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Myriocin slows the progression of established atherosclerotic lesions in apolipoprotein E gene knockout mice

journal contribution
posted on 2024-11-14, 21:04 authored by Elias N Glaros, Woojin Scott Kim, C M Quinn, W Jessup, Kerry-Anne Rye, Brett Garner
The serine palmitoyl transferase inhibitor myriocin potently suppresses the development of atherosclerosis in apolipoprotein E (apoE) gene knockout (apoE-/-) mice fed a high-fat diet. This is associated with reduced plasma sphingomyelin (SM) and glycosphingolipid levels. Furthermore, oral administration of myriocin decreases plasma cholesterol and triglyceride (TG) levels. Here, we aimed to determine whether myriocin could inhibit the progression (or stimulate the regression) of established atherosclerotic lesions and to examine potential changes in hepatic and plasma lipid concentrations. Adult apoE-/- mice were fed a high-fat diet for 30 days, and lesion formation was histologically confirmed. Replicate groups of mice were then transferred to either regular chow or chow containing myriocin (0.3 mg/kg/day) and maintained for a further 60 days. Myriocin significantly inhibited the progression of established atherosclerosis when combined lesion areas (aortic sinus, arch, and celiac branch point) were measured. Although the inhibition of lesion progression was observed mainly in the distal regions of the aorta, regression of lesion size was not detected. The inhibition of lesion progression was associated with reductions in hepatic and plasma SM, cholesterol, and TG levels and increased hepatic and plasma apoA-I levels, indicating that the modulation of pathways associated with several classes of atherogenic lipids may be involved. Copyright ©2008 by the American Society for Biochemistry and Molecular Biology, Inc.

History

Citation

Glaros, E. N., Kim, W., Quinn, C., Jessup, W., Rye, K. & Garner, B. (2008). Myriocin slows the progression of established atherosclerotic lesions in apolipoprotein E gene knockout mice. Journal of Lipid Research, 49 (2), 324-331.

Journal title

Journal of Lipid Research

Volume

49

Issue

2

Pagination

324-331

Language

English

RIS ID

39016

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