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Accurate In Vivo Nanothermometry through NIR-II Lanthanide Luminescence Lifetime

  • Meiling Tan
  • , Feng Li
  • , Ning Cao
  • , Hui Li
  • , Xin Wang
  • , Chenyang Zhang
  • , Daniel Jaque
  • , Guanying Chen*
  • *Corresponding author for this work
  • School of Chemistry and Chemical Engineering, Harbin Institute of Technology
  • Harbin Institute of Technology
  • SUNY Buffalo
  • Universidad Autónoma de Madrid
  • Hospital Ramon y Cajal

Research output: Contribution to journalArticlepeer-review

Abstract

Luminescence nanothermometry is promising for noninvasive probing of temperature in biological microenvironment at nanometric spatial resolution. Yet, wavelength- and temperature-dependent absorption and scattering of tissues distort measured spectral profile, rendering conventional luminescence nanothermometers (ratiometric, intensity, band shape, or spectral shift) problematic for in vivo temperature determination. Here, a class of lanthanide-based nanothermometers, which are able to provide precise and reliable temperature readouts at varied tissue depths through NIR-II luminescence lifetime, are described. To achieve this, an inert core/active shell/inert shell structure of tiny nanoparticles (size, 13.5 nm) is devised, in which thermosensitive lanthanide pairs (ytterbium and neodymium) are spatially confined in the thin middle shell (sodium yttrium fluoride, 1 nm), ensuring being homogenously close to the surrounding environment while protected by the outmost calcium fluoride shell (CaF2, ≈2.5 nm) that shields out bioactive milieu interferences. This ternary structure enables the nanothermometers to consistently resolve temperature changes at depths of up to 4 mm in biological tissues, having a high relative temperature sensitivity of 1.4–1.1% °C−1 in the physiological temperature range of 10–64 °C. These lifetime-based thermosensitive nanoprobes allow for in vivo diagnosis of murine inflammation, mapping out the precise temperature distribution profile of nanoprobes-interrogated area.

Original languageEnglish
Article number2004118
JournalSmall
Volume16
Issue number48
DOIs
StatePublished - 3 Dec 2020

Keywords

  • NIR-II
  • core/shell/shell nanoparticles
  • in vivo diagnosis
  • lifetime
  • nanothermometry

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