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首页> 外文期刊>Angewandte Chemie >Photon-Upconverting Nanoparticles for Optical Encoding and Multiplexing of Cells, Biomolecules, and Microspheres
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Photon-Upconverting Nanoparticles for Optical Encoding and Multiplexing of Cells, Biomolecules, and Microspheres

机译:光子上转换纳米粒子,用于细胞,生物分子和微球的光学编码和多路复用

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摘要

Photon-upconverting nanoparticles (UCNPs) are lanthanide-doped nanocrystals that emit visible light under near-infrared excitation (anti-Stokes emission). This unique optical property precludes background fluorescence and light scattering from biological materials. The emission of multiple and narrow emission lines is an additional hallmark of UCNPs that opens up new avenues for optical encoding. Distinct emission signatures can be obtained if the multiple emission of UCNPs is tuned by their dopant composition or by surface modification with dyes. Tuning the intensity of only one of the multiple emission lines and using another one as a constant reference signal enables the design of ratiometric codes that are resistant to fluctuations in absolute signal intensities. Combining several UCNPs each displaying a distinct set of emission lines expands the coding capacity exponentially and lays the foundation for highly multiplexed analyte detection. This Review highlights the potential of UCNPs for labeling and encoding bio-molecules, microspheres, and even whole cells.
机译:光子上转换纳米颗粒(UCNP)是镧系元素掺杂的纳米晶体,在近红外激发(反斯托克斯发射)下发出可见光。这种独特的光学特性可防止背景荧光和生物材料的光散射。多条窄发射线的发射是UCNP的另一个标志,它为光学编码开辟了新途径。如果通过UCNP的掺杂剂组成或染料表面改性来调节UCNP的多次发射,则可以获得明显的发射特征。调整多条发射线中仅一条发射线的强度并将另一条发射线用作恒定参考信号,就可以设计出能够抵抗绝对信号强度波动的比率编码。组合多个UCNP,每个UCNP显示一组不同的发射谱线,可以以指数方式扩展编码能力,并为高度多路分析物检测奠定了基础。这篇综述强调了UCNP在标记和编码生物分子,微球甚至整个细胞方面的潜力。

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