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Pro-oxidant and antioxidant potential of catecholestrogens against ferrylmyoglobin-induced oxidative stress

Authors :
Martınez, Rosa
Quintana, Kristina
Navarro, Rosaura
Martın, César
Hernández, M. Luisa
Aurrekoetxea, Igor
Ruiz-Sanz, José Ignacio
Lacort, Mercedes
Ruiz-Larrea, M. Begoña
Source :
BBA - Molecular & Cell Biology of Lipids. Jul2002, Vol. 1583 Issue 2, p167. 9p.
Publication Year :
2002

Abstract

Ferryl heme proteins may play a major role in vivo under certain pathological conditions. Catecholestrogens, the estradiol-derived metabolites, can act either as antioxidants or pro-oxidants in iron-dependent systems. The aim of the present work was (1) to determine the effects of ferrylmyoglobin on hepatocyte cytotoxicity, and (2) to assess the pro/antioxidant potential of a series of estrogens (phenolic, catecholic and stilbene-derived) against ferrylmyoglobin induced lipid peroxidation in rat hepatocytes. Cells were exposed to metmyoglobin plus hydrogen peroxide to form ferrylmyoglobin in the presence of the transition metal chelator diethylentriaminepentaacetic acid. Results showed that ferrylmyoglobin induced an initial oxidative stress, mainly reflected in an early lipid peroxidation and further decrease in GSH and ATP. However, cells gradually adapted to this situation, by recovering the endogenous ATP and GSH levels at longer incubation times. Phenolic and stilbene-derived estrogens inhibited ferrylmyoglobin-induced lipid peroxidation to different degrees: diethylstilbestrol>estradiol>resveratrol. Catecholestrogens at concentrations higher than 1 μM also inhibited lipid peroxidation with similar efficacy. The ability of estrogens to reduce ferrylmyoglobin to metmyoglobin may account for their antioxidant activity. In contrast, physiological concentrations (100 pM–100 nM) of the catecholestrogens exerted pro-oxidant activities, 4-hydroxyestradiol being more potent than 2-hydroxyestradiol. The implications of these interactions should be considered in situations where local myoglobin or hemoglobin microbleeding takes place. [Copyright &y& Elsevier]

Details

Language :
English
ISSN :
13881981
Volume :
1583
Issue :
2
Database :
Academic Search Index
Journal :
BBA - Molecular & Cell Biology of Lipids
Publication Type :
Academic Journal
Accession number :
7839838