Literature DB >> 30285125

β2-Agonist Induces Net Leg Glucose Uptake and Free Fatty Acid Release at Rest but Not During Exercise in Young Men.

Johan Onslev1,2, Jørgen Jensen2,3, Jens Bangsbo1, Jørgen Wojtaszewski2, Morten Hostrup1.   

Abstract

Objective: The role of selective β2-adrenergic stimulation in regulation of leg glucose uptake and free fatty acid (FFA) balance is inadequately explored in humans. The objective of this study was to investigate β2-adrenergic effects on net leg glucose uptake and clearance, as well as FFA balance at rest and during exercise. Design: The study was a randomized, placebo-controlled crossover trial where 10 healthy men received either infusion of β2-agonist terbutaline (0.2 to 0.4 mg) or placebo. Net leg glucose uptake and clearance and FFA balance were determined at rest and during 8 minutes of knee extensor exercise using Fick's principle. Vastus lateralis muscle biopsies were collected at rest and at cessation of exercise. The primary outcome measure was net leg glucose uptake.
Results: At rest, net leg glucose uptake and clearance were 0.35 (±0.16) mmol/min and 41 (±17) mL/min (mean ± 95% CI) higher (P < 0.001) for terbutaline than placebo, corresponding to increases of 84% and 70%. During exercise, no treatment differences were observed in net leg glucose uptake, whereas clearance was 101 (±86) mL/min lower (P < 0.05) for terbutaline than placebo. At rest, terbutaline induced a net leg FFA release of 21 (±14) µmol/min, being different from placebo (P = 0.04). During exercise, net leg FFA uptake was not different between the treatments. Conclusions: These observations indicate that β2-agonist alters net leg glucose uptake and clearance, as well as FFA balance in humans, which is associated with myocellular β2-adrenergic and insulin-dependent signaling. Furthermore, the study shows that exercise confounds the β2-adrenergic effect on net leg glucose uptake and FFA balance.

Entities:  

Year:  2019        PMID: 30285125     DOI: 10.1210/jc.2018-01349

Source DB:  PubMed          Journal:  J Clin Endocrinol Metab        ISSN: 0021-972X            Impact factor:   5.958


  2 in total

1.  Muscle hypertrophic effect of inhaled beta2 -agonist is associated with augmented insulin-stimulated whole-body glucose disposal in young men.

Authors:  Søren Jessen; Thomas Baasch-Skytte; Johan Onslev; Kasper Eibye; Vibeke Backer; Jens Bangsbo; Morten Hostrup
Journal:  J Physiol       Date:  2022-03-16       Impact factor: 6.228

2.  Beta2 -agonist increases skeletal muscle interleukin 6 production and release in response to resistance exercise in men.

Authors:  Morten Hostrup; Jakob Grunnet Knudsen; Caroline Maag Kristensen; Søren Jessen; Henriette Pilegaard; Jens Bangsbo
Journal:  Scand J Med Sci Sports       Date:  2022-04-29       Impact factor: 4.645

  2 in total

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