Dietary Protein Sources and Atherogenic Dyslipidemia
Completed · Not applicable
Conditions studied: Cardiovascular Disease, Dyslipidemia, Insulin Resistance, Inflammation
In brief
There is growing epidemiological evidence that consumption of red meat is associated with greater incidence of Cardiovascular Disease (CVD) than either white meat or non-meat foods. Research from our group has shown that a high saturated fat (SF) diet with a moderate red meat content selectively increases intermediate density lipoproteins (IDL) and larger low density lipoproteins (LDLs), which are more weakly associated with CVD risk than smaller LDLs. In contrast, the investigators have found that with a similar intake of SF, high beef consumption results in a preferential increase in small and medium LDL particles that are strongly related to CVD. To date, no studies have directly compared the lipoprotein effects of red meat with that of other food sources of protein in the context of both high and low saturated fat intake. The overall objective of this project is to test the hypothesis that the effects of SF on lipoprotein markers of CVD risk are influenced by sources of dietary protein. The investigators hypothesize that adverse effects of SF on plasma levels of LDL-cholesterol (C), apolipoprotein B (apo B), and atherogenic LDL particles are greater in a diet with a high content of red meat than in diets in which the major proteins are from white meat (poultry) or non-meat sources. The investigators propose a clinical trial in which 180 healthy men and women will be randomized to high SF or low SF diet groups, and within each group, consume diets with equivalent amounts of protein from red meat, white meat, and non-meat sources for 4 wks each in random order. Specifically, the investigators will test whether: (1) With high SF, the red meat diet, compared to the other protein sources, will result in higher levels of LDL-C, apoB, small and medium LDL, and total/high density lipoprotein (HDL)C; (2) With low SF, dietary protein source will not be related to any of these measurements; (3) With both the white meat and non-meat protein diets, increased LDL-C with high vs. low SF will be due primarily to increases in large LDL, whereas with red meat the additional increase in small and medium LDL will result in greater increases in plasma apoB and total LDL particle number. Aim 4 will test hypotheses that increases in small and medium LDL with high SF plus red meat are related to increased activity of hepatic lipase, a key determinant of small LDL production, and that increases in large LDL induced by high SF are related to suppression of LDL receptors. The investigators will also assess the effects of protein source and saturated fat content on markers of insulin resistance, inflammation and endothelial function.
Key facts
- Study ID
- NCT01427855
- Run by
- UCSF Benioff Children's Hospital Oakland
- People needed
- 113
- Starts
- 2012-01-01
- Expected to finish
- 2017-05-01
- Last updated by the study team
- 2020-11-24
Who can join
Age: 30 and older, up to 65. Sex: any. Healthy volunteers: accepted.
You may qualify if…
- 30-65 years old
- Non-smoking
- Agrees to abstain from alcohol and dietary supplements during the study
- Willing to consume all study foods as instructed
You may not qualify if…
- History of heart disease, cerebrovascular disease, peripheral vascular disease, bleeding disorder, liver or renal disease, lung disease, diabetes, Human immunodeficiency virus (HIV), or cancer (other than skin cancer) in the last 5 years
- Body mass index (BMI) > 35 kg/m2 or < 20 kg/m2
- Not weight stable
- Abnormal thyroid stimulating hormone
- Blood pressure > 150/90
- Fasting blood sugar >126 mg/dl
- Fasting triglyceride levels >500 mg/dl
- Total- and LDL cholesterol >95th percentile for age and sex
- Pregnant or breastfeeding
- Taking hormones or drugs known to affect lipid metabolism
Where it is running
- Cholesterol Research Center, Children's Hospital Research Institute — Berkeley, California, United States
Full record on ClinicalTrials.gov
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