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临床试验/NCT07696403
NCT07696403尚未招募不适用

Cardiometabolic Effects of the Recommended Daily Pecan Intake Dose: A 12-Week Randomized Controlled Trial

University of Georgia1 个研究点 分布在 1 个国家目标入组 90 人开始时间: 2027年3月1日最近更新:
适应症
干预措施

试验速览

阶段
不适用
状态
尚未招募
入组人数
90
试验地点
1
主要终点
Change in fasting serum lipoprotein and cholesterol concentrations

研究概览

简要总结

Cardiovascular disease risk factors, including higher BMIs and poor cholesterol profiles, are on the rise and contribute to the United States' growing disease burden. The bioactive compounds contained in tree nuts have been shown to beneficially affect cardiometabolic health outcomes. Pecans contain more total phenols, sterols, and flavonoids than any other tree nut. They also are a rich source of polyunsaturated fatty acids (PUFAs), fiber, vitamin A, vitamin E, folic acid, calcium, magnesium, phosphorus, potassium, and zinc. These bioactive components in pecans are likely the reason for the previously documented improvements in cardiometabolic health. This study aims to examine the impact of a low dose of pecans on changes in fasting and postprandial lipid metabolism/blood lipids and markers of chronic disease risk.

The specific aims of this study are to:

  • Examine the effect of pecan consumption at a dose of 6% of total energy needs for 12 weeks on fasting and postprandial blood lipids.
  • Examine the effect of pecan consumption at a dose of 6% of total energy needs for 12 weeks on other markers of chronic disease risk.

Participants will be asked to:

  • Consume pecans daily for 12 weeks or maintain their current habitual diet.
  • Attend two short visits at 4 and 8 weeks for fasting blood draws, body measurements, and to collect their next 4 weeks' supply of study materials.
  • Attend two longer (5 h) testing visits, which include eating a standard breakfast meal and having their blood drawn periodically before and after breakfast.

Researchers will compare the Pecan and Control groups to examine the physiologic effects of incorporating a low dose of pecans into one's diet.

详细描述

Accounting for nearly 1 in every 4 deaths in the U.S., cardiovascular disease (CVD) is the leading cause of death for adults. One risk factor for CVD is hypercholesterolemia, which can double the risk for this disease. Research investigating the relationship between pecan nut consumption and cardiometabolic outcomes has shown that pecan nut consumption can significantly benefit fasting and postprandial blood lipids, reduce CVD risk factors, promote weight maintenance, improve subjective and psychological markers of physiological appetite, increase total antioxidant capacity, and increase energy expenditure and fat oxidation. However, the current literature on pecan consumption and health outcomes only encompasses physiological benefits coming from a dosage of ~ 45g/day and above, which is above the current dietary guidelines. Recent evidence from our pecan dose-response study showed that consuming 6% of energy needs from pecans (~ 21.5 g/day) trended toward reductions in blood lipids but did not reach significance by the end of the short, 4-week intervention. Based on previous interventions with low doses of tree nuts, a longer duration, such as 12 weeks, may be needed to see significant effects. If lower doses of pecans in the diet are found to improve fasting and postprandial lipid metabolism and markers of chronic disease risk, these study findings could lead to improvements in health and possibly provide additional information about dietary guidelines for nut consumption.

This prospective clinical study is a single-blinded, randomized control trial in adults at increased risk for cardiovascular disease (poor cholesterol profiles and/or overweight/obesity). There are two diet interventions: Pecan (6% of energy needs from pecans) and Control (instructed to maintain their current habitual diet, but abstain from any tree nut/peanut consumption and limit nut butters to no more than 2x/wk during the intervention). The study protocol consists of a 12-week intervention that will involve substituting pecans for commonly consumed snack or meal items every day for the entire 12-week intervention or maintaining a current/usual diet.

There are a total of 5 testing visits: screening (v0), pre-intervention (v1), 2 short visits at 4 and 8 weeks (v2, v3), and post-intervention (v4).

