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Low Versus High-glycemic Index Post-exercise Diets for Improving Metabolism and Body Composition

Endurance Training and Post-exercise Low Glycemic Index Recovery Diet for Improving Postprandial Triglycerides

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT03587051
Enrollment
25
Registered
2018-07-16
Start date
2018-07-15
Completion date
2019-12-30
Last updated
2020-06-11

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

Conditions

Hypercholesterolemia

Brief summary

Postprandial triglycerides are a strong risk factor for heart disease. The purpose is to assess the effects of a low-glycemic versus high-glycemic meal after 90 minute exercise sessions that are done 4 times a week for 6 weeks on postprandial triglyceride level. Secondary measurements include other lipids and body composition.

Detailed description

The increase in triglycerides after a meal (i.e. postprandial triglycerides) is a strong risk factor for cardiovascular disease. Overweight/obese individuals have a greater triglyceride response to the same meal compared to lean individuals; therefore they are at greater risk. If exercise is performed the evening before a high-fat breakfast, the postprandial levels of triglycerides after the breakfast are reduced; however, if high glycemic index (GI) foods are consumed after the exercise session, the benefits of exercise on next-day postprandial triglycerides is negated. The investigators recently showed (HSFC funded) that consuming low GI foods after exercise is similar to fasting after exercise and superior to consumption of high GI foods for lowering next-day postprandial triglycerides. Low GI food was also superior for increasing fat oxidation, and lowering insulin, and low and very low density lipoproteins and preventing a decrease in high density lipoproteins. The benefits of an acute exercise session followed by low GI food consumption is now clear; however, it is not known whether this practice over weeks of exercise training results in accumulated and sustained benefits. The purpose of this study is to determine the chronic effects of consuming low compared to high GI foods after exercise sessions over six weeks in overweight and obese individuals. Twenty-four overweight and obese males and females will be randomized to consume either high or low GI foods immediately after exercise sessions (four sessions per week, 90 minutes per session, six weeks). At all other times of the day over the six weeks, they will be supplied a moderate GI diet, with calories and macronutrients based on four-day food diaries completed before the study. Two weeks before the intervention, participants will be required to go on the moderate GI diet, as a lead-in. One week into the lead-in, a baseline test will be done to determine postprandial metabolic responses (i.e. triglycerides, low and very low density lipoproteins, high density lipoproteins, insulin, and fat oxidation) after a morning high-fat breakfast. A week later, the same postprandial testing will be carried out the morning after the first exercise and post-exercise consumption of a low or high GI recovery meal. Participants will continue the training and post-exercise food consumption for the next six weeks, with postprandial measures taken again following the final exercise and feeding session. Body composition and aerobic fitness will be determined before and after the six week intervention. The investigators hypothesize that the low GI post-exercise feeding will be superior to the high GI post-exercise feeding for reducing body fat, improving fat oxidation, and reducing postprandial triglycerides, insulin and other harmful lipids. The results of the study will provide clinicians, exercise professionals and dietitians unique and experimentally tested strategies for their clients to lose body fat and improve metabolic profiles, to reduce the risk of heart disease.

Interventions

DIETARY_SUPPLEMENTLow glycemic index post-exercise diet

Feeding of a low-glycemic index, lentil meal after 90 minutes of walking exercise

DIETARY_SUPPLEMENTHigh glycemic index post-exercise diet

Feeding of a high-glycemic index meal (i.e. instant mashed potatoes, white bread, egg whites) after 90 minutes of walking exercise

Sponsors

Heart and Stroke Foundation of Canada
CollaboratorOTHER
University of Saskatchewan
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
PREVENTION
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
18 Years to 44 Years
Healthy volunteers
Yes

Inclusion criteria

* Overweight or obese (BMI 25 or greater)

Exclusion criteria

* Smokers * Diabetic * Taking medications that affect carbohydrate or lipid metabolism

Design outcomes

Primary

MeasureTime frameDescription
Postprandial triglyceridesChange from baseline to 1 week and 6 weeksTriglyceride from serum

Secondary

MeasureTime frameDescription
Postprandial insulinChange from baseline to 1 week and 6 weeksInsulin from serum
Fasting TriglycerideChange from baseline to 1 week and 6 weeksTriglyceride from serum
Fasting cholesterolChange from baseline to 1 week and 6 weeksCholesterol from serum
Fasting LDL-cholesterolChange from baseline to 1 week and 6 weeksLDL from serum
Fasting HDL-cholesterolChange from baseline to 1 week and 6 weeksHDL from serum
Fasting glucoseChange from baseline to 1 week and 6 weeksGlucose from serum
Postprandial glucoseChange from baseline to 1 week and 6 weeksGlucose from serum
Postprandial fat oxidationChange from baseline to 1 week and 6 weeksFat oxidation assessed by expiratory gases
Postprandial cholesterolChange from baseline to 1 week and 6 weeksCholesterol from serum
Postprandial low density lipoproteinChange from baseline to 1 week and 6 weeksLow density lipoprotein from serum
Postprandial high density lipoproteinChange from baseline to 1 week and 6 weeksHigh density lipoprotein from serum
Fat massChange from baseline to 6 weeksFat mass assessed by dual energy x-ray absorptiometry
Waist GirthChange from baseline to 6 weeksWaist girth assessed by a measurement tape
Fasting InsulinChange from baseline to 1 week and 6 weeksInsulin from serum

Countries

Canada

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026