| Literature DB >> 22606015 |
Jing Zhao1, Xiaolin He1, Nana Yang2, Lizhou Sun2, Genxi Li1,3.
Abstract
In this work, we report the studies of drug metabolism by xanthine oxidase (XOD) with electrochemical techniques. Firstly, a pair of stable, well-defined and quasi-reversible oxidation/reduction peaks is obtained with the formal potential at -413.1 mV (vs. SCE) after embedding XOD in salmon sperm DNA membrane on the surface of pyrolytic graphite electrode. Then, a new steady peak can be observed at -730 mV (vs. SCE) upon the addition of 6-mercaptopurine (6-MP) to the electrochemical system, indicating the metabolism of 6-MP by XOD. Furthermore, the chronoamperometric response shows that the current of the catalytic peak located at -730 mV increases with addition of 6-MP in a concentration-dependent manner, and the increase of the chronoamperometric current can be inhibited by an XOD inhibitor, quercetin. Therefore, our results prove that XOD/DNA modified electrode can be efficiently used to study the metabolism of 6-MP, which may provide a convenient approach for in vitro studies on enzyme-catalyzed drug metabolism.Entities:
Keywords: 6-mercaptopurine; drug metabolism; electrochemistry; quercetin; xanthine oxidase
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Year: 2012 PMID: 22606015 PMCID: PMC3344251 DOI: 10.3390/ijms13044873
Source DB: PubMed Journal: Int J Mol Sci ISSN: 1422-0067 Impact factor: 6.208
Figure 1Cyclic voltammograms obtained at DNA and xanthine oxidase (XOD)/DNA modified electrode in the absence and presence of 200 μM 6-MP in 0.1 M pH 7.4 phosphate buffers. Scan rate: 100 mV/s.
Figure 2Chronoamperomograms obtained at (a) XOD/DNA and (b) DNA modified electrode in 0.1 M pH 7.4 phosphate buffers with injecting 200 μM 6-MP every 30 s. The detection potential was −730 mV.
Figure 3(a) Cyclic voltammograms obtained at XOD/DNA modified electrode for 200 μM 6-MP in the absence and presence of 200 μM quercetin, others same as in Figure 1; (b) The chronoamperometric currents obtained at the XOD/DNA modified electrode for 2 mM 6-MP in the presence of different concentrations of quercetin (0, 2, 10, 100 μM) in 0.1 M phosphate buffer (pH 7.4).