Literature DB >> 22611083

Insulin resistance improves metabolic and contractile efficiency in stressed rat heart.

Romain Harmancey1, Truong N Lam, Genna M Lubrano, Patrick H Guthrie, Deborah Vela, Heinrich Taegtmeyer.   

Abstract

Insulin resistance is a prominent feature in heart failure, while hyperglycemia impairs cardiac contraction. We propose that decreased insulin-mediated glucose uptake by the heart preserves cardiac function in response to metabolic and hemodynamic stress. To test this hypothesis, we fed rats a high-sucrose diet (HSD). Energy substrate metabolism and cardiac work were determined ex vivo in a sequential protocol simulating metabolic and hemodynamic stress. Compared to chow-fed, control rats, HSD impaired myocardial insulin responsiveness and induced profound metabolic changes in the heart, characterized by reduced rates of glucose uptake (7.91 ± 0.30 vs. 10.73 ± 0.67 μmol/min/g dry weight; P<0.001) but increased rates of glucose oxidation (2.38 ± 0.17 vs. 1.50 ± 0.15 μmol/min/g dry weight; P<0.001) and oleate oxidation (2.29 ± 0.11 vs. 1.96 ± 0.12 μmol/min/g dry weight; P<0.05). Tight coupling of glucose uptake and oxidation and improved cardiac efficiency were associated with a reduction in glucose 6-phosphate and oleoyl-CoA levels, as well as a reduction in the content of uncoupling protein 3. Our results suggest that insulin resistance lessens fuel toxicity in the stressed heart. This calls for a new exploration of the mechanisms regulating substrate uptake and oxidation in the insulin-resistant heart.

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Year:  2012        PMID: 22611083      PMCID: PMC3405268          DOI: 10.1096/fj.12-208991

Source DB:  PubMed          Journal:  FASEB J        ISSN: 0892-6638            Impact factor:   5.191


  23 in total

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Review 4.  Elevated dietary sugar and the heart: experimental models and myocardial remodeling.

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Authors:  Romain Harmancey; Hernan G Vasquez; Patrick H Guthrie; Heinrich Taegtmeyer
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6.  Methods for the Determination of Rates of Glucose and Fatty Acid Oxidation in the Isolated Working Rat Heart.

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Review 7.  Insulin resistance protects the heart from fuel overload in dysregulated metabolic states.

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Review 10.  Insulin resistance and hyperinsulinaemia in diabetic cardiomyopathy.

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