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An amino acid mixture improves glucose tolerance and lowers insulin resistance in the obese Zucker rat
Authors:Jeffrey R Bernard  Yi-Hung Liao  Zhenping Ding  Daisuke Hara  Maximilian Kleinert  Jeffrey L Nelson  John L Ivy
Institution:1. Department of Biology, Saint Mary’s College of California, 1928 Saint Mary’s Road, Moraga, CA, 94556, USA
2. Exercise Physiology and Metabolism Laboratory, Department of Kinesiology and Health Education, University of Texas at Austin, Austin, TX, 78712, USA
4. Department of Exercise and Health Science, National Taipei University of Nursing and Health Sciences, Taipei, 112, Taiwan
3. Abbott Nutrition, Abbott Laboratories, Columbus, OH, 43215, USA
Abstract:The purpose of this investigation was to test an amino acid mixture on glucose tolerance in obese Zucker rats experiment (Exp)-1] and determine whether differences in blood glucose were associated with alterations in muscle glucose uptake experiment (Exp)-2]. Exp-1 rats were gavaged with either carbohydrate (OB-CHO), carbohydrate plus amino acid mixture (OB-AA-1), carbohydrate plus amino acid mixture with increased leucine concentration (OB-AA-2) or water (OB-PLA). The glucose response in OB-AA-1 and OB-AA-2 were similar, and both were lower compared to OB-CHO. This effect of the amino acid mixtures did not appear to be solely attributable to an increase in plasma insulin. Rats in Exp-2 were gavaged with carbohydrate (OB-CHO), carbohydrate plus amino acid mixture (OB-AA-1) or water (OB-PLA). Lean Zuckers were gavaged with carbohydrate (LN-CHO). Fifteen minutes after gavage, a radiolabeled glucose analog was infused through a catheter previously implanted in the right jugular vein. Blood glucose was significantly lower in OB-AA-1 compared to OB-CHO while the insulin responses were similar. Glucose uptake was greater in OB-AA-1 compared with OB-CHO, and similar to that in LN-CHO in red gastrocnemius muscle (5.15 ± 0.29, 3.8 ± 0.27, 5.18 ± 0.34 µmol/100 g/min, respectively). Western blot analysis showed that Akt substrate of 160 kDa (AS160) phosphorylation was enhanced for OB-AA-1 and LN-CHO compared to OB-CHO. These findings suggest that an amino acid mixture improves glucose tolerance in an insulin resistant model and that these improvements are associated with an increase in skeletal muscle glucose uptake possibly due to improved intracellular signaling.
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