Na+/Ca2+ exchange during Ca2+ repletion is not a prerequisite for the Ca2+ paradox in isolated rat hearts

被引:0
作者
M. A. Jansen
C. J. A. Van Echteld
T. J. C. Ruigrok
机构
[1] Department of Cardiology,
[2] Heart Lung Institute,undefined
[3] University Hospital,undefined
[4] P.O. Box 85500,undefined
[5] NL-3508 GA Utrecht,undefined
[6] The Netherlands.,undefined
[7] Interuniversity Cardiology Institue of The Netherlands,undefined
[8] P.O. Box 19258,undefined
[9] NL-3501 DG Utrecht,undefined
[10] The Netherlands,undefined
来源
Pflügers Archiv | 1998年 / 436卷
关键词
Key words Calcium; Lithium; Sodium; Creatine kinase; Heart; Rats; Nuclear magnetic resonance;
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摘要
 Ca2+ paradox damage has been suggested to be determined by Na+ entry during Ca2+ depletion and exchange of Na+ for Ca2+ during Ca2+ repletion. Since previously a Ca2+ paradox without prior increase of total intracellular [Na+] ([Na+]i) has been observed, we investigated whether local accumulation of Na+ close to the inner side of the sarcolemma during Ca2+ depletion plays a role in the Ca2+ paradox by replacing all extracellular Na+ by Li+ 5 min before and during 10 min Ca2+-free perfusion (37°C) in isolated rat hearts (group I). Subsequently, hearts were perfused with a standard, Na+- and Ca2+-containing solution. Verapamil was used to prevent contracture due to the absence of Na+/Ca2+ exchange during Na+-free perfusion in the presence of Ca2+. In group II, the Ca2+-free period was omitted, and in group III normal extracellular [Na+] was used throughout. 23Na-NMR was used to monitor intra- and extracellular Na+ signals. Total creatine kinase release was 2,977±413, 36±24 and 3170±297 IU/g dry weight in groups I, II and III respectively, indicating a full Ca2+ paradox in groups I and III. [Na+]i decreased from 11.3±0.6 mM during control perfusion to 1.2±0.4 mM after 10 min Ca2+ depletion in group I, whereas in group III [Na+]i was 10.9±2.2 mM during control perfusion and did not change significantly after 10 min Ca2+-free perfusion. It is concluded that accumulation of Na+ close to the inner side of the sarcolemma during Ca2+ depletion is not a prerequisite for the Ca2+ paradox.
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页码:515 / 520
页数:5
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