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Recently, hyperpotassemia was reported in patients treated with propranolol, but the mechanism has not yet been delineated. We have investigated the effects of various beta-adrenergic blockers and of D-propranolol on the Na+ and K+ distribution intra- and extracellularly in human erythrocytes. K+ loss and Na+ gain by cells was demonstrated at drug concentrations of 10(-4) M or greater. D-Propranolol was more effective than L-propranolol, whereas pindolol was ineffective. Practolol increased Na+ content but did not influence K+. The results suggest that electrolyte redistribution across cell membranes is not a likely explanation for hyperpotassemia in patients treated with propranolol, or for the local anaesthetic effect of this drug.  相似文献   

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Effects of insulin on plasma concentration and renal excretion of sodium and potassium were compared in conscious dogs 1) maintained in water and electrolytes balance (Series 1, 10 dogs), 2) depleted of electrolytes by repeated i.v. loading with 20% mannitol (Series 2, 10 dogs), and 3) aldosterone treated (0.8 micrograms.kg-1.h-1 i.v., Series 3, 10 dogs). In each Series intravenous infusion of insulin at a rate of 0.05 U.kg-1.h-1 elicited transient increase in plasma sodium concentration and prolonged hypokalemia. Repeated loading with mannitol in Series 2 elicited significant elevation of plasma sodium, ADH and aldosterone concentrations, as well as decrease in extracellular fluid volume. Infusion of insulin in this Series elicited smaller decrease in plasma potassium concentration and longer lasting hypernatremia than in dogs in water-electrolytes balance. Aldosterone infusion in Series 3 did not change hypokalemic effect of insulin but attenuated hypernatremia. Infusion of insulin in Series 1 elicited increase of sodium excretion and decrease in potassium excretion. These effects were absent in Series 2 and 3. The results indicate that depletion of electrolytes and blood aldosterone elevation modify the effects of insulin on plasma concentration and renal excretion of sodium and potassium.  相似文献   

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The phosphorylation of ribosomes in kidney cortex slices was measured during 60 min of incubation 2 h after intravenous injection of aldosterone into adrenalectomized rats. No significant differences from controls were observed in the incorporation of [32P] into total ribosomes, ribosomal RNA or ribosomal protein. The phosphorylation of ribosomal proteins separated by sodium dodecyl sulfate polyacrylamide gel electrophoresis was also compared in renal cortical slices from aldosterone-treated and control animals by a double-labeling technique using [32P] and [33P]. After aldosterone administration the phosphorylation of at least two proteins with low mobilities (high molecular weights) increased, while that of at least two others with higher mobilities (lower molecular weights) decreased.  相似文献   

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目的:研究建立四苯硼钠容量法测定谷氨酸钾注射液中钾离子含量的方法.方法:分别采用四苯硼钠容量法与四苯硼钠重量法测定谷氨酸钾注射液中钾的含量,并比较其测定结果.结果:四苯硼钠容量法平均加样回收率为102.50%(RSD=0.41%,n=9),与四苯硼钠重量法所测得的结果进行t检验,结果无显著性差异.结论:四苯硼钠容量法简便、快速、准确,可替代四苯硼钠重量法快速测定谷氨酸钾注射液中钾的含量.  相似文献   

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It has been suggested that renal conversion of sodium (Na+) during training in hot environments results in potassium (K+) deficiencies. This investigation examined the influence of two levels of dietary Na+ intake (399 vs 98 mmol X d-1) on intramuscular, urinary, sweat, and whole body K+ homeostasis. Nine unacclimated, untrained males underwent heat acclimation during two 8 day dietary-exercise regimens (40.1 +/- 0.1 degrees C, 23.5 +/- 0.4% RH). Both diets resulted in depressed urinary K+ excretion. Sweat K+ and muscle K+ concentrations were not altered by diets or acclimation. The whole body stores of Na+ increased 31.1% (+916.8 mmol) during the high Na+ diet and decreased 7.8% (-230.4 mmol) during the low Na+ diet; whole body stores of K+ increased 4.1% (+137.6 mmol) during the high Na+ diet and increased 3.4% (+113.6 mmol) during the low Na+ diet. This dietary-acclimation protocol did not result in whole-body or intramuscular K+ deficits and offers no evidence to support previous claims that dietary sodium levels affect K+ balance.  相似文献   

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An increase of the sodium concentration produced a diminished binding of labeled aldosterone to kidney receptors in both in vivo and in vitro conditions. The elevation of potassium level did not change the binding capacity of kidney nuclear receptors for aldosterone. Hypernatraemia-induced decrease of aldosterone uptake was significant in the nuclear fraction of both medullary and cortical region of the kidney but did not show remarkable changes in the uptake of cytosol fraction. The transfer of aldosterone from cytosol into the nuclear compartment seems to be changed by the alteration of extracellular sodium concentration.  相似文献   

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