4.7 Article

Photoelectrochemical immunoassay of lipoprotein-associated phospholipase A(2) via plasmon-enhanced energy transfer between gold nanoparticles and CdS QDs/g-C3N4

Journal

ANALYTICAL AND BIOANALYTICAL CHEMISTRY
Volume 410, Issue 29, Pages 7645-7653

Publisher

SPRINGER HEIDELBERG
DOI: 10.1007/s00216-018-1375-1

Keywords

Photoelectrochemical immunosensor; Lipoprotein-associated phospholipase A(2); Gold nanoparticles; Exciton-plasmon interaction; CdS quantum dots; g-C3N4

Funding

  1. National Natural Science Foundation of China [81100149, 81470300, 81301518]

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A facile and feasible photoelectrochemical (PEC) immunoassay based on plasmon-enhanced energy transfer between gold nanoparticles (AuNPs) and CdS quantum dots (QDs)/g-C3N4 nanosheets was developed for the ultrasensitive detection of lipoprotein-associated phospholipase A(2) (Lp-PLA(2)). To construct such a sensing platform, the immunosensor was prepared by immobilizing Lp-PLA(2) on a CdS QDs/g-C3N4-modified electrode. A competitive-type immunoreaction was utilized for Lp-PLA(2) detection, with AuNP-labeled anti-Lp-PLA(2) antibody used as the competitor. Introducing AuNPs with the specific antibody for the antigen target Lp-PLA(2) led to heavy quenching of the photocurrent of CdS QDs/g-C3N4 due to the plasmon-enhanced energy transfer between AuNPs and CdS QDs. The quenching efficiency decreased with increasing target Lp-PLA(2) concentration. Under optimal conditions, the PEC immunosensor presented a good photocurrent response to the target Lp-PLA(2) in the dynamic linear range of 0.01-300ngmL(-1), with a low detection limit of 5.3pgmL(-1). Other biomarkers and natural enzymes did not interfere with response of this system. The reproducibility and accuracy of this method for the analysis of human serum specimens were evaluated, and the results given by the method developed here were found to closely correspond to the results obtained with commercial Lp-PLA(2) ELISA kits. Importantly, this protocol offers promise for the development of exciton-plasmon interaction-based PEC detection systems.

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