Molecularly Imprinted Magnetic Fluorescent Nanocomposite-Based Sensor for Selective Detection of Lysozyme

Сенсор на основе молекулярно импринтированного магнитного флуоресцентного нанокомпозита для селективного обнаружения лизоцима
Bo Tang, Yansong Li, Xin Zhang, Chengbin Liu, Pengfei Jiao, Yuping Wei
2021-06-15

Fe3O4 magnetic nanoparticlesLysozyme detectionMagnetic fluorescent nanocompositeMolecularly imprinted polymerZinc sulfide quantum dots
A new strategy for the design and construction of molecularly imprinted magnetic fluorescent nanocomposite-based-sensor is proposed. This multifunctional nanocomposite exhibits the necessary optics, magnetism and biocompatibility for use in the selective fluorescence detection of lysozyme. The magnetic fluorescent nanocomposites are prepared by combining carboxyl- functionalized Fe3O4 magnetic nanoparticles with l-cysteine-modified zinc sulfide quantum dots (MNP/QDs). Surface molecular imprinting technology was employed to coat the lysozyme molecularly imprinted polymer (MIP) layer on the MNP/QDs to form a core-shell structure. The molecularly imprinted MNP/QDs (MNP/QD@MIPs) can rapidly separate the target protein and then use fluorescence sensing to detect the protein; this reduces the background interference, and the selectivity and sensitivity of the detection are improved. The molecularly imprinted MNP/QDs sensor presented good linearity over a lysozyme concentration range from 0.2 to 2.0 μM and a detection limit of 4.53 × 10−3 μM for lysozyme. The imprinting factor of the MNP/QD@MIPs was 4.12, and the selectivity coefficient ranged from 3.19 to 3.85. Furthermore, the MNP/QD@MIPs sensor was applied to detect of lysozyme in human urine and egg white samples with recoveries of 95.40–103.33%. Experimental results showed that the prepared MNP/QD@MIPs has potential for selective magnetic separation and fluorescence sensing of target proteins in biological samples.
1
A multifunctional molecularly imprinted magnetic fluorescent nanocomposite was developed for selective lysozyme detection.
2
Magnetic separation rapidly isolates lysozyme before fluorescence measurement, reducing background interference and improving selectivity and sensitivity.
3
The nanocomposite exhibited an imprinting factor of 4.12, selectivity coefficients of 3.19–3.85, and 95.40–103.33% recoveries in urine and egg white samples.
4
The sensor combines carboxyl-functionalized Fe3O4 nanoparticles, l-cysteine-modified ZnS quantum dots, and a surface-imprinted polymer shell.
5
The sensor showed linear lysozyme detection from 0.2 to 2.0 μM, with a detection limit of 4.53 × 10−3 μM.

Molecularly imprinted magnetic fluorescent nanocomposite sensor (Fe3O4 magnetic nanoparticles/l-cysteine-modified ZnS quantum dots coated with a lysozyme-imprinted polymer)

Selective magnetic separation and fluorescence detection of lysozyme, including sensor linearity, sensitivity, selectivity, and analytical performance in biological samples

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2021-06-15
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Authors
Bo Tang
Yansong Li
Xin Zhang
Chengbin Liu
Pengfei Jiao
Yuping Wei
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