VA Ann Arbor Healthcare System, Ann Arbor, MI
Ann Arbor, Michigan, 48105-2303, United States
NCT Number: NCT03170375
Tens of thousands of Veterans have heart failure with preserved ejection fraction (HFpEF), and suffer poor quality of life, frequent hospitalizations, and high death rates. Older Veterans and those with high blood pressure, obesity, and the metabolic syndrome (abnormal cholesterol and resistance to insulin's effects) are particularly at risk for HFpEF. However, it is not clear why only some Veterans in this risk group eventually develop HFpEF. Extensive information from experimental animal models and some human studies suggests that dietary patterns in vulnerable 'salt-sensitive' people could contribute to the risk for HFpEF. Reducing salt intake and increasing overall dietary quality in at-risk Veterans could prevent heart and blood vessel damage that ultimately leads to HFpEF. Reducing the development of HFpEF, which currently has no definitive treatment, is highly relevant to the VA's mission to emphasize prevention of disease and population health.
Looking for future studies?
Notify Me45 year and older
All sexes
Interventional
Not applicable
Ann Arbor, Michigan, 48105-2303, United States
COVID-19 in-person visit hold has been removed- screening and actively enrolling. We are not currently performing sublingual darkfield microscopy because of the need for close face-to-face contact with an open-mouthed patient for several minutes in the setting of COVID-19 pandemic.
Patients with heart failure (HF) account for over 1,200,000 VA outpatient visits per year, and HF remains the most common cause for hospital admission in the VA. Approximately 1/3 of Veterans with HF have 'preserved' ejection fraction (HFpEF), or relatively normal contractile function of the heart; such patients suffer functional decline and poor quality of life, and half die within 5 years after diagnosis. Risk factors for developing HFpEF are more common in Veterans than the general population, and the burden of HFpEF to the VA system will rise in the years ahead as these Veterans age. Preventive efforts are critical, but are hampered by gaps in knowledge related to HFpEF pathophysiology. The long term goal of this proposal is to prevent the onset of HFpEF in at-risk Veterans. Hypertension (HTN) confers the highest population-attributable risk for HFpEF, particularly when accompanied by the metabolic syndrome, a constellation of obesity, insulin resistance, and dyslipidemia. Animal models of HTN and metabolic syndrome develop HFpEF due to microvascular oxidative stress and inflammation induced by high sodium intake. Recent data from cardiac biopsies confirm similar mechanisms in human HFpEF. Dietary sodium restriction is widely recommended to prevent HTN-associated heart disease in humans, but this advice is now controversial. Few studies have examined how individual differences in response to sodium intake affect risk. "Salt-sensitive" persons have blood pressure (BP) that changes in parallel with sodium intake, and commonly develop cardiovascular abnormalities associated with HFpEF. The overall objective of this proposal is to evaluate salt-sensitivity as a novel, diet-responsive risk factor for incident HFpEF in Veterans with HTN and metabolic syndrome. The central hypothesis is that the sodium-restricted Dietary Approaches to Stop Hypertension (DASH/SRD) eating pattern will improve cardiovascular functional and structural risk factors for HFpEF in Veterans with the salt-sensitive phenotype. Guided by findings in experimental models, cohort studies, and strong preliminary evidence from the investigators' research group, this hypothesis will be tested in a two-phase study and by pursuing three specific aims: 1) Determine effects of DASH/SRD on functional and structural cardiovascular HFpEF risk factors in salt-sensitive vs. salt-resistant Veterans, 2) measure the effect of an electronically-delivered tailored-messaging intervention on DASH/SRD adherence, and 3) determine effects of DASH/SRD intervention and adoption on microvascular function and assess the endothelial glycocalyx as a biomarker of cardiovascular response to DASH/SRD. Phase 1 of the study is a sequential comparison of DASH/SRD vs. control diet for two weeks each, and Phase 2 a 6-month extension to promote DASH/SRD adherence. The salt-sensitive phenotype will be defined by between-diet changes in 24-hour mean BP during Phase 1. In Phase 2, the efficacy of motivational interviewing-based counseling and the Women's and Men's Hypertension Experiences and Emerging Lifestyles Intervention (WHEELS-I), a tailored messaging program, to sustain DASH/SRD adherence, will be compared. Echocardiography and arterial tonometry will be used to assess HFpEF-related cardiovascular parameters during short- and longer-term dietary modification and their interaction with salt-sensitivity. In vivo microscopy and novel blood testing will assess microvascular function and the integrity of the endothelial glycocalyx, a blood vessel lining that is sodium-responsive and may mediate the adverse effects of salt-sensitivity. This proposal is innovative because it represents the first study to examine salt-sensitivity as a factor promoting HFpEF in Veterans with HTN and metabolic syndrome, the highest risk group for incident HFpEF. Moreover, it aims to link microvascular dysfunction, an important pathway in human HFpEF, with endothelial glycocalyx damage, a potential biomarker for sodium-mediated vascular risk. The proposed research is significant because it will vertically advance the investigators' understanding of how dietary factors contribute to the pathophysiology of HFpEF, a major and growing health threat to Veterans.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
All participants will receive motivational interviewing (MI) based counseling. Participants in the MI + WHEELS-I arm will also receive the WHEELS-I electronically-delivered tailored messaging.
