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◆ Critical Reviews in Analytical Chemistry2026-03-16· Cytotoxicity

Advances in Coumarin-Based Dual-Mode Probes for Bioimaging and Cytotoxicity Evaluation: A Review

Muhanad Alhujaily, Mushabbab Alahmari, Abdulaziz Asiri, Alaa Shafie

原始摘要(英文原文)· Original abstract
Coumarin derivatives have emerged as one of the most versatile fluorophore families in chemical biology. Their compact heterocyclic architecture allows facile functional modifications, enabling the rational design of dual-mode probes capable of providing both colorimetric and fluorescence outputs. Over the last decade, coumarin-based sensors have gained considerable attention for detecting biologically and environmentally relevant metal(II) ions. Beyond analytical sensing, the biological utility of coumarin-based systems has expanded significantly, particularly in cytotoxicity evaluation and live-cell imaging. Numerous studies from demonstrate successful intracellular metal-ion visualization across a wide spectrum of cellular models, including HepG2, HeLa, A375, MCF-7, KYSE30, HEK293T, PC12, MDA-MB-231, HEK293, HCT116, H9c2, C6, HeLa S3, A549, and RAW 264.7 cells. Coumarin probes have also been effectively applied in C. elegans, zebrafish, and glassfish larvae, enabling whole-organism imaging and dynamic tracing of metal(II) distribution. The aim of this review is to systematically summarize advancements in coumarin-based dual-mode probes from 2018 to 2025, with emphasis on their structural design, sensing performance toward metal(II) ions, biological compatibility, and imaging applications across diverse cell lines and organism models.
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