HDL biology
Bone marrow-derived CETP alone drives a proatherogenic lipid profile and 1.8-fold more atherosclerosis, and Kupffer cells supply half of hepatic CETP, in LDL receptor knockout mice (Circ Res 2007)
Original title: Important role for bone marrow-derived cholesteryl ester transfer protein in lipoprotein cholesterol redistribution and atherosclerotic lesion development in LDL receptor knockout mice
To investigate the role of macrophage-derived cholesteryl ester transfer protein (CETP) in atherosclerosis, LDL receptor knockout mice were transplanted with bone marrow from CETP transgenic mice. CETP production by bone marrow-derived cells induced a 1.8-fold increase in atherosclerotic lesion development (P < 0.01), coinciding with increased VLDL/LDL cholesterol and decreased HDL cholesterol, driven by substantial serum CETP activity and mass (38 +/- 3 nmol/mL/h and 4.8 +/- 0.5 microg/mL) from bone-marrow-derived cells. Conversely, specifically disrupting bone-marrow-derived CETP production in CETP transgenic mice reduced serum CETP activity and mass approximately 2-fold (P < 0.0001). Liver Kupffer cells were found to contribute approximately 50% of total hepatic CETP expression. This study shows for the first time that bone-marrow-derived CETP is an important contributor to total serum CETP activity and mass, and that it promotes atherosclerotic lesion development.
Original abstract
Abundant amounts of cholesteryl ester transfer protein (CETP) are found in macrophage-derived foam cells in the arterial wall, but its function in atherogenesis is unknown. To investigate the role of macrophage CETP in atherosclerosis, LDL receptor knockout mice were transplanted with bone marrow from CETP transgenic mice, which express the human CETP transgene under control of its natural promoter and major regulatory elements. CETP production by bone marrow-derived cells induced a 1.8-fold (P<0.01) increase in atherosclerotic lesion development. The increase in lesion size coincided with an increase in VLDL/LDL cholesterol and a decrease in HDL cholesterol. The cholesterol redistribution in serum was a direct effect of the substantial serum CETP activity and mass (38+/-3 nmol/mL/h and 4.8+/-0.5 microg/mL, respectively) induced by CETP production by bone marrow-derived cells. Conversely, specific disruption of CETP production by bone marrow-derived cells in CETP transgenic mice resulted in a approximately 2-fold (P<0.0001) reduction in serum CETP activity and mass, demonstrating the quantitative relevance of bone marrow-derived CETP. Finally, we show that in liver Kupffer cells, hepatic macrophages, contribute approximately 50% to the total hepatic CETP expression. In conclusion, bone marrow-derived CETP induces a proatherogenic lipoprotein profile and promotes the development of atherosclerotic lesions in LDL receptor knockout mice. Most importantly, we show for the first time that bone marrow-derived CETP is an important contributor to total serum CETP activity and mass.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.