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Photothermally enhanced photodynamic therapy delivered by nano-graphene oxide

机译:纳米氧化石墨烯提供的光热增强光动力疗法

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摘要

Graphene with unique physical and chemical properties has shown various potential applications in biomedicine. In this work, a photosensitizer molecule, Chlorin e6 (Ce6), is loaded on polyethylene glycol (PEG)-functionalized graphene oxide (GO) via supramolecular π-π stacking. The obtained GO-PEG-Ce6 complex shows excellent water solubility and is able to generate cytotoxic singlet oxygen under light excitation for photodynamic therapy (PDT). Owing to the significantly enhanced intracellular trafficking of photosensitizers, our GO-PEG-Ce6 complex offers a remarkably improved cancer cell photodynamic destruction effect compared to free Ce6. More importantly, we show that the photothermal effect of graphene can be utilized to promote the delivery of Ce6 molecules by mild local heating when exposed to a near-infrared laser at a low power density, further enhancing the PDT efficacy against cancer cells. Our work highlights the promise of using graphene for potential multifunctional cancer therapies.
机译:具有独特的物理和化学性质的石墨烯在生物医学中显示出各种潜在的应用。在这项工作中,光敏剂分子Chlorin e6(Ce6)通过超分子π-π堆叠被装载到聚乙二醇(PEG)-功能化的氧化石墨烯(GO)上。所获得的GO-PEG-Ce6复合物显示出优异的水溶性,并且能够在光激发下用于光动力疗法(PDT)产生细胞毒性单线态氧。由于光敏剂在细胞内的运输明显增强,因此与游离Ce6相比,我们的GO-PEG-Ce6复合物可显着改善癌细胞的光动力破坏效果。更重要的是,我们展示了当暴露于低功率密度的近红外激光时,石墨烯的光热效应可通过温和的局部加热来促进Ce6分子的传递,从而进一步增强PDT对癌细胞的功效。我们的工作凸显了使用石墨烯进行潜在的多功能癌症治疗的希望。

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