Resistance to growth hormone (GH)-induced insulin-like growth factor-1 (IGF-1) gene expression contributes to uremic muscle wasting. Since exercise stimulates muscle IGF-1 expression independent of GH, we tested whether work overload (WO) could increase skeletal muscle IGF-1 expression in uremia and thus bypass the defective GH action. Furthermore, to provide insight into the mechanism of uremic wasting and the response to exercise we examined myostatin expression. Unilateral plantaris muscle WO was initiated in uremic and pairfed (PF) normal rats by ablation of a gastrocnemius tendon and adjoining part of this muscle with the contralateral plantaris as a control. Some rats were GH treated for 7 days. WO led to similar gains in plantaris we...
The aim of this study was to investigate the effects of a resistance training program with excessive...
PurposeAging-induced loss of muscle mass and subsequent reduction of strength is a fundamental cause...
Myostatin is a TGFβ family member and negative regulator of muscle size. Due to the complexity of th...
Resistance to growth hormone (GH)-induced insulin-like growth factor-1 (IGF-1) gene expression contr...
Muscle wasting in chronic renal failure is associated with increased morbidity and mortality; howeve...
Myostatin and the insulin-like growth factors (IGF-I and -II) play inhibitory and stimulatory roles,...
Growth hormone (GH) resistance is common in uremia and together with resistance to insulin-like grow...
Expression of insulin-like growth factor-1 in uremic rats: Growth hormone resistance and nutritional...
Copyright © 2018 Lozier, Kopchick and de Lacalle. Myostatin, a negative regulator of muscle growth, ...
Renal failure is accompanied by progressive muscle weakness and premature fatigue, in part linked to...
P>Skeletal muscle abnormalities can contribute to decreased exercise capacity in heart failure. Alth...
The purpose of this study was to test the hypothesis that skeletal muscle adaptations induced by lon...
The aim of this study was to investigate the effects of a resistance training program with excessive...
textIn the present study, the effects of IGF-1 overexpression, resistance training and their intera...
Myostatin is a TGFß family member and negative regulator of muscle size. Due to the complexity of th...
The aim of this study was to investigate the effects of a resistance training program with excessive...
PurposeAging-induced loss of muscle mass and subsequent reduction of strength is a fundamental cause...
Myostatin is a TGFβ family member and negative regulator of muscle size. Due to the complexity of th...
Resistance to growth hormone (GH)-induced insulin-like growth factor-1 (IGF-1) gene expression contr...
Muscle wasting in chronic renal failure is associated with increased morbidity and mortality; howeve...
Myostatin and the insulin-like growth factors (IGF-I and -II) play inhibitory and stimulatory roles,...
Growth hormone (GH) resistance is common in uremia and together with resistance to insulin-like grow...
Expression of insulin-like growth factor-1 in uremic rats: Growth hormone resistance and nutritional...
Copyright © 2018 Lozier, Kopchick and de Lacalle. Myostatin, a negative regulator of muscle growth, ...
Renal failure is accompanied by progressive muscle weakness and premature fatigue, in part linked to...
P>Skeletal muscle abnormalities can contribute to decreased exercise capacity in heart failure. Alth...
The purpose of this study was to test the hypothesis that skeletal muscle adaptations induced by lon...
The aim of this study was to investigate the effects of a resistance training program with excessive...
textIn the present study, the effects of IGF-1 overexpression, resistance training and their intera...
Myostatin is a TGFß family member and negative regulator of muscle size. Due to the complexity of th...
The aim of this study was to investigate the effects of a resistance training program with excessive...
PurposeAging-induced loss of muscle mass and subsequent reduction of strength is a fundamental cause...
Myostatin is a TGFβ family member and negative regulator of muscle size. Due to the complexity of th...