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Yb-Based Nanoparticles with the Same Excitation and Emission Wavelength for Sensitive in Vivo Biodetection

机译:基于Yb的纳米颗粒,具有相同的激发和发射波长,用于体内生物诱导敏感

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摘要

Near-infrared luminescent emission has been widely used as a signal for biological detection with its high spatial resolution and fast response. Rare-earthdoped nanoparticle-dye composites have diverse advantages of a wide operation wavelength and remarkable light stability, while the application is limited by the low luminescence quantum yield of rare-earth nanoparticles. Hence, in this work, we use a singly Yb doped nanoparticle that has strong luminescence emission at 975 nm under excitation at the same wavelength as an energy donor to construct the detection system. An inner filter pair, composed of core-shell nanophosphor NaYF4/20%Yb@NaYF4 (1:2) nanocrystals (csYb) as a luminescent beacon and ClO--responsive cyanine dye Cy890 as a filtering agent, was designed as a model. With a time-gated detection mode, the nanocomposites realize the detection limit at 0.55 ppb as demonstrated in a ClO- detection trial. The csYb&Cy890 nanocomposites can also monitor ClO- by luminescence signals in both living cells and mice models.
机译:近红外发光排放已被广泛用作生物检测信号,其空间分辨率高及快速响应。稀土纳米颗粒 - 染料复合材料具有宽的操作波长和显着的光稳定性的不同优点,而应用受到稀土纳米颗粒的低发光量子产率的限制。因此,在这项工作中,我们使用单独的Yb掺杂纳米颗粒,其在相同波长的激发下在975nm处具有强大的发光发射,作为能量供体构建检测系统。作为发光标信标和Clo响应的花青染料Cy890作为过滤剂,由核 - 壳纳米磷光NayF4 / 20%YB纳米晶(CSYB)组成的内滤网。设计为模型。通过时光检测模式,纳米复合材料以0.55ppb实现了检测限,如CLO-检测试验所示。 CSYB&CY890纳米复合材料还可以在活细胞和小鼠模型中监测通过发光信号。

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