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High spatial resolution electrochemical biosensing using reflected light microscopy

delete2019-10-23
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OA
AI
R
Raluca‐Elena Munteanu
R
Ran Ye
C
Cristina Polonschii
A
Adrian Ruff
M
Mihaela Gheorghiu
E
Eugen Gheorghiu
R
Rabah Boukherroub
W
Wolfgang Schuhmann
S
Sorin Melinte
S
Szilveszter Gáspár *
DOI:10.1038/s41598-019-50949-9delete
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摘要

摘要

En 中文
If the analyte does not only change the electrochemical but also the optical properties of the electrode/solution interface, the spatial resolution of an electrochemical sensor can be substantially enhanced by combining the electrochemical sensor with optical microscopy. In order to demonstrate this, electrochemical biosensors for the detection of hydrogen peroxide and glucose were developed by drop casting enzyme and redox polymer mixtures onto planar, optically transparent electrodes. These biosensors generate current signals proportional to the analyte concentration via a reaction sequence which ultimately changes the oxidation state of the redox polymer. Images of the interface of these biosensors were acquired using bright field reflected light microscopy (BFRLM). Analysis showed that the intensity of these images is higher when the redox polymer is oxidized than when it is reduced. It also revealed that the time needed for the redox polymer to change oxidation state can be assayed optically and is dependent on the concentration of the analyte. By combining the biosensor for hydrogen peroxide detection with BFRLM, it was possible to determine hydrogen peroxide in concentrations as low as 12.5 mu M with a spatial resolution of 12 mu m x 12 mu m, without the need for the fabrication of microelectrodes of these dimensions.
Keyword:
GLUCOSE-OXIDASE
AMPEROMETRIC BIOSENSOR
EXTRACELLULAR-SPACE
HYDROGEN-PEROXIDE
REDOX
MICROELECTRODES
MICROSENSORS
GLUTAMATE
ARRAYS
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Scientific Reports 封面图
Scientific Reports
IF:
3.9
论文数:
28.0W
被引数:
83.5W

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C
centre national de la recherche scientifique (cnrs)
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24.5W
论文数: 18.2W
被引数: 279
U
universite catholique louvain
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被引数: 21
U
universite de lille
学者数:
2.7W
论文数: 2.0W
被引数: 15
R
ruhr university bochum
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论文数: 1.9W
被引数: 14
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