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Nanoparticles Enhanced Self-Driven Microfludic Biosensor

delete2020-03-27
delete10
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OA
AI
C
Chunxiu Liu
N
Ning Xue
H
Haoyuan Cai
J
Jianhai Sun
祁志美 (Zhi‐mei Qi) *
P
Peiyue Zhao
F
Fei Xiong
Z
Zhaoxin Geng
L
Liying Jiang *
L
Li Li *
DOI:10.3390/mi11040350delete
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Abstract

Abstract

En 中文
C-reactive protein (CRP) plays an important role in inflammation detection and disease monitoring. The optical biosensor is a highly sensitive and easy detection tool. The microfluidic self-driving optical sensors were fabricated with transparent glass material and used for the enhanced surface plasmon resonance (SPR) optical detection of the model protein CRP using Au nanoparticles (AuNPs) and a sandwich immune reaction. The 3D design of the chip was devised to improve the optical coupling efficiency and enable integration with a microfluidic control and rapid detection. The array of pre-fixed antibody modified by Au nanoparticles was used to achieve rapid antigen capture and improve the optical sensitivity. The Au nanoparticle amplification approach was introduced for the SPR detection of a target protein. CRP was used as a model target protein as part of a sandwich assay. The use of Au NP measurements to detect the target signal is a threefold improvement compared to single SPR detection methods.
Keywords:
microfluidic biosensor
amplification effect of nanoparticle
optomagnetic detection
sandwich assay
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Micromachines cover
Micromachines
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3
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U
university of chinese academy of sciences, cas
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Citations: 75
Z
Zhengzhou University of Light Industry
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C
chinese academy of sciences
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