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Published on: December 1, 2023
A randomised controlled trial evaluating the effect of potassium supplementation on vascular function and the
U M Graham1, D R McCance1, I S Young2
1Regional Centre for Endocrinology and Diabetes, Royal Victoria Hospital, Belfast, UK.
Insights
Potassium supplementation lowered blood pressure in patients at moderate cardiovascular risk but did not affect vascular function. It increased aldosterone and renin activity, highlighting potential risks despite blood pressure benefits.
Area of Science:
- Cardiovascular Medicine
- Endocrinology
- Pharmacology
Background:
- Limited evidence exists on potassium supplementation's vascular effects in high-cardiovascular-risk patients.
- Hyperaldosteronism, potentially increased by potassium, is linked to adverse cardiac outcomes.
- Understanding potassium's impact on vascular function and aldosterone is crucial for cardiovascular health.
Purpose of the Study:
- To investigate the medium-term effects of potassium supplementation on aldosterone levels.
- To determine potassium's impact on vascular function in patients with moderate cardiovascular disease risk.
Main Methods:
- A randomized, placebo-controlled crossover study involving 40 patients.
- Participants received 64 mmol potassium chloride or placebo for 6 weeks.
- Vascular function assessed via pulse-wave analysis, including augmentation index changes.
Main Results:
- Potassium supplementation did not alter the augmentation index, indicating no change in endothelial function.
- Significant reductions in brachial systolic blood pressure and central systolic and diastolic blood pressure were observed.
- Plasma renin activity and serum aldosterone levels increased significantly with potassium supplementation.
Conclusions:
- Potassium supplementation effectively lowers blood pressure in moderately at-risk individuals.
- It does not improve endothelial function or pulse-wave analysis parameters.
- The observed increase in aldosterone and renin activity warrants consideration due to their association with poor cardiac outcomes.
Abstract:
There is limited evidence on the effect of potassium supplementation on the vasculature in patients at increased cardiovascular risk. Potassium increases aldosterone and there is a strong association of hyperaldosteronism with poor cardiac outcomes. We aimed to determine whether potassium supplementation has a significant medium-term effect on aldosterone levels and, if so, what the overall effect of this is on vascular function in patients at moderate cardiovascular disease risk. Forty patients at moderate cardiovascular disease risk were included in a randomised placebo-controlled crossover study. Patients were assigned to 64 mmol potassium chloride or placebo for 6 weeks. Vascular function was assessed using pulse-wave analysis including the detection of a change in augmentation index to salbutamol and nitroglycerine-induced vasodilation. There was no change in augmentation index with potassium vs placebo (25.2±1.4 vs. 26.0±1.3%, respectively). Potassium improved brachial systolic blood pressure (131.8±2.2 vs. 137.1±2.4 mm Hg; P=0.013), central systolic blood pressure (123.2±2.3 vs. 128.4±2.3 mm Hg; P=0.011) and central diastolic blood pressure (80.3±1.3 vs. 83.7±1.4 mm Hg; P=0.019). Plasma renin activity and serum aldosterone both increased with potassium (P=0.001 and P=0.048 respectively). We found that potassium supplementation had no effect on endothelial function or pulse-wave analysis. It lowered brachial systolic and central blood pressure. It was associated with increased plasma renin activity and serum aldosterone.
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