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Rational Design Synthesis and Evaluation of γ-CD-Containing Cross-Linked Polyvinyl Alcohol Hydrogel as a Prednisone Delivery Platform

机译:泼尼松传递平台的含γ-CD交联聚乙烯醇水凝胶的合理设计合成与评价

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摘要

This study describes the in-silico rational design, synthesis and evaluation of cross-linked polyvinyl alcohol hydrogels containing γ-cyclodextrin (γ-CDHSAs) as platforms for the sustained release of prednisone (PDN). Through in-silico studies using semi-empirical quantum mechanical calculations, the effectiveness of 20 dicarboxylic acids to generate a specific cross-linked hydrogel capable of supporting different amounts of γ-cyclodextrin (γ-CD) was evaluated. According to the interaction energies calculated with the in-silico studies, the hydrogel made from PVA cross-linked with succinic acids (SA) was shown to be the best candidate for containing γ-CD. Later, molecular dynamics simulation studies were performed in order to evaluate the intermolecular interactions between PDN and three cross-linked hydrogel formulations with different proportions of γ-CD (2.44%, 4.76% and 9.1%). These three cross-linked hydrogels were synthesized and characterized. The loading and the subsequent release of PDN from the hydrogels were investigated. The in-silico and experimental results showed that the interaction between PDN and γ-CDHSA was mainly produced with the γ-CDs linked to the hydrogels. Thus, the unique structures and properties of γ-CDHSA demonstrated an interesting multiphasic profile that could be utilized as a promising drug carrier for controlled, sustained and localized release of PDN.
机译:这项研究描述了含γ-环糊精(γ-CDHSAs)作为泼尼松(PDN)持续释放平台的交联聚乙烯醇水凝胶的硅基合理设计,合成和评估。通过使用半经验量子力学计算的计算机模拟研究,评估了20种二元羧酸生成能够支持不同量的γ-环糊精(γ-CD)的特定交联水凝胶的有效性。根据计算机模拟研究计算出的相互作用能,表明由PVA与琥珀酸(SA)交联制成的水凝胶是包含γ-CD的最佳候选物。随后,进行了分子动力学模拟研究,以评估PDN与三种不同比例的γ-CD(2.44%,4.76%和9.1%)的交联水凝胶制剂之间的分子间相互作用。合成并表征了这三种交联的水凝胶。研究了PDN从水凝胶中的负载和随后的释放。硅和实验结果表明,PDN与γ-CDHSA之间的相互作用主要是由与水凝胶相连的γ-CD产生的。因此,γ-CDHSA的独特结构和性质显示出有趣的多相分布,可以用作有前途的药物载体,用于PDN的受控,持续和局部释放。

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