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Original Article

Requirements for Sod Mimics Operating In Vitro to Work Also In Vivo

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Pages 167-171 | Published online: 07 Jul 2009

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Mirela Călinescu, Mălina Fiastru, Daniela Bala, Constantin Mihailciuc, Ticuţa Negreanu-Pîrjol & Bogdan Jurcă. (2019) Synthesis, characterization, electrochemical behavior and antioxidant activity of new copper(II) coordination compounds with curcumin derivatives. Journal of Saudi Chemical Society 23:7, pages 817-827.
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Chen Li, Bing Yin, Yifan Kang, Ping Liu, Liang Chen, Yaoyu Wang & Jianli Li. (2014) Mixed Ligand Cu II N 2 O 2 Complexes: Biomimetic Synthesis, Activities in Vitro and Biological Models, Theoretical Calculations . Inorganic Chemistry 53:24, pages 13019-13030.
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N. Raman & S. Sobha. (2012) Exploring the DNA binding mode of transition metal based biologically active compounds. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 85:1, pages 223-234.
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Ahmet Colak, Ülkü Terzi, Melek Col, Şengül Alpay Karaoglu, Serdar Karaböcek, Aslıgül Küçükdumlu & Faik Ahmet Ayaz. (2010) DNA binding, antioxidant and antimicrobial activities of homo- and heteronuclear copper(II) and nickel(II) complexes with new oxime-type ligands. European Journal of Medicinal Chemistry 45:11, pages 5169-5175.
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Andrei S. Potapov, Evgenia A. Nudnova, Galina A. Domina, Liliya N. Kirpotina, Mark T. Quinn, Andrei I. Khlebnikov & Igor A. Schepetkin. (2009) Synthesis, characterization and potent superoxide dismutase-like activity of novel bis(pyrazole)–2,2′-bipyridyl mixed ligand copper(ii) complexes. Dalton Transactions:23, pages 4488.
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V. Brumas, H. Miche & M. Fiallo. (2007) Copper(II) interaction with 3,5-diisopropylsalicylic acid (Dips): New insights on its role as a potential OH inactivating ligand. Journal of Inorganic Biochemistry 101:4, pages 565-577.
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Atanu Barik, Beena Mishra, Liang Shen, Hari Mohan, R.M. Kadam, S. Dutta, Hong-Yu Zhang & K. Indira Priyadarsini. (2005) Evaluation of a new copper(II)–curcumin complex as superoxide dismutase mimic and its free radical reactions. Free Radical Biology and Medicine 39:6, pages 811-822.
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R.P. Bonomo, G. Impellizzeri, D. Mendola, G. Maccarrone, G. Pappalardo, A. Santoro, G. Tabbì, G. Vecchio & E. Rizzarelli. 2003. Metal-Ligand Interactions. Metal-Ligand Interactions 41 63 .
J. O. G. Karlsson, H. Brurok, M. Eriksen, R. Towart, K. G. Toft, O. Moen, B. Engebretsen, P. Jynge & H. Refsum. (2001) Cardioprotective effects of the MR contrast agent MnDPDP and its metabolite MnPLED upon reperfusion of the ischemic porcine myocardium. Acta Radiologica 42:6, pages 540-547.
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Stefan I. Liochev & Irwin Fridovich. (2001) The Oxidation of 3-Hydroxyanthranilic Acid by Cu,Zn Superoxide Dismutase: Mechanism and Possible Consequences. Archives of Biochemistry and Biophysics 388:2, pages 281-284.
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Branko Kaitner, Nevenka Paulić, Gordana Pavlović & Jasmina Sabolović. (1999) Bis(l-N,N-dipropylalaninato)copper(II). Polyhedron 18:17, pages 2301-2311.
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Hélène Miche, Véronique Brumas & Guy Berthon. (1997) Copper(II) interactions with nonsteroidal antiinflammatory agents. II. Anthranilic acid as a potential OH-inactivating ligand. Journal of Inorganic Biochemistry 68:1, pages 27-38.
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G. Berthon. (1993) Is copper pro- or anti-inflammatory? A reconciling view and a novel approach for the use of copper in the control of inflammation. Agents and Actions 39:3-4, pages 210-217.
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