Water-insensitive NIR-I-to-NIR-I down-shifting nanoparticles enable stable biomarker detection at low power thresholds in opaque aqueous environments

  • Kang, Dongkyu; 
  • Kim, Suyeon; 
  • Goh, Yeongchang; 
  • Kim, Minseo; 
  • Lee, Sun-Hak; 
  • ... Kwon, Jung-Hoon; 
  • 외 2명
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초록

Luminescence quenching in aqueous environments poses a challenge for practical applications. Lanthanide-doped up-conversion nanoparticles (UCNPs), representative of near-infrared (NIR)-emitting phosphors, typically utilize Yb3+ ions as sensitizers, requiring 980 nm light. This wavelength coincides with the transitions of water molecules, interfering with population dynamics, and continuous irradiation causes unintended heating. Although Nd3+ ions, which absorb at 800 nm, serve as alternative sensitizers, their practical use is limited by low quantum yield (Q.Y.). In this study, we developed water-insensitive down-shifting nanoparticles (WINPs) functioning within the NIR-I range (700-900 nm) to avoid water interference. Characterization through single-particle-level spectroscopy demonstrated water-insensitive properties, with identical powers density and lifetime profiles under both dry and water conditions. The WINPs achieved a high Q.Y. of 22.1 +/- 0.9%, allowing operation at a detection limit power 15-fold lower than UCNPs, effectively eliminating background noise and enhancing overall performance. To assess diagnostic potential, we validated WINP-based lateral flow immunoassay (LFA) for detecting avian influenza viruses (AIVs) in 65 opaque clinical samples, achieving 100% sensitivity and an area under the curve (AUC) of 1.000 at only 100 mW cm-2. These findings highlight the potential of WINPs as water-insensitive NIR phosphors that can operate at low power, even in water-rich environments.

키워드

LATERAL FLOW IMMUNOASSAY; ENERGY-TRANSFER; CONVERSION; VIRUS
제목
Water-insensitive NIR-I-to-NIR-I down-shifting nanoparticles enable stable biomarker detection at low power thresholds in opaque aqueous environments
저자
Kang, Dongkyu; Kim, Suyeon; Goh, Yeongchang; Kim, Minseo; Lee, Sun-Hak; Kwon, Jung-Hoon; Nam, Sang Hwan; Lee, Joonseok
DOI
10.1038/s41377-025-01882-2
발행일
2025-07-03
유형
Article
저널명
Light: Science & Applications
권
14
호
1