Unverified paper record
An activatable near-infrared probe for in situ monitoring of hydrogen peroxide in plant tissues
Food Chemistry · 1 Sept 2025
Abstract
Biotic and abiotic stresses can disrupt plant metabolic processes. This leads to the excessive accumulation of hydrogen peroxide (H₂O₂) in plants, which in turn induces oxidative stress. Therefore, detection of H₂O₂ is critical to understanding plant growth. In this study, we developed a naphthalene-based fluorescein near-infrared fluorescent probe (NAPF-AC) for the sensitive and selective detection of H₂O₂. Upon exposure to H₂O₂, the probe undergoes disruption of its push-pull electronic structure, triggering an intramolecular charge transfer process that allows for fluorescence-based detection. NAPF-AC exhibited excellent linearity (R² = 0.998) over a wide concentration range of H₂O₂ (0.1 to 100 μM), with a limit of detection (LOD) as low as 0.05 μM. In addition, NAPF-AC was successfully used for the in-situ detection of H₂O₂ in plant tissues. This study provides a powerful tool for studying H₂O₂ dynamics in plants and offers new insights into the mechanisms regulating plant growth and stress responses.
Plant phenotyping relevance
植物組織内のH₂O₂という生理状態を蛍光プローブで測定するセンサーを開発し、性能評価と植物組織での実証を行っており、測定法が研究の中心である。
abstractwe developed a naphthalene-based fluorescein near-infrared fluorescent probe (NAPF-AC) for the sensitive and selective detection of H₂O₂.
abstractNAPF-AC was successfully used for the in-situ detection of H₂O₂ in plant tissues.
Code and data availability
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