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A FRET-Based Ratiometric H2S Sensor for Sensitive Optical Molecular Imaging in Second Near-Infrared Window.


ABSTRACT: Second near-infrared (NIR-II) window optical molecular imaging kicks off a new revolution in high-quality imaging in vivo, but always suffers from the hurdles of inevitable tissue autofluorescence background and NIR-II probe development. Here, we prepare a Förster resonance energy transfer-based ratiometric NIR-II window hydrogen sulfide (H2S) sensor through the combination of an H2S-responsive NIR-II cyanine dye (acceptor, LET-1055) and an H2S-inert rhodamine hybrid polymethine dye (donor, Rh930). This sensor not only exhibits high sensitivity and selectivity, but also shows rapid reaction kinetics (~20 min) and relatively low limit of detection (~96 nM) toward H2S, allowing in vivo ratiometric NIR-II fluorescence imaging of orthotopic liver and colon tumors and visualization of the drug-induced hepatic H2S fluctuations. Our findings provide the potential for advancing the feasibility of NIR-II activity-based sensing for in vivo clinical diagnosis.

SUBMITTER: Lei S 

PROVIDER: S-EPMC10755252 | biostudies-literature | 2023

REPOSITORIES: biostudies-literature

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A FRET-Based Ratiometric H<sub>2</sub>S Sensor for Sensitive Optical Molecular Imaging in Second Near-Infrared Window.

Lei Shan S   Jiang Kejia K   Zhang Chenqing C   Sun Wei W   Pan Yuantao Y   Wang Dong D   Huang Peng P   Lin Jing J  

Research (Washington, D.C.) 20231228


Second near-infrared (NIR-II) window optical molecular imaging kicks off a new revolution in high-quality imaging in vivo, but always suffers from the hurdles of inevitable tissue autofluorescence background and NIR-II probe development. Here, we prepare a Förster resonance energy transfer-based ratiometric NIR-II window hydrogen sulfide (H<sub>2</sub>S) sensor through the combination of an H<sub>2</sub>S-responsive NIR-II cyanine dye (acceptor, LET-1055) and an H<sub>2</sub>S-inert rhodamine hy  ...[more]

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