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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[20] S.J. Stohs, D. Bagchi, Oxidative mechanisms in the toxicity of metal ions, Free Rad. Biol. Med. 18 (1995) 321–336. [21] L. Baum, A. Ng, Curcumin interaction with copper and iron suggest one possible mechanism of action in Alzheimer’s disease animals models, J. Alzh. Dis. 6 (2004) 367– 377. [22] J.P. Annaraj, K.M. Ponvel, P. Athappan, S. Srinivasan, Synthesis, spectra and redox behavior of copper (II) complexes of curcumin diketimines as models for copper protein, Transition Metal Chem. 29 (2004) 722–727. [23] O. Vajragupta, P. Boonchoong, L.J. Berliner, Manganese complexes of curcumin analogues: evaluation of hydroxyl radical scavenging ability, superoxide dismutase activity and stability towards hydrolysis. Free Radic. Res. 38 (2004) 303– 314. [24] O. Vajragupta, P. Boonchoong, H. Watanabe, M. Tohda, N. Kummasud, Y. Sumanont, Manganese complexes of curcumin and its derivatives: evaluation for the radical scavenging ability and neuroprotective activity, Free Radic. Biol. Med. 23: (2003) 838–843. [25] Y. Sumanont, Y. Murakami, M. Tohda, O. Vajragupta, K. Matsumoto, H. Watanabe, Evaluation of the nitric oxide radical scavenging activity of manganese complexes of curcumin and its derivative, Biol. Pharm. Bull. 27 (2004) 170–173. [26] S. Dutta, A. Murugkar, N. Gandhe, S. Padhye. Enhanced antioxidant activities of curcumin metal conjugates, Metal Based Drugs 8 (2001) 183– 187. [27] M. Borsari, E. Ferrari, R. Grandi, M. Saladini, Curcuminoids as potential new iron chelating agents: spectroscopic, polarographic and potentiometric study on their Fe(III) complexing ability, Inorg. Chim. Acta. 328 (2002) 61– 68. 13

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