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Highly swellable and biocompatible graphene/heparin-analogue hydrogels for implantable drug and protein delivery

机译:高溶胀性和生物相容性石墨烯/肝素 - 模拟水凝胶,用于植入药物和蛋白质递送

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Research on the design of heparin-analogue hydrogels is of tremendous importance and fuelled by diverse emerging biomedical applications, such as cancer inhibition, treatments of genetic diseases, growth factor carriers, and scaffolds for regeneration medicine, due to their specific biological and biocompatible properties. In this study, by taking inspiration from recent advancements of graphene nanomaterials and heparin-analogue polymers, we designed a kind of highly swellable, elastic, hemo- and cyto-compatible graphene oxide (GO) hybridized heparin-analogue hydrogels for potential drug and protein delivery. The fabricated GO/heparin-analogue hydrogels (GHHs) exhibited an inner-interpenetrated porous structure and robust mechanical properties compared to the GO absent heparin-analogue hydrogel (HH). Notably, the GHHs showed excellent results for in vitro biocompatibility, such as red blood cell compatibility, anti-platelet adhesion and activation, low inflammation potential, high endothelial cell compatibility. Furthermore, after adding GO, the hydrogels showed improved loading and persistent release abilities of doxorubicin hydrochloride (DOX); the GHHs also demonstrated their potential for efficient protein loading and long-term releasing. Due to the integration of elastic mechanical properties, hemo- and cyto-compatibility, as well as drug and protein delivery abilities, the GO hybridized heparin-analogue hydrogels open up a new potential protocol for implantable drug and protein delivery therapies, and bioactive scaffolds for tissue regeneration.
机译:肝素 - 模拟水凝胶设计研究具有巨大的重要性,由于其特异性生物和生物相容性,因此通过各种新兴的生物医学应用,例如癌症抑制,遗传疾病治疗,生长因子携带者以及再生药支架的支架。在这项研究中,通过从最近的石墨烯纳米材料和肝素 - 类似物聚合物的启发中获取灵感,我们设计了一种高溶胀性,弹性,血管和细胞族氧化物(GO)杂交的肝素 - 模拟水凝胶,用于潜在药物和蛋白质交货。制造的去/肝素 - 类似物水凝胶(GHHS)表现出内侧间渗透性多孔结构和鲁棒的机械性能,与缺陷缺陷肝素 - 类似水凝胶(HH)相比。值得注意的是,GHHS对体外的生物相容性呈现出优异的结果,例如红细胞相容性,抗血小板粘附和活化,低炎症电位,高内皮细胞相容性。此外,在加入后,水凝胶显示出改善的盐酸辛胺蛋白(DOX)的载荷和持续释放能力; GHHS还证明了他们有效蛋白质负荷和长期释放的潜力。由于弹性力学性能的整合,血液和细胞相容性,以及药物和蛋白质递送能力,GE杂交的肝素 - 类似物水凝胶为可植入药物和蛋白质递送疗法的新潜在方案,以及生物活性支架组织再生。

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