Genetics
CETP genotype does not modify how DHA supplementation lowers triglycerides, randomized feeding trial finds (Lipids 2018)
Original title: Triacylglycerol-Lowering Effect of Docosahexaenoic Acid Is Not Influenced by Single-Nucleotide Polymorphisms Involved in Lipid Metabolism in Humans
This secondary analysis of a randomized, crossover-controlled feeding trial investigated whether common single-nucleotide polymorphisms in genes involved in docosahexaenoic acid (DHA) synthesis and triglyceride (TAG) metabolism, including CETP-rs5882, are associated with the response of blood lipids to dietary DHA. In 129 subjects with metabolic syndrome, high-oleic canola oil supplemented with DHA (1 to 2.5 g/day for 4 weeks) reduced blood TAG by 24% compared to high-oleic canola oil alone. This TAG reduction, and the response of other lipids, lipoproteins, and apolipoproteins to DHA supplementation, was independent of genetic variation in the studied genes, including CETP-rs5882, APOE, FADS1, FADS2, ELOVL2, ELOVL5, SCD1, PPARA, and LIPF. The authors conclude the TAG-lowering effect of DHA supplementation was not influenced by genetic variation in any of these genes.
Original abstract
The triacylglycerol (TAG)-lowering effects of long-chain n-3 fatty acids, and in particular docosahexaenoic acid (DHA), are well documented, although these effects manifest large interindividual variability. The objective of this secondary analysis is to investigate whether common single-nucleotide polymorphisms (SNP) in genes involved in DHA synthesis and TAG metabolism are associated with the responsiveness of blood lipids, lipoprotein, and apolipoprotein concentration to dietary treatment by DHA supplied in high-oleic canola oil (HOCO). In a randomized, crossover-controlled feeding trial, 129 subjects with metabolic syndrome received high-oleic canola oil (HOCO) and high-oleic canola oil supplemented with DHA (HOCO-DHA), each for 4 weeks. During the HOCO-DHA phase, the intake of DHA ranged from 1 to 2.5 g/day. The subjects were genotyped for apolipoprotein E (APOE) isoforms, and SNP including FADS1-rs174561, FADS2-rs174583, ELOVL2-rs953413, ELOVL5-rs2397142, CETP-rs5882, SCD1-rs2234970, PPARA-rs6008259, and LIPF-rs814628 were selected as important genes controlling fatty acid metabolism. Overall, consumption of HOCO-DHA oil reduced blood concentrations of TAG by 24% compared to HOCO oil. The reduction in TAG was independent of genetic variations in the studied genes. Similarly, no treatment-by-gene interactions were evident in the response to other lipids, lipoproteins, or apolipoproteins to DHA supplementation. Nevertheless, a lower interindividual variation in the TAG response to DHA supplementation compared to other studies was observed in this analysis. The TAG-lowering effect of a supplemental body-weight-based dose of DHA was not influenced by genetic variations in APOE, FADS1, FADS2, ELOVL2, ELOVL5, CETP, SCD1, PPARA, and LIPF.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.