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n-3 FA increase liver uptake of HDL-cholesterol in mice
Valérie le Morvan1, Marie-France Dumon, Antonio Palos-Pinto
1Laboratoire de Biochimie et de Biologie Moléculaire, Université Victor Ségalen Bordeaux 2, France.
Abstract:
In humans, diets rich in fish oil (containing n-3 FA) decrease the incidence of coronary artery diseases. This is thought to be caused by the induction in liver and skeletal muscle of genes involved in lipid oxidation, and to the repression in liver and adipose tissue of genes responsible for lipogenesis. n-3 FA are known to reduce the synthesis of FA and TG in the liver, resulting in a decrease of plasma concentrations of TG-rich lipoproteins. On the other hand, little is known of a possible effect of n-3 FA on HDL metabolism. To investigate this question, female C57Bl/6J mice were fed an n-3 FA-enriched diet for 16 wk. As expected from previous studies, we found that total cholesterol, TG, and phospholipids were reduced in the plasma of treated mice. We also found that HDL-cholesterol decreased after this treatment and that the in vivo fractional catabolic rate of HDL-cholesteryl ester was significantly higher in treated mice than in control mice fed a standard diet. Consistent with these results, treated mice exhibited increased uptake of HDL-cholesteryl ester in the liver. Moreover, quantitative reverse transcriptase-PCR analysis showed a two- to threefold increase in scavenger receptor B-1 gene expression. Taken together, these results suggest that an n-3 FA-enriched diet stimulates one step in the reverse cholesterol transport in mice, probably by increasing the amount of the scavenger receptor class B-1. These effects of n-3 FA on HDL metabolism may contribute to their beneficial effects on the vasculature.
Insights
Diets rich in omega-3 fatty acids (n-3 FA) may improve cardiovascular health by altering lipid metabolism. This study shows n-3 FA enhances reverse cholesterol transport, potentially reducing coronary artery disease risk.
Area of Science:
- Cardiovascular Science
- Nutritional Biochemistry
- Lipid Metabolism
Background:
- Diets high in fish oil (n-3 FA) are linked to reduced coronary artery disease incidence.
- n-3 FA influence lipid oxidation and lipogenesis, decreasing triglycerides and lipoproteins.
- The impact of n-3 FA on high-density lipoprotein (HDL) metabolism remains less understood.
Purpose of the Study:
- To investigate the effects of an n-3 FA-enriched diet on HDL metabolism in mice.
- To determine if n-3 FA influences reverse cholesterol transport pathways.
Main Methods:
- Female C57Bl/6J mice were fed an n-3 FA-enriched diet for 16 weeks.
- Plasma lipid profiles, HDL cholesterol catabolism, and liver uptake of HDL cholesteryl ester were measured.
- Quantitative reverse transcriptase-PCR was used to analyze scavenger receptor B-1 (SR-B1) gene expression.
Main Results:
- n-3 FA-enriched diet reduced plasma total cholesterol, triglycerides, and phospholipids.
- HDL-cholesterol levels decreased, with a significantly higher fractional catabolic rate in treated mice.
- Increased hepatic uptake of HDL cholesteryl ester and a 2- to 3-fold increase in SR-B1 gene expression were observed.
Conclusions:
- n-3 FA-enriched diets stimulate a key step in reverse cholesterol transport in mice.
- This stimulation is likely mediated by increased scavenger receptor B-1 expression.
- These findings suggest a mechanism by which n-3 FA contribute to vascular health benefits.