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Cited 18 time in webofscience Cited 18 time in scopus
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A “turn-on” fluorescent probe for glutathione detection based on the polyethylenimine-carbon dots-Cu2+ system

Authors
Zhang, B.[Zhang, B.]Duan, Q.[Duan, Q.]Li, Y.[Li, Y.]Zhang, Y.[Zhang, Y.]Che, M.[Che, M.]Zhang, W.[Zhang, W.]Sang, S.[Sang, S.]
Issue Date
Aug-2019
Publisher
Elsevier B.V.
Keywords
Fluorescence probes; Glutathione; PEI-CDs-Cu2+ system
Citation
Journal of Photochemistry and Photobiology B: Biology, v.197
Indexed
SCIE
SCOPUS
Journal Title
Journal of Photochemistry and Photobiology B: Biology
Volume
197
URI
https://scholarworks.bwise.kr/skku/handle/2021.sw.skku/15169
DOI
10.1016/j.jphotobiol.2019.111532
ISSN
1011-1344
Abstract
Glutathione (GSH) plays critical roles in many physiological processes usually present in live cells, and altered levels have been linked to some clinical pathological conditions. However, current techniques of GSH detection with fluorescence assay strategies remain poorly researched. In this work, branched polyethylenimine-functionalized carbon dots (PEI-CDs) are synthesized by simple hydrothermal treatment of glucose and PEI. The fluorescence of the PEI-CDs could be efficiently quenched by Cu2+ and then recovered by some biothiols. Basing on this, a “turn-on” fluorescent probe for detecting GSH has been developed using PEI-CDs-Cu2+ system. Compared with traditional probes for GSH detection, a significant advantage of the PEI-CDs-Cu2+ system is that it can be used for GSH detection at both low and high concentrations with different concentration combinations of PEI-CDs and Cu2+. More specifically, two good linear relationships are achieved in the ranges of 0–80 μM and 0–1400 μM for GSH, respectively. Correspondingly, the detection limits of GSH are 0.33 μM and 9.49 μM, respectively. The quantum yields (QYs) of PEI-CDs and PEI-CDs-Cu2++GSH was 9.6% and 4.2%, respectively. Moreover, the PEI-CDs-Cu2+ has excellent optical stability and good biocompatibility. Additionally, it is worth noting that the developed probe has successfully realized the visualization of GSH detection in MGC-803 cells. © 2019 Elsevier B.V.
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