Fibrates Suppress Bile Acid Synthesis via Peroxisome Proliferator–Activated Receptor-α–Mediated Downregulation of Cholesterol 7α-Hydroxylase and Sterol 27-Hydroxylase Expression

Author:

Post Sabine M.1,Duez Hélène1,Gervois Philippe P.1,Staels Bart1,Kuipers Folkert1,Princen Hans M.G.1

Affiliation:

1. From the Gaubius Laboratory (S.M.P., P.P.G., H.M.G.P.), TNO-PG, Leiden, the Netherlands; Départment d’Athérosclérose (H.D., B.S.), Institut Pasteur de Lille and Faculté de Pharmacie, Université de Lille II, Lille, France; and Groningen University Institute for Drug Exploration (F.K.), Center for Liver, Digestive and Metabolic Diseases, University of Groningen, Groningen, the Netherlands.

Abstract

Fibrates are hypolipidemic drugs that affect the expression of genes involved in lipid metabolism by activating peroxisome proliferator–activated receptors (PPARs). Fibrate treatment causes adverse changes in biliary lipid composition and decreases bile acid excretion, leading to an increased incidence of cholesterol gallstones. In this study, we investigated the effect of fibrates on bile acid synthesis. Ciprofibrate and the PPARα agonist Wy14,643 decreased bile acid synthesis in cultured rat hepatocytes and suppressed cholesterol 7α-hydroxylase and sterol 27-hydroxylase activities, paralleled by a similar reduction of the respective mRNAs. Treatment of rats with 0.05% (wt/wt) ciprofibrate decreased cholesterol 7α-hydroxylase enzyme activity and mRNA. The functional involvement of PPARα in the suppression of both enzymes was proven with the use of PPARα-null mice. In wild-type mice, ciprofibrate reduced cholesterol 7α-hydroxylase and sterol 27-hydroxylase enzyme activities and mRNA. The decrease in mRNA of both enzymes is regulated transcriptionally and posttranscriptionally, respectively, resulting in a decline in the output of fecal bile acids (−45%) and a 3-fold increase in fecal cholesterol secretion. These effects were completely abolished in PPARα-null mice. A decreased bile acid production by PPARα-mediated downregulation of cholesterol 7α-hydroxylase and sterol 27-hydroxylase may contribute to the increased risk of gallstone formation after fibrate treatment.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Cardiology and Cardiovascular Medicine

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