In Vivo High-Contrast Biomedical Imaging in the Second Near-Infrared Window Using Ultrabright Rare-Earth Nanoparticles.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 38088357.
- Also identified by DOI 10.1021/acs.nanolett.3c03698 and PMC identifier 10723063.
- Licence recorded as CC BY-NC-ND.
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Abstract
Intravital luminescence imaging in the second near-infrared window (NIR-II) enables noninvasive deep-tissue imaging with high spatiotemporal resolution of live mammals because of the properties of suppressed light scattering and diminished autofluorescence in the long-wavelength region. Herein, we present the synthesis of a downconversion luminescence rare-earth nanocrystal with a core-shell-shell structure (NaYF<sub>4</sub>@NaYbF<sub>4</sub>:Er,Ce@NaYF<sub>4</sub>:Ca). The structure efficiently maximized the doping concentration of the sensitizers and increased Er<sup>3+</sup> luminescence while preventing cross relaxation. Furthermore, Ce<sup>3+</sup> doping in the middle layer efficiently limited the upconversion pathway and increased downconversion by 24-fold to produce bright 1550 nm luminescence under 975 nm excitation. Finally, optimizing the inert shell coating of NaYF<sub>4</sub>:Ca and liposome encapsulation reduced the luminescence quenching impact by water and improved biological metabolism. Thus, our synthesized biocompatible, ultrabright NIR-II probes provide high contrast and resolution for through-scalp and through-skull luminescence imaging of mice cerebral vasculature without craniotomy as well as imaging of mouse hindlimb microvessels.
Medical subject headings
- Metals, Rare Earth
- Nanoparticles