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Starch-based biodegradable hydrogels with potential biomedical applications as drug delivery systems.

机译:基于淀粉的生物可降解水凝胶具有潜在的生物医学应用作为药物输送系统。

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The design and preparation of novel biodegradable hydrogels developed by the free radical polymerization of acrylamide and acrylic acid, and some formulations with bis-acrylamide, in the presence of a corn starch/ethylene-co-vinyl alcohol copolymer blend (SEVA-C), is reported. The redox system benzoyl peroxide (BPO) and 4-dimethylaminobenzyl alcohol (DMOH) initiated the polymerization at room temperature. Xerogels were characterized by 1H NMR and FTIR spectroscopies. Swelling studies were performed as a function of pH in different buffer solutions determining the water-transport mechanism that governs the swelling behaviour. Degradation studies of the hydrogels were performed in simulated physiological solutions for time up to 90 days, determining the respective weight loss, and analyzing the solution residue by 1H NMR. The mechanical properties of the xerogels were characterized by tensile and compressive tests, as well as by dynamo-mechanical analysis (DMA). Dynamo-mechanical parameters are also reported for hydrated samples.
机译:在玉米淀粉/乙烯-共-乙烯醇共聚物共混物(SEVA-C)存在下,通过丙烯酰胺和丙烯酸的自由基聚合反应开发的新型可生物降解水凝胶的设计和制备,以及一些含双丙烯酰胺的制剂,被报道。氧化还原体系过氧化苯甲酰(BPO)和4-二甲基氨基苄醇(DMOH)在室温下引发了聚合反应。通过1 H NMR和FTIR光谱对干凝胶进行表征。在不同的缓冲溶液中进行溶胀研究,作为pH的函数,以确定控制溶胀行为的水传输机制。在模拟的生理溶液中进行水凝胶的降解研究长达90天,确定各自的重量损失,并通过1 H NMR分析溶液残留物。干凝胶的机械性能通过拉伸和压缩测试以及发电机力学分析(DMA)进行表征。还报道了水合样品的动态力学参数。

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