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Mechanisms Underlying the Protective Vascular Effects of Dietary Potassium in Humans

Mechanisms Underlying the Protective Vascular Effects of Dietary Potassium in Humans

Status
Recruiting
Phases
Unknown
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT04101188
Enrollment
90
Registered
2019-09-24
Start date
2020-01-16
Completion date
2026-07-31
Last updated
2026-03-04

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Cardiovascular Risk Factor

Keywords

Dietary Potassium, Dietary Sodium, Vascular Health

Brief summary

Americans continue to consume high amounts of sodium. Potassium is notable for its blood pressure lowering effects but less is known regarding its effect on the vasculature. This investigation seeks to determine the role of dietary potassium on the vasculature in the presence of a high sodium diet in salt-resistant adults.

Detailed description

Significant public health efforts have been made towards salt reduction but most have met with failure. Dietary factors such high sodium/low potassium diets contribute to the development of cardiovascular diseases (CVDs) such as atherosclerosis and high blood pressure (BP). This is important as CVD is the number one killer in the U.S. While the role of these two nutrients on BP is widely accepted, their impact on the vasculature has received less attention. Endothelial dysfunction, characterized by impaired dilation, is an important non-traditional risk factor for atherosclerosis. Evidence supporting potassium's beneficial role on vascular health remains unclear although it may be more effective in the presence of a high sodium diet. A purported mechanism responsible for sodium-induced vascular dysfunction is overproduction of reactive oxygen species (ROS) resulting in reduced nitric oxide (NO) production/bioavailability. Additionally, high sodium diets have been shown to stiffen the endothelium. This investigation will evaluate the vascular effects of dietary potassium during a high salt diet including its impact on sodium-induced oxidative stress and endothelial cell stiffness.

Interventions

Consumption of 10 days of a diet moderate in potassium and low in sodium.

Consumption of 10 days of a diet moderate in potassium and high in sodium.

Consumption of 10 days of a diet high in potassium and high in sodium.

Sponsors

University of Delaware
Lead SponsorOTHER
National Heart, Lung, and Blood Institute (NHLBI)
CollaboratorNIH

Study design

Allocation
RANDOMIZED
Intervention model
CROSSOVER
Primary purpose
PREVENTION
Masking
NONE

Intervention model description

All participants will complete each arm. It is a crossover, randomized design.

Eligibility

Sex/Gender
ALL
Age
18 Years to 45 Years
Healthy volunteers
Yes

Inclusion criteria

* healthy * normal blood pressure * normal resting ECG

Exclusion criteria

* hypertension * history of heart disease * diabetes * kidney disease * obese (BMI ≥30) * significant weight changes in the last 6 months * use of tobacco products * pregnant * on a special diet (gluten free; vegan) * take any medications for the above conditions * endurance trained athletes

Design outcomes

Primary

MeasureTime frameDescription
Conduit artery endothelial-dependent dilationon day 10 of the dietThe change in flow-mediated dilation (FMD) between the 3 diets as assessed by brachial artery FMD
Microvascular functionon day 10 of the dietCutaneous microvascular dilatory response to local heating assessed by laser Doppler flowmetry coupled with intradermal microdialysis

Secondary

MeasureTime frameDescription
Ambulatory BP monitoringon day 7 and 10 of dietassessed by 24-hour ambulatory blood pressure

Countries

United States

Contacts

CONTACTShannon L Lennon, PhD
slennon@udel.edu(302)831-2798
PRINCIPAL_INVESTIGATORShannon L Lennon, PhD

University of Delaware

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Mar 5, 2026