Mechanisms
LXR agonists raise LDL cholesterol in CETP-expressing hamsters and monkeys, an effect invisible in CETP-lacking mice (J Lipid Res 2005)
Original title: Synthetic LXR agonists increase LDL in CETP species
Because mice lack cholesteryl ester transfer protein (CETP), a known target gene of liver X receptor (LXR) agonists, and upregulate cholesterol 7alpha-hydroxylase unlike humans, researchers tested two synthetic LXR agonists in hamsters and cynomolgus monkeys, species that express CETP, to better predict human responses. Unlike earlier mouse studies, neither LXR agonist raised HDL cholesterol in hamsters or monkeys; instead, in both CETP-expressing species, the agonists raised LDL cholesterol, an unfavorable effect not apparent from prior murine data. The authors conclude these findings reveal additional liabilities of current synthetic LXR agonists and underscore the importance of testing compounds in preclinical species with more human-like CETP expression and lipoprotein metabolism than mice.
Original abstract
Liver X receptor (LXR) nuclear receptors regulate the expression of genes involved in whole body cholesterol trafficking, including absorption, excretion, catabolism, and cellular efflux, and possess both anti-inflammatory and antidiabetic actions. Accordingly, LXR is considered an appealing drug target for multiple indications. Synthetic LXR agonists demonstrated inhibition of atherosclerosis progression in murine genetic models; however, these and other studies indicated that their major undesired side effect is an increase of plasma and hepatic triglycerides. A significant impediment to extrapolating results with LXR agonists from mouse to humans is the absence in mice of cholesteryl ester transfer protein, a known LXR target gene, and the upregulation in mice but not humans of cholesterol 7alpha-hydroxylase. To better predict the human response to LXR agonism, two synthetic LXR agonists were examined in hamsters and cynomolgus monkeys. In contrast to previously published results in mice, neither LXR agonist increased HDL-cholesterol in hamsters, and similar results were obtained in cynomolgus monkeys. Importantly, in both species, LXR agonists increased LDL-cholesterol, an unfavorable effect not apparent from earlier murine studies. These results reveal additional problems associated with current synthetic LXR agonists and emphasize the importance of profiling compounds in preclinical species with a more human-like LXR response and lipoprotein metabolism.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.