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Multi-Component Hydrogel Beads Incorporated with Reduced Graphene Oxide for pH-Responsive and Controlled Co-Delivery of Multiple Agents

机译:具有掺入的氧化石墨烯的多组分水凝胶珠用于pH-响应和控制多剂量的共递送

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摘要

The development of combination therapy has received great attention in recent years because of its potential to achieve higher therapeutic efficacy than that achieved by mono-drug therapy. Carriers for effective and stimuli-responsive co-delivery of multiple agents, however, are highly deficient at the moment. To address this need, this study reports the generation of multi-component hydrogel beads incorporated with reduced graphene oxide (rGO). The beads are prepared by incorporating doxorubicin (DOX)-loaded gelatine (GL) microbeads into hydrogel beads containing rGO and 5-fluorouracil (5-FU). rGO-containing beads are shown to be more effective in inhibiting the growth of MCF-7 cells via the induction of reactive oxygen species (ROS) generation. In addition, the drug release sustainability of the beads is affected by the pH of the release medium, with the release rate increasing in neutral pH but decreasing in the acidic environment. Our beads warrant further development as carriers for pH-responsive and controlled co-delivery of multiple agents.
机译:近年来,联合治疗的发展受到极大的关注,因为它可能达到更高的治疗效果,而不是通过单药治疗所取得的疗效。然而,对于多种药剂的有效和刺激响应性共同递送的载体对多种剂的持续缺乏。为了解决这种需求,本研究报告了掺入氧化物(RGO)的多组分水凝胶珠的产生。通过将多柔比星(DOX)加载的明胶(GL)微珠掺入含有RGO和5-氟尿嘧啶(5-FU)的水凝胶珠粒中制备的珠粒。含rgo的珠子在抑制通过诱导反应性氧物种(ROS)产生方面更有效地抑制MCF-7细胞的生长。此外,珠子的药物释放可持续性受释放培养基的pH的影响,中性pH值增加,但在酸性环境中降低。我们的珠子作为pH响应和控制的多个药剂的共同交付的载体进一步发展。

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