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Porous Pd nanoparticles with high photothermal conversion efficiency for efficient ablation of cancer cells

机译:多孔钯纳米粒子与较高的光热光谱分析转换效率的有效消融癌症细胞

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摘要

Nanoparticle (NP) mediated photothermal effect shows great potential as a noninvasive method for cancer therapy treatment, but the development of photothermal agents with high photothermal conversion efficiency, small size and good biocompatibility is still a big challenge. Herein, we report Pd NPs with a porous structure exhibiting enhanced near infrared (NIR) absorption as compared to Pd nanocubes with a similar size (almost two-fold enhancement with a molar extinction coefficient of 6.3 x 10~7 M(-1) cm~(-1)), and the porous Pd NPs display monotonically rising absorbance from NIR to UV-Vis region. When dispersed in water and illuminated with an 808 nm laser, the porous Pd NPs give a photothermal conversion efficiency as high as 93.4%, which is comparable to the efficiency of Au nanorods we synthesized (98.6%). As the porous Pd NPs show broadband NIR absorption (650-1200 nm), this allows us to choose multiple laser wavelengths for photothermal therapy. In vitro photothermal heating of HeLa cells in the presence of porous Pd NPs leads to 100% cell death under 808 nm laser irradiation (8 W cm~(-2), 4 min). For photothermal heating using 730 nm laser, 70% of HeLa cells were killed after 4 min irradiation at a relative low power density of 6 W cm~(-2). These results demonstrated that the porous Pd nanostructure is an attractive photothermal agent for cancer therapy.
机译:纳米颗粒(NP)介导的光照效果作为非侵入性方法,显示了巨大的潜力癌症治疗的治疗,但发展的光热光谱分析代理高光热光谱分析转换效率、体积小、好生物相容性仍是一个巨大的挑战。在此,我们报告Pd NPs多孔结构表现出增强的近红外(NIR)吸收Pd nanocubes相比的相似的大小(几乎两倍的增强摩尔消光系数的6.3 x 10 ~ 7米(1)厘米~(- 1))和多孔Pd NPs显示单调上升从近红外光谱吸光度紫外可见区域。发光波长808纳米的激光,多孔PdNPs光热光谱分析转换效率高93.4%,这是类似的我们金纳米棒合成效率(98.6%)。随着多孔Pd NPs显示宽带近红外光谱吸收(650 - 1200海里),这允许我们选择多个激光波长光照疗法。加热的海拉细胞在多孔的存在Pd NPs导致100%的细胞死亡在808海里激光辐照(8 W厘米~(2),4分钟)。使用波长730纳米的激光光热光谱分析加热,70%的海拉细胞被杀后4分钟照射一个相对较低的功率密度6 W厘米~(2)。这些结果表明,多孔Pd纳米结构是一个有吸引力的光热光谱分析代理对癌症治疗。

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