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HDL biology

Postprandial lipemia boosts HDL2's cholesterol efflux capacity but raises CETP-mediated transfer and impairs hepatic HDL delivery in type IIB hyperlipidemia (J Lipid Res 2010)

Original title: Postprandial lipemia enhances the capacity of large HDL2 particles to mediate free cholesterol efflux via SR-BI and ABCG1 pathways in type IIB hyperlipidemia

J Lipid Res · · 6

Julia Z, Duchene E, Fournier N, Bellanger N, Chapman MJ, Le Goff W, Guerin M

In 16 subjects with type IIB hyperlipidemia, researchers measured cholesterol efflux, CETP-mediated cholesteryl ester (CE) transfer, and hepatic CE uptake during the postprandial phase. Postprandial large HDL2 showed enhanced capacity for free cholesterol efflux via both SR-BI-dependent (+12%, P less than 0.02) and ABCG1-dependent (+31%, P less than 0.008) pathways, and whole postprandial plasma showed increased ABCA1-dependent efflux (+19%, P less than 0.0003) at 4 and 8 hours. However, postprandial lipemia was simultaneously associated with elevated endogenous CETP-mediated CE transfer from HDL2 to apoB-lipoproteins and a reduced capacity of total HDL to deliver CE to hepatic cells (-17%, P less than 0.02), showing postprandial lipemia has both beneficial (enhanced efflux) and deleterious (impaired hepatic CE delivery, CE-enriched triglyceride-rich particle formation via CETP) effects on HDL function.

Read the paper (DOI)PubMed

Original abstract

Lipid and cholesterol metabolism in the postprandial phase is associated with both quantitative and qualitative remodeling of HDL particle subspecies that may influence their anti-atherogenic functions in the reverse cholesterol transport pathway. We evaluated the capacity of whole plasma or isolated HDL particles to mediate cellular free cholesterol (FC) efflux, cholesteryl ester transfer protein (CETP)-mediated cholesteryl ester (CE) transfer, and selective hepatic CE uptake during the postprandial phase in subjects displaying type IIB hyperlipidemia (n = 16). Postprandial, large HDL2 displayed an enhanced capacity to mediate FC efflux via both scavenger receptor class B type I (SR-BI)-dependent (+12%; P < 0.02) and ATP binding cassette transporter G1 (ABCG1)-dependent (+31%; P < 0.008) pathways in in vitro cell systems. In addition, the capacity of whole postprandial plasma (4 h and 8 h postprandially) to mediate cellular FC efflux via the ABCA1-dependent pathway was significantly increased (+19%; P < 0.0003). Concomitantly, postprandial lipemia was associated with elevated endogenous CE transfer rates from HDL2 to apoB lipoproteins and with attenuated capacity (-17%; P < 0.02) of total HDL to deliver CE to hepatic cells. Postprandial lipemia enhanced SR-BI and ABCG1-dependent efflux to large HDL2 particles. However, postprandial lipemia is equally associated with deleterious features by enhancing formation of CE-enriched, triglyceride-rich lipoprotein particles through the action of CETP and by reducing the direct return of HDL-CE to the liver.

HDL biologymechanisms

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