At screening (v0), qualification is confirmed based on anthropometrics and a fasting blood draw, which is analyzed for a cholesterol panel and blood glucose. Additionally, energy requirements are estimated at this visit for use in the diet intervention.

At v1, participants will have anthropometrics measured, including body composition by dual-energy x-ray absorptiometry (DXA). Fasting and postprandial blood draws for a 4h period will occur following a high saturated-fat meal challenge which delivers 17% of the participant's estimated energy needs.

研究设计

研究类型
Interventional
分配方式
Randomized
干预模型
Parallel
主要目的
Prevention
盲法
Single (Participant)

盲法说明

Participants are blinded from which group they are in.

入排标准

年龄范围
25 Years 至 75 Years(Adult, Older Adult)
性别
All
接受健康志愿者

入选标准

  • 25-75 year-old men and women at increased risk for cardiovascular disease. Increased risk for cardiovascular disease will be defined by either elevated cholesterol profiles -or- overweight/obesity.
  • Elevated cholesterol profiles will be defined as:
  • "Borderline High" and/or "at risk" in two or more of the following variables (total cholesterol: 180-239 mg/dL, LDL cholesterol 110-159 mg/dL, triglycerides 130-199 mg/dL) --or-- "High" in total cholesterol (240 mg/dL and higher), LDL (160 mg/dL or higher), or triglycerides (between 200-350 mg/dL).
  • Overweight/obesity will be defined by body mass index (overweight > 28 kg/m2 or obesity 30 kg/m2 or greater).

排除标准

  • Probable familial hypercholesterolemia, defined by: total cholesterol greater than 290 mg/dL or LDL levels greater than 190 mg/dL plus a family history of myocardial infarction (MI) before 50 years of age in a 2nd-degree relative or below age 60 in a 1st-degree relative.
  • Women on hormone replacement therapy less than 2 years.
  • Women who are pregnant or nursing
  • Individuals who regularly exercise more than 3h/w
  • Weight gain or loss of more than 5% body weight in the past 3 months
  • Plans to begin a weight loss/exercise regimen during the trial
  • History of medical or surgical events that could affect digestion or swallowing
  • Gastrointestinal surgeries, conditions, or disorders
  • Any chronic diseases (including moderate to severe asthma, chronic lung disease, and kidney disease)
  • Metabolic disease
  • Atherosclerosis
  • Previous MI or stroke
  • Fasting blood glucose levels greater than 126 mg/dL
  • Blood pressure greater than 180/120 mmHg
  • Medication use affecting digestion, absorption, or metabolism (e.g. thyroid meds), lipid-lowering medications, medications for diabetes, steroid/hormone therapies, or current antibiotic cycles
  • Medically prescribed or special diets
  • Food allergies (specific to the foods in the study, including tree nuts, dairy, gluten, palm oil, and coconut oil)
  • Fish oil supplements
  • Individuals who regularly consume nuts and/or nut butter (defined as consumption of >2 servings (~56g) of tree nuts, nuts, or nut butter (e.g., peanut butter, almond butter) per week
  • Excessive alcohol use (greater than 3 drinks/day for men; greater than 2 drinks/day for women)
  • Tobacco or nicotine use
  • Underweight BMI (<18.5 kg/m²)
  • Individuals who have donated blood or plasma in the past 2 weeks
  • Anemia or hemoglobin levels <13.0 g/dL (men) or <12.5 (women)

研究组 & 干预措施

Pecan

Experimental

Participants are given pecans and instructed on how to substitute study foods into their diet to maintain caloric balance.

干预措施: Pecan (Other)

Control

Experimental

Participants are asked to maintain their current habitual diet and to avoid any tree nut/peanut consumption and limit nut butters to no more than twice per week for the entire 12-week intervention period.

