11β-HSD1 inhibition ameliorates metabolic syndrome and prevents progression of atherosclerosis in mice

Author:

Hermanowski-Vosatka Anne1,Balkovec James M.1,Cheng Kang1,Chen Howard Y.1,Hernandez Melba1,Koo Gloria C.1,Le Grand Cheryl B.1,Li Zhihua1,Metzger Joseph M.1,Mundt Steven S.1,Noonan Heather1,Nunes Christian N.1,Olson Steven H.1,Pikounis Bill1,Ren Ning1,Robertson Nancy1,Schaeffer James M.1,Shah Kashmira1,Springer Martin S.1,Strack Alison M.1,Strowski Matthias1,Wu Kenneth1,Wu TsueiJu1,Xiao Jianying1,Zhang Bei B.1,Wright Samuel D.1,Thieringer Rolf1

Affiliation:

1. Merck Research Laboratories, Merck and Company, Rahway, NJ 07065

Abstract

The enzyme 11β–hydroxysteroid dehydrogenase (HSD) type 1 converts inactive cortisone into active cortisol in cells, thereby raising the effective glucocorticoid (GC) tone above serum levels. We report that pharmacologic inhibition of 11β-HSD1 has a therapeutic effect in mouse models of metabolic syndrome. Administration of a selective, potent 11β-HSD1 inhibitor lowered body weight, insulin, fasting glucose, triglycerides, and cholesterol in diet-induced obese mice and lowered fasting glucose, insulin, glucagon, triglycerides, and free fatty acids, as well as improved glucose tolerance, in a mouse model of type 2 diabetes. Most importantly, inhibition of 11β-HSD1 slowed plaque progression in a murine model of atherosclerosis, the key clinical sequela of metabolic syndrome. Mice with a targeted deletion of apolipoprotein E exhibited 84% less accumulation of aortic total cholesterol, as well as lower serum cholesterol and triglycerides, when treated with an 11β-HSD1 inhibitor. These data provide the first evidence that pharmacologic inhibition of intracellular GC activation can effectively treat atherosclerosis, the key clinical consequence of metabolic syndrome, in addition to its salutary effect on multiple aspects of the metabolic syndrome itself.

Publisher

Rockefeller University Press

Subject

Immunology,Immunology and Allergy

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