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Miniature gold nanorods for photoacoustic molecular imaging in the second near-infrared optical window

机译:用于光声分子成像的微型金纳米棒在第二近红外光学窗口中的光声分子成像

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摘要

In photoacoustic imaging, the second near-infrared (NIR-II) window is where tissue generates the least background signal. However, the large size of the few available contrast agents in this spectral range impedes their pharmacokinetics and decreases their thermal stability, leading to unreliable photoacoustic imaging. Here, we report the synthesis of miniaturized gold nanorods absorbing in the NIR-II that are 5-11 times smaller than regular-sized gold nanorods with a similar aspect ratio. Under nanosecond pulsed laser illumination, small nanorods are about 3 times more thermally stable and generate 3.5 times stronger photoacoustic signal than their absorption-matched larger counterparts. These unexpected findings are confirmed using theoretical and numerical analysis, showing that photoacoustic signal is not only proportional to the optical absorption of the nanoparticle solution but also to the surface-to-volume ratio of the nanoparticles. In living tumour-bearing mice, these small targeted nanorods display a 30% improvement in efficiency of agent delivery to tumours and generate 4.5 times greater photoacoustic contrast.
机译:在光声成像中,第二近红外(NIR-II)窗口是组织产生最小背景信号的位置。然而,这种光谱范围内的少数可用造影剂的大尺寸阻碍了其药代动力学并降低了它们的热稳定性,导致光声成像不可靠。在这里,我们报道了在NIR-II中吸收的小型金纳米棒的合成,其比具有相似纵横比的常规金纳米棒的5-11倍。在纳秒脉冲激光照射下,小纳米棒的热稳定率约为3倍,比其吸收匹配较大的对应物产生3.5倍的光声信号。使用理论和数值分析证实了这些意外的发现,表明光声信号不仅与纳米颗粒溶液的光学吸收成比例,而且是纳米颗粒的表面对体积比例。在活性肿瘤的小鼠中,这些小型靶向纳米棒显示出对肿瘤的药剂递送的效率提高30%,并产生4.5倍的光声对比度。

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  • 来源
    《Nature nanotechnology》 |2019年第5期|共8页
  • 作者单位

    Stanford Univ Dept Radiol Mol Imaging Program Stanford Canary Ctr Canc Early Detect Sch Med Stanford CA 94305 USA;

    Stanford Univ Dept Mat Sci &

    Engn Stanford CA 94305 USA;

    Univ Washington Dept Bioengn Seattle WA USA;

    Stanford Univ Dept Radiol Mol Imaging Program Stanford Canary Ctr Canc Early Detect Sch Med Stanford CA 94305 USA;

    Georgia Inst Technol Sch Elect &

    Comp Engn Atlanta GA 30332 USA;

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  • 正文语种 eng
  • 中图分类 特种结构材料;
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