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Development of a near-infrared fluorescent probe for in situ monitoring of hydrogen peroxide in plants.

Jin Z, Song L, Yang X, Wang Y, Niu N, Chen L.

Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy · 19 Apr 2025 · 10.1016/j.saa.2025.126267

Abstract

In plants, hydrogen peroxide (H 2 O 2 ), one of the significant reactive oxygen species, plays a dual function. Investigating its concentration is essential for understanding its production and scavenging mechanisms in plants. In this study, a near-infrared fluorescent probe (Cy-Bo) was developed, which is based on the hemicyanine compound. By introducing indole salts into the oxygenated anthraquinone structure, the conjugated system is expanded, enabling the probe to emit long-wavelength fluorescence in the near-infrared region, thereby minimizing interference from other biomolecules in plant tissues (λ ex = 650 nm, λ em = 720 nm). As for the specific recognition of H 2 O 2 , the pinacol phenylborate ester was selected to be the recognition group. It shows good linearity (R 2 = 0.998) in the concentration range of 0.5-100 μM, with a detection limit of 0.07 μM. Furthermore, this probe Cy-Bo has been used for in vivo fluorescence imaging in plants due to its good bio-penetration and in-situ imaging capabilities. The results reveal a significant increase in H 2 O 2 concentration in Arabidopsis thaliana under progressively increasing drought, high-temperature, and salt stress. This tool provides a non-invasive, in situ imaging method for detecting H 2 O 2 in plants, which has a fast response, easy operation, and high sensitivity. It enables visual monitoring of H 2 O 2 fluctuations and aids in advancing physiological and pathological studies related to H 2 O 2 .

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