The objective of this study is to evaluate the effects of different quantities of lean beef (0.5, 2.5, 5.5 oz/day) on lipids, lipoproteins, and vascular health endpoints in the context of a modified Mediterranean dietary pattern that is representative of foods typically consumed in the United States.
The DASH (Dietary Approaches to Stop Hypertension) dietary pattern, the USDA Food Pattern, and the American Heart Association (AHA) Diet are all recommended for the reduction of LDL-C and blood pressure, two major risk factors for cardiovascular disease (CVD). The recommended food-based dietary patterns emphasize consumption of vegetables, fruits and whole grains; include low-fat dairy products, poultry, fish, legumes, non-tropical vegetable oils and nuts; and limit intake of sweets, sugar-sweetened beverages and red meats. The Mediterranean dietary pattern has gained widespread popularity because of an impressive evidence base showing health benefits in the prevention of many chronic diseases including CVD. The Mediterranean Diet Pyramid recommends that red meat be consumed less than 2 servings per week, with an emphasis on lean cuts. However, as the BOLD (Beef in an Optimal Lean Diet) study has demonstrated, lean beef can be included in a heart healthy dietary pattern that achieves both low density lipoprotein and blood pressure-lowering effects. The BOLD study utilized beef consumption levels of 4 or 5.4 ounces of lean beef daily, which is significantly higher than the American average of app. 3 ounces per day. This study will evaluate three levels of beef in the context of a Mediterranean diet, compared to an Average American diet.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
PREVENTION
Masking
DOUBLE
Enrollment
66
USDA-ARS, Beltsville Human Nutrition Research Center
Beltsville, Maryland, United States
Penn State University
University Park, Pennsylvania, United States
Lipid/lipoprotein profile will be measured in blood
The following will be measured in the blood on 2 consecutive days at baseline (start of trial) and the end of each 4-week diet period: lipids and lipoproteins, apolipoproteins, lipoprotein particle number/size, and proprotein convertase subtilisin/kexin type 9 (PCSK9).
Time frame: Week 0, end of diet period 1 (week 4), end of diet period 2 (week 9), end of diet period 3 (week 15), end of diet period 4 (week 21)
Pulse Wave will be measured using Sphygmocor EXCEL
Pulse wave analysis and pulse wave velocity will be conducted.
Time frame: Week 0, end of diet period 1 (week 4), end of diet period 2 (week 9), end of diet period 3 (week 15), end of diet period 4 (week 21)
Markers of vascular health will be measured in blood
Adhesion molecules and endothelin-1 will be measured in the blood.
Time frame: Week 0, end of diet period 1 (week 4), end of diet period 2 (week 9), end of diet period 3 (week 15), end of diet period 4 (week 21)
Systemic inflammation will be measured in blood
Markers of systemic inflammation will be measured, such as fibrinogen, IL-6, TNF-alpha, serum amyloid A, and CRP.
Time frame: Week 0, end of diet period 1 (week 4), end of diet period 2 (week 9), end of diet period 3 (week 15), end of diet period 4 (week 21)
Fecal microbiota will be analyzed
Feces will be analyzed for bacterial typing.
Time frame: Week 0, end of diet period 1 (week 4), end of diet period 2 (week 9), end of diet period 3 (week 15), end of diet period 4 (week 21)
Measures of oxidative stress will be measured in urine
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Participants will be fed an average American diet providing 2.5 oz. per day of lean beef.
Urinary 8-iso-PGF-2α and urinary 15-keto-dihydro- PGF-2α will be measured.
Time frame: Week 0, end of diet period 1 (week 4), end of diet period 2 (week 9), end of diet period 3 (week 15), end of diet period 4 (week 21)
Blood glucose, serum insulin, and insulin c-peptide will be measured.
Blood glucose and serum insulin and insulin c-peptide will be measured.
Time frame: Week 0, end of diet period 1 (week 4), end of diet period 2 (week 9), end of diet period 3 (week 15), end of diet period 4 (week 21)