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Practical and versatile hypochlorite sensor using a xanthene scaffold: Integrating theoretical analysis with environmental and biological applications.

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Bioorganic chemistry 📖 저널 OA 2.3% 2024: 0/13 OA 2025: 1/75 OA 2026: 4/129 OA 2024~2026 2026 Vol.169() p. 109455
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Lee JJ, Batsaikhan O, Kim S, Choi Y, Kim KT, Kim C

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A xanthene-based fluorescence and colorimetric sensor, HCC (2,3,6,7,11,12-hexahydro-1H,5H,10H-chromeno[2,3-f]pyrido[3,2,1-ij]quinoline-13-carbaldehyde), was designed for the selective detection of ClO

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APA Lee JJ, Batsaikhan O, et al. (2026). Practical and versatile hypochlorite sensor using a xanthene scaffold: Integrating theoretical analysis with environmental and biological applications.. Bioorganic chemistry, 169, 109455. https://doi.org/10.1016/j.bioorg.2025.109455
MLA Lee JJ, et al.. "Practical and versatile hypochlorite sensor using a xanthene scaffold: Integrating theoretical analysis with environmental and biological applications.." Bioorganic chemistry, vol. 169, 2026, pp. 109455.
PMID 41478198 ↗

Abstract

A xanthene-based fluorescence and colorimetric sensor, HCC (2,3,6,7,11,12-hexahydro-1H,5H,10H-chromeno[2,3-f]pyrido[3,2,1-ij]quinoline-13-carbaldehyde), was designed for the selective detection of ClO. HCC exhibited detection limits of 0.36 μM in fluorescence and 3.0 μM in UV-vis analysis and demonstrated high selectivity against various anions and ROS. The ClO sensing mechanism was examined using H NMR, ESI-MS, and DFT calculations, revealing that fluorescence quenching resulted from xanthene ring cleavage and π-conjugation disruption. The practical applicability of HCC was evaluated in water samples, test strip-based detection, and smartphone-assisted quantification. In addition, bioimaging experiments using zebrafish confirmed ClO-induced fluorescence quenching in living organisms, while edible plant-based sensing demonstrated its utility in tracking ClO uptake through root absorption. Furthermore, HCC was successfully applied for ClO residue detection on mushrooms. These results suggest that HCC serves as a highly sensitive and versatile ClO sensor with potential applications in environmental monitoring, biological imaging, and food safety assessment.

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