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Cell-free Biochemical Fluorometric Enzymatic Assay for High-throughput Measurement of Lipid Peroxidation in High Density Lipoprotein
Published on: October 12, 2017
Effect of obesity on high-density lipoprotein metabolism
Shirya Rashid1, Jacques Genest
1Department of Medicine, Division of Cardiology, McGill University, Royal Victoria Hospital, Room H7-13, 687 Pine Avenue West, Montreal, Quebec, Canada H3A 1A1. shirya2004@yahoo.ca
Insights
Obesity reduces high-density lipoprotein (HDL) levels, increasing heart disease risk. Exercise is more effective than dieting for raising HDL by improving HDL metabolism.
Area of Science:
- Cardiovascular Health
- Metabolic Disorders
- Lipid Metabolism
Background:
- Reduced high-density lipoproteins (HDL) correlate with increased coronary artery disease risk in both obese and non-obese individuals.
- Obesity adversely affects HDL-cholesterol concentration, with visceral fat deposition being a key negative correlate.
- Specific HDL subfractions, including HDL2, apolipoprotein A-I, and pre-beta1, are altered in obese states.
Purpose of the Study:
- To investigate the mechanisms underlying reduced HDL levels in obesity.
- To examine the effects of exercise and diet on HDL metabolism in obese individuals.
- To identify effective non-pharmacologic therapies for increasing HDL levels.
Main Methods:
- Review of literature on HDL metabolism in obesity.
- Analysis of the impact of weight loss through diet and exercise on HDL levels.
- Examination of changes in HDL subfractions and related enzymes.
Main Results:
- Obesity leads to decreased HDL levels due to enhanced HDL2 uptake by adipocytes and increased apolipoprotein A-I catabolism.
- Weight loss, particularly through sustained exercise, is effective in reversing decreased HDL levels.
- Endurance training positively influences HDL metabolism by increasing lipid transfer via lipoprotein lipase and reducing HDL clearance by hepatic triglyceride lipase.
Conclusions:
- Understanding HDL reduction mechanisms in obesity is crucial for developing targeted therapies.
- Exercise interventions show greater efficacy in elevating HDL levels compared to dieting alone.
- Modulation of HDL metabolism through exercise offers a promising non-pharmacologic strategy for mitigating cardiovascular risk in obese individuals.
Abstract:
Reduced levels of high-density lipoproteins (HDL) in non-obese and obese states are associated with increased risk for the development of coronary artery disease. Therefore, it is imperative to determine the mechanisms responsible for reduced HDL in obese states and, conversely, to examine therapies aimed at increasing HDL levels in these individuals. This paper examines the multiple causes for reduced HDL in obese states and the effect of exercise and diet--two non-pharmacologic therapies--on HDL metabolism in humans. In general, the concentration of HDL-cholesterol is adversely altered in obesity, with HDL-cholesterol levels associated with both the degree and distribution of obesity. More specifically, intra-abdominal visceral fat deposition is an important negative correlate of HDL-cholesterol. The specific subfractions of HDL that are altered in obese states include the HDL2, apolipoprotein A-I, and pre-beta1 subfractions. Decreased HDL levels in obesity have been attributed to both an enhancement in the uptake of HDL2 by adipocytes and an increase in the catabolism of apolipoprotein A-I on HDL particles. In addition, there is a decrease in the conversion of the pre-beta1 subfraction, the initial acceptor of cholesterol from peripheral cells, to pre-beta2 particles. Conversely, as a means of reversing the decrease in HDL levels in obesity, sustained weight loss is an effective method. More specifically, weight loss achieved through exercise is more effective at raising HDL levels than dieting. Exercise mediates positive effects on HDL levels at least partly through changes in enzymes of HDL metabolism. Increased lipid transfer to HDL by lipoprotein lipase and reduced HDL clearance by hepatic triglyceride lipase as a result of endurance training are two important mechanisms for increases in HDL observed from exercise.
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