Article ID Journal Published Year Pages File Type
1241759 Talanta 2016 7 Pages PDF
Abstract

•Electroanalytical sensing platform for the determination of oleuropein.•The oleuropein is accumulated on the MWCNT via the adsorption process.•The proposed electrode is found to be 340 times more sensitive than the GCE.•LOD and LOQ of the method were obtained as 2.73 and 9.09 nM, respectively.•Square wave voltammetry results were compared to LC-MS/MS.

A multi-walled carbon nanotube modified glassy carbon electrode was used to prepare an electrochemical sensing platform for the determination of oleuropein. Results showed that, the accumulation of oleuropein on the prepared electrode takes place with the adsorption process. Electrochemical behavior of oleuropein was studied by using cyclic voltammetry. Compared to the bare GCE, the oxidation peak current of oleuropein increased about 340 times at MWCNT/GCE. Voltammetric determination of oleuropein on the surface of prepared electrode was studied using square wave voltammetry where the oxidation peak current of oleuropein was measured as an analytical signal. A calibration curve of oleuropein was performed between 0.01 and 0.70 µM and a good linearity was obtained with a correlation coefficient of 0.9984. Detection and quantification limits of the method were obtained as 2.73 and 9.09 nM, respectively. In addition, intra-day and inter-day precision studies indicated that the voltammetric method was sufficiently repeatable. Finally, the proposed electrochemical sensor was successfully applied to the determination of oleuropein in an olive leaf extract. Microwave-assisted extraction of oleuropein had good recovery values between 92% and 98%. The results obtained with the proposed electrochemical sensor were compared with liquid chromatography-tandem mass spectrometry (LC-MS/MS) analysis.

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Related Topics
Physical Sciences and Engineering Chemistry Analytical Chemistry
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