MICROHETEROGENEITY OF SUBSARCOLEMMAL SODIUM-GRADIENTS - ELECTRON-PROBE MICROANALYSIS IN GUINEA-PIG VENTRICULAR MYOCYTES

被引:108
作者
WENDTGALLITELLI, MF [1 ]
VOIGT, T [1 ]
ISENBERG, G [1 ]
机构
[1] UNIV COLOGNE,DEPT PHYSIOL,W-5000 COLOGNE 41,GERMANY
来源
JOURNAL OF PHYSIOLOGY-LONDON | 1993年 / 472卷
关键词
D O I
10.1113/jphysiol.1993.sp019934
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
1. The effect of stimulation on possible subsarcolemmal sodium accumulation was studied in ventricular myocytes (2 mm [Ca2+]o, 36-degrees-C). By trains of eighteen paired voltage-clamp pulses (180 ms to 0 mV, 20 ms to -45 mV, 180 ms to +50 mV, 620 ms to -45 mV) unloaded contractions were potentiated to an optimum. 2. Potentiation reversibly enlarged and prolonged the diastolic tail currents due to Na+-Ca2+ exchange. Eighteen pulse pairs were estimated to provide a sodium influx that could increment the total intracellular sodium concentration (SIGMANa(i)) by no more than 0.5 mm. 3. Potentiation reversibly increased the current at + 50 mV and made it more noisy. Cell-attached recordings with a second electrode attributed this noise to the activation of K+(Na) channels. In inside-out patches, a comparable channel activity was obtained with 40 mm sodium. Hence, the cell-attached recordings suggest that potentiation can increase intracellular sodium concentration to 40 mm. 4. Electron probe microanalysis (EPMA) measured SIGMANa in a volume within 20 nm of the inner side of the sarcolemma. Potentiation reversibly increased SIGMANa20nm to 40 +/- 7 mm. When stimulation was terminated, SIGMANa20nm fell within 8 s to 37 +/- 8 mm and within 3 min to 19 +/- 6 mm. In unstimulated cells SIGMANa20nm was 17 +/- 5 mm. 5. In potentiated cells, shock-frozen at early systole, SIGMANa fell with a space constant of 28 nm from the sarcolemma to the centre; at 1 mum distance SIGMANa was 12 +/- 3 mm. The steep gradient suggests that sodium does not freely diffuse and SIGMANa20nm is controlled by transmembrane fluxes rather than by cell dialysis. 6. SIGMANa20nm data were distributed with peaks at 5, 30 and 60 mm. Quantitative elemental digital imaging demonstrated patches with 60-80 mm SIGMANa20nm alternating with others of 0.15 mm SIGMANa20nm. This 'sodium microheterogeneity' suggests that Ca2+ efflux at low SIGMANa20nm and K+(Na) channel activation at high SIGMANa20nm can operate simultaneously.
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页码:33 / 44
页数:12
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