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Portugaliae Electrochimica Acta
versão impressa ISSN 0872-1904
Port. Electrochim. Acta v.25 n.1 Coimbra 2007
Cathodic Behaviour of Cysteine at a Platinum Electrode
M. Fátima Barroso, Teresa Santos, M. Goreti F. Sales, Cristina Delerue-Matos and M. Carmo V. F. Vaz *
Requimte/Instituto Superior de Engenharia do Porto, Rua Dr. António Bernardino de Almeida nº 431, 4200-072 Porto, Portugal
Abstract
The electroreduction behaviour of cysteine was investigated using cyclic, square wave and differencial pulse voltammetric techniques at a platinum working electrode.
The reduction of cysteine occurs at a potential of -0.36 V independent of pH. It is a reversible process, controlled mainly by diffusion and in the mechanism of reduction 1 electron per molecule is involved. Using the voltammetric techniques: Cyclic Voltammetry, Square Wave Voltammetry and Differencial Pulse Voltammetry, different parameters (pH, frequency, step potential, pulse amplitude, scan rate) were optimized in order to develop an electrochemical procedure for determination of cysteine in pharmaceutical products. The repeatability, reproducibility, precision and accuracy of the methods were studied. No electroactive interferences from the excipient were found in the pharmaceutical compounds.
Keywords: cysteine, voltammetry, platinum electrode, pharmaceuticals, reduction
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References
1. M.F.S. Teixeira, E.R. Dockal, E.T.G. Cavalheiro, Sensors and Actuators B 106 (2005) 619. [ Links ]
2. M.K. Amini, J.H. Khorasani, S.S. Khaloo, S. Tangestaninnejad, Anal. Biochem. 320 (2003) 32.
3. C. Lau, X. Qin, J. Liang, J. Lu, Anal. Chim. Acta 514 (2004) 45.
4. J.J.J. Ruiz-Díaz, A.A.J. Torriero, E. Salinas, E.J. Marchevsky, M.I. Sanz, J. Raba, Talanta 68 (2006) 1343.
5. P.M. Ueland, H. Refsum, L. Brattstrom, in: R.B. Francis Jr. (Ed.) Atherosclerotic Cardiovascular Disease, Hemostasis, and Endothelial Function, Marcel Dekker, New York, 1992, pp. 183.
6. S.A. Wring, J.P. Hart, B.J. Birch, Analyst 117 (1989) 1563.
7. J. Kulys, A. Drungiliene, Anal. Chim. Acta 243 (1991) 287.
8. T.R. Ralph, M.L. Hitchman, J.P. Millington, F.C. Walsh, J. Electroanal. Chem. 375 (1994) 17.
9. T. Bjellaas, K. Janak, E. Lundanes, L. Kronberg, Xenobiotica 35 (2005) 1003.
10. K.M. Karlsson, L.E.M. Spoof, J.A.O. Meriluolo, Environ. Toxicol. 20 (2005) 381.
11. R. Glowacki, D. Gryglik, K. Kusmierek, E. Bold, Talanta 66 (2005) 534.
12. L. Sunlonsuk, J. Pharm. Biomed. Anal. 25 (2001) 165.
13. M. Castagnola, D. Congiu, G. Denolli, A. Di Núncio, M.B. Fadda, S. Melis, L. Messana, F. Misiti, R. Murlas, A. Olianas, V. Piras, A. Pittau, G. Puddu, J. Chromatogr. B 751 (2001) 153.
14. E. Bramanli, C. Vecoli, D. Neglia, M.P. Pellegrini, G. Raspi, B. Barsacchi, Clin. Chem. 51 (2005) 1007.
15. L. Bosch, A. Alegria, R. Furre, J. Chromatogr. B 831 (2006) 176.
16. H. Orhan, J.N.M. Commandeur, G. Sahir, U. Aypar, A. Gahin, N.P.E. Vermeulen, Xenobiotica 34 (2001) 301.
17. I.M. Kolthoff, C. Barnum, J. Am. Chem. Soc. 62 (1940) 3061.
18. D. Davis, E. Banco, J. Electroanal. Chem. 12 (1966) 254.
19. J.A. Reynaud, B. Malfoy, P. Canesson, J. Electroanal. Chem. 114 (1980) 195.
20. B. Monterroso-Marco, B. López-Ruiz, Talanta 61 (2003) 733.
21. A.M.O. Brett, C.M.A. Brett, “Electroquímica, princípios, métodos, e aplicações” Edições Almedina, Portugal, (1996), pp. 193-204.
22. J. Mocak, A.M. Bond, S. Mitchell, G. Scollary, Pure. Appl. Chem. 69 (1997) 297.
*Corresponding author. E-mail address: mcv@isep.ipp.pt