References
- J. Gerontol v.11 Aging. A theory based on free radical and radiation chemistry. Harman, D.
- Arch. Biochem. Biophys. v.196 Intracellular production of superoxide radical and of hydrogen peroxide by redox active compounds Hassan, H.M.;I. Fridovich
- Arch. Biochem v.206 DNA strand scission by enzymically generated oxygen radicals. Brawn, K.;I. Fridovich
- Cancer Res. v.47 Hydroxyl radical production and human DNA damage induced by ferric nitrilotriacetate and hydrogen peroxide Inoue, S.;S. Kawanishi
- J. Gerontol v.31 Superoxide dismutase in the rat and mouse as a function of age and longevity Kellogg, E.W.;I. Fridovich
- Biochem v.19 Role of superoxide in deoxyribonucleic acid stand scission Lesko, S.A.;R.J. Lorentzen;P.P. Tso.
- J. Biol. Chem. v.249 Generation of superoxide free radical during the autoxidation of thiols Misra, H.P.
- Biochem. v.35 Overview of enzyme systems involved in bioreduction of drugs and in redox cycling Kappus, H.
- Biochem. v.24 Formation of an 8-hydroxyguanine moiety in deoxyribonucleic acid on γ-irradiation in aqueous solution Dizdaroglu, M.
- J. Bacteriol v.155 Cloning and mapping of the manganese superoxide dismutase gene(sodA) of Escherichia coli K12 Touati, D.
- J. Bacteriol v.115 Superoxide dismutases and oxygen toxicity of Escherichia coli : Intracellular localization and functions Gregory, E.M.;F.J. Yost;I. Fridovich
- FEBS Lett. v.25 Induction of the manganese-containing superoxide dismutase in Escherichia coli by nalidixic acid and iron chelators Hassan, H.M.;C.S. Moody
- Proc. Natl. Acad. Sci. USA 79 Mutagenicity of oxygen free radicals Moody, C.S.;H.M. Hassan
- J. Bacteriol v.162 Induction of superoxide dismutases in Escherichia coli B by metal chelators Pugh, S.Y.R.;I. Fridovich
- Mol. Microbiol v.3 Role of cysteine residues and of metal ions in the regulatory functioning of Fnr, the transcriptional regulator of anaerobic respiration in Escherichia coli. Tragester, M.;G. Unden
- J. Bacteriol v.172 Requirement for terminal cytochromes in generation of the aerobic signal for the arc regulatory system in Escherichia coli : study utilizing deletions and lac fusions of cyo and cyd. Inchi, S.V.;V. Chepuri;H.A. Fu;R.B. Gennis;E.C.C. Lin
- Oxy-radicals in molecular biology and pathology Superoxide-mediated oxidation of low density lipoprotein by thiols Heinecke, J.W.;Cerutti, P.A.(ed.);I. Fridovich(ed.);J.M. McCord(ed.)
- Free radicals in biology v.1 Free radical mechanism of lipid damage and consequence for cellular membranes Mead. J.;Pryor, W.A(ed.)
- Free radicals in biology and medicine Halliwell, B.;J.M.C. Gutteridge
- Proc. Natl. Acad. Sci. USA 85, 27906-2708 Oxidative damage to DNA : Relation to species metabolic rate and life span. Adelman, R.;R.L. Saul;B.N. Ames
- Biochem v.1 Superoxide and superoxide dismutases. Adv. Inorg Fridovich, I.
- Oxygen free radicals and tissue damage. ed. Ciba Foundation Fridovich, I.
- Enzymol v.58 Superoxde dismutases. Adv. Fridoch, I.
- FEBS Lett. v.50 Superoxide dismutase in some obligately anaerobic bacteria Hewitt, J.;Morris
- Mech. Ageing Dev. v.17 A new murine model of accelerated senescence. Takeda, T.;M. Hosokawa;S. Takeshita;M. Irino;K. Higuchi;T. Matsushita;Y. Tomita;K. Yasuhira;H. Hamamoto;K. Shimizu;M. Ishii;T. Yamamuro
- Mech. Ageing Dev. v.26 Grading score system : a method for evaluation of the degree of senescence in senescence accelerated mouse(SAM) Hosokawa, H.;R. Kasai;K. Higuchi;S. Takeshita;K. Shimizu;H. Hamamoto;A. Honma;M. Irino;K. Toda;A. Matsumura;M. Matsushita
- Am. J. Pathol. v.125 Age-related changes in bone mass in the senescence-accelerated mouse(SAM) SAM-R/3 and SAM-P/6 as new model for senile osteoporosis Matsushita, M.;T. Tsuboyama;R. Kasai;H. Okumura;T. Yamamuro;K. Higuchi;A. Kohno;T. Yonezu;A. Utani;M. Umezawa;T. Takeda
- Physiol. Behav. v.38 Age-related changes in learning and memory in the senescence-acclerated mouse(SAM). Miyamoto, M.;Y. Kiyota;N. yamazaki;A. Nagaoka;T. Matsuo;Y. Nagawa;T. Takeda
- Biofactors v.10 Manganese defficiency and toxicity : are high or low dietary amounts of manganese cause for concern? Finley, J.W.;C.D. Davis
- Lipids v.16 Nielsen, H.
- Anal. Biochem v.44 Superoxide dismutase : Improved assays and applicable to acrylamide gels. Beauchamp, C.;I. Fridovich
- Ph. D. dissertation Superoxide dismutase : Gene replacement studies Kim, Y.G.
- Proc. R. Soc. London. Ser. v.128 Haemocuprein and heterocuprei, copper-protein compounds of blood and liver in mammals Mann, T.;D. Keilin
- J. Biol. Chem. v.244 Superoxide dismutase - an enzymatic function for erythrocuprein(hemocuprein) McCord, J.M.;I. Fridovich
- J. Biol. Chem. v.264 Superoxide dismutases Fridovich, I.
- Advances in enzymology v.41 Superoxide dismutases. Fridovich, I.
- J. Biol. Chem. v.262 Bacteriocuprein superoxide dismutase of Photobacterium leiognathi Steinman, H.M.
- Nutrition v.11 Effects of copper defficiency and Cu Complexes on superoxide dismutase in rats Saud, I.;Dashti, T.;Martha, S.;Mustafa, Mameesh
- Toxicol. Lett v.104 Iron increases manganese superoxide dismutase activity in intestinal epithelial cells Kuratko, C.N.
- J. Food. Prot. v.62 Effects of iron and selenium on the production of catalase, superoxide dismutase, and listeriolysin O in Listeria monocytogenes Fisher, C.W.;S.E. Martin
- Neurosci. Lett. v.261 Manganese scavenges superoxide and hydroxyl radicals : an in vitro study in rats Hussanin, S.;S.F. Ali
- WMJ v.70 Antioxidant status in manganese poisoning Tsebrzhinskii, O.I.