Related Experiment Video
Updated: Apr 18, 2026

Induction of Atherosclerotic Plaques Through Activation of Mineralocorticoid Receptors in Apolipoprotein E-deficient Mice
Published on: September 26, 2018
Cholesteryl ester-transfer protein inhibitors stimulate aldosterone biosynthesis in adipocytes through Nox-dependent
Francisco J Rios1, Karla B Neves1, Aurelie Nguyen Dinh Cat1
1Institute of Cardiovascular and Medical Sciences, British Heart Foundation Glasgow Cardiovascular Research Centre, University of Glasgow, Glasgow, Scotland, United Kingdom (F.J.R., A.N.D.C., S.E., A.C.M., R.M.T.); Faculty of Pharmaceutical Sciences of Ribeirao Preto, University of Sao Paulo, Ribeirao Preto, Brazil (K.B.N.); and Departamento de Bioquímica, Fisiología y Genética Molecular Facultad de CC. de la Salud, Universidad Rey Juan Carlos, Madrid, Spain (R.P.).
Abstract:
Hyperaldosteronism and hypertension were unexpected side effects observed in trials of torcetrapib, a cholesteryl ester-transfer protein (CETP) inhibitor that increases high-density lipoprotein. Given that CETP inhibitors are lipid soluble, accumulate in adipose tissue, and have binding sites for proteins involved in adipogenesis, and that adipocytes are a source of aldosterone, we questioned whether CETP inhibitors (torcetrapib, dalcetrapib, and anacetrapib) influence aldosterone production by adipocytes. Studies were performed using human adipocytes (SW872), which express CETP, and mouse adipocytes (3T3-L1), which lack the CETP gene. Torcetrapib, dalcetrapib, and anacetrapib increased expression of CYP11B2, CYP11B1, and steroidogenic acute regulatory protein, enzymes involved in mineralocorticoid and glucocorticoid generation. These effects were associated with increased reactive oxygen species formation. Torcetrapib, dalcetrapib, and anacetrapib upregulated signal transducer and activator of transcription 3 (STAT3) and peroxisome proliferation-activated receptor-γ, important in adipogenesis, but only torcetrapib stimulated production of chemerin, a proinflammatory adipokine. To determine mechanisms whereby CETP inhibitors mediate effects, cells were pretreated with inhibitors of Nox1/Nox4 [GKT137831; 2-(2-chlorophenyl)-4-[3-(dimethylamino)phenyl]-5-methyl-1H-pyrazolo[4,3-c]pyridine-3,6(2H,5H)-dione], Nox1 (ML171 [2-acetylphenothiazine]), mitochondria (rotenone), and STAT3 (S3I-201 [2-hydroxy-4-(((4-methylphenyl)sulfonyloxy)acetyl)amino)-benzoic acid]). In torcetrapib-stimulated cells, Nox inhibitors, rotenone, and S3I-201 downregulated CYP11B2 and steroidogenic acute regulatory protein and reduced aldosterone. Dalcetrapib and anacetrapib effects on aldosterone were variably blocked by GKT137831, ML171, rotenone, and S3I-201. In adipocytes, torcetrapib, dalcetrapib, and anacetrapib inhibit enzymatic pathways responsible for aldosterone production through Nox1/Nox4- and mitochondrial-generated reactive oxygen species and STAT3. CETP inhibitors also influence adipokine production. These processes may be CETP independent. Our findings identify novel adipocyte-related mechanisms whereby CETP inhibitors increase aldosterone production. Such phenomena may contribute to hyperaldosteronism observed in CETP inhibitor clinical trials.
Insights
Cholesteryl ester-transfer protein (CETP) inhibitors like torcetrapib can increase aldosterone production in adipocytes by affecting reactive oxygen species and STAT3 pathways. This may explain hyperaldosteronism observed in clinical trials.
Area of Science:
- Endocrinology
- Cardiovascular Pharmacology
- Adipocyte Biology
Background:
- Hyperaldosteronism and hypertension are known side effects of cholesteryl ester-transfer protein (CETP) inhibitors.
- CETP inhibitors are lipid-soluble, accumulate in adipose tissue, and may influence adipogenesis.
- Adipocytes are a potential source of aldosterone.
Purpose of the Study:
- To investigate whether CETP inhibitors (torcetrapib, dalcetrapib, anacetrapib) affect aldosterone production by adipocytes.
- To elucidate the mechanisms underlying CETP inhibitor-induced aldosterone production.
- To explore the role of reactive oxygen species (ROS) and STAT3 signaling in these effects.
Main Methods:
- Experiments were conducted using human SW872 and mouse 3T3-L1 adipocytes.
- CETP inhibitors were administered, and expression of key enzymes (CYP11B2, CYP11B1, steroidogenic acute regulatory protein) was measured.
- ROS production, STAT3 activation, and adipokine levels were assessed.
- Cells were pretreated with inhibitors of Nox1/Nox4, mitochondria, and STAT3 to determine mechanisms.
Main Results:
- Torcetrapib, dalcetrapib, and anacetrapib increased expression of aldosterone- and glucocorticoid-generating enzymes and ROS production.
- CETP inhibitors upregulated STAT3 and peroxisome proliferation-activated receptor-γ.
- Inhibition of Nox, mitochondria, or STAT3 pathways reduced aldosterone production induced by CETP inhibitors.
Conclusions:
- CETP inhibitors increase aldosterone production in adipocytes via ROS and STAT3 signaling pathways.
- These effects may contribute to hyperaldosteronism observed in clinical trials of CETP inhibitors.
- The observed mechanisms might be independent of CETP activity.
More Related Videos
Related Concept Videos
Lipid-Lowering Drugs: Statins and Miscellaneous Agents
GPCRs Regulate Adenylyl Cylase Activity
Transducer Mechanism: Nuclear Receptors
About 48 different soluble family members of nuclear receptors are identified that can be divided into two main classes:
Regulation of Nuclear Protein Sorting
cAMP-dependent Protein Kinase Pathways
Receptor-mediated Endocytosis

