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Ultrasensitive ECL immunoassay for CA15-3 via self-enhanced L012-loaded ZnNi-MOF as an emitter and CeO-Pt as a co-reaction accelerator. | LitMetric

Ultrasensitive ECL immunoassay for CA15-3 via self-enhanced L012-loaded ZnNi-MOF as an emitter and CeO-Pt as a co-reaction accelerator.

Talanta

State Key Laboratory of Analytical Chemistry for Life and School of Chemistry and Chemical Engineering, Nanjing University, Nanjing, 210023, China.

Published: February 2025

AI Article Synopsis

  • The study focuses on enhancing ECL biosensors' sensitivity and accuracy through a novel ZnNi-MOF/PEI nanosphere-based immunosensor for detecting the CA15-3 cancer biomarker.
  • PEI not only helps link the luminophore and the detection antibody but also boosts the ECL signal by acting as a co-reactant.
  • The combined effect of a Pt nanoparticle-functionalized CeO nanorod system improves signal detection further, allowing the biosensor to effectively identify low levels of biomarkers, paving the way for better clinical breast cancer diagnosis.

Article Abstract

Improvement in the sensitivity and accuracy of ECL-based biosensors, to a great extent, depends on the fabrication of high-performance electrochemiluminescence (ECL) sensors. Herein, polyethyleneimine (PEI)-grafted bimetallic ZnNi metal-organic framework (ZnNi-MOF/PEI) nanospheres were synthesized to prepare a L012-based ECL immunosensor for detecting carbohydrate antigen 15-3 (CA15-3). The introduced PEI was utilized not only as a bridging element for L012 luminophore and detection antibody (Ab) immobilization but also as a co-reactant for generating the self-enhanced ZnNi-MOF/PEI-L012@Ab ECL signal probe. Furthermore, Pt nanoparticle-functionalized CeO nanorods (CeO-Pt) featuring high-efficiency electrocatalytic properties, as a co-reaction accelerator, could catalyze HO to generate abundant reactive oxygen species (ROS), further augmenting the ECL signal of ZnNi-MOF/PEI-L012@Ab. In the presence of CA15-3 antigen, the capture antibody (Ab)-conjugated CeO-Pt complex (CeO-Pt@Ab) and ZnNi-MOF/PEI-L012@Ab would get closer to each other, with the formation of a "signal-on" sandwich-type ECL immunosensor. The ZnNi-MOF-assisted ECL biosensor achieved a detection limit of down to 5.75✕10 U mL. This work shows distinguished potential for measuring low levels of biomarkers that may help in the clinical diagnosis of breast cancer.

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Source
http://dx.doi.org/10.1016/j.talanta.2024.127120DOI Listing

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