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Alginate Bioconjugate and Graphene Oxide in Multifunctional Hydrogels for Versatile Biomedical Applications

机译:多功能水凝胶中的藻酸盐生物缀合物和石墨烯氧化物用于多功能生物医学应用

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摘要

In this work, we combined electrically-conductive graphene oxide and a sodium alginate-caffeic acid conjugate, acting as a functional element, in an acrylate hydrogel network to obtain multifunctional materials designed to perform multiple tasks in biomedical research. The hybrid material was found to be well tolerated by human fibroblast lung cells (MRC-5) (viability higher than 94%) and able to modify its swelling properties upon application of an external electric field. Release experiments performed using lysozyme as the model drug, showed a pH and electro-responsive behavior, with higher release amounts and rated in physiological vs. acidic pH. Finally, the retainment of the antioxidant properties of caffeic acid upon conjugation and polymerization processes (Trolox equivalent antioxidant capacity values of 1.77 and 1.48, respectively) was used to quench the effect of hydrogen peroxide in a hydrogel-assisted lysozyme crystallization procedure.
机译:在这项工作中,我们将导电石墨烯氧化物和藻酸钠 - 咖啡酸缀合物组合为丙烯酸酯水凝胶网络中的用作官能元素,以获得旨在在生物医学研究中执行多项任务的多功能材料。发现杂化材料被人成纤维细胞肺细胞(MRC-5)(高于94%)的可耐受性,并且能够在施加外部电场时改变其溶胀性能。使用溶菌酶作为模型药物进行的释放实验,显示了pH和电响应性行为,较高的释放量和生理与酸性pH值。最后,使用缀合物和聚合方法(分别为1.77和1.48的Trolox当量抗氧化能力值)在水凝胶辅助溶菌酶结晶过程中进行缀合和聚合方法的抗氧化性能(分别为1.77和1.48的抗氧化容量值。

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