Abstract
Fludarabine, 9- β -D-arabinosyl-2-fluoroadenine, the nucleoside analog, represents a highly effective treatment for hairy cell leukemia. The electrochemical behaviour of fludarabine is an irreversible diffusion controlled oxidation mechanism and was investigated at a glassy carbon electrode in different supporting electrolytes using cyclic, differential pulse, and square wave voltammetry. The diffusion coefficient of fludarabine was calculated to be DFLU=1.71×10−6 cm 2 s -1 in pH 7.0 0.1 M phosphate buffer. The oxidation mechanism of fludarabine occurs with the transfer of one proton and one electron and the formation of a hydroxylated species. The interaction of fludarabine with DNA was investigated, by differential pulse voltammetry, in incubated solutions and using dsDNA- and polyhomonucleotides-, poly[G] and poly[A], electrochemical biosensors. The results showed that fludarabine interacts with DNA causing changes in the DNA structure.
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CITATION STYLE
Eda Satana, H., & Oliveira-Brett, A. M. (2011). In Situ Evaluation of Fludarabine-DNA Interaction Using a DNA-Electrochemical Biosensor. International Journal of Electrochemistry, 2011, 1–8. https://doi.org/10.4061/2011/340239
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