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Clinical Trials/NCT02068781
NCT02068781CompletedNot Applicable

Aldosterone-induced Microvascular Dysfunction as a Cause of Salt-sensitivity in Obesity?

Maastricht University Medical Center1 site in 1 country40 target enrollmentStarted: July 1, 2014Last updated:
Conditions
Interventions

Trial Snapshot

Phase
Not Applicable
Status
Completed
Enrollment
40
Locations
1
Primary Endpoint
Difference in capillary recruitment between low- and high sodium diets

Study Overview

Brief Summary

Currently, the incidence of obesity and obesity-related disorders is reaching epidemic proportions, which entails an increasing burden for health care systems. The association of obesity with other risk factors for type 2 diabetes mellitus and cardiovascular disease, such as insulin resistance and hypertension, is often referred to as the metabolic syndrome. During recent years, salt-sensitivity of blood pressure has emerged as an additional cardiovascular risk factor that is related to obesity and other key components of the metabolic syndrome. The underlying pathophysiological mechanisms of these interrelationships are complex and incompletely elucidated. Microvascular dysfunction has been proposed as a link between insulin resistance and hypertension in obese individuals. In addition, impairment of microvascular function was found to be associated with salt-sensitivity of blood pressure. Increased aldosterone levels, as observed in obese individuals, might be a cause of microvascular dysfunction-induced salt-sensitivity and insulin resistance. Aldosterone not only gives rise to sodium-retention in the distal tubule of the kidney, but was also found to impair endothelial function and thus lower NO-availability, which is characteristic of microvascular dysfunction. In addition, elevated aldosterone levels are associated with both hypertension and insulin resistance, which is illustrated in patients with primary aldosteronism, but also in the general population.

The investigators hypothesize that increased aldosterone levels in obese individuals lead to impairment of microvascular function through reduction of NO-availability. This microvascular dysfunction is suggested to play a central role in the pathogenesis of salt-sensitive hypertension and insulin resistance.

Study Design

Study Type
Interventional
Allocation
Randomized
Intervention Model
Crossover
Primary Purpose
Other
Masking
Double (Participant, Investigator)

Eligibility Criteria

Ages
18 Years to 65 Years (Adult, Older Adult)
Sex
All
Accepts Healthy Volunteers
Yes

Inclusion Criteria

  • •Obese individuals
  • •Age 18-65 years
  • •Caucasian
  • •Waist circumference > 102 cm (men)/> 88 cm (women)
  • •Lean individuals
  • •Age 18-65 years
  • •Caucasian
  • •Waist circumference < 94 cm (men)/< 80 cm (women)

Exclusion Criteria

  • •Obese/lean individuals
  • •Cardiovascular disease (stroke, coronary artery disease, peripheral vascular disease, congestive heart failure, cardiac shunts, cardiac surgery, pulmonary hypertension, cardiac arrhythmias, family history of cardiac arrhythmias or sudden cardiac death)
  • •Diabetes mellitus/impaired glucose metabolism (fasting glucose values > 5.6 mmol/L
  • •Stage 3 hypertension (blood pressure > 180/110 mm Hg)
  • •Unstable or severe pulmonary disease
  • •Unstable or severe thyroid disorders
  • •Inflammatory diseases
  • •Alcohol use > 2 U/day (women)/> 3 U/day (men)
  • •Use of antihypertensive, lipid-lowering or glucose-lowering medications
  • •Use of corticosteroids and regular use of NSAIDs
  • •eGFR< 60 mL/min
  • •Impairment of hepatic function
  • •Pregnancy or lactation

Arms & Interventions

Start with low-sodium diet

Active Comparator

One week of low-sodium diet, followed by a two-week wash-out period and subsequently, another week of high-sodium diet

Intervention: High-sodium diet (Dietary Supplement)

Start with high-sodium diet

Active Comparator

One week of high-sodium diet, followed by a two-week wash-out period and subsequently, another week of low-sodium diet

Intervention: Low-sodium diet (Dietary Supplement)

Start with high-sodium diet

Active Comparator

One week of high-sodium diet, followed by a two-week wash-out period and subsequently, another week of low-sodium diet

Intervention: High-sodium diet (Dietary Supplement)

Start with low-sodium diet

Active Comparator

One week of low-sodium diet, followed by a two-week wash-out period and subsequently, another week of high-sodium diet

Intervention: Low-sodium diet (Dietary Supplement)

Outcomes

Primary Outcomes

Difference in capillary recruitment between low- and high sodium diets

Time Frame: One week low-sodium diet; wash-out period of two weeks; one week high-sodium diet; order of respective diets is randomized

Secondary Outcomes

No secondary outcomes reported

Investigators

Sponsor Class
Other
Responsible Party
Principal Investigator
Principal Investigator

Monica Schütten

MD

Maastricht University Medical Center

Study Sites (1)

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