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Torcetrapib

CETP inhibition alone fails to boost reverse cholesterol transport in hamsters unless paired with the LDL-lowering drug berberine (Arterioscler Thromb Vasc Biol 2013)

Original title: Upregulating reverse cholesterol transport with cholesteryl ester transfer protein inhibition requires combination with the LDL-lowering drug berberine in dyslipidemic hamsters

Arterioscler Thromb Vasc Biol · · 6

Briand F, Thieblemont Q, Muzotte E, Sulpice T

Researchers tested whether CETP inhibition promotes reverse cholesterol transport in vivo in dyslipidemic hamsters, tracked using intravenously injected tritium-labeled oxidized LDL particles cleared by liver macrophages. In hamsters made dyslipidemic with a high-fat, high-fructose diet, torcetrapib 30 mg per kg over 2 weeks raised apolipoprotein E-rich HDL levels and increased tracer appearance in HDL by 30% over 72 hours, but did not change tracer recovery in liver or feces, indicating that cholesterol uptake and excretion from apolipoprotein E-rich HDL was not stimulated. Combining torcetrapib with the LDL receptor-upregulating drug berberine (150 mg per kg) lowered apolipoprotein E-rich HDL levels compared with torcetrapib alone, but significantly increased tracer appearance in fecal cholesterol by 109%, showing that CETP inhibition alone does not drive reverse cholesterol transport in this model and requires the added LDL-lowering effect of berberine.

Read the paper (DOI)PubMed

Original abstract

Objective: This study aimed to investigate whether cholesteryl ester transfer protein inhibition promotes in vivo reverse cholesterol transport in dyslipidemic hamsters.

Methods And Results: In vivo reverse cholesterol transport was measured after an intravenous injection of (3)H-cholesteryl-oleate-labeled/oxidized low density lipoprotein particles ((3)H-oxLDL), which are rapidly cleared from plasma by liver-resident macrophages for further (3)H-tracer egress in plasma, high density lipoprotein (HDL), liver, and feces. A first set of hamsters made dyslipidemic with a high-fat and high-fructose diet was treated with vehicle or torcetrapib 30 mg/kg (TOR) over 2 weeks. Compared with vehicle, TOR increased apolipoprotein E-rich HDL levels and significantly increased (3)H-tracer appearance in HDL by 30% over 72 hours after (3)H-oxLDL injection. However, TOR did not change (3)H-tracer recovery in liver and feces, suggesting that uptake and excretion of cholesterol deriving from apolipoprotein E-rich HDL is not stimulated. As apoE is a potent ligand for the LDL receptor, we next evaluated the effects of TOR in combination with the LDL-lowering drug berberine, which upregulates LDL receptor expression in dyslipidemic hamsters. Compared with TOR alone, treatment with TOR+berberine 150 mg/kg resulted in lower apolipoprotein E-rich HDL levels. After (3)H-oxLDL injection, TOR+berberine significantly increased (3)H-tracer appearance in fecal cholesterol by 109%.

Conclusions: Our data suggest that cholesteryl ester transfer protein inhibition alone does not stimulate reverse cholesterol transport in dyslipidemic hamsters and that additional effects mediated by the LDL-lowering drug berberine are required to upregulate this process.

HDL biologymechanismstorcetrapib

Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.