This study evaluates whether a diet rich in poly-unsaturated fats can compensate for the negative effects of high saturated fat meals on metabolic, inflammatory, and coagulation responses. Half of the participants will receive a high polyunsaturated fat diet )50% carbohydrate, 15% protein, and 35% fat. 21% of total energy will be poly-unsaturated fatty acids, 9% mono-unsaturated fatty acids, and 5% saturated fatty acids) for 7 days, while the other half will receive a control diet 50% carbohydrate, 35% fat, and 15% protein 50% carbohydrate, 35% fat, and 15% protein. Only, 7% of total energy will be poly-unsaturated fatty acids, 15% of total energy will be mono-unsaturated fatty acids, and 13% of total energy will be saturated fatty acids.) for 7 days.
Eating more saturated fats has been shown to decrease how many calories an individual burns and increase chronic disease risk by increasing inflammation, coagulation (blood clotting) potential, blood pressure, and cholesterol. Conversely, eating more poly-unsaturated fats has been linked to decreased risk of chronic diseases. The goal of this study is to determine whether or not eating a diet containing a lot of poly-unsaturated fats can compensate for the damaging effects of eating occasional high-fat meals that are high in saturated fats. Those damaging effects we are interested in studying include how much fat and calories a person's body burns, and measuring some markers of chronic disease risk in the blood (inflammation markers and blood clotting markers).
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
PREVENTION
Masking
NONE
Enrollment
26
The 7-day diet will consist of 50% carbohydrate, 15% protein, and 35% fat. 21% of total energy will be poly-unsaturated fatty acids, 9% mono-unsaturated fatty acids, and 5% saturated fatty acids.
The 7-day diet will consist of 50% carbohydrate, 35% fat, and 15% protein. Furthermore, 7% of total energy will be poly-unsaturated fatty acids, 15% of total energy will be mono-unsaturated fatty acids, and 13% of total energy will be saturated fatty acids.
University of Georgia - Department of Foods and Nutrition
Athens, Georgia, United States
Change in Blood Markers
Change in inflammation and coagulation factors
Time frame: Change measures baseline and 9 days
Change in Energy Expenditure
Time frame: Change measures baseline and 9 days
Change in Substrate Oxidation
Time frame: Change measures baseline and 9 days
Change in Fasting Blood Lipids
Time frame: Change measures baseline and 9 days
Change in Systolic Blood Pressure
Time frame: Change measures baseline and 9 days
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