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Published on: January 28, 2014
Effects of Within-Person Variability in Spot Urinary Sodium Measurements on Associations With Blood Pressure and
Federica Re1, Imen Hammami1, Thomas J Littlejohns1
1From the Clinical Trial Service Unit and Epidemiological Studies Unit (CTSU), Nuffield Department of Population Medicine, University of Oxford, United Kingdom (F.R., I.H., T.J.L., S.L., R.J.C., J.L.C.).
Insights
High within-person variability in urinary sodium excretion makes observational studies unreliable for assessing long-term salt intake effects on blood pressure and cardiovascular disease risk. These findings highlight limitations in public health policy based on spot urine sodium measurements.
Area of Science:
- Cardiovascular Science
- Nutritional Epidemiology
- Public Health Policy
Background:
- Randomized trials show salt restriction lowers blood pressure.
- Observational studies on salt intake and cardiovascular disease (CVD) yield conflicting results.
- Within-person variability in urinary sodium excretion may explain these discrepancies.
Purpose of the Study:
- To examine the impact of within-person variability in spot urinary sodium excretion on associations with systolic blood pressure and incident CVD risk.
- To assess the reliability of observational studies on salt intake and health outcomes.
Main Methods:
- Prospective UK Biobank study excluding individuals with prevalent CVD or kidney disease.
- Analysis of spot urinary sodium excretion variability using Spearman correlation.
- Assessment of associations between usual urinary sodium, systolic blood pressure, and CVD risk using linear and Cox regression models.
Main Results:
- Extreme within-person variability in urinary sodium was observed (self-correlation coefficient of 0.35 over 4 years).
- Higher usual urinary sodium was associated with higher baseline systolic blood pressure but not at 9-year follow-up.
- No significant association was found between urinary sodium and incident CVD risk over the follow-up period.
Conclusions:
- Extreme within-person variability in spot urinary sodium excretion limits its utility for assessing long-term associations with blood pressure and CVD risk in observational studies.
- Findings underscore the limitations of observational studies, regardless of sample size, for informing public policy on salt restriction.
- Public health policies on salt restriction should consider the limitations of using spot urinary sodium measurements.
Abstract:
Randomized trials of salt restriction have consistently demonstrated that decreasing salt consumption lowers blood pressure, but results of observational studies of salt intake and cardiovascular disease have been conflicting. After excluding individuals with prevalent cardiovascular or kidney disease in the prospective UK Biobank study, we examined the within-person variability in spot urinary sodium excretion and its impact on associations with systolic blood pressure and risk of incident cardiovascular disease. Spearman correlation coefficients were used to assess within-person variability in spot urinary sodium, and associations between sodium and blood pressure were assessed using linear regression in participants with measurements at baseline (N=355 134) and after 9 years (N=33 915). Cox regression was used to assess associations with the risk of cardiovascular disease over the same follow-up period (N=5566 events). The within-person variability in urinary sodium was extreme, with a self-correlation coefficient of 0.35 over 4 years. Each 100 mmol/L higher usual urinary sodium was associated with 3.09 mm Hg higher systolic blood pressure (95% CI, 2.7–3.48) at baseline, but had no association at 9 years (0.97 [−0.44 to 2.37]). Likewise, there was no association between urinary sodium and risk of cardiovascular disease over the same follow-up period (hazard ratio, 1.05, [0.87–1.26]). While spot urinary sodium measurements were associated with immediate effects on blood pressure at baseline, the extreme within-person variability in urinary sodium precluded detection of associations with future blood pressure at resurvey or risk of cardiovascular disease. The limitations of observational studies, irrespective of study size, should be recognized when assessing public policy on salt restriction.
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