的影响

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摘要

The freezing-thawing is an advantageous method to produce hydrogels without crosslinking agents. In this study chitosan-poly(vinyl alcohol) (CS-PVA) hydrogels were prepared by varying the freezing conditions and composition, which affect the final characteristics of the products. The swelling degree, morphology, porosity, and diflunisal drug loading, as well as the drug release profiles were evaluated. The hydrogel swelling ratio was found to be mainly affected by the CS content, the number of freezing cycles and the temperature. SEM micrographs and porosity data confirm that pore size increases with the chitosan content. However, the use of either lower temperatures or longer freezing times, results in higher porosity and smaller pores. The drug release times of the CS-PVA hydrogels were as long as 30 h, and according to the mathematical fitting, a simple diffusion mechanism dominates the process. Moreover, a mathematical model predicting the hydrogels physical and structural behavior is proposed.
机译:冷冻解冻是在没有交联剂的情况下生产水凝胶的有利方法。在该研究中,通过改变冷冻条件和组合物来制备壳聚糖 - 聚(乙烯醇)(CS-PVA)水凝胶,其影响产品的最终特征。评估溶胀度,形态,孔隙率和不同的药物载荷以及药物释放曲线。发现水凝胶溶胀比主要受Cs含量的影响,冷冻循环循环的数量和温度。 SEM显微照片和孔隙度数据确认孔径随壳聚糖含量增加。然而,使用较低的温度或更长的冻结时间,导致更高的孔隙率和更小的孔隙。 CS-PVA水凝胶的药物释放时间长达30小时,并且根据数学拟合,简单的扩散机构主导了该过程。此外,提出了一种预测水凝胶物理和结构行为的数学模型。

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