Stable superoxide dismutase (SOD)-mimetic ternary human serum albumin-Cu(II)(3,5-diisopropylsalicylate)2/Cu(II)2(3,5-diisopropylsalicylate)4 complexes in tissue distribution of the binary complex.
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[1] I. Fridovich,et al. Desferal-Mn(III) in the therapy of diquat-induced cataract in rabbit. , 1991, Archives of biochemistry and biophysics.
[2] S. Hahn,et al. Mn(III)-desferrioxamine superoxide dismutase-mimic: alternative modes of action. , 1991, Archives of biochemistry and biophysics.
[3] B. Ortel,et al. Investigations of a manganese-containing mimic of superoxide dismutase in riboflavin phototoxicity in human cells in vitro. , 1990, Journal of photochemistry and photobiology. B, Biology.
[4] G. Waldrop,et al. Effect of albumin on net copper accumulation by fibroblasts and hepatocytes. , 1990, The American journal of physiology.
[5] G. Waldrop,et al. Effects of albumin and histidine on kinetics of copper transport by fibroblasts. , 1990, The American journal of physiology.
[6] K. Bethin,et al. Cytosolic copper-binding proteins in rat and mouse hepatocytes incubated continuously with Cu(II). , 1990, The Biochemical journal.
[7] I. Mavelli,et al. Cytotoxicity of a low molecular weight Cu2Zn2 superoxide dismutase active center analog in human erythroleukemia cells. , 1990, Biochemical pharmacology.
[8] K. Suzuki,et al. Binding of copper to albumin and participation of cysteine in vivo and in vitro. , 1989, Archives of biochemistry and biophysics.
[9] M. Hirobe,et al. Superoxide dismutase mimics based on iron in vivo. , 1989, The Journal of biological chemistry.
[10] L. Gao,et al. Kinetic studies of mobilization of copper(II) from human serum albumin with chelating agents. , 1989, Journal of inorganic biochemistry.
[11] J. Sorenson,et al. Copper complexes offer a physiological approach to treatment of chronic diseases. , 1989, Progress in medicinal chemistry.
[12] F. Greenaway,et al. Mononuclear and binuclear copper(II) complexes of 3,5-diisopropylsalicylic acid , 1988 .
[13] B. Halliwell,et al. Albumin--an important extracellular antioxidant? , 1988, Biochemical pharmacology.
[14] A. Barnea,et al. Brain tissue accumulates 67copper by two ligand-dependent saturable processes. A high affinity, low capacity and a low affinity, high capacity process. , 1988, The Journal of biological chemistry.
[15] D. Darr,et al. Protection of Chinese hamster ovary cells from paraquat-mediated cytotoxicity by a low molecular weight mimic of superoxide dismutase (DF-Mn). , 1988, Free radical biology & medicine.
[16] I. Fridovich,et al. A mimic of superoxide dismutase activity based upon desferrioxamine B and manganese(IV). , 1987, Archives of biochemistry and biophysics.
[17] D. Danks,et al. Albumin has no role in the uptake of copper by human fibroblasts. , 1987, Journal of inorganic biochemistry.
[18] E. L. Amma,et al. Superoxide dismutase-like activities of copper(II) complexes tested in serum. , 1987, Biochimica et biophysica acta.
[19] Russanov Em,et al. A study on the ability of copper complexes to act as active oxygen species scavengers. , 1987 .
[20] M. Grisham,et al. Effects of Cu-Dips on Ischemia-Reperfusion Injury , 1987 .
[21] G. Reed,et al. PEROXIDE SCAVENGING BY Cu(II) SULFATE AND Cu (II) (3 ,5-DIISOPROPYLSALICYLATE)2 , 1987 .
[22] A. Pezeshk,et al. Superoxide dismutase-mimetic activity of antiepileptic drug copper complexes , 1987 .
[23] S. H. Laurie,et al. Copper-albumin: what is its functional role? , 1986, Biochemical and biophysical research communications.
[24] J. Sorenson. Bis(3,5-diisopropylsalicylato)copper(II), a potent radioprotectant with superoxide dismutase mimetic activity. , 1984, Journal of medicinal chemistry.
[25] C. Hamer,et al. Trace metal uptake in liver cells. 1. Influence of albumin in the medium on the uptake of copper by hepatoma cells. , 1984 .
[26] T. Tomasi,et al. Suppression of lymphocyte proliferation by copper-albumin chelates. , 1984, The Journal of biological chemistry.
[27] U. Deuschle,et al. Reactivity of Cu2(lonazolac)4, a lipophilic copper acetate derivative , 1984 .
[28] T. Slaga,et al. The reduction of tumor initiating activity and cell mediated mutagenicity of dimethylbenz[a]anthracene by a copper coordination compound. , 1984, Carcinogenesis.
[29] T. Kensler,et al. Inhibition of tumor promotion by a biomimetic superoxide dismutase. , 1983, Science.
[30] W. H. Betts,et al. In Vitro Studies of Anti-Inflammatory Copper Complexes: Some Difficulties in their Chemical Interpretation , 1982 .
[31] L. Oberley,et al. Antitumor effect of a copper coordination compound with superoxide dismutase-like activity. , 1981, Journal of the National Cancer Institute.
[32] U. Weser,et al. Structure of Cu2(indomethacin)4 and the reaction with superoxide in aprotic systems. , 1980, Biochimica et biophysica acta.
[33] S. Melethil,et al. Binding of gold to bovine serum albumin using flameless atomic absorption. , 1980, Journal of pharmaceutical sciences.
[34] S. Husted,et al. The binding of phenprocoumon to human plasma proteins. , 2009, Acta pharmacologica et toxicologica.
[35] E. Sellers,et al. CLINICAL IMPLICATIONS OF DRUG—ALBUMIN INTERACTION , 1977 .
[36] R. McMenamy. ALBUMIN BINDING SITES , 1977 .
[37] Farhataziz,et al. Selected specific rates of reactions of transients from water in aqueous solution. III. Hydroxyl radical and perhydroxyl radical and their radical ions , 1977 .
[38] J. Sorenson. Copper chelates as possible active forms of the antiarthritic agents. , 1976, Journal of medicinal chemistry.
[39] A. Glassman,et al. Plasma binding of imipramine and clinical outcome. , 1973, The American journal of psychiatry.
[40] P. Jocelyn. Biochemistry of the SH group , 1972 .
[41] B. Sarkar,et al. Ternary coordination complex between human serum albumin, copper (II), and L-histidine. , 1971, The Journal of biological chemistry.
[42] H. Sigel. Catalase and Peroxidase Activity of Cu2+ Complexes , 1969 .
[43] B. Sarkar,et al. Evidence for albumin--cu(II)--amino acid ternary complex. , 1968, Canadian journal of biochemistry.
[44] A. Sass-kortsak,et al. The state of copper in human serum: evidence for an amino acid-bound fraction. , 1967, The Journal of clinical investigation.
[45] A. Albert. Design of chelating agents for selected biological activity. , 1961, Federation proceedings.
[46] B. Malmström. The mediating action of metal ions in the binding of phosphoglyceric acid to enolase and bovine serum albumin. , 1955 .
[47] I. M. Klotz,et al. Mediation by Metals of the Binding of Small Molecules by Proteins1 , 1954 .
[48] H. Kunkel,et al. Localization of Cu64 in Serum Fractions Following Oral Administration , 1954, Proceedings of the Society for Experimental Biology and Medicine. Society for Experimental Biology and Medicine.
[49] E. Smith. The specificity of certain peptidases. , 1951, Advances in enzymology and related subjects of biochemistry.