HDL biology
Swapping hamster CETP for human CETP cuts HDL by 60% and boosts hepatic cholesterol 1.8-fold in a human-like hamster model (J Lipid Res 2021)
Original title: The lipid substrate preference of CETP controls the biochemical properties of HDL in fat/cholesterol-fed hamsters
In fat/cholesterol-fed hamsters, which have a human-like lipoprotein profile, adenoviruses expressing no cholesteryl ester transfer protein (CETP), hamster CETP, or human CETP were used to test how CETP substrate preference for cholesteryl ester versus triglyceride affects lipoprotein metabolism. Total plasma CETP mass increased up to 70% in both CETP-expressing groups, and human CETP expression suppressed endogenous hamster CETP, yielding a cholesteryl-ester-to-triglyceride preference similar to that in humans. Hamster CETP overexpression had little effect on lipoproteins, whereas human CETP expression reduced HDL by 60% without affecting LDL, leaving HDL triglyceride-enriched, cholesteryl-ester-depleted, and much smaller, with a threefold increase in the HDL3-to-HDL2 ratio. HDL from human-CETP hamsters supported higher LCAT activity and greater cholesterol efflux, and hepatic cholesterol mass increased 1.8-fold, showing that CETP substrate preference selectively alters HDL concentration and function.
Original abstract
Cholesteryl ester transfer protein (CETP) modulates lipoprotein metabolism by transferring cholesteryl ester (CE) and triglyceride (TG) between lipoproteins. However, differences in the way CETP functions exist across species. Unlike human CETP, hamster CETP prefers TG over CE as a substrate, raising questions regarding how substrate preference may impact lipoprotein metabolism. To understand how altering the CE versus TG substrate specificity of CETP might impact lipoprotein metabolism in humans, we modified CETP expression in fat/cholesterol-fed hamsters, which have a human-like lipoprotein profile. Hamsters received adenoviruses expressing no CETP, hamster CETP, or human CETP. Total plasma CETP mass increased up to 70% in the hamster and human CETP groups. Hamsters expressing human CETP exhibited decreased endogenous hamster CETP, resulting in an overall CE:TG preference of plasma CETP that was similar to that in humans. Hamster CETP overexpression had little impact on lipoproteins, whereas human CETP expression reduced HDL by 60% without affecting LDL. HDLs were TG enriched and CE depleted and much smaller, causing the HDL3:HDL2 ratio to increase threefold. HDL from hamsters expressing human CETP supported higher LCAT activity and greater cholesterol efflux. The fecal excretion of HDL-associated CE in human CETP animals was unchanged. However, much of this cholesterol accumulated in the liver and was associated with a 1.8-fold increase in hepatic cholesterol mass. Overall, these data show in a human-like lipoprotein model that modification of CETP's lipid substrate preference selectively alters HDL concentration and function. This provides a powerful tool for modulating HDL metabolism and impacting sterol balance in vivo.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.