INFLUENCE OF OXYGEN FREE-RADICALS ON HEART SARCOLEMMAL NA+-CA-2+ EXCHANGE

被引:18
作者
HATA, T
KANEKO, M
BEAMISH, RE
DHALLA, NS
机构
[1] ST BONIFACE GEN HOSP, RES INST, DIV CARDIOVASC SCI, 351 TACHE AVE, WINNIPEG R2H 2A6, MANITOBA, CANADA
[2] KYUSHU UNIV, MED INST BIOREGULAT, DEPT BIOCLIMATOL, BEPPU, JAPAN
[3] KYUSHU UNIV, MED INST BIOREGULAT, DEPT MED, BEPPU, JAPAN
[4] HAMAMATSU UNIV SCH MED, DEPT INTERNAL MED 3, HAMAMATSU, SHIZUOKA 431-31, JAPAN
[5] ST BONIFACE GEN HOSP, CARDIOVASC SCI RES CTR, DIV CARDIOVASC SCI, WINNIPEG R2H 2A6, MANITOBA, CANADA
[6] UNIV MANITOBA, FAC MED, DEPT PHYSIOL, WINNIPEG R3T 2N2, MANITOBA, CANADA
关键词
HEART SARCOLEMMA; NA+-CA-2+ EXCHANGE; OXYGEN FREE RADICALS; PASSIVE CA-2+ PERMEABILITY; PASSIVE NA+ PERMEABILITY;
D O I
10.1097/00019501-199105000-00014
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Because oxygen free radicals are considered to play an important role in myocardial injury due to ischemia-reperfusion and because sarcolemmal Na+-Ca2+ exchange is markedly altered in ischemic or hypoxic-reperfused hearts, this study was undertaken to investigate the effects of oxygen free radicals on rat heart sarcolemmal Na+-Ca2+ exchange activity. Incubation of sarcolemma for 10 minutes with 2 mM xanthine plus 0.03 U/mL xanthine oxidase inhibited the Na+-dependent Ca2+ uptake activity. This change was associated with significant formation of malondialdehyde. These alterations were significantly prevented by 80-mu-g/mL superoxide dismutase, a scavenger of superoxide anions, but were completely prevented by a combination of superoxide dismutase (80-mu-g/mL) and catalase (10-mu-g/mL). Inhibitory effects on Na+-Ca2+ exchange and increased formation of malondialdehyde were observed with 0.5 mM H2O2 or 0.01 mM H2O2 plus 0.01 mM Fe2+ and were prevented by 10-mu-g/mL catalase, a scavenger of H2O2, and 2 mM mannitol, a scavenger of hydroxyl radicals, respectively. The depressant effects of all these activated types of oxygen were not associated with any changes in nonspecific Ca2+ uptake, passive Ca2+ permeability or passive Na+ permeability of the sarcolemmal vesicles. The decrease of Na+-dependent Ca2+ uptake by these free radical systems was also evident when the sarcolemmal vesicles (prepared by different methods of isolation from hearts of different animal species) were employed. These results indicate that the sarcolemmal membrane is altered on exposure to oxygen free radicals and this may depress the Na+-Ca2+ exchange system in the myocardial cell under different pathophysiologic conditions.
引用
收藏
页码:397 / 407
页数:11
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