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https://doi.org/https://doi.org/10.5599/jese.3422

Modified carbon paste electrode as a sensitive electrochemical sensor for quantification of chemotherapy drug imatinib

Dhay S. Naji ; Department of Chemical Engineering Collage of Engineering . University of Babylon, Iraq
Ahmed Hameed AlSaeedi orcid id orcid.org/0009-0001-9539-393X ; University of Hilla, faculty of Pharmacy , Department of Pharmaceutics, Iraq *
Emad Salaam Abood ; Medical Physics Department, College of Science, University of Hilla, Babylon, Iraq
Karrar M. Obaid ; BioChemistry Department, College of Science, Al-Mustaqbal University, Hilla, Iraq

* Dopisni autor.


Puni tekst: engleski pdf 598 Kb

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Sažetak

The preferred tyrosine kinase inhibitor for treating gastrointestinal stromal tumours and chronic myeloid leukaemia is imatinib (IMT). Nevertheless, IMT has disadvantages, including resistance to the medication and notable variations in pharmacokinetics among patients. To address this problem, an analytical procedure for IMT determination was developed that incorporated MnMoO4@multi-walled carbon nanotubes (MWCNTs) into a carbon paste electrode (CPE) matrix to create an electrochemical sensing platform, MnMoO4@MWCNT/CPE. A hydrothermal technique was used to synthesize MnMoO4@MWCNT. Under carefully adjusted conditions, electrochemical characterization using differential pulse voltammetry showed a concentration interval with a linear response for IMT between 0.01 and 120.0 µM. In addition to a significant sensitivity of 0.3508 μA μM-1, quantitative analysis yielded detection ad quantification limits of 3 and 7 nM. The developed electrochemical probe demonstrated outstanding analytical performance, high stability, and repeatability when used to quantify IMT in pharmaceutical product samples.

Ključne riječi

Cancer treatment; 2-phenylaminopyrimidine derivative; electrochemical monitoring; bimetallic oxide; carbon nanostructure; pharmaceutical tablets

Hrčak ID:

351291

URI

https://hrcak.srce.hr/351291

Datum izdavanja:

10.6.2026.

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