TY - JOUR
T1 - Dual activity of nitroxides as pro- and antioxidants
T2 - Catalysis of copper-mediated DNA breakage and H2O2 dismutation
AU - Aronovitch, Yaacov
AU - Godinger, Dina
AU - Israeli, Avner
AU - Krishna, Murali C.
AU - Samuni, Amram
AU - Goldstein, Sara
PY - 2007/5/1
Y1 - 2007/5/1
N2 - Nitroxide antioxidants can be reduced to hydroxylamines or oxidized to oxoammonium cations. Consequently, nitroxides can modify oxidative damage acting as reducing and/or as oxidizing agents, and in many cases the nitroxides are continuously recycled. They provide protection against oxidative stress via various mechanisms including SOD-mimic activity and detoxification of carbon-, oxygen-, and nitrogen-centered radicals, as well as oxidation of reduced transition metals. In contrast to the common concept, according to which the nitroxides' protective effect takes place via inhibition of the Fenton reaction, there are observations suggesting the opposite. In the present investigation, DNA breakage catalyzed by copper served as an experimental model for studying the anti- and pro-oxidative activity of nitroxides. Nitroxides provided protection in the presence of GSH, which is known to facilitate metal-catalyzed DNA damage. In the absence of a reductant, nitroxides enhanced DNA breakage under aerobic conditions with or without added H2O2 and facilitated H2O2 depletion. The rates of nitroxide-catalyzed DNA breakage and H2O2 depletion increased as the concentrations of copper, H2O2, and nitroxide increased. Although the catalytic activity of nitroxides is low, it is sufficient to induce DNA breakage. The efficacy of DNA breakage by the tested piperidine nitroxides correlated with the nitroxide-induced depletion of H2O2 with the exception of the pyrrolidine nitroxide 3-carbamoylproxyl. The results suggest that the nitroxide and the copper are continuously recycled while catalyzing DNA breakage and depletion of H2O2, which serves both as a source of reducing equivalents and as the electron sink.
AB - Nitroxide antioxidants can be reduced to hydroxylamines or oxidized to oxoammonium cations. Consequently, nitroxides can modify oxidative damage acting as reducing and/or as oxidizing agents, and in many cases the nitroxides are continuously recycled. They provide protection against oxidative stress via various mechanisms including SOD-mimic activity and detoxification of carbon-, oxygen-, and nitrogen-centered radicals, as well as oxidation of reduced transition metals. In contrast to the common concept, according to which the nitroxides' protective effect takes place via inhibition of the Fenton reaction, there are observations suggesting the opposite. In the present investigation, DNA breakage catalyzed by copper served as an experimental model for studying the anti- and pro-oxidative activity of nitroxides. Nitroxides provided protection in the presence of GSH, which is known to facilitate metal-catalyzed DNA damage. In the absence of a reductant, nitroxides enhanced DNA breakage under aerobic conditions with or without added H2O2 and facilitated H2O2 depletion. The rates of nitroxide-catalyzed DNA breakage and H2O2 depletion increased as the concentrations of copper, H2O2, and nitroxide increased. Although the catalytic activity of nitroxides is low, it is sufficient to induce DNA breakage. The efficacy of DNA breakage by the tested piperidine nitroxides correlated with the nitroxide-induced depletion of H2O2 with the exception of the pyrrolidine nitroxide 3-carbamoylproxyl. The results suggest that the nitroxide and the copper are continuously recycled while catalyzing DNA breakage and depletion of H2O2, which serves both as a source of reducing equivalents and as the electron sink.
KW - Antioxidant
KW - Catalase-mimic activity
KW - Copper
KW - DNA breakage
KW - Free radicals
KW - Hydrogen peroxide
KW - Nitroxide
KW - Pro-oxidant
KW - o-Phenanthroline
UR - http://www.scopus.com/inward/record.url?scp=33947517052&partnerID=8YFLogxK
U2 - 10.1016/j.freeradbiomed.2007.01.017
DO - 10.1016/j.freeradbiomed.2007.01.017
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C2 - 17395005
AN - SCOPUS:33947517052
SN - 0891-5849
VL - 42
SP - 1317
EP - 1325
JO - Free Radical Biology and Medicine
JF - Free Radical Biology and Medicine
IS - 9
ER -