Exercise-mimicking treatment fails to increase Fndc5 mRNA & irisin secretion in primary human myotubes
•Fndc5 & irisin is decreased by exercise-mimicking treatment in human myotubes.•Fndc5 mRNA is higher in myotubes derived from type-2-diabetic individuals.•Fndc5 is not related to differentiation capacity of myotubes in vitro. Irisin, myokine secreted by skeletal muscle, was suggested to mediate...
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Veröffentlicht in: | Peptides (New York, N.Y. : 1980) N.Y. : 1980), 2014-06, Vol.56, p.1-7 |
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Sprache: | eng |
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Zusammenfassung: | •Fndc5 & irisin is decreased by exercise-mimicking treatment in human myotubes.•Fndc5 mRNA is higher in myotubes derived from type-2-diabetic individuals.•Fndc5 is not related to differentiation capacity of myotubes in vitro.
Irisin, myokine secreted by skeletal muscle, was suggested to mediate some of exercise health benefits via “browning” of white adipose tissue. However, mounting evidence contradicts the regulatory role of exercise for muscle irisin production/secretion in humans. Thus, we explored the direct effect of exercise-mimicking treatment on irisin in human primary muscle cells in vitro. Human primary muscle cell cultures were established from lean, obese prediabetic and type-2-diabetic individuals. Complex metabolic phenotyping included assessment of insulin sensitivity (euglycemic hyperinsulinemic clamp) and adiposity content&distribution (MRI&MRS). In vitro exercise-mimicking treatment (forskolin+ionomycin) was delivered in 1-h pulse/day during differentiation. Fndc5 mRNA (qRT-PCR) and secreted irisin (ELISA) were determined in cells and media. Exercise-mimicking treatment more than doubled Pgc1α mRNA in differentiated muscle cells. Nevertheless, Fndc5 mRNA was reduced by 18% and irisin in media by 20%. Moreover, Fncd5 mRNA was increased in myotubes derived from individuals with type-2-diabetes, independent on exercise-mimicking treatment. Fndc5 mRNA in cells was positively related to fasting glycemia (p=0.0001) and negatively to whole-body insulin sensitivity (p |
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ISSN: | 0196-9781 1873-5169 |
DOI: | 10.1016/j.peptides.2014.03.003 |