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. 2024 Sep;416(21):4691-4703.
doi: 10.1007/s00216-024-05236-6. Epub 2024 Mar 21.

Ratiometric electrochemiluminescence sensing and intracellular imaging of ClO- via resonance energy transfer

Affiliations

Ratiometric electrochemiluminescence sensing and intracellular imaging of ClO- via resonance energy transfer

Cheng Ma et al. Anal Bioanal Chem. 2024 Sep.

Abstract

Electrochemiluminescence resonance energy transfer (ECL-RET) is a versatile signal transduction strategy widely used in the fabrication of chem/biosensors. However, this technique has not yet been applied in visualized imaging analysis of intracellular species due to the insulating nature of the cell membrane. Here, we construct a ratiometric ECL-RET analytical method for hypochlorite ions (ClO-) by ECL luminophore, with a luminol derivative (L-012) as the donor and a fluorescence probe (fluorescein hydrazide) as the acceptor. L-012 can emit a strong blue ECL signal and fluorescein hydrazide has negligible absorbance and fluorescence signal in the absence of ClO-. Thus, the ECL-RET process is turned off at this time. In the presence of ClO-, however, the closed-loop hydrazide structure in fluorescein hydrazide is opened via specific recognition with ClO-, accompanied with intensified absorbance and fluorescence signal. Thanks to the spectral overlap between the ECL spectrum of L-012 and the absorption spectrum of fluorescein, the ECL-RET effect is gradually recovered with the addition of ClO-. Furthermore, the ECL-RET system has been successfully applied to image intracellular ClO-. Although the insulating nature of the cell itself can generate a shadow ECL pattern in the cellular region, extracellular ECL emission penetrates the cell membrane and excites intracellular fluorescein generated by the reactions between fluorescein hydrazide and ClO-. The cell imaging strategy via ECL-RET circumvents the blocking of the cell membrane and enables assays of intracellular species. The importance of the ECL-RET platform lies in calibrating the fluctuation from the external environment and improving the selectivity by using fluorescent probes. Therefore, this ratiometric ECL sensor has shown broad application prospects in the identification of targets in clinical diagnosis and environmental monitoring.

Keywords: Cell imaging; Electrochemiluminescence; Microscopy; Resonance energy transfer; Spectrum.

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References

    1. Dou K, Fu Q, Chen G, Yu F, Liu Y, Cao Z, et al. A novel dual-ratiometric-response fluorescent probe for SO2/ClO- detection in cells and in vivo and its application in exploring the dichotomous role of SO2 under the ClO- induced oxidative stress. Biomaterials. 2017;133:82–93. - PubMed - DOI
    1. Liu L, Zhu G, Zeng W, Lv B, Yi Y. Highly sensitive and selective “off-on” fluorescent sensing platform for ClO- in water based on silicon quantum dots coupled with nanosilver. Anal Bioanal Chem. 2019;411(8):1561–8. - PubMed - DOI
    1. Fang X, Jin X, Ma X, Guan L, Chen W, She M. Rational construction of deep-red fluorescent probe for rapid detection of HClO and its application in bioimaging and paper-based sensing. Analytical and Bioanalytical Chemistry. 2022;414(19):5887–97. - PubMed - DOI
    1. Long Y, Zhou J, Yang MP, Liu XJ, Zhang M, Yang BQ. Highly selective, sensitive and naked-eye fluorescence probes for the direct detection of hypochlorite anion and their application in biological environments. Sensors and Actuators B-Chemical. 2016;232:327–35. - DOI
    1. Zhan Y, Luo F, Guo L, Qiu B, Lin Y, Li J, et al. Preparation of an efficient ratiometric fluorescent nanoprobe (m-CDs@[Ru(bpy)3]2+) for visual and specific detection of hypochlorite on site and in living cells. Acs Sensors. 2017;2(11):1684–91. - PubMed - DOI

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