4.6 Article

Genosensing Applications of Glassy Carbon Electrodes Modified with Multi-Walled Carbon Nanotubes Non-Covalently Functionalized with Polyarginine

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MICROMACHINES
卷 13, 期 11, 页码 -

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MDPI
DOI: 10.3390/mi13111978

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carbon nanotubes; impedimetric biosensor; DNA adsorption; polyarginine; nanotechnology; microRNA-21

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This study demonstrates the advantages of GCE modified with PolyArg-functionalized MWCNTs for DNA adsorption and electrooxidation, as well as its potential in biosensing applications. The platform significantly affects the adsorption of DNA and specific residues, overvoltages for oxidation, and associated currents.
We report the advantages of glassy carbon electrodes (GCE) modified with multi-walled carbon nanotubes (MWCNTs) non-covalently functionalized with polyarginine (PolyArg) for the adsorption and electrooxidation of different DNAs and the analytical applications of the resulting platform. The presence of the carbon nanostructures, and mainly the charge of the PolyArg that supports them, facilitates the adsorption of calf-thymus and salmon sperm double-stranded DNAs and produces an important decrease in the overvoltages for the oxidation of guanine and adenine residues and a significant enhancement in the associated currents. As a proof-of-concept of possible GCE/MWCNTs-PolyArg biosensing applications, we develop an impedimetric genosensor for the quantification of microRNA-21 at femtomolar levels, using GCE/MWCNTs-PolyArg as a platform for immobilizing the DNA probe, with a detection limit of 3fM, a sensitivity of 1.544 x 10(3) omega M-1, and a successful application in enriched biological fluids.

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