Synthesis of water-dispersed ferrecene/phenylboronic acid-modified bifunctional gold nanoparticles and the application in biosensing

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Abstract

Phenylboronic acids can form tight covalent bonds with diol-containing biomolecules. In this work, water-dispersed bifunctional gold nanoparticles (AuNPs) modified with ferrecene (Fc)-derivatized peptides and 4-mercaptophenylboronic acids (MBA) (denoted as Fc-MBA-AuNPs) were synthesized and characterized by UV/vis spectrometry and transmission electron microscopy. To demonstrate the application and the analytical merits of the nanoparticles in biosensing, glycoprotein avidin was tested as a model analyte. Specifically, avidin was captured by the biotin-covered gold electrode via the strong biotin-avidin interaction. Then, Fc-MBA-AuNPs were attached by the captured avidin through the formation of tight covalent bonds between the boronic acid moieties of Fc-MBA-AuNPs and the oligosaccharides of avidin. As a result, a detection limit of 0.2 pM was achieved. We believe that the bifunctional nanoparticles would found many applications in amplified detection of diol-containing species by rational design of the surface chemistry of electrode.© 2014 by the authors; licensee MDPI, Basel, Switzerland.

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Xing, Y., Liu, L., Zhao, D., Yang, Y., & Chu, X. (2014). Synthesis of water-dispersed ferrecene/phenylboronic acid-modified bifunctional gold nanoparticles and the application in biosensing. Materials, 7(8), 5554–5564. https://doi.org/10.3390/ma7085554

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