Oral KCl Supplementation Safely Reduces Body Na + Surplus and Blood Pressure

BACKGROUND: Potassium-enriched table salt lowers blood pressure (BP) and reduces cardiovascular mortality. Whether these beneficial effects stem from reduced Na + intake, increased K + intake, or both is unknown. We tested the hypothesis that oral potassium chloride (KCl) supplementation lowers body Na + content and BP in patients with essential hypertension (EH) or hyperaldosteronism, independent of salt intake. METHODS: Between February 2024 and February 2025, we conducted a single-arm, prospective, longitudinal study with nonrandomized oral KCl intervention in 40 participants with hypertension. All received personalized (blood K + -adjusted) KCl supplementation (Span-K tablets) for 6 to 9 weeks. After the intervention, participants completed a routine diagnostic workup and were classified with EH or hyperaldosteronism. Primary end point: baseline muscle Na + surplus in hyperaldosteronism. Secondary end point: interventional muscle Na + mobilization and BP reduction. RESULTS: Seventeen participants were diagnosed with EH, and 23 with hyperaldosteronism. At baseline, patients with hyperaldosteronism showed higher muscle Na + content (24.67±2.93 versus 22.48±3.37 mmol/L tissue volume, P =0.023; primary end point). Oral KCl increased 24-hour urine K + excretion without altering 24-hour urine Na + . KCl supplementation successfully eliminated the muscle Na + surplus in the hyperaldosteronism group (−1.90 mmol/L tissue volume [CI, −3.20 to −0.60]; P =0.005; secondary end point), lowered blood Na + /K + ratios in both groups (EH, −5.34 [CI, −7.69 to −2.99]; P =4.6×10 -5 ; hyperaldosteronism, −7.02 [CI, −9.04 to −5.01]; P =2.1×10 -8 ), and reduced systolic BP (EH, −8.33 mm Hg [CI, −14.55 to −2.12]; P =0.010; hyperaldosteronism, −7.35 mm Hg [CI, −12.69 to −2.01]; P =0.008). To account for early study termination, a conservative significance threshold of α=0.025 was implemented, which all end points crossed. CONCLUSIONS: Oral KCl supplementation mobilizes intracellular Na + stores, corrects pathological Na + /K + distribution, and lowers BP across hypertension phenotypes. This safe, targeted approach warrants consideration as a scalable public health strategy for cardiovascular disease prevention. REGISTRATION: URL: https://www.clinicaltrials.gov ; Unique identifier: NCT06569589.

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Journal
Circulation Research
Published
2026-09-28
DOI
https://doi.org/10.1161/circresaha.126.329131
Primary Topic
Sodium Intake and Health
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article
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article

Oral KCl Supplementation Safely Reduces Body Na + Surplus and Blood Pressure

Jean‐Paul Kovalik, Wai Lun Moy, Manfred Rauh, Wei Lin Tay et al.
Circulation Research
Sodium Intake and Health
article

Oral KCl Supplementation Safely Reduces Body Na + Surplus and Blood Pressure

Jean‐Paul Kovalik, Wai Lun Moy, Manfred Rauh, Wei Lin Tay, Norihiko Morisawa, Troy Hai Kiat Puar, Adriana Marton, Jens Marc Titze, Eric Andrew Finkelstein, Calvin Chin, Wan Keat Yam, Friedrich Cameron Luft, Ismail Osman, Armin Michael Nagel, Seyed Ehsan Saffari, Roger Foo, Hieu T. Tran, Matthew Bingfeng Chuah, Tzy Tiing Lim, Pek‐Lan Khong
article en

Abstract

BACKGROUND: Potassium-enriched table salt lowers blood pressure (BP) and reduces cardiovascular mortality. Whether these beneficial effects stem from reduced Na + intake, increased K + intake, or both is unknown. We tested the hypothesis that oral potassium chloride (KCl) supplementation lowers body Na + content and BP in patients with essential hypertension (EH) or hyperaldosteronism, independent of salt intake. METHODS: Between February 2024 and February 2025, we conducted a single-arm, prospective, longitudinal study with nonrandomized oral KCl intervention in 40 participants with hypertension. All received personalized (blood K + -adjusted) KCl supplementation (Span-K tablets) for 6 to 9 weeks. After the intervention, participants completed a routine diagnostic workup and were classified with EH or hyperaldosteronism. Primary end point: baseline muscle Na + surplus in hyperaldosteronism. Secondary end point: interventional muscle Na + mobilization and BP reduction. RESULTS: Seventeen participants were diagnosed with EH, and 23 with hyperaldosteronism. At baseline, patients with hyperaldosteronism showed higher muscle Na + content (24.67±2.93 versus 22.48±3.37 mmol/L tissue volume, P =0.023; primary end point). Oral KCl increased 24-hour urine K + excretion without altering 24-hour urine Na + . KCl supplementation successfully eliminated the muscle Na + surplus in the hyperaldosteronism group (−1.90 mmol/L tissue volume [CI, −3.20 to −0.60]; P =0.005; secondary end point), lowered blood Na + /K + ratios in both groups (EH, −5.34 [CI, −7.69 to −2.99]; P =4.6×10 -5 ; hyperaldosteronism, −7.02 [CI, −9.04 to −5.01]; P =2.1×10 -8 ), and reduced systolic BP (EH, −8.33 mm Hg [CI, −14.55 to −2.12]; P =0.010; hyperaldosteronism, −7.35 mm Hg [CI, −12.69 to −2.01]; P =0.008). To account for early study termination, a conservative significance threshold of α=0.025 was implemented, which all end points crossed. CONCLUSIONS: Oral KCl supplementation mobilizes intracellular Na + stores, corrects pathological Na + /K + distribution, and lowers BP across hypertension phenotypes. This safe, targeted approach warrants consideration as a scalable public health strategy for cardiovascular disease prevention. REGISTRATION: URL: https://www.clinicaltrials.gov ; Unique identifier: NCT06569589.

Circulation Research
National University of Singapore (SG), Duke University (US), Friedrich-Alexander-Universität Erlangen-Nürnberg (DE), Max Delbrück Center (DE), Heidelberg University (DE), Paracelsus Medical University (AT), Changi General Hospital (SG), Universitätsklinikum Erlangen (DE), University Medical Center HCMC (VN), Paracelsus Medizinische Privatuniversität (DE), Duke-NUS Medical School (SG), National Heart Centre Singapore (SG), National University Health System (SG), DKFZ-ZMBH Alliance (DE), Sengkang General Hospital (SG)
Good health and well-being
Openalex Percentile: Top 13%
Sodium Intake and Health
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