- Synchronous deficits in cumulative muscle protein synthesis and ribosomal biogenesis underlie age-related anabolic resistance to exercise in humans.
Synchronous deficits in cumulative muscle protein synthesis and ribosomal biogenesis underlie age-related anabolic resistance to exercise in humans.
Resistance exercise training (RET) is one of the most effective strategies for preventing declines in skeletal muscle mass and strength with age. Hypertrophic responses to RET with age are diminished compared to younger individuals. In response to 6ย weeks RET, we found blunted hypertrophic responses with age are underpinned by chronic deficits in long-term muscle protein synthesis. We show this is likely to be the result of multifactorial deficits in anabolic hormones and blunted translational efficiency and capacity. These results provide great insight into age-related exercise adaptations and provide a platform on which to devise appropriate nutritional and exercise interventions on a longer term basis. Ageing is associated with impaired hypertrophic responses to resistance exercise training (RET). Here we investigated the aetiology of 'anabolic resistance' in older humans. Twenty healthyย male individuals, 10 younger (Y; 23ย ยฑย 1ย years) and 10 older (O; 69ย ยฑย 3ย years), performed 6ย weeks unilateral RET (6ย รย 8 repetitions, 75% of one repetition maximum (1-RM), 3ย times per week). After baseline bilateral vastus lateralis (VL) muscle biopsies, subjects consumed 150ย ml D2 O (70ย atom%; thereafter 50ย mlย week-1 ), further bilateral VL muscle biopsies were taken at 3 and 6ย weeks to quantify muscle protein synthesis (MPS) via gas chromatography-pyrolysis-isotope ratio mass spectrometry. After RET, 1-RM increased in Y (+35ย ยฑย 4%) and O (+25ย ยฑย 3%; Pย <ย 0.01), while MVC increased in Y (+21ย ยฑย 5%; Pย <ย 0.01) but not O (+6ย ยฑย 3%; not significant (NS)). In comparison to Y, O displayed blunted RET-induced increases in muscle thickness (at 3 and 6ย weeks, respectively, Y: +8ย ยฑย 1% and +11ย ยฑย 2%, Pย <ย 0.01; O: +2.6ย ยฑย 1% and +3.5ย ยฑย 2%, NS). While 'basal' longer term MPS was identical between Y and O (โผ1.35ย ยฑย 0.1%ย day-1 ), MPS increased in response to RET only in Y (3ย weeks, Y: 1.61ย ยฑย 0.1%ย day-1 ; O: 1.49ย ยฑย 0.1%ย day-1 ). Consistent with this, O exhibited inferior ribosomal biogenesis (RNA:DNA ratio and c-MYC induction: Y: +4ย ยฑย 2 fold change; O: +1.9ย ยฑย 1 fold change), translational efficiency (S6K1 phosphorylation, Y: +10ย ยฑย 4 fold change; O: +4ย ยฑย 2 fold change) and anabolic hormone milieu (testosterone, Y: 367ย ยฑย 19; O: 274ย ยฑย 19ย ngย dl-1 (all Pย <ย 0.05). Anabolic resistance is thus multifactorial.