Please use this identifier to cite or link to this item: https://hdl.handle.net/2440/129564
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Type: Journal article
Title: Aldosterone deficiency in mice burdens respiration and accentuates diet-induced hyperinsulinemia and obesity
Author: Liao, W.-H.
Suendermann, C.
Steuer, A.
Lopez, G.
Odermatt, A.
Henneberg, M.
Faresse, N.
Langhans, W.
Citation: JCI Insight, 2018; 3(14):1-20
Publisher: JCI Insight
Issue Date: 2018
ISSN: 2379-3708
2379-3708
Statement of
Responsibility: 
Wan-Hui Liao, Claudia Suendermann, Andrea Eva Steuer, Gustavo Pacheco Lopez, Alex Odermatt ... Maciej Henneberg ... et al.
Abstract: Aldosterone synthase inhibitors (ASIs) should alleviate obesity-related cardiovascular and renal problems resulting partly from aldosterone excess, but their clinical use may have limitations. To improve knowledge for the use of ASIs, we investigated physiology in aldosterone synthase–knockout (ASKO) mice. On regular chow diet (CD), ASKO mice ate more and weighed less than WT mice, largely because they hyperventilated to eliminate acid as CO2. Replacing CD with high-fat diet (HFD) lessened the respiratory burden in ASKO mice, as did 12- to 15-hour fasting. The latter eliminated the genotype differences in respiratory workload and energy expenditure (EE). Thus, aldosterone deficiency burdened the organism more when the animals ate carbohydrate-rich chow than when they ate a HFD. Chronic HFD exposure further promoted hyperinsulinemia in ASKO mice that contributed to visceral fat accumulation accompanied by reduced lipolysis, thermogenic reprogramming, and the absence of weight-gain-related EE increases. Intracerebroventricular aldosterone supplementation in ASKO mice attenuated the HFD-induced hyperinsulinemia, but did not affect EE, suggesting that the presence of aldosterone increased the body’s energetic efficiency, thus counteracting the EE-increasing effect of low insulin. ASIs may therefore cause acid-overload-induced respiratory burden and promote obesity. Their use in patients with preexisting renal and cardiopulmonary diseases might be contraindicated.
Keywords: Adipocytes
Feces
Animals
Mice, Knockout
Mice
Hyperinsulinism
Insulin Resistance
Obesity
Hypoaldosteronism
Disease Models, Animal
Aldosterone
Insulin
Plethysmography
Energy Metabolism
Lipolysis
Thermogenesis
Locomotion
Female
Male
Diet, High-Fat
Cytochrome P-450 CYP11B2
Rights: Copyright status unknown.
DOI: 10.1172/jci.insight.99015
Published version: http://dx.doi.org/10.1172/jci.insight.99015
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