Δημοσίευση

A streptavidin functionalized graphene oxide/Au nanoparticles composite for the construction of sensitive chemiluminescent immunosensor.

ΤίτλοςA streptavidin functionalized graphene oxide/Au nanoparticles composite for the construction of sensitive chemiluminescent immunosensor.
Publication TypeJournal Article
Year of Publication2014
AuthorsYang, Z., Luo S., Li J., Shen J., Yu S., Hu X., & Dionysiou D. D.
JournalAnal Chim Acta
Volume839
Pagination67-73
Date Published2014 Aug 11
ISSN1873-4324
Λέξεις κλειδιάBiocompatible Materials, Biosensing Techniques, Dielectric Spectroscopy, Enzyme-Linked Immunosorbent Assay, Graphite, Immunoassay, Luminescence, Microscopy, Electron, Scanning, Oxides, Streptavidin
Abstract

In this work, a novel streptavidin functionalized graphene oxide/Au nanoparticles (streptavidin/GO/AuNPs) composite is prepared and for the first time used to construct sensitive chemiluminescent immunosensor for the detection of tumor marker. The streptavidin/GO/AuNPs composite and the immunosensor are characterized using scanning electron microscopy, static water contact angle measurement and electrochemical impedance spectroscopy. The biofunctionalized composite has large reactive surface area and excellent biocompatibility, thus the capture antibody can be efficiently immobilized on its surface based on the highly selective recognition of streptavidin to biotinylated antibody. Using α-fetoprotein (AFP) as a model, the proposed chemiluminescent immunosensor shows a wide linear range from 0.001 to 0.1 ng mL(-1) with an extremely low detection limit down to 0.61 pg mL(-1). The resulting AFP immunosensor shows high detection sensitivity, fast assay speed, acceptable detection and fabrication reproducibility, good specificity and stability. The assay results of serum samples with the proposed method are in an acceptable agreement with the reference values. This work provides a promising biofunctionalized nanostructure for sensitive biosensing applications.

DOI10.1016/j.aca.2014.05.033
Alternate JournalAnal. Chim. Acta
PubMed ID25066720

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