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Monitoring of carboxylesterases using a tricyanofuran-based near-infrared fluorophore in living organisms.

Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy · 13 Jun 2025 · 10.1016/j.saa.2025.126569

Abstract

Carboxylesterases serve as crucial regulators of metabolic processes and environmental adaptation across species. While significant progress has been made in developing animal-compatible fluorescence probes, real-time monitoring of the catalytic activity of these enzymes in plants remains challenging due to the limited penetration of visible light in plant tissues. Herein, we designed and synthesized TCF-CEs, tricyanofuran-xanthene probes containing carboxylesterase-cleavable ester bonds that triggers near-infrared fluorescence activation within 20 min. The probe demonstrates excellent specificity, low detection limit of 1.18 × 10 -4 U, and negligible cytotoxicity, which enables effective sensing of endogenous carboxylesterase activities in live mammalian cells. Furthermore, salt-stress experiments with Arabidopsis established direct correlations between carboxylesterase levels and plant stress adaptation. As an effective near-infrared probe capable of tracking carboxylesterase activities in both mammalian cells and plant systems, TCF-CEs provides a powerful tool for investigating metabolic responses between organisms and environmental challenges.

Plant phenotyping relevance

植物体内のカルボキシルエステラーゼ活性を近赤外蛍光プローブで追跡する測定法を開発し、Arabidopsisの塩ストレス適応との関連を実証しており、植物の生理状態取得が中心です。

abstractwe designed and synthesized TCF-CEs, tricyanofuran-xanthene probes containing carboxylesterase-cleavable ester bonds that triggers near-infrared fluorescence activation within 20 min.
abstractAs an effective near-infrared probe capable of tracking carboxylesterase activities in both mammalian cells and plant systems, TCF-CEs provides a powerful tool for investigating metabolic responses between organisms and environmental challenges.

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