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HDL biology

Bone marrow-derived hepatic lipase mitigates the HDL-lowering effect of bone marrow-derived CETP in double-knockout mice (J Lipid Res 2014)

Original title: Bone marrow-derived HL mitigates bone marrow-derived CETP-mediated decreases in HDL in mice globally deficient in HL and the LDLr

J Lipid Res · · 7

Hime NJ, Black AS, Bonnet DJ, Curtiss LK

To determine the combined effects of hepatic lipase (HL) and cholesteryl ester transfer protein (CETP), both derived exclusively from bone marrow, on plasma lipids in high-fat-fed, atherosclerosis-prone mice, bone marrow expressing HL alone, CETP and HL together, CETP alone, or neither protein was transferred into male and female HL-deficient, LDL-receptor-deficient mice. After high-fat feeding, plasma HDL cholesterol was markedly decreased in mice with bone-marrow-derived CETP but not HL (17 +/- 4 and 19 +/- 3 mg/dl in females and males) compared with mice with neither protein (87 +/- 3 and 95 +/- 4 mg/dl; P < 0.001 for both sexes). In female mice, bone-marrow-derived HL mitigated this CETP-mediated HDL decrease, along with the CETP-driven reduction in HDL cholesterol content and increase in plasma cholesterol, while atherosclerosis did not differ significantly between chimeras.

Read the paper (DOI)PubMed

Original abstract

The objective of this study was to determine the combined effects of HL and cholesteryl ester transfer protein (CETP), derived exclusively from bone marrow (BM), on plasma lipids and atherosclerosis in high-fat-fed, atherosclerosis-prone mice. We transferred BM expressing these proteins into male and female double-knockout HL-deficient, LDL receptor-deficient mice (HL(-/-)LDLr(-/-)). Four BM chimeras were generated, where BM-derived cells expressed 1) HL but not CETP, 2) CETP and HL, 3) CETP but not HL, or 4) neither CETP nor HL. After high-fat feeding, plasma HDL-cholesterol (HDL-C) was decreased in mice with BM expressing CETP but not HL (17 ± 4 and 19 ± 3 mg/dl, female and male mice, respectively) compared with mice with BM expressing neither CETP nor HL (87 ± 3 and 95 ± 4 mg/dl, female and male mice, respectively, P < 0.001 for both sexes). In female mice, the presence of BM-derived HL mitigated this CETP-mediated decrease in HDL-C. BM-derived CETP decreased the cholesterol component of HDL particles and increased plasma cholesterol. BM-derived HL mitigated these effects of CETP. Atherosclerosis was not significantly different between BM chimeras. These results suggest that BM-derived HL mitigates the HDL-lowering, HDL-modulating, and cholesterol-raising effects of BM-derived CETP and warrant further studies to characterize the functional properties of these protein interactions.

HDL biology

Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.