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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Highly dispersible PEGylated graphene/Au composites as gene delivery vector and potential cancer therapeutic agent
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Highly dispersible PEGylated graphene/Au composites as gene delivery vector and potential cancer therapeutic agent

机译:高度分散的聚乙二醇化石墨烯/金复合物作为基因传递载体和潜在的癌症治疗剂

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摘要

Graphene/Au composites with a high positive charge, which is advantageous for the binding and condensation of negatively charged siRNA, are synthesized via an in situ reduction method, using PEI as a reductant and protective reagent. Owing to the sufficient amounts of amino groups, PEI-grafted graphene/Au composites can be further modified with methoxyl-PEG to acquire low cytotoxicity, novel blood compatibility, and optimal dispersibility in physiological environments. The obtained PEGylated PEI-grafted graphene/Au composites (PPGA) allow efficient loading of siRNA, forming PPGA/siRNA complexes to transport into HL-60 cells and downregulated anti-apoptosis Bcl-2 protein, indicating PPGA is a suitable platform for gene delivery. Moreover, PPGA display an enhanced photothermal response with respect to PPG under NIR laser irradiation, suggesting that PPGA can be used as an efficient photothermal agent.
机译:使用PEI作为还原剂和保护剂,通过原位还原方法合成了具有高正电荷的石墨烯/ Au复合材料,有利于负电荷siRNA的结合和缩合。由于有足够数量的氨基,可以用甲氧基PEG将PEI接枝的石墨烯/ Au复合材料进一步修饰,以获得低的细胞毒性,新颖的血液相容性以及在生理环境中的最佳分散性。获得的PEG化PEI接枝的石墨烯/金复合物(PPGA)允许有效装载siRNA,形成PPGA / siRNA复合物以转运到HL-60细胞中并下调抗凋亡Bcl-2蛋白,这表明PPGA是基因传递的合适平台。此外,PPGA在NIR激光辐照下相对于PPG表现出增强的光热响应,表明PPGA可以用作有效的光热剂。

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