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HDL biology

Hibernating brown bears raise CETP activity by 36% to stabilize HDL lipid composition and avoid atherogenic dyslipidemia (Sci Rep 2021)

Original title: Hibernating brown bears are protected against atherogenic dyslipidemia

Sci Rep · · 7

Giroud S, Chery I, Arrivé M, Prost M, Zumsteg J, Heintz D, Evans AL, Gauquelin-Koch G, Arnemo JM, Swenson JE, Lefai E, Bertile F et al.

Studying free-ranging Scandinavian brown bears captured in winter and summer, lipoprotein sizes and subclasses, triglyceride-related plasma enzyme activities, muscle lipid composition, and plasma antioxidant and inflammatory markers were measured. Although hibernating bears raised nearly all lipid levels, a 36% higher cholesteryl ester transfer protein activity stabilized the lipid composition of HDL. Levels of the inflammatory metabolites 7-ketocholesterol and 11beta-prostaglandin F2alpha declined in winter and correlated inversely with cardioprotective HDL2b proportions and HDL sizes, which increased during hibernation. Lower muscle cholesterol concentrations and lecithin-cholesterol acyltransferase activity in winter suggest hibernating bears tightly controlled peripheral cholesterol synthesis and release, while greater plasma antioxidant capacities prevented excessive lipid oxidative damage.

Read the paper (DOI)PubMed

Original abstract

To investigate mechanisms by which hibernators avoid atherogenic hyperlipidemia during hibernation, we assessed lipoprotein and cholesterol metabolisms of free-ranging Scandinavian brown bears (Ursus arctos). In winter- and summer-captured bears, we measured lipoprotein sizes and sub-classes, triglyceride-related plasma-enzyme activities, and muscle lipid composition along with plasma-levels of antioxidant capacities and inflammatory markers. Although hibernating bears increased nearly all lipid levels, a 36%-higher cholesteryl-ester transfer-protein activity allowed to stabilize lipid composition of high-density lipoproteins (HDL). Levels of inflammatory metabolites, i.e., 7-ketocholesterol and 11ß-prostaglandin F2α, declined in winter and correlated inversely with cardioprotective HDL2b-proportions and HDL-sizes that increased during hibernation. Lower muscle-cholesterol concentrations and lecithin-cholesterol acyltransferase activity in winter suggest that hibernating bears tightly controlled peripheral-cholesterol synthesis and/or release. Finally, greater plasma-antioxidant capacities prevented excessive lipid-specific oxidative damages in plasma and muscles of hibernating bears. Hence, the brown bear manages large lipid fluxes during hibernation, without developing adverse atherogenic effects that occur in humans and non-hibernators.

HDL biologymechanisms

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