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. 2025 Jul 15:280:117451.
doi: 10.1016/j.bios.2025.117451. Epub 2025 Apr 4.

Nanochannel-confined Ni(OH)2-CeO2 composite nanozyme boosts electrochemiluminescence of luminol-dissolved oxygen for immunosensing

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Nanochannel-confined Ni(OH)2-CeO2 composite nanozyme boosts electrochemiluminescence of luminol-dissolved oxygen for immunosensing

Xue Fan et al. Biosens Bioelectron. .

Abstract

An immunosensing platform was developed based on the enhanced electrochemiluminescence (ECL) of luminol-dissolved oxygen (O2) by nanochannel-confined Ni(OH)2-CeO2 composite nanozyme, which is able to sensitively detect cytokine. The mesoporous silica nanochannel array film (SNF), decorated on a cost-effective ITO electrode, features ultrasmall (2∼3 nm) nanochannels, enabling the confinement of in situ synthesized Ni(OH)2-CeO2 composite nanozyme via a continuous electrodeposition process. Ni(OH)2-CeO2 exhibits dual peroxidase (POD) and oxidase (OXD) enzyme-like activities, serving as an efficient oxygen reduction reaction (ORR) catalyst to produce reactive oxygen species (ROS) and catalyze luminol oxidation. Compared to nanozymes synthesized on flat electrodes, nanochannel-confined nanozyme demonstrates superior ECL enhancement. The combination of Ni(OH)2 and CeO2 exhibits strong synergistic catalytic performance, boosting ECL of luminol-O2 under neutral conditions by 33.7 orders compared to electrode without confined nanozyme. Using tumor necrosis factor-alpha (TNF-α) as a proof-of-concept demonstration, immunosensor is fabricated by immobilization recognition antibodies on the SNF outer surface. TNF-α binding induces immunocomplex formation, reducing ECL signal by increasing interfacial resistance and hindering luminol diffuse. This enables sensitive TNF-α detection over a wide linear range (10 fg/mL to 10 ng/mL) with an ultralow detection limit of 8 fg/mL. The immunosensor demonstrates good selectivity, stability, and reproducibility.

Keywords: Composite nanozyme; Cytokine detection; Electrochemiluminescence immunosensor; Luminol-dissolved oxygen; Nanochannel confinement.

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Conflict of interest statement

Declaration of competing interest The authors declare that they have no known competing financial interests or personal relationships that could have appeared to influence the work reported in this paper.

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