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Peroxidase-like molybdenum oxides/nitrogen-doped graphene quantum dot as the smartphone-based immunosensing probe for the ultrasensitive detection of neurofilament light chain in human serum
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Peroxidase-like molybdenum oxides/nitrogen-doped graphene quantum dot as the smartphone-based immunosensing probe for the ultrasensitive detection of neurofilament light chain in human serum

Siew Suan Ng, Ian Sandall, Hsin-Cheng ChiuRuey-an Doong
Sensors and Actuators B: Chemical, 卷.419, 136426
11/2024

摘要

Colorimetry Immunosensor N-doped graphene quantum dot (N-GQD) / mixed molybdenum oxides (MMO) Nanozyme Neurofilament light chain (NfL) Peroxidase Electronic Optical and Magnetic Materials Instrumentation Condensed Matter Physics Surfaces Coatings and Films Metals and Alloys Electrical and Electronic Engineering Materials Chemistry
Nanozyme possesses multiple advantages including low cost, high stability, easy manufacture, and versatility, which have earned interest in the application of biomedical purposes. Herein, the nitrogen-graphene quantum dot (N-GQDs) decorated mixed molybdenum oxides (MMO, MoO <sub>x</sub> , 2 < x < 3) were hydrothermally fabricated to serve as the peroxidase-like nanozymes for the ultrasensitive detection of neurofilament light chain (NfL). The kinetics parameters of nanozyme including maximum velocity (V <sub>max</sub> ) and Michaelis-Menten half-saturation constant (K <sub>m</sub> ) were examined and co <sub>m</sub> pared with natural horseradish peroxidase (HRP). In addition, the detection principle of MMO/N-GQD-based immunosensor was established. Results show that addition of N-GQDs can trigger the electron flow from N-GQDs to MMO, making the redox center of Mo elements more effective on electron transfer. The MMO/N-GQDs/PPL/anti-NfL immunosensor exhibits excellent analytical performance on NfL detection with both UV–visible spectrophotometer or smartphone-oriented RGB reader. A linear range of 16–1000 pg mL <sup>−1</sup> with a limit of detection of 2.24 pg mL <sup>−1</sup> and recovery of 83 – 104 % in human serum is achieved. The immunosensor can attain a selectivity coefficient of higher than 0.7 against interferences containing common ions, amino acids, cholesterol, and biomarkers in serum. Results corroborate that the green-synthesized peroxidase-like MMO/N-GQD possesses the advantages of cost-effective and high scalability, which can serve as a potential nanozyme to replace natural enzyme for the ultrasensitive and selective detection of serum NfL with superior recovery in human serum.

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