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Synergistic performance of triggered drug release and photothermal therapy of MCF7 cells based on laser activated PEGylated GO + DOX

机译:基于激光激活聚乙二醇化Go + DOX的触发药物释放和光热疗的协同性能和MCF7细胞的光热疗

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摘要

Graphene oxide is used as a singular 2D nano-carrier in cancer therapy. Here, graphene oxide is used as a hybrid chemo-drug graphene oxide (GO) + doxorubicin (DOX), mainly due to its unique chemical and optical properties. The laser triggers GO + DOX for selective drug delivery to optimize the drug release. The characterization of GO is investigated in terms of laser properties at 808 nm. Furthermore, the laser activates GO + DOX compounds to treat MCF7 cancerous cells. The drug release strongly depends on the temperature rise that mainly effects on the viability of the cancerous cells of interest. DOX simultaneously acts as a chemo-drug and as an optical fluorescent agent, whereas GO performs as an efficient photothermal nano-carrier. In fact, the GO-DOX hybrid drug demonstrates multifunctional during malignant cell treatment. We have shown that the laser heating of GO enhances the release percentage up to a treatment yield of 90%. This arises from the synergistic nature of DOX and GO compounds in simultaneous chemo/photo thermal therapy. Furthermore, the fluorescence property of DOX is used to assess the GO uptake using confocal microscope imaging.
机译:石墨烯氧化物用作癌症治疗中的奇异2D纳米载体。这里,石墨烯氧化物用作杂化化学药物氧化物(GO)+多柔比星(DOX),主要是由于其独特的化学和光学性质。激光触发+ DOX进行选择性药物递送以优化药物释放。在808nm的激光特性方面研究了Go的表征。此外,激光激活GO + DOX化合物以治疗MCF7癌细胞。药物释放强烈取决于温度升高,主要对感兴趣的癌细胞的活力产生影响。 DOX同时用作化学药物和作为光学荧光剂,而去表现为有效的光热纳米载体。事实上,Go-Dox杂种药物在恶性细胞治疗中证明了多功能。我们已经表明,去的激光加热增强了释放率,直至治疗产率为90%。这源于DOX的协同性质,并在同时进行化学/光热疗方面的化合物。此外,DOX的荧光性能用于使用共聚焦显微镜成像来评估持续摄影。

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