Other names: Phase 2
Time frame: Phase 1 of study, change between week 2 and week 4
Phase 1 primary hypothesis: greater reduction in carotid-femoral pulse wave velocity with DASH diet in individuals with salt-sensitive blood pressure
Change in velocity of pulse wave traveling between carotid and femoral artery; validated measure of arterial stiffness
Time frame: Phase 2 of study, change from baseline to 6 months
Left ventricular mass indexed to body surface area.
Larger/greater left ventricular mass index is associated with increased long-term risk of cardiovascular events, including the development of heart failure. Normal values for men are 49-115 g/m² and for women 43-95 g/m²
Time frame: Phase 1 of study, change between week 2 to week 4
Global longitudinal left ventricular strain (GLS), a sensitive measure of ventricular systolic function
GLS is calculated by dividing the reduction in length of a myocardial (heart) segment from the end of diastole (maximum relaxation) to the end of systole (maximum contraction) by the segment's original length at end-diastole (i.e. change in length/original length). GLS is averaged across six myocardial segments, is expressed in a percentage, and is negative by convention since cardiac segment length decreases during systole. The more negative/greater magnitude, the better the GLS.
Normal GLS is -18% to -22%. Low GLS is associated with long-term increased risk of cardiovascular events, including the development of heart failure.
Time frame: Phase 2 of study, change from baseline to 6 months
Velocity of pulse wave traveling between carotid and femoral artery; validated measure of arterial stiffness
Time frame: Phase 1 of study, change between week 2 and week 4
Salt-sensitive blood pressure means that blood pressure changes more than 'normal' when dietary sodium intake changes, i.e. increases or decreases in parallel with sodium intake. Having a salt-sensitive blood pressure pattern is an independent long-term risk factor for cardiovascular events. Variable testing approaches, blood pressure thresholds, and methods of blood pressure measurement have been proposed in the literature to define blood pressure salt-sensitivity.
In this study, we report "salt-sensitive" vs. "non salt-sensitive" as a binary variable. Change in 24-hour mean blood pressure of >= 4 mmHg between the ad-lib and home-delivered meal periods of Phase 1 defines the salt-sensitive blood pressure phenotype
Time frame: Phase 2 of study, change from baseline to 6 months
Measure of daily dietary sodium intake
Time frame: Phase 2 of study, change from baseline to 6 months
Sodium-restricted DASH diet score on FFQ, measured by quintiles of intake in 8 dietary domains as compared with age- and sex-matched norms from NHANES national US survey data. Score ranges 8-40 points, with higher scores indicating greater adherence
Time frame: Phase 2 of study, change from baseline to 6 months
Analysis of 3-day food diaries by a Registered Dietitian, utilizing the Nutrition Data System for Research. DASH diet adherence score based on proportion of recommended daily intake in 9 domains, score ranges 0-9 points with higher scores indicating greater adherence
Time frame: Phase 2 of study, change from baseline to 6 months
Change in systolic blood pressure obtained in clinic with automated brachial cuff
Time frame: Phase 2 of study, change from baseline to 6 months
Time frame: Phase 2 of study, change from baseline to 6 months
Serum triglyceride changes during dietary intervention
Time frame: Phase 2 of study, change from baseline to 6 months
Unitless ratio of urine sodium (in mmol) divided by urine potassium (in mmol), measured from spot samples taken from 24-hour urine samples.
VA Office of Research and Development
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