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HDL biology

Fenofibrate raises HDL cholesterol by up to 91% only in the presence of CETP, via a 72% reduction in hepatic CETP expression, in transgenic mice (J Lipid Res 2007)

Original title: Fenofibrate increases HDL-cholesterol by reducing cholesteryl ester transfer protein expression

J Lipid Res · · 8

van der Hoogt CC, de Haan W, Westerterp M, Hoekstra M, Dallinga-Thie GM, Romijn JA, Princen HM, Jukema JW, Havekes LM, Rensen PC

To test whether the fenofibrate-induced increase in HDL cholesterol depends on cholesteryl ester transfer protein (CETP), APOE*3-Leiden (E3L) transgenic mice with or without the human CETP transgene were fed a Western-type diet with or without fenofibrate. Fenofibrate decreased plasma triglycerides similarly in E3L and E3L.CETP mice (-59% and -60%, respectively; P < 0.001) via reduced VLDL, but while fenofibrate did not affect HDL cholesterol in E3L mice, it dose-dependently increased HDL cholesterol by up to 91% in E3L.CETP mice. Fenofibrate did not alter HDL cholesteryl ester turnover, indicating a higher steady-state HDL cholesterol level rather than altered flux. In E3L.CETP mice, fenofibrate reduced hepatic CETP mRNA by 72% (P < 0.01) and plasma cholesteryl ester transfer activity by 73% (P < 0.01), showing fenofibrate raises HDL cholesterol by reducing CETP-dependent transfer of cholesterol from HDL to (V)LDL.

Read the paper (DOI)PubMed

Original abstract

In addition to efficiently decreasing VLDL-triglycerides (TGs), fenofibrate increases HDL-cholesterol levels in humans. We investigated whether the fenofibrate-induced increase in HDL-cholesterol is dependent on the expression of the cholesteryl ester transfer protein (CETP). To this end, APOE*3-Leiden (E3L) transgenic mice without and with the human CETP transgene, under the control of its natural regulatory flanking regions, were fed a Western-type diet with or without fenofibrate. Fenofibrate (0.04% in the diet) decreased plasma TG in E3L and E3L.CETP mice (-59% and -60%; P < 0.001), caused by a strong reduction in VLDL. Whereas fenofibrate did not affect HDL-cholesterol in E3L mice, fenofibrate dose-dependently increased HDL-cholesterol in E3L.CETP mice (up to +91%). Fenofibrate did not affect the turnover of HDL-cholesteryl ester (CE), indicating that fenofibrate causes a higher steady-state HDL-cholesterol level without altering the HDL-cholesterol flux through plasma. Analysis of the hepatic gene expression profile showed that fenofibrate did not differentially affect the main players in HDL metabolism in E3L.CETP mice compared with E3L mice. However, in E3L.CETP mice, fenofibrate reduced hepatic CETP mRNA (-72%; P < 0.01) as well as the CE transfer activity in plasma (-73%; P < 0.01). We conclude that fenofibrate increases HDL-cholesterol 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.

HDL biologymechanisms

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