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Multifunctional Anticancer Platform for Multimodal Imaging and Visible Light Driven Photodynamic/Photothermal Therapy

机译:用于多模式成像和可见光驱动的光动力/光热疗法的多功能抗癌平台

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摘要

As a potential photosensitizer for photodynamic therapy (PDT), pure titanium dioxide has the drawbacks of low tissue penetration and possible damage to skin due to the triggered UV light. To realize near-infrared (NIR) laser-induced multimodal imaging guided therapy, we constructed a multifunctional coreshell structure (TiO2@Y2Ti2O7@YOF:Yb,Tm) by a facile coprecipitation route, followed by an annealing process. Under a single NIR laser irradiation, the highly cytotoxic reactive oxygen species (ROS) required for PDT can be generated due to the energy transfer from YOF:Yb,Tm to the Y2Ti2O7 photocatalyst which is responsive to blue emission (visible light), and the thermal effect can be simultaneously produced due to the nonradiative transition and the recombination of electronhole pairs. The NIR light induced PDT and photothermal therapy (PTT) can efficiently suppress tumor growth, which was evidenced by both in vitro and in vivo results. Moreover, the rare earth ions in the composite make the material have good up-conversion luminescence (UCL) imaging and CT imaging properties, thus achieving the target of synergistic PDT and PTT therapy under the multimodal imaging guidance.
机译:作为用于光动力疗法(PDT)的潜在光敏剂,纯二氧化钛的缺点是组织渗透率低,并且由于触发的紫外线会损坏皮肤。为了实现近红外(NIR)激光诱导的多模态成像引导疗法,我们通过一条容易的共沉淀途径,然后进行退火工艺,构建了一种多功能核壳结构(TiO2 @ Y2Ti2O7 @ YOF:Yb,Tm)。在单次NIR激光照射下,由于能量从YOF:Yb,Tm传递到对蓝光发射(可见光)有响应的Y2Ti2O7光催化剂,可以产生PDT所需的高细胞毒性活性氧(ROS)。由于非辐射跃迁和电子空穴对的重组,可以同时产生热效应。 NIR光诱导的PDT和光热疗法(PTT)可以有效抑制肿瘤的生长,这在体外和体内结果中都得到了证明。此外,复合物中的稀土离子使材料具有良好的上转换发光(UCL)成像和CT成像性能,从而在多峰成像指导下实现了PDT和PTT协同治疗的目标。

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