HDL biology
Atorvastatin's HDL-raising effect in mice requires CETP expression, proving statins work partly by suppressing CETP (Atherosclerosis 2007)
Original title: Atorvastatin increases HDL cholesterol by reducing CETP expression in cholesterol-fed APOE*3-Leiden.CETP mice
In APOE*3-Leiden mice with and without a human CETP transgene fed a Western-type diet, atorvastatin lowered plasma cholesterol (mainly VLDL) in both strains (-26% and -33%, P<0.05), but raised HDL-cholesterol only in CETP-expressing mice (+52%). Hepatic expression of other HDL-metabolism genes (Pltp, Abca1, Sr-b1, Apoa1) was unaffected by atorvastatin in either strain, but in CETP-expressing mice atorvastatin down-regulated hepatic CETP mRNA (-57%, P<0.01), total plasma CETP level (-29%), and cholesteryl ester transfer activity (-36%, P<0.05). Atorvastatin therefore raises HDL-cholesterol specifically by reducing CETP-dependent transfer of cholesterol from HDL to (V)LDL, driven by lower hepatic CETP expression and a smaller (V)LDL pool.
Original abstract
Objective: In addition to lowering low-density lipoprotein (LDL)-cholesterol, statins modestly increase high-density lipoprotein (HDL)-cholesterol in humans and decrease cholesteryl ester transfer protein (CETP) mass and activity. Our aim was to determine whether the increase in HDL depends on CETP expression.
Methods And Results: APOE*3-Leiden (E3L) mice, with a human-like lipoprotein profile and a human-like responsiveness to statin treatment, were crossbred with mice expressing human CETP under control of its natural flanking regions resulting in E3L.CETP mice. E3L and E3L.CETP mice were fed a Western-type diet with or without atorvastatin. Atorvastatin (0.01% in the diet) reduced plasma cholesterol in both E3L and E3L.CETP mice (-26 and -33%, P<0.05), mainly in VLDL, but increased HDL-cholesterol only in E3L.CETP mice (+52%). Hepatic mRNA expression levels of genes involved in HDL metabolism, such as phospholipid transfer protein (Pltp), ATP-binding cassette transporter A1 (Abca1), scavenger receptor class B type I (Sr-b1), and apolipoprotein AI (Apoa1), were not differently affected by atorvastatin in E3L.CETP mice as compared to E3L mice. However, in E3L.CETP mice, atorvastatin down-regulated the hepatic CETP mRNA expression (-57%; P<0.01) as well as the total CETP level (-29%) and cholesteryl esters (CE) transfer activity (-36%; P<0.05) in plasma.
Conclusions: Atorvastatin increases HDL-cholesterol in E3L.CETP mice by reducing the CETP-dependent transfer of cholesterol from HDL to (V)LDL, as related to lower hepatic CETP expression and a reduced plasma (V)LDL pool.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.