AI Article Synopsis

  • The study examines the electrochemical behavior of nandrolone using various voltammetry techniques with a fullerene-C60-modified electrode, which enhances the electrochemical response compared to a standard glassy carbon electrode.
  • The oxidation of nandrolone is shown to be irreversible and diffusion-controlled, with a linear detection range from 50 µM to 0.1 nM, a detection limit of 0.42 nM, and a sensitivity of 0.358 nA nM(-1).
  • The method was effectively applied to analyze nandrolone in human serum and urine, with results validating well against GC-MS findings, confirming its reliability and potential for practical use.

Article Abstract

The electrochemical behaviour of nandrolone is investigated by cyclic, differential pulse and square-wave voltammetry in phosphate buffer system at fullerene-C60-modified electrode. The modified electrode shows an excellent electrocatalytic activity towards the oxidation of nandrolone resulting in a marked lowering in the peak potential and considerable improvement of the peak current as compared to the electrochemical activity at the bare glassy carbon electrode. The oxidation process is shown to be irreversible and diffusion-controlled. A linear range of 50 microM to 0.1 nM is obtained along with a detection limit and sensitivity of 0.42 nM and 0.358 nA nM(-1), respectively, in square-wave voltammetric technique. A diffusion coefficient of 4.13x10(-8) cm2 s(-1) was found for nandrolone using chronoamperometry. The effect of interferents, stability and reproducibility of the proposed method were also studied. The described method was successfully employed for the determination of nandrolone in human serum and urine samples. A cross-validation of observed results by GC-MS indicates that the results are in good agreement with each other.

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http://dx.doi.org/10.1016/j.aca.2007.06.017DOI Listing

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