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PMID: 8352936 Published · ppublish English Journal Article

Analysis of lipid peroxidation mechanisms in human spermatozoa.

Molecular reproduction and development ·Vol. 35 ·No. 3 ·1993-07-00 ·Pages 302-15

Aitken RJ, Harkiss D, Buckingham DW

Abstract

The mechanisms by which ferrous ion promoters induce malondialdehyde generation by human spermatozoa have been investigated in order to provide a rational basis for the quantification and interpretation of lipid peroxidation assays. Incubation of human spermatozoa with a ferrous ion promoter in the presence of thiobarbituric acid (TBA) led to the generation of the bone fide malondialdehyde-TBA adduct. The importance of iron in the stimulation of lipid peroxidation was emphasized by the ability of Desferal and EDTA to suppress malondialdehyde generation. Paradoxically, when the concentration of EDTA relative to iron was equimolar or greater, the suppression of malondialdehyde formation was accompanied by the generation of hydroxyl radicals. These results suggested that the addition of promoter did not effect the first-chain initiation of lipid peroxidation but favored an alternative mechanism involving the catalytic decomposition of pre-existing lipid peroxides. This conclusion was reinforced by the inability of reagents that would limit the formation (superoxide dismutase and/or catalase) or availability (mannitol, formate) of hydroxyl radicals, to influence malondialdehyde generation. While hydroxyl radicals were not directly involved in Fe(2+)-promoted malondialdehyde generation, the existence of significant correlations between reactive oxygen species production and the outcome of the TBA assay, suggested that Fenton chemistry might be important in the initiation of peroxidative damage. It is proposed that the impeded propagation of peroxidation initiated by Fenton or Haber Weiss reactions would lead to the accumulation of lipid peroxides in the spermatozoa and it is these peroxides that are induced to decompose during the Fe(2+)-promoted TBA assay, stimulating a lipoperoxidative chain reaction and malondialdehyde formation.

MeSH Terms
Deferoxamine/pharmacology Edetic Acid/pharmacology Ferrous Compounds/pharmacology Humans In Vitro Techniques Lipid Peroxidation/drug effects,physiology Male Malondialdehyde/metabolism Reactive Oxygen Species/metabolism Spectrophotometry Spermatozoa/drug effects,metabolism Thiobarbiturates/metabolism
Chemicals
Ferrous Compounds Reactive Oxygen Species Thiobarbiturates ferrous sulfate Malondialdehyde Edetic Acid Deferoxamine thiobarbituric acid
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Aitken R J
MRC Reproductive Biology Unit, Edinburgh, Scotland.
Harkiss D
Buckingham D W
Article Info
Journal
Molecular reproduction and development
Abbr.
Mol Reprod Dev
ISSN
1040-452X
Published
1993-07-00
Pages
302-15
Language
English
Region
United States
NLM ID
8903333
Subset
IM
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