Prolonged skeletal muscle inactivity causes muscle fibre atrophy. Redox imbalance has been considered one of the major triggers of skeletal muscle disuse atrophy, but whether redox imbalance is actually the major cause or simply a consequence of muscle disuse remains of debate. Here we hypothesized that a metabolic stress mediated by PGC-1alpha down-regulation plays a major role in disuse atrophy. First we studied the adaptations of soleus to mice hindlimb unloading (HU) in the early phase of disuse (3 and 7 days of HU) with and without antioxidant treatment (trolox). HU caused a reduction in cross-sectional area, redox status alteration (NRF2, SOD1 and catalase up-regulation), and induction of the ubiquitin proteasome system (MuRF-1 and at...
Two dimensional proteomic maps of soleus (Sol), a slow oxidative muscle, and gastrocnemius (Gas), a ...
SummaryEvidence is emerging that the PGC-1 coactivators serve a critical role in skeletal muscle met...
Thispaper reviews the currentunderstandingof themolecularbasis of theperoxisomeproliferator-activate...
Prolonged skeletal muscle inactivity causes muscle fibre atrophy. Redox imbalance has been considere...
The mechanisms triggering disuse muscle atrophy remain of debate. It is becoming evident that mitoch...
The mechanisms triggering disuse muscle atrophy remain of debate. It is becoming evident that mitoch...
Skeletal muscle atrophy occurs as a result of disuse. Although several studies have established that...
Skeletal muscle atrophy occurs as a result of disuse. Although several studies have established that...
Skeletal muscle atrophy occurs as a result of disuse. Although several studies have established that...
Two-dimensional proteomic maps of soleus (Sol), a slow oxidative muscle, and gastrocnemius (Gas), a ...
Two-dimensional proteomic maps of soleus (Sol), a slow oxidative muscle, and gastrocnemius (Gas), a ...
Maintaining muscle size and fiber composition requires contractile activity. Increased activity stim...
Maintaining muscle size and fiber composition requires contractile activity. Increased activity stim...
Maintaining muscle size and fiber composition requires contractile activity. Increased activity stim...
Two dimensional proteomic maps of soleus (Sol), a slow oxidative muscle, and gastrocnemius (Gas), a ...
Two dimensional proteomic maps of soleus (Sol), a slow oxidative muscle, and gastrocnemius (Gas), a ...
SummaryEvidence is emerging that the PGC-1 coactivators serve a critical role in skeletal muscle met...
Thispaper reviews the currentunderstandingof themolecularbasis of theperoxisomeproliferator-activate...
Prolonged skeletal muscle inactivity causes muscle fibre atrophy. Redox imbalance has been considere...
The mechanisms triggering disuse muscle atrophy remain of debate. It is becoming evident that mitoch...
The mechanisms triggering disuse muscle atrophy remain of debate. It is becoming evident that mitoch...
Skeletal muscle atrophy occurs as a result of disuse. Although several studies have established that...
Skeletal muscle atrophy occurs as a result of disuse. Although several studies have established that...
Skeletal muscle atrophy occurs as a result of disuse. Although several studies have established that...
Two-dimensional proteomic maps of soleus (Sol), a slow oxidative muscle, and gastrocnemius (Gas), a ...
Two-dimensional proteomic maps of soleus (Sol), a slow oxidative muscle, and gastrocnemius (Gas), a ...
Maintaining muscle size and fiber composition requires contractile activity. Increased activity stim...
Maintaining muscle size and fiber composition requires contractile activity. Increased activity stim...
Maintaining muscle size and fiber composition requires contractile activity. Increased activity stim...
Two dimensional proteomic maps of soleus (Sol), a slow oxidative muscle, and gastrocnemius (Gas), a ...
Two dimensional proteomic maps of soleus (Sol), a slow oxidative muscle, and gastrocnemius (Gas), a ...
SummaryEvidence is emerging that the PGC-1 coactivators serve a critical role in skeletal muscle met...
Thispaper reviews the currentunderstandingof themolecularbasis of theperoxisomeproliferator-activate...