Center-concave nanosheets of core-shell WO3@Prussian blue based handheld microchip-devices for ultrasensitive lysine determination
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Center-concave nanosheets of core-shell WO3@Prussian blue based handheld microchip-devices for ultrasensitive lysine determination
Center-concave nanosheets of core-shell WO3@Prussian blue based handheld microchip-devices for ultrasensitive lysine determination
中国化学工程学报(英文版)2024年76卷第12期 页码:21-29
Affiliations:
1. State Key Laboratory of Materials-Oriented Chemical Engineering, College of Chemical Engineering, Nanjing Tech University,Nanjing,China,211816
2. Quzhou Membrane Material Innovation Institute, Nanjing Tech University,Quzhou,China,324000
3. School of Chemistry and Molecular Engineering, Nanjing Tech University,Nanjing,China,211816
Author bio:
Funds:
DOI:
中图分类号:
纸质出版:2024
Accepted:
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Huaiyu Song, Meiyue Wang, Tao Liu, 等. Center-concave nanosheets of core-shell WO3@Prussian blue based handheld microchip-devices for ultrasensitive lysine determination[J]. 中国化学工程学报(英文版), 2024,76(12):21-29.
@Prussian blue based handheld microchip-devices for ultrasensitive lysine determination[J]. 中国化学工程学报, 2024, 76(12): 21-29.
Huaiyu Song, Meiyue Wang, Tao Liu, 等. Center-concave nanosheets of core-shell WO3@Prussian blue based handheld microchip-devices for ultrasensitive lysine determination[J]. 中国化学工程学报(英文版), 2024,76(12):21-29.DOI:
@Prussian blue based handheld microchip-devices for ultrasensitive lysine determination[J]. 中国化学工程学报, 2024, 76(12): 21-29.DOI:
Center-concave nanosheets of core-shell WO3@Prussian blue based handheld microchip-devices for ultrasensitive lysine determination
Lysine is one of the essential amino acids for human body
and its imbalance is a major cause to anemia
aging process
leukemia cell proliferation and tumor growth. Therefore
its monitoring is dominative to the prevention the disease progress and guidance to the clinical treatment. However
traditional in-hospital detection methods
such as colorimetry and fluorometric
often suffer the disadvantages of high cost and long time-consuming. These drawbacks show a difficulty in the home-in and dairy monitoring for the lysine regulation in body. In this study
we have proposed an ultrasensitive microchip-based portable device to achieve the onsite and precise determination of lysine within only 10 s. This microchip was functionalized through constructing a center-concave nanosheet of core-shell WO
3
@Prussian blue (WO
3
@PB) to remarkably strengthen the generation and transfer of the detection signal. In this special architecture
the core WO
3
nanosheet can be exposed at the center region of this nanocomposite to effectively promote the enzymatic oxidation
while the PB shell enables to strongly reduce the H
2
O
2
produced by the enzymatic reaction. Under above synergetic effects
a handheld device was designed to support the plug-and-play microchip
which performed an outstanding accuracy for the lysine detection in blood.
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