Direct Renin Inhibition Improves Systemic Insulin Resistance and Skeletal Muscle Glucose Transport in a Transgenic Rodent Model of Tissue Renin Overexpression
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- Guido Lastra
- Department of Internal Medicine (G.L., J.H., A.T.W.-C., C.M., M.R.H., J.R., K.P., J.R.S.), University of Missouri-Columbia School of Medicine, Columbia, Missouri 65212
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- Javad Habibi
- Department of Internal Medicine (G.L., J.H., A.T.W.-C., C.M., M.R.H., J.R., K.P., J.R.S.), University of Missouri-Columbia School of Medicine, Columbia, Missouri 65212
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- Adam T. Whaley-Connell
- Department of Internal Medicine (G.L., J.H., A.T.W.-C., C.M., M.R.H., J.R., K.P., J.R.S.), University of Missouri-Columbia School of Medicine, Columbia, Missouri 65212
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- Camila Manrique
- Department of Internal Medicine (G.L., J.H., A.T.W.-C., C.M., M.R.H., J.R., K.P., J.R.S.), University of Missouri-Columbia School of Medicine, Columbia, Missouri 65212
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- Melvin R. Hayden
- Department of Internal Medicine (G.L., J.H., A.T.W.-C., C.M., M.R.H., J.R., K.P., J.R.S.), University of Missouri-Columbia School of Medicine, Columbia, Missouri 65212
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- Jenna Rehmer
- Department of Internal Medicine (G.L., J.H., A.T.W.-C., C.M., M.R.H., J.R., K.P., J.R.S.), University of Missouri-Columbia School of Medicine, Columbia, Missouri 65212
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- Kamlesh Patel
- Department of Internal Medicine (G.L., J.H., A.T.W.-C., C.M., M.R.H., J.R., K.P., J.R.S.), University of Missouri-Columbia School of Medicine, Columbia, Missouri 65212
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- Carlos Ferrario
- Harry S. Truman Veterans Affairs Medical Center (A.T.W.-C., C.F., J.R.S.), Columbia, Missouri 65201
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- James R. Sowers
- Department of Internal Medicine (G.L., J.H., A.T.W.-C., C.M., M.R.H., J.R., K.P., J.R.S.), University of Missouri-Columbia School of Medicine, Columbia, Missouri 65212
書誌事項
- 公開日
- 2009-02-26
- DOI
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- 10.1210/en.2008-1391
- 公開者
- The Endocrine Society
この論文をさがす
説明
<jats:p>Renin is the rate-limiting enzyme in renin-angiotensin system (RAS) activation. We sought to determine the impact of renin inhibition on whole-body insulin sensitivity and skeletal muscle RAS, oxidative stress, insulin signaling, and glucose transport in the transgenic TG(mRen2)27 rat (Ren2), which manifests increased tissue RAS activity, elevated serum aldosterone, hypertension, and insulin resistance. Young (aged 6–9 wk) Ren2 and age-matched Sprague Dawley control rats were treated with aliskiren [50 mg/kg · d, ip] or placebo for 21 d and administered an ip glucose tolerance test. Insulin metabolic signaling and 2-deoxyglucose uptake in soleus muscle were examined in relation to tissue renin-angiotensin-aldosterone system [angiotensin (Ang) II, mineralocorticoid receptor (MR), and Ang type I receptor (AT1R)] and measures of oxidative stress as well as structural changes evaluated by light and transmission electron microscopy. Ren2 rats demonstrated systemic insulin resistance with decreased skeletal muscle insulin metabolic signaling and glucose uptake. This was associated with increased Ang II, MR, AT1R, oxidative stress, and reduced tyrosine insulin receptor substrate-1 phosphorylation, protein kinase B/(Akt) phosphorylation and glucose transporter-4 immunostaining. The Ren2 also demonstrated perivascular fibrosis and mitochondrial remodeling. Renin inhibition improved systemic insulin sensitivity, insulin metabolic signaling, and glucose transport along with normalization of Ang II, AT1R, and MR levels, oxidative stress markers, fibrosis, and mitochondrial structural abnormalities. Our data suggest that renin inhibition improves systemic insulin sensitivity, skeletal muscle insulin metabolic signaling, and glucose transport in Ren2 rats. This is associated with reductions in skeletal muscle tissue Ang II, AT1R, and MR expression; oxidative stress; fibrosis; and mitochondrial abnormalities.</jats:p>
収録刊行物
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- Endocrinology
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Endocrinology 150 (6), 2561-2568, 2009-02-26
The Endocrine Society

