A sequential dual‐lock strategy for photoactivatable chemiluminescent probes enabling bright duplex optical imaging

Y Zhang, C Yan, C Wang, Z Guo, X Liu… - Angewandte …, 2020 - Wiley Online Library
Y Zhang, C Yan, C Wang, Z Guo, X Liu, WH Zhu
Angewandte Chemie, 2020Wiley Online Library
Chemiluminescence (CL)‐based technologies have revolutionized in vivo monitoring of
biomolecules. However, significant technical hurdles have limited the achievement of trigger‐
controlled, bright, and enriched CL signal. Herein, a dual‐lock strategy uses sequence‐
dependent triggers for bright optical imaging with real‐time fluorescent signal and ultra‐
sensitive CL signal. These probes can obtain an analyte‐triggered accumulation of stable
pre‐chemiluminophore with aggregation‐induced emission (AIE), and then the pre …
Abstract
Chemiluminescence (CL)‐based technologies have revolutionized in vivo monitoring of biomolecules. However, significant technical hurdles have limited the achievement of trigger‐controlled, bright, and enriched CL signal. Herein, a dual‐lock strategy uses sequence‐dependent triggers for bright optical imaging with real‐time fluorescent signal and ultra‐sensitive CL signal. These probes can obtain an analyte‐triggered accumulation of stable pre‐chemiluminophore with aggregation‐induced emission (AIE), and then the pre‐chemiluminophore exhibits a rapid photooxidation process (1,2‐dioxetane generation) by TICT‐based free‐radical addition, thereby achieving an enrichment and bright CL signal. The dual‐lock strategy expands the in vivo toolbox for highly accurate analysis and has for the first time allowed access to accurately sense and trace biomolecules with high‐resolution, dual‐mode of chemo‐fluoro‐luminescence, and three‐dimensional (3D) imaging in living animals.
Wiley Online Library
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