Electroanalytical dsDNA and curcumin vs copper

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Electroanalytical dsDNA and curcumin vs copper ( electroanalytical-dsdna-and-curcumin-vs-copper )

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[28] J. Limson, T. Nyokong, S. Daya, The interaction of melatonin and its precursors with aluminium, cadmium, copper, iron, lead, and zinc: An adsorptive voltammetric study, J. Pineal Res. 24 (1998) 15–21. [29] J. Limson, T. Nyokong, Substituted catechols as complexing agents for the determination of bismuth, lead, copper and cadmium by adsorptive stripping voltammetry, Anal. Chim. Acta 344 (1997) 87–95. [30] B. Lack, S. Daya, T. Nyokong, Interaction of serotonin and melatonin with sodium, potassium, calcium, lithium and aluminium, J. Pineal Res. 31 (2001) 102–108. [31] Z. Stanić, A. Voulgaropoulos, and S. Girousi, Electroanalytical Study of the Antioxidant and Antitumor Agent Curcumin, Electroanalysis 20 (2008) 263-1266. [32] P. Palaska, E. Aritzoglou, S. Girousi, Sensitive detection of cyclophosphamide using DNA-modified carbon paste, pencil graphite and hanging mercury drop electrodes, Talanta 72 (2007) 1199-1206. [33] M.E. Rice, Z. Galus, R. N. Adams, Graphite paste electrodes. Effects of paste composition and surface states on electron-transfer rates, J. Electroanal. Chem. 143 (1983) 89 -102. [34] H. Ahsan, S.M. Hadi, Strand scission in DNA induced by curcumin in the presence of Cu(II), Cancer Letters 124 (1998) 23–30. [35] H. Karadeniz, B. Gulmez, F. Sahinci, A. Erdem, G. I. Kaya, N. Unver, B. Kivcak, M. Ozsoz, Disposable electrochemical biosensor for the detection of the interaction between DNA and lycorine based on guanine and adenine signals, J. Pharm. Biomed. Anal. 33 (2003) 295-302. [36] Z. Stanic, S. Girousi, Electrochemical study of the interaction between dsDNA and copper(II) using carbon paste and hanging mercury drop electrodes, Microchim Acta 164 (2009) 479–485. 14

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