A nanoprobe for ratiometric imaging of glutathione in living cells based on the use of a nanocomposite prepared from dual-emission carbon dots and manganese dioxide nanosheets

被引:0
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作者
Zhiwei Deng
Xiufang Li
Hui Liu
Yao He
Jie Zhang
Jing Yuan
Peiru Gao
Xuling Jiang
Yanjing Yang
Shian Zhong
机构
[1] Central South University,College of Chemistry and Chemical Engineering
来源
Microchimica Acta | 2020年 / 187卷
关键词
Fluorescence nanomaterial; Fluorescence ratio; Intracellular imaging; Nanodevices; Hydrothermal treatment; Inner filter effect; Fluorescence resonance energy transfer;
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中图分类号
学科分类号
摘要
A ratiometric fluorescence assay for glutathione (GSH) was developed. The novel assay is based on a nanoprobe composed of manganese dioxide nanosheets (MnO2 NS) and dual-emission carbon dots (de-CDs) with intrinsic GSH-response property. After construction of the nanoprobe, two emission peaks of de-CDs were suppressed to varying degrees by MnO2 NS. The suppression was relieved and the two emission peaks recovered proportionally when MnO2 NS was decomposed by GSH, thus realizing the ratiometric assay for micromolar GSH. The intrinsic responsiveness of de-CDs to millimolar GSH broadens the analytical range of the nanoprobe. An appropriate precursor, calcon-carboxylic acid, was screened out to synthesize de-CDs via one-step hydrothermal treatment. The de-CD@MnO2 NS nanoprobe can measure GSH concentrations through the fluorescence intensity ratio between 435 and 516 nm excited at 365 nm. The range of response was from 1 μM to 10 mM and the detection limit reached 0.6 μM (3σ criterion). Benefiting from its good biocompatibility, the proposed nanoprobe has excellent applicability for intracellular GSH imaging.
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