HDL biology
CETP-overexpressing transgenic rabbits show more macrophage foam cells despite unchanged lesion area (Mediators Inflamm 2017)
Original title: Overexpression of Cholesteryl Ester Transfer Protein Increases Macrophage-Derived Foam Cell Accumulation in Atherosclerotic Lesions of Transgenic Rabbits
To test how CETP influences atherosclerosis, researchers generated transgenic rabbits overexpressing the human CETP gene and fed them a high-cholesterol diet for 16 weeks alongside non-transgenic littermates. Overexpression of human CETP did not significantly change the gross atherosclerotic lesion area, total cholesterol, or LDL cholesterol, but it significantly increased the number of macrophages within lesions, lowered plasma HDL cholesterol, and increased triglycerides. The findings suggest human CETP promotes atherosclerosis mainly by lowering HDL-C and increasing macrophage-derived foam cell accumulation rather than by enlarging plaque area.
Original abstract
High levels of plasma high-density lipoprotein-cholesterol (HDL-C) are inversely associated with the risk of atherosclerosis and other cardiovascular diseases; thus, pharmacological inhibition of cholesteryl ester transfer protein (CETP) is considered to be a therapeutic method of raising HDL-C levels. However, many CETP inhibitors have failed to achieve a clinical benefit despite raising HDL-C. In the study, we generated transgenic (Tg) rabbits that overexpressed the human CETP gene to examine the influence of CETP on the development of atherosclerosis. Both Tg rabbits and their non-Tg littermates were fed a high cholesterol diet for 16 weeks. Plasma lipids and body weight were measured every 4 weeks. Gross lesion areas of the aortic atherosclerosis along with lesional cellular components were quantitatively analyzed. Overexpression of human CETP did not significantly alter the gross atherosclerotic lesion area, but the number of macrophages in lesions was significantly increased. Overexpression of human CETP did not change the plasma levels of total cholesterol or low-density lipoprotein cholesterol but lowered plasma HDL-C and increased triglycerides. These data revealed that human CETP may play an important role in the development of atherosclerosis mainly by decreasing HDL-C levels and increasing the accumulation of macrophage-derived foam cells.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.