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Investigating the Performance of Near-Infrared Light Responsive Monometallic Gold and Bimetallic Gold-Palladium Nanorattles towards Plasmonic Photothermal Therapy

机译:调查近红外光响应式单金属金和双金属金 - 纳米棒的性能

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摘要

The effect of different sizes and shapes of nanomaterials on its extinction spectrum is well studied and accordingly researchers have designed various nanostructures having absorbance in the near infrared(NIR)region for plasmonic photothermal therapy(PPTT)applications.However,the comparative study between the NIR active nanomaterials having different elemental composition for PPTT applications is not well explored.Herein,we investigate the photothermal activity of two different NIR active nanorattles viz.gold nanorattle(Au NRT)and bimetallic gold-palladium nanorattle(Au-Pd NRT)having identical morphology but different elemental composition.The prepared nanorattles were PEGylated to render biocompatibility and identical surface functionalities.The aqueous solution of both the NRTs displayed a significant rise in temperature upon NIR irradiation which was not compromised on repeated exposure to light.The PPTT applicability of both the nanorattles were evaluated which suggested that the bimetallic Au-Pd NRT have better photothermal conversion efficiency of 35.4% and better photothermal killing ability towards breast cancer cell line(SK-BR-3)compared to that of monometallic Au NRT having photothermal conversion efficiency of only 19.8%.Thus,the present study indicates that NIR active nanostructures based on palladium acts as a better phototransducing agent than that of gold with similar morphology.
机译:对纳米材料的不同尺寸和形状的影响对其灭绝光谱的影响进行了充分的研究,因此,研究人员设计了各种在近红外(NIR)区域中具有吸光度的纳米结构,用于等离子光热疗法(PPTT)应用。没有很好地探索具有不同元素组成的活性纳米材料。但是不同的元素组成。制备的纳米齿被卵形化以使生物相容性和相同的表面功能。两种NRT的水溶液在NIR辐照时都显示出温度的显着升高,而在重复暴露于光的情况下,这两种情况下都不会受到损害。评估了纳米棒,这表明B与具有光热转化效率的单腹肌Au NRT相比,Imetalic Au-PD NRT具有更好的光热转化效率为35.4%,对乳腺癌细胞系(SK-BR-3)的光热杀伤能力(SK-BR-3)更好。研究表明,基于钯的NIR活性纳米结构与具有相似形态的黄金相比,具有更好的光转换剂。

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