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Gold nanostars: Surfactant-free synthesis, 3D modelling, and two-photon photoluminescence imaging

机译:金纳米星:无表面活性剂合成,3D建模和双光子光致发光成像

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摘要

Understanding the control of the optical and plasmonic properties of unique nanosystemsgold nanostarsboth experimentally and theoretically permits superior design and fabrication for biomedical applications. Here, we present a new, surfactant-free synthesis method of biocompatible gold nanostars with adjustable geometry such that the plasmon band can be tuned into the near-infrared region tissue diagnostic window, which is most suitable for invivo imaging. Theoretical modelling was performed for multiple-branched 3D nanostars and yielded absorption spectra in good agreement with experimental results. The plasmon band shift was attributed to variations in branch aspect ratio, and the plasmon band intensifies with increasing branch number, branch length, and overall star size. Nanostars showed an extremely strong two-photon photoluminescence (TPL) process. The TPL imaging of wheat-germ agglutinin (WGA) functionalized nanostars on BT549 breast cancer cells and of PEGylated nanostars circulating in the vasculature, examined through a dorsal window chamber invivo in laboratory mouse studies, demonstrated that gold nanostars can serve as an efficient contrast agent for biological imaging applications.
机译:从实验和理论上理解独特纳米系统金纳米星的光学和等离激元性质的控制,可以为生物医学应用提供出色的设计和制造。在这里,我们提出了一种新的无表面活性剂的合成方法,该方法具有可调整的几何形状的生物相容性金纳米星,因此可以将等离激元带调整到最适合于体内成像的近红外区域组织诊断窗口中。对多分支3D纳米星进行了理论建模,得出的吸收光谱与实验结果非常吻合。等离子体激元带的移动归因于分支长宽比的变化,并且等离子体激元带随着分支数,分支长度和总星大小的增加而增强。纳米星显示出非常强的两光子光致发光(TPL)过程。在实验室小鼠研究中通过背窗室体内检查的BT549乳腺癌细胞上小麦胚芽凝集素(WGA)功能化的纳米星和脉管系统中循环的PEG化纳米星的TPL成像显示,金纳米星可以用作有效的造影剂用于生物成像应用。

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