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(alpha-NaYbF4:Tm(3+))/CaF2 core/shell nanoparticles with efficient near-infrared to near-infrared upconversion for high-contrast deep tissue bioimaging

机译:(α-NaYbF4:Tm(3 +))/ CaF2核/壳纳米粒子,具有高效近红外到近红外上转换的高对比度深层组织生物成像

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摘要

We describe the development of novel and biocompatible core/shell (alpha-NaYbF(4):Tm(3+))/CaF(2) nanoparticles that exhibit highly efficient NIR(in)-NIR(out) upconversion (UC) for high contrast and deep bioimaging. When excited at ~980 nm, these nanoparticles emit photoluminescence (PL) peaked at ~800 nm. The quantum yield of this UC PL under low power density excitation (~0.3 W/cm(2)) is 0.6 +/- 0.1%. This high UC PL efficiency is realized by suppressing surface quenching effects via heteroepitaxial growth of a biocompatible CaF(2) shell, which results in a 35-fold increase in the intensity of UC PL from the core. Small-animal whole-body UC PL imaging with exceptional contrast (signal-to-background ratio of 310) is shown using BALB/c mice intravenously injected with aqueously dispersed nanoparticles (700 pmol/kg). High-contrast UC PL imaging of deep tissues is also demonstrated, using a nanoparticle-loaded synthetic fibrous mesh wrapped around rat femoral bone and a cuvette with nanoparticle aqueous dispersion covered with a 3.2 cm thick animal tissue (pork).
机译:我们描述了新型和生物相容性的核/壳(alpha-NaYbF(4):Tm(3 +))/ CaF(2)纳米粒子的发展,该纳米粒子具有高效率的NIR(in)-NIR(out)上转换(UC)对比和深层生物成像。当在〜980 nm激发时,这些纳米粒子会发出在〜800 nm达到峰值的光致发光(PL)。在低功率密度激发下(〜0.3 W / cm(2)),此UC PL的量子产率为0.6 +/- 0.1%。这种高的UC PL效率是通过抑制生物相容性CaF(2)壳的异质外延生长来抑制表面淬灭作用而实现的,这导致从芯部获得的UC PL强度增加了35倍。使用静脉注射水分散的纳米粒子(700 pmol / kg)的BALB / c小鼠显示了具有出色对比度(信噪比:310)的小动物全身UC PL成像。还显示了深部组织的高对比度UC PL成像,使用包裹在大鼠股骨周围的纳米粒子负载的合成纤维网和比色皿,其中比色皿的水分散液覆盖有3.2厘米厚的动物组织(猪肉)。

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