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Synergistic Nanozymetic Activity of Hybrid Gold Bipyramid-Molybdenum Disulfide Core@Shell Nanostructures for Two-Photon Imaging and Anticancer Therapy

机译:杂交金二嘧酰胺 - 钼二硫核核心核心核心核心的协同纳米氧化铝酸纳米结构对双光子成像和抗癌疗法

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In recent years, the concept of combined therapy using gold hybrid nanomaterials has been broadly adopted to pioneer new anticancer treatments. However, their synergistic anticancer effects have yet to be thoroughly investigated. Herein,a hybrid gold nanobipyramid nanostructure coated with molybdenum disulfide (MoS2) semiconductor (AuNBPs@MoS2) was proposed as a smart nanozyme for anticancer therapy and two-photon bioimaging. The hybrid material showed dramatically enhanced localized surface plasmon resonance property under excitation owing to its anisotropic nature, coupled with the rich electron density in MoS2, resulting in the superior in situ photogeneration of reactive oxidative species (ROS - O-1(2), (OH)-O-center dot). We demonstrated that the synergistic effect of enhanced photothermal conversion and generation of ROS could increase the anticancer effect of AuNBPs@MoS2. Two-photon luminescence imaging confirmed that AuNBPs@MoS2 was successfully internalized in cancer cells and that simultaneous anticancer treatments based on catalytic and photothermal therapy could be achieved. This study highlighted, for the first time, a novel approach of plasmon-mediated powerful anticancer therapy and imaging via the unprecedented combination of anisotropic AuNBPs and two-dimensional MoS2 material.
机译:近年来,使用黄金杂交纳米材料的联合疗法的概念已经广泛地采用了新的抗癌治疗。然而,他们的协同抗癌效应尚未得到彻底调查。在此,提出了涂有钼二硫化钼(MOS2)半导体(AUNBPS @ MOS2)的杂交金纳米硼胺纳米结构,作为抗癌治疗的智能纳米酶和双光子生物成像。由于其各向异性性质,杂交材料在激发中显示出显着增强的局部表面等离子体共振性质,其各向异性性质,与MOS2中的富电子密度相结合,导致反应性氧化物质的原位光源优异(ROS - O-1(2),(哦)-o中心点)。我们证明,增强的光热转换和生成RO的协同效应可以增加AUNBPS @ MOS2的抗癌效果。双光子发光成像证实,AUNBPS @ MOS2在癌细胞中成功内化,可以实现基于催化和光热疗法的同时抗癌处理。这项研究首次突出显示了通过前所未有的各向异性AUNBP和二维MOS2材料的前所未有的组合的血浆介导的强大的抗癌治疗和成像的新方法。

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