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膳食镁对大鼠心脏钠钾泵活性的影响。

Effects of dietary magnesium on sodium-potassium pump action in the heart of rats.

作者信息

Fischer P W, Giroux A

机构信息

Nutrition Research Division, Health and Welfare Canada, Ottawa, Ontario.

出版信息

J Nutr. 1987 Dec;117(12):2091-5. doi: 10.1093/jn/117.12.2091.

Abstract

Sprague-Dawley rats were fed a basal AIN-76 diet containing 80, 200, 350, 500 or 650 mg of magnesium per kilogram of diet for 6 wk. Ventricular slices, as well as microsomal fractions, were prepared from the hearts and were used to determine sodium-potassium pump activity. Sodium-potassium pump activity was assessed in the microsomal membranes by determining the ouabain-inhibitable Na+, K+-ATPase activity and [3H]ouabain binding, and in the ventricular slices, by determining ouabain-sensitive 86Rb uptake under K+-free conditions. The ATPase activity increased with increasing dietary magnesium, so that in the hearts of those animals that were fed 500 and 650 mg of magnesium/kg diet, it was significantly greater than the activity in the hearts of the animals fed 80 and 200 mg/kg diet. Similarly, 86Rb uptake by heart slices from rats fed 500 and 650 mg of magnesium/kg diet was significantly greater than the uptake by heart slices from animals fed 80 and 200 mg/kg diet. [3H]Ouabain binding did not change with increasing dietary magnesium. Thus, magnesium deficiency appears to have no effect on the number of sodium-potassium pump sites, but does decrease the activity of the pump. It is suggested that this leads to an increase in intracellular Na+, resulting in a change in the membrane potential, and may contribute to the arrhythmias associated with magnesium deficiency.

摘要

将斯普拉格-道利大鼠喂养含每千克日粮80、200、350、500或650毫克镁的基础AIN - 76日粮,持续6周。从心脏制备心室切片以及微粒体部分,并用于测定钠钾泵活性。通过测定哇巴因抑制的Na⁺、K⁺ - ATP酶活性和[³H]哇巴因结合来评估微粒体膜中的钠钾泵活性,在心室切片中,通过在无钾条件下测定哇巴因敏感的⁸⁶Rb摄取来评估。ATP酶活性随着日粮镁含量的增加而增加,因此,在喂养每千克日粮500和650毫克镁的动物心脏中,其活性显著高于喂养每千克日粮80和200毫克镁的动物心脏中的活性。同样,喂养每千克日粮500和650毫克镁的大鼠心脏切片对⁸⁶Rb的摄取显著高于喂养每千克日粮80和200毫克镁的动物心脏切片的摄取。[³H]哇巴因结合并未随着日粮镁含量的增加而改变。因此,镁缺乏似乎对钠钾泵位点的数量没有影响,但确实会降低泵的活性。有人认为,这会导致细胞内Na⁺增加,从而引起膜电位变化,并可能导致与镁缺乏相关的心律失常。

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