4.7 Article

Application of a Screen-Printed Sensor Modified with Carbon Nanofibers for the Voltammetric Analysis of an Anticancer Disubstituted Fused Triazinone

期刊

出版社

MDPI
DOI: 10.3390/ijms23052429

关键词

disubstituted fused triazinone; anticancer agent candidate; square-wave adsorptive stripping voltammetry; screen-printed sensor; carbon nanofibers; flow system

资金

  1. European Union through the European Regional Development Fund under the Operational Programme Development of Eastern Poland 2007-2013 [POPW.01.03.0006-003/09-00]

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In this paper, a new analytical method using a screen-printed carbon electrode modified with carbon nanofibers was proposed for the detection and quantification of the potential anti-cancer drug candidate 4-Cl-PIMT. The method showed good linear response in two linear ranges and had low limits of detection and quantification. The sensor also exhibited high reproducibility, repeatability, and selectivity.
In this paper, we propose the first analytical procedure-using a screen-printed carbon electrode modified with carbon nanofibers (SPCE/CNFs)-for the detection and quantitative determination of an electroactive disubstituted fused triazinone, namely 4-Cl-PIMT, which is a promising anticancer drug candidate. The electrochemical performances of the sensor were investigated by cyclic voltammetry (CV), electrochemical impedance spectroscopy (EIS), and square-wave adsorptive stripping voltammetry (SWAdSV). The presence of carbon nanofibers on the sensor surface caused a decrease in charge-transfer resistance and an increase in the active surface compared to the bare SPCE. Under the optimised experimental conditions, the proposed voltammetric procedure possesses a good linear response for the determination of 4-Cl-PIMT in the two linear ranges of 0.5-10 nM and 10-100 nM. The low limits of detection and quantification were calculated at 0.099 and 0.33 nM, respectively. In addition, the sensor displays high reproducibility and repeatability, as well as good selectivity. The selectivity was improved through the use of a flow system and a short accumulation time. The SWAdSV procedure with SPCE/CNFs was applied to determine 4-Cl-PIMT in human serum samples. The SWAdSV results were compared to those obtained by the ultra-high-performance liquid chromatography coupled with electrospray ionization/single-quadrupole mass spectrometry (UHPLC-ESI-MS) method.

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