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1.
Scand J Med Sci Sports ; 28(10): 2114-2122, 2018 Oct.
Article in English | MEDLINE | ID: mdl-29777633

ABSTRACT

Due to a high prevalence of asthma and exercise-induced bronchoconstriction in elite athletes, there is a high use of beta2 -adrenoceptor agonists (beta2 -agonists) in the athletic population. While anabolic in rodents, no study has been able to detect hypertrophy in humans after chronic beta2 -agonist inhalation. We investigated whether inhaled beta2 -agonist, terbutaline, alters body composition and metabolic rate with and without concurrent exercise training in healthy young men. Sixty-seven participants completed a 4-week intervention of daily terbutaline (8 × 0.5 mg) or placebo treatment without concurrent training (habitual; n = 23), with resistance (n = 23) or endurance (n = 21) training 3 times weekly. Before and after the interventions, participant's body composition was determined by dual-energy X-ray absorptiometry and resting metabolic rate and substrate oxidation by indirect calorimetry. Terbutaline increased lean body mass by 1.03 kg (95% CI 0.29-1.76; P < .05) and 1.04 kg (95% CI 0.16-1.93; P < .05) compared to placebo in the habitual and resistance training group, respectively, but had no effect compared to placebo in the endurance training group [-0.56 kg (95% CI -1.74-0.62; P > .05)]. Fat mass, bone mineral content, and resting metabolic rate did not change differently between treatments with the intervention. Daily inhalation of terbutaline in near-therapeutic doses induces skeletal muscle growth. This observation should be a concern for antidoping authorities.


Subject(s)
Adrenergic beta-2 Receptor Agonists/administration & dosage , Body Composition , Exercise , Muscle, Skeletal/growth & development , Terbutaline/administration & dosage , Absorptiometry, Photon , Administration, Inhalation , Adult , Basal Metabolism , Double-Blind Method , Humans , Hypertrophy , Male , Muscle, Skeletal/drug effects , Physical Endurance , Resistance Training , Young Adult
2.
Scand J Med Sci Sports ; 27(7): 684-691, 2017 Jul.
Article in English | MEDLINE | ID: mdl-27060857

ABSTRACT

While chronic systemic administration of glucocorticoids increases muscle Na+ ,K+ ATPase content, such effect is unexplored after therapeutic inhalation. We investigated the effect of therapeutic inhalation of the glucocorticoid budesonide on Na+ ,K+ ATPase content of skeletal muscle in men. Ten healthy trained subjects, aged 23 ± 4 years (mean ± 95% CI), participated in the study. Before and after 2 weeks of daily inhalation of budesonide (1.6 mg/day), a biopsy was taken from the vastus lateralis muscle for measurement of Na+ ,K+ ATPase content and blood samples were drawn for determination of plasma budesonide, cortisol, and K+ . Subjects' performance during cycling to fatigue at 90% of incremental peak power output (iPPO) was measured in response to 4 mg inhaled terbutaline to maximally stimulate Na+ ,K+ ATPase activity. Plasma concentrations of budesonide rose to 5.0 ± 1.6 nM with the intervention, whereas no changes were observed in plasma cortisol. Muscle Na+ ,K+ ATPase content increased (P ≤ 0.01) by 46 ± 34 pmol/(g wet wt) (17% increase) with the intervention. Cycling performance at 90% of iPPO did not change (P = 0.21) with the intervention (203 vs 214 s) in response to terbutaline. The present observations show that therapeutic inhalation of glucocorticoids increases muscle Na+ ,K+ ATPase content, but does not enhance high-intensity cycling endurance in response to terbutaline.


Subject(s)
Budesonide/pharmacology , Exercise/physiology , Physical Endurance/drug effects , Quadriceps Muscle/drug effects , Sodium-Potassium-Exchanging ATPase/metabolism , Terbutaline/pharmacology , Administration, Inhalation , Adult , Biopsy , Budesonide/administration & dosage , Budesonide/blood , Humans , Hydrocortisone/blood , Longitudinal Studies , Male , Potassium/blood , Quadriceps Muscle/enzymology , Terbutaline/administration & dosage , Young Adult
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