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Ln(3+)-doped nanoparticles with enhanced NIR-II luminescence for lighting up blood vessels in mice

机译:Ln(3 +)与增强NIR-II再版纳米颗粒发光照亮了血管老鼠

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Probes functioning in the second near-infrared window (1000-1700 nm, NIR-II) exhibit higher resolution and diminished auto-fluorescence compared to those in the traditional NIR region (700-950 nm). Here, we designed and synthesized rare earth ion doped probes with core/shell/shell structures and bright luminescence in the NIR-II region excited at 808 nm. With the doping of Ce3+ ions, the emission intensity of Er3+ at 1530 nm increased 10 times, while the upconversion luminescence decreased to less than 1%. After being modified with polyacrylic acid and polyethylene glycol, the as-obtained water-soluble probe exhibits continuous high-resolution for distinguishing 0.25 mm blood vessels even 10 h after injection. Noteworthily, the imaging of tumors was achieved by injecting the probe, indicating that the designed NIR-II probe has sufficient brightness and the ability to passively target tumor tissue.
机译:在第二近红外探测功能窗口(1000 - 1700纳米,NIR-II)表现出更高分辨率和减少自体荧光相比传统的近红外光谱区域(700 - 950海里)。稀土离子掺杂探针与核/壳/壳NIR-II结构和明亮的发光区域兴奋在808海里。离子的发射强度Er3 + 1530海里增加了10倍,而上转换发光下降到低于1%。聚丙烯酸和被修改适用于聚乙二醇水溶性探针展品连续高分辨率为0.25毫米的血液的区别船只甚至10 h后注入。肿瘤的成像是通过注射来实现调查,表明NIR-II而设计的探测器有足够的亮度和能力被动目标肿瘤组织。

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