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Salt-induced aggregation of gold nanoparticles for photoacoustic imaging and photothermal therapy of cancer

机译:Salt-induced聚合的金纳米粒子光声成像和光热光谱分析治疗癌症

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摘要

The challenge in photothermal therapy (PTT) is to develop bio-compatible photothermal transducers that can absorb and convert near-infrared (NIR) light into heat with high efficiency. Herein, we report salt-induced aggregation of gold nanoparticles (GNPs) in biological media to form highly efficient and biocompatible NIR photothermal transducers for PTT and photothermal/photoacoustic (PT/PA) imaging of cancer. The GNP depots in situ formed by salt-induced aggregation of GNPs show strong NIR absorption induced by plasmonic coupling between adjacent GNPs and very high photothermal conversion efficiency (52%), enabling photothermal destruction of tumor cells. More interestingly, GNPs in situ aggregate in tumors to form GNP depots, enabling simultaneous PT/PA imaging and PTT of the tumors. These findings may provide a simple and effective way to develop a new class of intelligent and biocompatible NIR photothermal transducers with high efficiency for PT/PA imaging and PTT.
机译:光照疗法(PTT)的挑战开发生物相容性光照传感器可以吸收和转换近红外(NIR)光成热,效率高。报告salt-induced聚合的黄金纳米颗粒生物媒体形式(国民生产总值)高效生物相容性的近红外光谱对PTT和光照传感器光热光谱分析/光声成像(PT / PA)癌症。salt-induced聚合的国民生产总值显示强烈的近红外光谱吸收引起的电浆之间的耦合相邻的国民生产总值和很高的光热光谱分析转换效率(52%),启用光照破坏肿瘤细胞。有趣的是,国民生产总值在肿瘤原位聚合形成国民生产总值仓库,同时使PT / PA成像和PTT的肿瘤。提供一种简单而有效的方式开发新类的聪明,可以使近红外光谱的生物相容性光照传感器效率高PT / PA成像和PTT。

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