Beyond In Vitro Brightness: A Matched-Probe Study of Chemiluminescence Contrast for In Vivo Peroxynitrite Imaging

Probe selection for in vivo chemiluminescence imaging commonly relies on intensity and tissue-overlay measurements performed in vitro, yet these measurements do not reproduce the activation background, probe distribution, and optical environment of a living animal. Here, we test how measurement context affects probe ranking using two ONOO--responsive bicyclic dioxetanes, Probe 1 and Probe 2, that share the same arylboronate trigger and closely related core architecture but emit at different wavelengths. In black 96-well plates after ONOO- activation, the visible-emitting Probe 2 produced approximately 350-fold greater photon output than Probe 1, and Probe 2 retained the larger signal-to-background ratio in a chicken-tissue overlay experiment. These in vitro and ex vivo measurements would both favor Probe 2. In living mice, however, the ranking by analytical contrast changed. Probe 1 afforded a subcutaneous signal-to-background ratio of 489 and produced an approximately 7-fold challenged-to-control contrast in an Escherichia coli-induced peritonitis model, compared with approximately 1.5-fold for Probe 2, the absolute signal difference narrowed to approximately 3-fold. This environment-dependent reordering shows that plate intensity and tissue overlays alone can misrank probes intended for in vivo analysis. Emission wavelength, preactivation background, tissue transmission, and model-specific signal distribution must be evaluated together.

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Publication Details

Journal
Analytical Chemistry
Published
2026-09-18
DOI
https://doi.org/10.1021/acs.analchem.6c05253
Primary Topic
Luminescence and Fluorescent Materials
Type
article
Field-Weighted Citation Impact
0.00

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article

Beyond In Vitro Brightness: A Matched-Probe Study of Chemiluminescence Contrast for In Vivo Peroxynitrite Imaging

Yue Cui, Shen‐Huan Li, Xue‐Qiang Wang
Analytical Chemistry
Luminescence and Fluorescent Materials
article

Beyond In Vitro Brightness: A Matched-Probe Study of Chemiluminescence Contrast for In Vivo Peroxynitrite Imaging

Yue Cui, Shen‐Huan Li, Xue‐Qiang Wang
article en

Abstract

Probe selection for in vivo chemiluminescence imaging commonly relies on intensity and tissue-overlay measurements performed in vitro, yet these measurements do not reproduce the activation background, probe distribution, and optical environment of a living animal. Here, we test how measurement context affects probe ranking using two ONOO--responsive bicyclic dioxetanes, Probe 1 and Probe 2, that share the same arylboronate trigger and closely related core architecture but emit at different wavelengths. In black 96-well plates after ONOO- activation, the visible-emitting Probe 2 produced approximately 350-fold greater photon output than Probe 1, and Probe 2 retained the larger signal-to-background ratio in a chicken-tissue overlay experiment. These in vitro and ex vivo measurements would both favor Probe 2. In living mice, however, the ranking by analytical contrast changed. Probe 1 afforded a subcutaneous signal-to-background ratio of 489 and produced an approximately 7-fold challenged-to-control contrast in an Escherichia coli-induced peritonitis model, compared with approximately 1.5-fold for Probe 2, the absolute signal difference narrowed to approximately 3-fold. This environment-dependent reordering shows that plate intensity and tissue overlays alone can misrank probes intended for in vivo analysis. Emission wavelength, preactivation background, tissue transmission, and model-specific signal distribution must be evaluated together.

Analytical Chemistry
Hunan University (CN), Jiangxi Science and Technology Normal University (CN), Hangzhou Academy of Agricultural Sciences (CN)
National Key Research and Development Program of China, Science and Technology Program of Zhejiang Province
Life in Land
Openalex Percentile: Top 24%
Luminescence and Fluorescent Materials
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