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PMID: 2388282 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Cellular glutathione and the response of adult rat heart myocytes to oxidant stress.

Journal of molecular and cellular cardiology ·Vol. 22 ·No. 5 ·1990-05-00 ·Pages 565-75

Timerman AP, Altschuld RA, Hohl CM, Brierley GP, Merola AJ

Abstract

Freshly isolated adult rat heart myocytes contain total glutathione and reduced glutathione (GSH) at levels quite comparable to those in intact rat heart. Total glutathione can be depleted from 11 to 1 nmol/mg protein or less by treatment with cyclohex-2-ene-1-one without effect on either cellular ATP, rod-cell morphology or the integrity of the sarcolemma. Glutathione levels and redox state are not altered significantly when the Ca-tolerant, quiescent cells are subjected to a period of anoxia followed by reoxygenation. This oxygen paradox protocol results in irreversible hypercontracture of the contractile elements into an amorphous mass in the bulk of the cells, but little loss of sarcolemmal integrity. When the myocytes are subjected to an externally applied oxidant stress by the addition of either diamide or t-butylhydroperoxide, GSH is rapidly depleted with accumulation of oxidized glutathione (GSSG. On continued aerobic incubation both of these reagents promote a slower depletion of cellular ATP and a parallel hypercontracture. Cells treated with t-butylhydroperoxide, but not those with diamide, also generate increasing amounts of thiobarbituric acid reactive species as an indication of lipid peroxidation and show a parallel loss of sarcolemmal integrity. It is concluded that respiring myocytes and those subjected to the oxygen paradox do not produce oxygen radicals in sufficient amounts to displace the GSH/GSSG redox poise and depletion of myocyte glutathione per se is not detrimental to the short term survival of the cells. In addition, aerobic myocytes subjected to external oxidant stress can be damaged irreversibly by two pathways, a hypercontracture that correlates with depletion of ATP and a loss of sarcolemmal integrity that correlates with lipid peroxidation.

MeSH Terms
Animals Coronary Disease/prevention & control Cyclohexanones/pharmacology Diamide/pharmacology Glutathione/analysis,metabolism,physiology Heart/drug effects,physiology Hypoxia/metabolism Myocardium/analysis,cytology,metabolism Oxidation-Reduction Oxygen/metabolism,physiology Peroxides/pharmacology Rats Reperfusion Injury/prevention & control tert-Butylhydroperoxide
Chemicals
Cyclohexanones Peroxides Diamide 2-cyclohexen-1-one tert-Butylhydroperoxide Glutathione Oxygen
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Timerman A P
Department of Physiological Chemistry, Ohio State University Medical Center, Columbus 43210.
Altschuld R A
Hohl C M
Brierley G P
Merola A J
Article Info
Journal
Journal of molecular and cellular cardiology
Abbr.
J Mol Cell Cardiol
ISSN
0022-2828
Published
1990-05-00
Pages
565-75
Language
English
Region
England
NLM ID
0262322
Subset
IM
Grants
NHLBI NIH HHS · HL 35556 · United States
NHLBI NIH HHS · HL 36240 · United States
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