Genetics
CETP found directly inside atherosclerotic plaque foam cells, revealing an anti-atherogenic role in cholesterol removal at the earliest step of reverse transport (Atherosclerosis 2001)
Original title: Expression of cholesteryl ester transfer protein in human atherosclerotic lesions and its implication in reverse cholesterol transport
Since CETP had previously been shown, through clinical studies of genetic CETP deficiency, to play a crucial role in reverse cholesterol transport (RCT), but little was known about its expression at the earliest step of RCT in blood vessel macrophages, this study performed immunohistochemical analysis of CETP expression in human atherosclerotic lesions. CETP protein was abundantly detected in foam cells within human aortic and coronary atherosclerotic lesions, but not in normal arterial wall, with most CETP-positive foam cells derived from macrophages and a minor population from smooth muscle cells. Transient CETP transfection into COS-7 cells substantially increased HDL-mediated free cholesterol efflux without affecting HDL-lipid uptake, while free cholesterol efflux from macrophages of CETP-deficient subjects was significantly decreased compared to normal subjects. The authors conclude CETP expressed in macrophages within atherosclerotic lesions may have an anti-atherogenic function removing cholesterol from cells.
Original abstract
Reverse cholesterol transport (RCT) is the major protective system against atherosclerosis. In this system, cholesteryl ester transfer protein (CETP) is known to facilitate the transfer of neutral lipids between lipoproteins in plasma. We reported the pathophysiological significance of CETP by clinical studies with genetic CETP deficiency, showing that this protein plays a crucial role in the RCT system. However, information about the expression of this protein in the initial step of RCT, macrophages (Mphi) in the blood vessels, is still very limited. In the present study, we have performed immunohistochemical analyses on the expression of CETP in human atherosclerotic lesions. The immunoreactive mass of CETP was abundantly detected in foam cells in human aortic and coronary atherosclerotic lesions, but not in the normal arterial wall. A double immunostaining showed that the majority of CETP-positive foam cells were derived from Mphi and a minor population appeared to derive from smooth muscle cells. Transient transfection of CETP cDNA into COS-7 cells showed that high density lipoprotein (HDL)-mediated efflux of free cholesterol from the cells expressing CETP was much higher than that from mock-transfected cells, while uptake of HDL-lipids was not affected in cells transfected with CETP cDNA. Efflux of free cholesterol from the Mphi obtained from CETP deficiency was significantly decreased compared with that from normal subjects. These data indicate that CETP is expressed in Mphi in the atherosclerotic lesions and may possess an anti-atherogenic function to remove cholesterol from the cells, suggesting another role of CETP at the initial step of RCT.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.