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Controlled Electron-Beam Synthesis of Transparent Hydrogels for Drug Delivery Applications

机译:药物递送应用中透明水凝胶的可控电子束合成

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摘要

In this study, we highlight hydrogels prepared by electron-beam polymerization. In general, the electron-beam-polymerized hydrogels showed improved mechanical and optical transmittances compared to the conventional UV-cured hydrogels. They were more elastic and had a higher crosslinking density. Additionally, they were transparent over a broader wavelength range. The dependence of the mechanical and optical properties of the hydrogels on the number of single differential and total irradiation doses was analyzed in detail. The hydrogels were prepared for usage as a drug delivery material with methylene blue as a drug model. In the first set of experiments, methylene blue was loaded reversibly after the hydrogel synthesis. Electron-beam-polymerized hydrogels incorporated twice as much methylene blue compared to the UV-polymerized gels. Furthermore, the release of the model drug was found to depend on the crosslinking degree of the hydrogels. In addition, electron-beam polymerization enabled the irreversible binding of the drug molecules if they were mixed with monomers before polymerization.
机译:在这项研究中,我们重点介绍了通过电子束聚合制备的水凝胶。通常,与常规的UV固化水凝胶相比,电子束聚合水凝胶显示出改善的机械和光学透射率。它们更具弹性并且具有较高的交联密度。另外,它们在更宽的波长范围内是透明的。详细分析了水凝胶的机械和光学性质对单次差异剂量和总辐照剂量的依赖性。制备水凝胶以用作药物递送材料,并以亚甲基蓝作为药物模型。在第一组实验中,水凝胶合成后可逆地负载亚甲基蓝。电子束聚合的水凝胶掺入的亚甲基蓝是紫外线聚合凝胶的两倍。此外,发现模型药物的释放取决于水凝胶的交联度。另外,如果电子束聚合在聚合之前与单体混合,则电子束聚合能够使它们不可逆地结合。

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