Epinephrine infusion during moderate intensity exercise increases glucose production and uptake.
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Summary
Epi infusion during moderate exercise led to increments in R(a) and R(d) and caused rises of plasma glucose, lactate, and respiratory exchange ratio in fit individuals, supporting a regulatory role for Epi in IE.
- Type
- article
- Published
- 2000-05-01
- Cited by
- 48
- References
- 45
- OpenAlex
- https://openalex.org/W1788185743
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:8857905
Keywords
Internal medicine, Endocrinology, Glucagon, Epinephrine, Cycle ergometer
References
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- Insulin and glucagon in prevention of hypoglycemia during exercise in humans.
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- Glucagon is a primary controller of hepatic glycogenolysis and gluconeogenesis during muscular work.
- Differential effects of epinephrine on glucose production and disposal in man.
- Comparison of double- and single-isotope enzymatic derivative methods for measuring catecholamines in human plasma.
- Effect of epinephrine on muscle glycogenolysis during exercise in trained men.
- Influence of epinephrine, norepinephrine, and isoproterenol on glucose homeostasis in normal man.
- OOPSEG: a data smoothing program for quantitation and isolation of random measurement error.
- Effects of epinephrine on glucose metabolism in patients with alcoholic cirrhosis
- Effect of adrenaline on glucose kinetics during exercise in adrenalectomised humans
- Influence of peri-arterial hepatic denervation on the glycemic response to exercise in rats.
- Exercise-induced hepatic glucose output is precisely sensitive to the rate of systemic glucose supply.
- Glucoregulation during and after intense exercise: effects of beta-blockade.
- Effect of epinephrine on glucose metabolism in humans: contribution of the liver.
- Adrenergic mechanisms for the effects of epinephrine on glucose production and clearance in man.
- Regulation of glucose fluxes during exercise in the postabsorptive state.
- The Roles of Catecholamines in Glucoregulation in Intense Exercise as Defined by the Islet Cell Clamp Technique
Cited by
- Pharmacological activities of a new glycosaminoglycan, acharan sulfate isolated from the giant african snailachatina fulica
- Increased postabsorptive and exercise-induced whole-body glucose production in patients with chronic obstructive pulmonary disease.
- Einfluss von normobarer Hypoxie auf die Fettutilisation bei einer Laufausdauerbelastung
- The effects of low and high glycemic index meals on metabolism and performance during soccer-specific intermittent exercise
- Biomarkers Of Chronic Stress
- Physiological demands of competitive Taekwondo
- Effect of a short sprint on glucose production and whole body glucose utilisation in adults with Type 1 diabetes
- Effects of elevated plasma adrenaline levels on substrate metabolism, effort perception and muscle activation during low-to-moderate intensity exercise
- Catecholamines and the Effects of Exercise, Training and Gender
- The effect of a short sprint on postexercise whole-body glucose production and utilization rates in individuals with type 1 diabetes mellitus.
- Serum and plasma hormonal concentrations are sensitive to periods of intensity and volume of soccer training
- Plasma glucose, insulin and catecholamine responses to a Wingate test in physically active women and men
- Taekwondo Exercise Protocols do not Recreate the Physiological Responses of Championship Combat
- Glucoregulatory endocrine responses to intermittent exercise of different intensities: plasma changes in a pancreatic beta-cell peptide, amylin.
- Normal insulin response to short-term intense exercise is abolished in Type 2 diabetic patients treated with gliclazide.
- Local and systemic effects on blood lactate concentration during exercise with small and large muscle groups
- Intense Exercise in Type 1 Diabetes: Exploring the Role of Continuous Glucose Monitoring
- Effect of antecedent moderate-intensity exercise on the glycemia-increasing effect of a 30-sec maximal sprint: a sex comparison
- Physical activity/exercise and type 2 diabetes.
- Norepinephrine infusion during moderate-intensity exercise increases glucose production and uptake.
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