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A novel affinity peptide–antibody sandwich electrochemical biosensor for PSA based on the signal amplification of MnO2-functionalized covalent organic framework.

Authors :
Zheng, Jing
Zhao, Hui
Ning, Guobao
Sun, Weijie
Wang, Li
Liang, Huan
Xu, Hanbin
He, Chaoyong
Li, Can-Peng
Source :
Talanta. Oct2021, Vol. 233, pN.PAG-N.PAG. 1p.
Publication Year :
2021

Abstract

This work describes a novel affinity peptide–antibody sandwich electrochemical strategy for the ultrasensitive detection of prostate-specific antigen (PSA). Herein, polydopamine-coated boron-doped carbon nitride (Au@PDA@BCN) was synthesized and used as a sensing platform to anchor gold nanoparticles and immobilize primary antibody. Meanwhile, AuPt metallic nanoparticle and manganese dioxide (MnO 2)-functionalized covalent organic frameworks (AuPt@MnO 2 @COF) was facilely synthesized to serve as a nanocatalyst and ordered nanopore for the enrichment and amplification of signal molecules (methylene blue, MB). PSA affinity peptide was bound to AuPt@MnO 2 @COF to form Pep/MB/AuPt@MnO 2 @COF nanocomposites (probe). The peptide–PSA–antibody sandwich biosensor was constructed, and the redox signal of MB was measured with the existence of PSA. The fabricated sensor exhibited a linear response (0.00005–10 ng mL−1) with a low detection limit of 16.7 fg mL−1 under the optimum condition. Additionally, the sensor showed an excellent selectivity, ideal repeatability, and good stability for PSA detection in real samples. Furthermore, the porous structure of COF can enrich more MB molecules and increase the sensitivity of the biosensor. This study provides an efficient and ultrasensitive strategy for PSA detection and broadens the use of organic/inorganic porous nanocomposite in biosensing. [Display omitted] • An affinity peptide-antibody sandwich electrochemical biosensor for PSA was developed. • The biosensor was based on AuPt/covalent organic frameworks nanocomposite. • The detection limit of the biosensor was 16.7 fg mL−1. • The biosensor was successfully adopted to PSA determination in real sample. • The biosensor showed high sensitivity, excellent stability, and ideal reproducibility. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00399140
Volume :
233
Database :
Academic Search Index
Journal :
Talanta
Publication Type :
Academic Journal
Accession number :
151125498
Full Text :
https://doi.org/10.1016/j.talanta.2021.122520