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Tubelike Gold Sphere-Attapulgite Nanocomposites with a High Photothermal Conversion Ability in the Near-Infrared Region for Enhanced Cancer Photothermal Therapy

机译:在近红外区具有高光热转化能力的管状金球形凹凸棒石纳米复合材料,用于增强癌症的光热疗法

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Near-infrared (NIR)-induced photothermal therapy (PTT) is now considered to be a promising and highly efficient method for tumor therapy. Photothermal agents play a crucial role in PTT, and they are required to possess the ability to harvest NIR light and transform the photon energy into heat energy. This work reports a facile method to synthesize a new PTT agent, which is based on the electrostatic binding of the Au nanospheres (Au NSs, similar to 15 nm) to the surface of a nanometer-sized mineral, attapulgite, to form tubelike Au-attapulgite nanocomposites. These nano-composites consist of numerous Au NSs, which are linked to each other along the attapulgite surface. The nanocomposites exhibit similar localized surface plasmon resonance absorption characteristics to those of Au nanorods with a longitudinal absorption mode that shifts to the NIR region (similar to 670 nm). Moreover, the nanocomposites have a high C-abs/C-sca ratio (cross section of absorption to scattering) and photothermal conversion efficiency of 25.6%. Their photothermal therapy effect is studied using A549 cells and A549 cell-bearing nude mice as examples. The results indicate that the nanocomposites can be effectively taken up by the cells, and the nanocomposites show good biocompatibility. The A549 cells almost died after they were incubated with the nanocomposites (at 100 mu g mL(-1)) for 12 h and irradiated by an 808 nm laser with a power density of 0.5 W cm(-2) for 15 min. The tumors of nude mice can also be effectively ablated without regrowth during the period of observation (at least 10 d) after photothermal therapy.
机译:现在,近红外(NIR)诱导的光热疗法(PTT)被认为是一种有前途且高效的肿瘤治疗方法。光热剂在PTT中起着至关重要的作用,要求它们具有收集NIR光并将光子能量转换为热能的能力。这项工作报告了一种简便的方法来合成新的PTT剂,该方法基于Au纳米球(Au NSs,类似于15 nm)与纳米级矿物凹凸棒石表面的静电结合,从而形成管状Au-凹凸棒土纳米复合材料。这些纳米复合材料由大量的金纳米管组成,它们沿凹凸棒石表面相互连接。纳米复合材料表现出与Au纳米棒相似的局部表面等离子体共振吸收特性,其纵向吸收模式转移到NIR区域(类似于670 nm)。此外,纳米复合材料具有高的C-abs / C-sca比(吸收到散射的横截面)和25.6%的光热转化效率。以A549细胞和带有A549细胞的裸鼠为例研究了它们的光热治疗效果。结果表明,纳米复合材料可以被细胞有效吸收,并且纳米复合材料具有良好的生物相容性。 A549细胞与纳米复合材料(100μg mL(-1))孵育12 h,然后用功率密度为0.5 W cm(-2)的808 nm激光辐照15分钟后几乎死亡。在光疗后的观察期内(至少10 d),裸鼠的肿瘤也可以有效消融,而不会再生长。

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