Beneficial effects of whole-body cryotherapy on glucose homeostasis and amino acid profile are associated with a reduced myostatin serum concentration.

Marta Kozłowska, Jakub Kortas, Małgorzata Żychowska, Jędrzej Antosiewicz, Klaudia Żuczek, Silvia Perego, Giovanni Lombardi, Ewa Ziemann

Journal: Scientific reports 2021;11(1):7097

PMID: 33782504

Abstract

The study investigated the effect of single and chronic (10 sessions) whole-body cryotherapy (WBC; 3-min, - 110 °C) on amino acid (AA) profile, myostatin, fibroblast growth factor 21 (FGF21), and concentrations of brain-derived neurotrophic factor (BDNF), irisin and adiponectin in relation to glucose homeostasis. Thirty-five, healthy men were randomly split into experimental (young: 28 ± 7 years and middle-aged: 51 ± 3 years) and control groups. Blood samples were taken before and 1 h after the first and last (10th) WBC session. Baseline myostatin correlated significantly with visceral fat area, glucose, insulin, HOMA-IR and irisin (all p < 0.05). The single session of WBC induced temporary changes in AA profile, whereas chronic exposure lowered valine and asparagine concentrations (p < 0.01 and p = 0.01, respectively) compared to the baseline. The chronic WBC reduced fasting glucose (p = 0.04), FGF21 (- 35.8%, p = 0.06) and myostatin (-18.2%, p = 0.06). Still, the effects were age-dependent. The decrease of myostatin was more pronounced in middle-aged participants (p < 0.01). Concentrations of irisin and adiponectin increased in response to chronic WBC, while BDNF level remained unchanged. By improving the adipo-myokine profile, chronic WBC may reduce effectively the risk of the metabolic syndrome associated with hyperinsulinemia, increased levels of valine and asparagine, and muscle atrophy.

Address: Department of Physiology and Biochemistry, Gdańsk University of Physical Education and Sport, Gdańsk, Poland.; Department of Sport, Gdansk University of Physical Education and Sport, Gdańsk, Poland.; Department of Sport, Bydgoszcz Kazimierz Wielki University, Bydgoszcz, Poland.; Department of Bioenergetics and Physiology of Exercise, Medical University of Gdansk, Gdańsk, Poland.; Department of Medical Biology and Genetics, Faculty of Biology, University of Gdańsk, Gdańsk, Poland.; Laboratory of Experimental Biochemistry and Molecular Biology, IRCCS Istituto Ortopedico Galeazzi, Milano, Italy.; Laboratory of Experimental Biochemistry and Molecular Biology, IRCCS Istituto Ortopedico Galeazzi, Milano, Italy.; Department of Athletics, Strength and Conditioning, Poznan University of Physical Education, Poznan, Poland.; Department of Athletics, Strength and Conditioning, Poznan University of Physical Education, Poznan, Poland. [email protected].
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