干预措施: Control (Other)

结局指标

主要结局

Change in fasting serum lipoprotein and cholesterol concentrations

时间窗: baseline, 12 weeks

The concentration of fasting serum total cholesterol, high-density lipoprotein cholesterol, low-density lipoprotein cholesterol, oxidized low-density lipoprotein cholesterol, cholesterol/HDL ratio, and non-HDL cholesterol (mg/dL)

Change in fasting and postprandial plasma triglyceride concentrations

时间窗: baseline, 12 weeks

The concentration of plasma triglycerides before and after the high saturated fat meal challenge at both pre-and post-intervention visits (mg/dL)

Change in fasting and postprandial plasma non-esterified fatty acid (NEFA) concentrations

时间窗: baseline, 12 weeks

The concentration of plasma NEFAs before and after the high saturated fat meal challenge at both pre- and post-intervention visits (mEq/L)

Change in fasting and postprandial plasma appetite control hormone concentrations

时间窗: baseline, 12 weeks

The concentration of plasma appetite control hormones before and after the high saturated fat meal challenge at both pre- and post-intervention visits. Appetite control hormones include cholecystokinin (CCK), Peptide YY (PYY), and Ghrelin (pg/mL)

Change in fasting and postprandial subjective feelings related to appetite

时间窗: baseline, 12 weeks

Visual analog scale ratings of feelings related to appetite before and after the high saturated fat meal challenge, and for the remainder of the day, at both pre- and post-intervention visits. Subjective feelings of hunger, fullness, desire to eat, prospective consumption, and a composite appetite score are measured by visual analog scales (mm).

Change in acute dietary intake

时间窗: baseline, 12 weeks

One-day food logs will be used to record all foods and beverages consumed on testing days

Change in fasting and postprandial plasma Malondialdehyde (MDA)

时间窗: baseline, 12 weeks

The concentration of MDA before and after the high saturated fat meal challenge at both pre- and post-intervention visits (nmol/mL).

Change in fasting and postprandial plasma total antioxidant capacity

时间窗: baseline, 12 weeks

Total antioxidant capacity before and after the high saturated fat meal challenge at both pre- and post-intervention visits (U/mL).

Change in fasting and postprandial plasma angiopoietin-like (ANGPTL) proteins

时间窗: baseline, 12 weeks

The concentration of ANGPTL 3, ANGPTL 4, and ANGPTL 8 before and after the high saturated fat meal challenge at both pre- and post-intervention visits (ng/mL)

Change in fasting and postprandial plasma lipid concentrations

时间窗: baseline, 12 weeks

The concentration of plasma triglycerides and non-esterified fatty acids before and after the high saturated fat meal challenge at both pre-and post-intervention visits (mg/dL)

次要结局

  • Change in fasting serum hepatic enzymes(baseline, 12 weeks)
  • Change in fasting serum hepatic proteins(baseline, 12 weeks)
  • Change in fasting serum bilirubin(baseline, 12 weeks)
  • Change in fasting and postprandial plasma insulin concentrations(baseline, 12 weeks)
  • Change in fasting and postprandial plasma glucose concentrations(baseline, 12 weeks)
  • Change in fasting inflammatory cytokine concentrations(baseline, 12 weeks)
  • Change in fasting plasma markers of coagulation potential(baseline, 12 weeks)
  • Change in fasting insulin resistance metrics(baseline, 12 weeks)
  • Change in overall liking and desire to consume subjective ratings of the intervention food provided(Baseline, Week 1, Week 2, Week 3, Week 4, Week 5, Week 6, Week 7, Week 8, Week 9, Week 10, Week 11, Week 12)
  • Change in acute dietary intake(baseline, 12 weeks)
  • Change in fasting and postprandial plasma angiopoietin-like (ANGPTL) proteins(baseline, 12 weeks)
  • Change in fasting and postprandial plasma total antioxidant capacity(baseline, 12 weeks)
  • Change in fasting and postprandial plasma Malondialdehyde (MDA)(baseline, 12 weeks)
  • Change in fasting and postprandial subjective feelings related to appetite(baseline, 12 weeks)
  • Change in fasting and postprandial plasma appetite control hormone concentrations(baseline, 12 weeks)

研究者

申办方类型
Other
责任方
Principal Investigator
主要研究者

Jamie Cooper, PhD

Professor, Department Head of Kinesiology, Director of UGA Obesity Initiative

University of Georgia

研究点 (1)

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