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High-dose PFOA raises HDL cholesterol by suppressing cholesteryl ester transfer activity in mice (Toxicol Sci 2019)

Original title: Dose Effects of Ammonium Perfluorooctanoate on Lipoprotein Metabolism in APOE*3-Leiden.CETP Mice

Toxicol Sci · · 5

Pouwer MG, Pieterman EJ, Chang SC, Olsen GW, Caspers MPM, Verschuren L, Jukema JW, Princen HMG

Researchers investigated how the environmental chemical ammonium perfluorooctanoate (PFOA) affects cholesterol metabolism using APOE*3-Leiden.CETP mice, a model with human-like lipoprotein metabolism, fed a Western-type diet with PFOA at 10, 300, or 30 000 nanograms per gram per day. Lower doses did not alter plasma lipids, but the highest dose decreased triglycerides, total cholesterol, and non-HDL cholesterol while increasing HDL cholesterol. This HDL-C rise was mediated by decreased cholesteryl ester transfer activity together with changes in HDL-metabolism gene expression, largely driven by activation of PPAR-alpha. The findings mirror a human phase 1 trial showing high PFOA levels lower cholesterol, but suggest these effects are unlikely at typical environmental or occupational exposure levels.

Read the paper (DOI)PubMed

Original abstract

Epidemiological studies have reported positive associations between serum perfluorooctanoic acid (PFOA) and total and non-high-density lipoprotein cholesterol (non-HDL-C) although the magnitude of effect of PFOA on cholesterol lacks consistency. The objectives of this study were to evaluate the effect of PFOA on plasma cholesterol and triglyceride metabolism at various plasma PFOA concentrations relevant to humans, and to elucidate the mechanisms using APOE*3-Leiden.CETP mice, a model with a human-like lipoprotein metabolism. APOE*3-Leiden.CETP mice were fed a Western-type diet with PFOA (10, 300, 30 000 ng/g/d) for 4-6 weeks. PFOA exposure did not alter plasma lipids in the 10 and 300 ng/g/d dietary PFOA dose groups. At 30 000 ng/g/d, PFOA decreased plasma triglycerides (TG), total cholesterol (TC), and non-HDL-C, whereas HDL-C was increased. The plasma lipid alterations could be explained by decreased very low-density lipoprotein (VLDL) production and increased VLDL clearance by the liver through increased lipoprotein lipase activity. The concomitant increase in HDL-C was mediated by decreased cholesteryl ester transfer activity and changes in gene expression of proteins involved in HDL metabolism. Hepatic gene expression and pathway analysis confirmed the changes in lipoprotein metabolism that were mediated for a major part through activation of the peroxisome proliferator-activated receptor (PPAR)α. Our data confirmed the findings from a phase 1 clinical trial in humans that demonstrated high serum or plasma PFOA levels resulted in lower cholesterol levels. The study findings do not show an increase in cholesterol at environmental or occupational levels of PFOA exposure, thereby indicating these findings are associative rather than causal.

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Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.