Mechanisms
A four-week rimonabant intervention in CETP-humanised mice cuts body weight 9.4% and plasma cholesterol 24%, with systems-lipidomics revealing distinct plasma and liver lipid signatures (PLoS One 2011)
Original title: Plasma and liver lipidomics response to an intervention of rimonabant in ApoE*3Leiden.CETP transgenic mice
The anti-obesity drug rimonabant, a cannabinoid-1 receptor blocker, was previously used with diet and exercise in obese patients with risk factors like type 2 diabetes and dyslipidaemia, but its impact on early-obesity lipid metabolism in plasma and liver was less understood. The authors ran a four-week parallel controlled intervention in apolipoprotein E3 Leiden cholesteryl ester transfer protein (ApoE3Leiden.CETP) transgenic mice with mild overweight and hypercholesterolemia, using mass spectrometry-based lipidomics. Rimonabant produced a significant 9.4% body weight loss and a significant 24% reduction in plasma total cholesterol. Six plasma and three liver lipids most significantly responded to treatment, with distinct lipid patterns between treated and untreated mice in both plasma and liver. Rimonabant modestly affected lipid metabolism and body weight in early-obesity ApoE3Leiden.CETP mice.
Original abstract
Background: Lipids are known to play crucial roles in the development of life-style related risk factors such as obesity, dyslipoproteinemia, hypertension and diabetes. The first selective cannabinoid-1 receptor blocker rimonabant, an anorectic anti-obesity drug, was frequently used in conjunction with diet and exercise for patients with a body mass index greater than 30 kg/m(2) with associated risk factors such as type II diabetes and dyslipidaemia in the past. Less is known about the impact of this drug on the regulation of lipid metabolism in plasma and liver in the early stage of obesity.
Methodology/Principal Findings: We designed a four-week parallel controlled intervention on apolipoprotein E3 Leiden cholesteryl ester transfer protein (ApoE*3Leiden.CETP) transgenic mice with mild overweight and hypercholesterolemia. A liquid chromatography-linear ion trap-Fourier transform ion cyclotron resonance-mass spectrometric approach was employed to investigate plasma and liver lipid responses to the rimonabant intervention. Rimonabant was found to induce a significant body weight loss (9.4%, p<0.05) and a significant plasma total cholesterol reduction (24%, p<0.05). Six plasma and three liver lipids in ApoE*3Leiden.CETP transgenic mice were detected to most significantly respond to rimonabant treatment. Distinct lipid patterns between the mice were observed for both plasma and liver samples in rimonabant treatment vs. non-treated controls. This study successfully applied, for the first time, systems biology based lipidomics approaches to evaluate treatment effects of rimonabant in the early stage of obesity.
Conclusion: The effects of rimonabant on lipid metabolism and body weight reduction in the early stage obesity were shown to be moderate in ApoE*3Leiden.CETP mice on high-fat diet.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.