Influence of chronic alterations of salt intake and aging on the kinetic of red cell Na+ and K+ transport in Sprague-Dawley rats.

Physiologia Bohemoslovaca Pub Date : 1990-01-01
J Zicha, J Duhm
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Abstract

The kinetics of Na+ and K+ (Rb)+ transport mediated by the Na(+)-K+ pump and Na(+)-K+ cotransport system (assessed as a function of Rb+o and Na+i) as well as the magnitude of cation leaks were determined in red cells of young male rats subjected to chronic salt deprivation or salt loading (0.1% and 8% NaCl diet). These salt intake alterations induced moderate kinetic changes of the Na(+)-K+ pump which did not result in significant changes of ouabain-sensitive (OS) Rb+ uptake or Na+ net extrusion at in vivo Na+i and K+o concentrations because a decreased affinity for Na+i in salt-loaded animals was compensated by an increased maximal transport rate. High furosemide-sensitive (FS) Rb+ uptake in red cells of salt-deprived rats was caused by an increase of both the maximal transport rate and the affinity for Rb+o. Cation leaks were also higher in salt-deprived than in salt-loaded rats. In three age groups of rats fed a 1% NaCl diet FS Rb+ uptake (but not FS Na+ net uptake) rose with age due to an increasing maximal transport rate whereas the affinity of the cotransport system for Rbo+ did not change. The age-dependent changes in the kinetics of the Na(+)-K+ pump resulted in a slight decrease of OS Rb+ uptake with age that was not paralleled by corresponding Na+ net extrusion. No major age-related changes of cation leaks were found. Thus some intrinsic properties of red cell transport systems can be altered by salt intake and aging.

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盐摄入的慢性改变和衰老对Sprague-Dawley大鼠红细胞Na+和K+转运动力学的影响。
研究了慢性盐剥夺或盐负荷(0.1%和8% NaCl饮食)下年轻雄性大鼠红细胞中Na(+)-K+泵和Na(+)-K+共转运系统介导的Na+和K+ (Rb)+转运动力学(以Rb+ 0和Na+i为函数进行评估)以及阳离子泄漏的程度。这些盐摄入量的改变引起了Na(+)-K+泵的中度动力学变化,但在体内Na+i和K+o浓度下,没有导致瓦阿因敏感(OS) Rb+摄取或Na+净挤出的显著变化,因为盐负荷动物对Na+i亲和力的降低被最大运输速率的增加所补偿。缺盐大鼠红细胞对Rb+的高速敏摄取是由于最大转运速率和对Rb+o的亲和力增加所致。缺盐大鼠的阳离子泄漏也高于含盐大鼠。在饲喂1% NaCl的3个年龄组大鼠中,FS Rb+摄取量(而非FS Na+净摄取量)随着年龄的增长而增加,这是由于最大运输速率的增加,而共同运输系统对Rbo+的亲和力没有变化。Na(+)-K+泵的动力学随年龄的变化导致OS Rb+摄取随年龄的轻微减少,这与相应的Na+净挤出并不平行。未发现与年龄相关的阳离子泄漏变化。因此,红细胞运输系统的一些固有特性可以通过盐的摄入和老化而改变。
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