Key result
Higher urinary sodium is linked to excess extracellular water volume without affecting blood pressure.
Why the study?
High sodium intake is an accepted risk factor for hypertension, while low sodium intake has also been linked to increased cardiovascular events, leaving its association with haemodynamics and volume status to be clarified.
Does higher 24-h urinary sodium excretion increase blood pressure and extracellular water volume in normotensive and never-treated hypertensive subjects?
Cross-Sectional (n=510)
Does higher 24-h urinary sodium excretion increase blood pressure and extracellular water volume in normotensive and never-treated hypertensive subjects?
In normotensive and untreated hypertensive subjects, sodium intake correlates with extracellular water volume but does not have a clear direct effect on blood pressure.
Higher urinary sodium excretion linked to extracellular water expansion without BP change; leaves open causal volume effects in untreated hypertension.
Purpose High sodium intake is an accepted risk factor for hypertension, while low Na+ intake has also been associated with increased risk of cardiovascular events. In this cross-sectional study, we examined the association of 24-h urinary Na+ excretion with haemodynamics and volume status.Materials and methods Haemodynamics were recorded in 510 normotensive and never-treated hypertensive subjects using whole-body impedance cardiography and tonometric radial artery pulse wave analysis. The results were examined in sex-specific tertiles of 24-h Na+ excretion, and comparisons between normotensive and hypertensive participants were also performed. Regression analysis was used to investigate factors associated with volume status. The findings were additionally compared to 28 patients with primary aldosteronism.Results The mean values of 24-h urinary Na+ excretion in tertiles of the 510 participants were 94, 148 and 218 mmol, respectively. Average tertile age (43.4–44.7 years), office blood pressure and pulse wave velocity were corresponding in the tertiles. Plasma electrolytes, lipids, vitamin D metabolites, parathyroid hormone, renin activity, aldosterone, creatinine and insulin sensitivity did not differ in the tertiles. In supine laboratory recordings, there were no differences in aortic systolic and diastolic blood pressure, heart rate, cardiac output and systemic vascular resistance. Extracellular water volume was higher in the highest versus lowest tertile of Na+ excretion. In regression analysis, body surface area and 24-h Na+ excretion were independent explanatory variables for extracellular water volume. No differences in urine Na+ excretion and extracellular water volume were found between normotensive and hypertensive participants. When compared with the 510 participants, patients with primary aldosteronism had 6.0% excess in extracellular water (p = .003), and 24-h Na+ excretion was not related with extracellular water volume.Conclusion In the absence of mineralocorticoid excess, Na+ intake, as evaluated from 24-h Na+ excretion, predominantly influences extracellular water volume without a clear effect on blood pressure.
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Taurio et al. (2023) conducted a cross-sectional in Normotension and untreated hypertension (n=510). 24-h urinary sodium excretion vs. Lower tertiles of sodium excretion was evaluated on Haemodynamics and volume status (extracellular water volume). Higher 24-h urinary sodium excretion independently increased extracellular water volume without affecting blood pressure, whereas primary aldosteronism patients had 6.0% excess water volume (p=0.003).
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