Abstract Background We have previously shown that the deletion of the superoxide scavenger, CuZn superoxide dismutase, in mice (Sod1−/− mice) results in increased oxidative stress and an accelerated loss of skeletal muscle mass and force that mirror the changes seen in old control mice. The goal of this study is to define the effect of oxidative stress and ageing on muscle weakness and the Excitation Contraction (EC) coupling machinery in age‐matched adult (8–10 months) wild‐type (WT) and Sod1−/− mice in comparison with old (25–28 months) WT mice. Methods In vitro contractile assays were used to measure muscle contractile parameters. The activity of the sarcoplasmic reticulum Ca2+ ATPase (SERCA) pump was measured using an NADH‐linked enzyme...
Muscle strength is restored in JP45 and CASQ1 double knock-out mice. Skeletal muscle constitutes a...
Molecular targets to reduce muscle weakness and atrophy due to oxidative stress have been elusive. H...
Skeletal muscle ageing is characterised by atrophy, a deficit in specific force generation, increase...
BackgroundWe have previously shown that the deletion of the superoxide scavenger, CuZn superoxide di...
Elevated reactive oxygen species (ROS) production and ROS-dependent protein damage is a common obser...
In muscle, aging is associated with a failure of adaptive responses to contractile activity, and thi...
Skeletal muscle suffers atrophy and weakness with aging. Denervation, oxidative stress, and mitochon...
AbstractOur previous studies showed that adult (8 month) mice lacking CuZn-superoxide dismutase (CuZ...
Age-related skeletal muscle dysfunction is a leading cause of morbidity that affects up to half the ...
For small, non-weight bearing muscles of old mice, severe contraction-induced injury causes a perman...
Aims: Lack of Cu,Zn-superoxide dismutase (CuZnSOD) in homozygous knockout mice (Sod1−/−) leads to ac...
<p>(<i>A</i>) Gastrocnemius and extensor digitorum longus muscle mass expressed as % of body mass fr...
Oxidative modification of cellular components may contribute to tissue dysfunction during aging. In ...
Reduction in muscle strength with aging is due to both loss of muscle mass (quantity) and intrinsic ...
Skeletal muscle often shows a delayed force recovery after fatiguing stimulation, especially at low ...
Muscle strength is restored in JP45 and CASQ1 double knock-out mice. Skeletal muscle constitutes a...
Molecular targets to reduce muscle weakness and atrophy due to oxidative stress have been elusive. H...
Skeletal muscle ageing is characterised by atrophy, a deficit in specific force generation, increase...
BackgroundWe have previously shown that the deletion of the superoxide scavenger, CuZn superoxide di...
Elevated reactive oxygen species (ROS) production and ROS-dependent protein damage is a common obser...
In muscle, aging is associated with a failure of adaptive responses to contractile activity, and thi...
Skeletal muscle suffers atrophy and weakness with aging. Denervation, oxidative stress, and mitochon...
AbstractOur previous studies showed that adult (8 month) mice lacking CuZn-superoxide dismutase (CuZ...
Age-related skeletal muscle dysfunction is a leading cause of morbidity that affects up to half the ...
For small, non-weight bearing muscles of old mice, severe contraction-induced injury causes a perman...
Aims: Lack of Cu,Zn-superoxide dismutase (CuZnSOD) in homozygous knockout mice (Sod1−/−) leads to ac...
<p>(<i>A</i>) Gastrocnemius and extensor digitorum longus muscle mass expressed as % of body mass fr...
Oxidative modification of cellular components may contribute to tissue dysfunction during aging. In ...
Reduction in muscle strength with aging is due to both loss of muscle mass (quantity) and intrinsic ...
Skeletal muscle often shows a delayed force recovery after fatiguing stimulation, especially at low ...
Muscle strength is restored in JP45 and CASQ1 double knock-out mice. Skeletal muscle constitutes a...
Molecular targets to reduce muscle weakness and atrophy due to oxidative stress have been elusive. H...
Skeletal muscle ageing is characterised by atrophy, a deficit in specific force generation, increase...