Literature DB >> 1356861

Impact of insulin deficiency on glucose fluxes and muscle glucose metabolism during exercise.

D H Wasserman1, T Mohr, P Kelly, D B Lacy, D Bracy.   

Abstract

Exercise in the insulin-deficient diabetic state is characterized by a further increase in elevated circulating glucose and NEFA levels and by excessive counterregulatory hormone levels. The aim of this study was to distinguish the direct glucoregulatory effects of insulinopenia during exercise from the indirect effects that result from the metabolic and hormonal environment that accompanies insulin deficiency. For this purpose, dogs underwent 90 min of treadmill exercise during SRIF infusion with (SRIF + INS, n = 8) or without (SRIF - INS, n = 6) intraportal insulin replacement. Glucagon was not replaced, thus allowing assessment of the direct effect of insulinopenia at the liver independent of the potentiation of glucagon action. Glucose was infused to maintain euglycemia. Hepatic glucose production (Ra); glucose utilization (Rd); and LGlcU, LGlcE, and LGlcO were assessed with tracers ([3H]glucose, [14C]glucose) and arteriovenous differences. With exercise, insulin fell from 66 +/- 6 to 42 +/- 6 pM in the SRIF + INS group, and was undetectable in the SRIF - INS group. Plasma glucose was 6.33 +/- 0.38 and 6.26 +/- 0.30 mM at rest in the SRIF + INS and SRIF - INS groups, respectively, and was unchanged with exercise. Ra rose from 7.5 +/- 2.3 to 16.5 +/- 2.2 mumol.kg-1.min-1 and 9.1 +/- 2.0 to 31.4 +/- 3.9 mumol.kg-1.min-1 with exercise in the SRIF + INS and SRIF - INS groups, whereas Rd rose from 19.5 +/- 2.0 to 46.8 +/- 3.9 mumol.kg-1.min-1 and 15.1 +/- 1.8 to 29.9 +/- 3.3 mumol.kg-1.min-1. LGlcU rose from 36 +/- 9 to 112 +/- 25 mumol/min and 15 +/- 4 to 59 +/- 13 mumol/min and LGlcO rose from 5 +/- 2 to 61 +/- 12 mumol/min and 5 +/- 3 to 32 +/- 9 mumol/min with exercise in the SRIF+INS and SRIF-INS groups, respectively. Arterial levels and limb balances of NEFAs and glycerol were similar in the two groups. In summary, during exercise: 1) marked insulinopenia attenuates the increases in muscle glucose uptake and oxidation by approximately 50%, independent of changes in circulating metabolic substrate levels; 2) substantial increases in muscle glucose uptake and oxidation are, however, still present even in the absence of detectable insulin levels; and 3) insulinopenia facilitates the increase in Ra, independent of the potentiation of basal glucagon action. In conclusion, marked insulinopenia contributes directly to the exacerbation of glucoregulation during exercise in the diabetic state by limiting the rises in glucose uptake and metabolism and by enhancing hepatic glucose production.

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Year:  1992        PMID: 1356861     DOI: 10.2337/diab.41.10.1229

Source DB:  PubMed          Journal:  Diabetes        ISSN: 0012-1797            Impact factor:   9.461


  8 in total

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Review 2.  Four grams of glucose.

Authors:  David H Wasserman
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3.  Exercise, hypoglycemia, and type 1 diabetes.

Authors:  Rita Basu; Matthew L Johnson; Yogish C Kudva; Ananda Basu
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4.  Exercise modulates postreceptor insulin signaling and glucose transport in muscle-specific insulin receptor knockout mice.

Authors:  J F Wojtaszewski; Y Higaki; M F Hirshman; M D Michael; S D Dufresne; C R Kahn; L J Goodyear
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5.  The physiological regulation of glucose flux into muscle in vivo.

Authors:  David H Wasserman; Li Kang; Julio E Ayala; Patrick T Fueger; Robert S Lee-Young
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6.  Regulation of net hepatic glycogenolysis and gluconeogenesis during exercise: impact of type 1 diabetes.

Authors:  Kitt Falk Petersen; Thomas B Price; Raynald Bergeron
Journal:  J Clin Endocrinol Metab       Date:  2004-09       Impact factor: 5.958

7.  Adenosine receptors mediate synergistic stimulation of glucose uptake and transport by insulin and by contractions in rat skeletal muscle.

Authors:  L Vergauwen; P Hespel; E A Richter
Journal:  J Clin Invest       Date:  1994-03       Impact factor: 14.808

8.  Prevention of exercise-associated dysglycemia: a case study-based approach.

Authors:  Dessi P Zaharieva; Michael C Riddell
Journal:  Diabetes Spectr       Date:  2015-01
  8 in total

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