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Upconverting nanocomposites with combined photothermal and photodynamic effects

机译:Upconverting纳米复合材料与结合光照和光动力效应

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Lanthanide-doped upconverting nanoparticles (UCNPs) have been studied for diverse biomedical applications due to their inherent ability to convert near-infrared (NIR) excitation light to higher energies (spanning the ultraviolet, visible, and MR regions). To explore additional functionalities, rational combination with other optically active nanostructures may lead to the development of new multimodal nanoplatforms with theranostic (therapy and diagnostic) capabilities. Here, we develop a nanocomposite consisting of NaGdF4:Er3+, Yb3+ UCNPs, mesoporous silica (SiO2), gold nanorods (GNRs) and a photosensitizer, with integrated functionalities including luminescence imaging, photothermal generation, nanothermometry and photodynamic effects. Under 980 nm irradiation, GNRs and UCNPs are simultaneously excited due to the overlap between the surface plasmon resonance of the GNRs and the absorption of the UCNPs leading to plasmonic enhancement of the upconverted luminescence, while concomitantly creating a temperature gradient. The temperature increase can be determined from the intensity ratio of the upconverted green emission of the UCNPs. Finally, a photosensitizer, zinc phthalocyanine, was loaded into the mesoporous SiO2. Upon laser irradiation, the upconverted visible light subsequently activates the photosensitizer to release reactive oxygen species. The multifunctional GNR@SiO2@UCNPs nanocomposites showed strong luminescence signal when incubated in HeLa cervical cancer cells, making them ideal bioprobes for future theranostic applications.
机译:Lanthanide-doped upconverting纳米颗粒(UCNPs)研究了不同的生物应用程序由于其固有的能力把近红外(NIR)激发光更高的能量(包括紫外线、可见,奥地区)。与其他功能,合理组合光学活性的纳米结构可能导致的开发新的多通道nanoplatformstheranostic(治疗和诊断)功能。组成的NaGdF4: Er3 + Yb3 + UCNPs,介孔石英(二氧化硅),金纳米棒(GNRs)和一个光敏剂,集成功能包括发光成像光热光谱分析一代,nanothermometry和光能效果。同时由于重叠很期待吧GNRs之间的表面等离子体共振和UCNPs导致的吸收电浆upconverted的增强发光,而与此同时创建一个温度梯度。可以确定的强度比吗UCNPs upconverted绿色排放。锌酞菁光敏剂,加载到介孔二氧化硅。辐照,upconverted可见光随后激活的光敏剂释放活性氧。多功能GNR@SiO2@UCNPs纳米复合材料孵化时显示强烈的发光信号在海拉宫颈癌细胞,使他们的理想未来theranostic bioprobes应用程序。

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