Beaugé L
Biochim Biophys Acta. 1975 Aug 5;401(1):95-108. doi: 10.1016/0005-2736(75)90344-2.
Unidirectional and net Na+ fluxes modified by changes in internal Na+ concentration ([Na+]i) were studied in human red blood cells incubated in K+-free solutions containing 10-minus 4 m ouabain. An increase in [Na+]i brought about (a) a reduction in net Na+ gain, (b) no change in Na+ influx, (c) a reduction in the rate constant for Na+ effux and (d) an increase in Na+ efflux. Similar reductions in net Na+ gain were observed when the changes in [Na+]i were carried out at constant [K+]i. In addition, the rate constant for 42K+ efflux was not affected by changes in [Na+]i. The electrical membrane potential (as determined from the chloride distribution ratio) was also constnat. Furosemide (10-minus 3 M) increased the net Na+ gain in concentration reduced Na+ efflux and increased Na+ influx: the magnitude of these effects was dependent onthe intracellular Na+. The reduction in the net Na+ gain as [Na+]i increased was unaffected by depletion of cellular ATP to values below 10 mumol/1 cells, and this effect was independent of the depletion method used
在含有10⁻⁴M哇巴因的无钾溶液中孵育的人红细胞中,研究了由细胞内钠离子浓度([Na⁺]i)变化所改变的单向和净钠离子通量。[Na⁺]i升高导致:(a)净钠离子摄取减少;(b)钠离子内流无变化;(c)钠离子外流速率常数降低;(d)钠离子外流增加。当在恒定的[K⁺]i下改变[Na⁺]i时,观察到净钠离子摄取有类似减少。此外,42K⁺外流速率常数不受[Na⁺]i变化的影响。膜电位(由氯离子分布比确定)也保持恒定。呋塞米(10⁻³M)增加了净钠离子摄取,降低了钠离子外流并增加了钠离子内流:这些效应的大小取决于细胞内钠离子浓度。随着[Na⁺]i升高,净钠离子摄取的减少不受细胞ATP耗竭至低于10μmol/1细胞的值的影响,并且这种效应与所使用的耗竭方法无关