We sought to ascertain the time course of transcriptional events that occur in human skeletal muscle at the outset of resistance exercise (RE) training in RE naive individuals and determine whether the magnitude of response was associated with exercise-induced muscle damage. Sixteen RE naive men were recruited; eight underwent two sessions of 5 × 30 maximum isokinetic knee extensions (180°/s) separated by 48 h. Muscle biopsies of the vastus lateralis, obtained from different sites, were taken at baseline and 24 h after each exercise bout. Eight individuals acted as nonexercise controls with biopsies obtained at the same time intervals. Transcriptional changes were assessed by microarray and protein levels of heat shock protein (HSP) 27 and ...
Resistance training promotes metabolic health and stimulates muscle hypertrophy, but the precise ro...
Key points Skeletal muscle hypertrophy is one of the main outcomes from resistance training (RT), bu...
Resistance training (RT) has the capacity to increase skeletal muscle mass, which is due in part to ...
We sought to ascertain the time course of transcriptional events that occur in human skeletal muscle...
We present the time course of change in the muscle transcriptome 1 h after the last exercise bout of...
Although there is an increasing understanding about gene-specific transcriptional activation during ...
Background Exercise elicits a range of adaptive responses in skeletal muscle, which include changes ...
Exercise training causes epigenetic changes in skeletal muscle, although it is unclear how resistanc...
Skeletal muscle displays enormous plasticity to respond to contractile activity with muscle from str...
Regular physical activity affects all tissues in the human body, not least skeletal muscle. The ske...
We hypothesized that in untrained individuals (n=6) a single bout of ergometer endurance exercise pr...
Introduction Re-programming of gene expression is fundamental for skeletal muscle adaptations in res...
Access to thesis permanently restricted to Ball State community only.This investigation aimed to pro...
Reprogramming of gene expression is fundamental for skeletal muscle adaptations in response to endur...
Ageing in humans is associated with physiological loss of strength and skeletal muscle fibres, known...
Resistance training promotes metabolic health and stimulates muscle hypertrophy, but the precise ro...
Key points Skeletal muscle hypertrophy is one of the main outcomes from resistance training (RT), bu...
Resistance training (RT) has the capacity to increase skeletal muscle mass, which is due in part to ...
We sought to ascertain the time course of transcriptional events that occur in human skeletal muscle...
We present the time course of change in the muscle transcriptome 1 h after the last exercise bout of...
Although there is an increasing understanding about gene-specific transcriptional activation during ...
Background Exercise elicits a range of adaptive responses in skeletal muscle, which include changes ...
Exercise training causes epigenetic changes in skeletal muscle, although it is unclear how resistanc...
Skeletal muscle displays enormous plasticity to respond to contractile activity with muscle from str...
Regular physical activity affects all tissues in the human body, not least skeletal muscle. The ske...
We hypothesized that in untrained individuals (n=6) a single bout of ergometer endurance exercise pr...
Introduction Re-programming of gene expression is fundamental for skeletal muscle adaptations in res...
Access to thesis permanently restricted to Ball State community only.This investigation aimed to pro...
Reprogramming of gene expression is fundamental for skeletal muscle adaptations in response to endur...
Ageing in humans is associated with physiological loss of strength and skeletal muscle fibres, known...
Resistance training promotes metabolic health and stimulates muscle hypertrophy, but the precise ro...
Key points Skeletal muscle hypertrophy is one of the main outcomes from resistance training (RT), bu...
Resistance training (RT) has the capacity to increase skeletal muscle mass, which is due in part to ...