[No authors listed]
AIMS:Existing evidence emphasize the role of mitochondrial dysfunction in sarcopenia which is revealed as loss of skeletal muscle mass and neuromuscular junction remodeling. We assessed the effect of low-intensity aerobic training along with blood flow restriction on muscle hypertrophy index, muscle-specific kinase (MuSK), a pivotal protein of the neuromuscular junction and Peroxisome proliferator-activated receptor gamma co-activator 1-alpha (PGC-1α) in aged male rats. MAIN METHODS:Animals groups were control (CTL), sham (Sh), leg blood flow restriction (BFR), exercise (Ex), shamâ¯+â¯exercise (Shâ¯+â¯Ex), and BFR plus exercise (BFRâ¯+â¯Ex) groups. The exercise groups were trained with low intensity exercise for 10â¯weeks. 48â¯h after the last training session, animals were sacrificed under anesthesia. Soleus and EDL muscles were isolated, hypertrophy index was estimated and MuSK and PGC-1α were measured by western blot method. KEY FINDINGS:Hypertrophy index enhanced in soleus and Extensor digitorum longus (EDL) muscles of BFRâ¯+â¯Ex group (Pâ¯<â¯0.01 versus CTL and Sh groups, and Pâ¯<â¯0.001 versus other groups). The MuSK protein of soleus and EDL muscles increased in BFRâ¯+â¯Ex group (Pâ¯<â¯0.01 and Pâ¯<â¯0.001, respectively) in comparison with CTL and Sh groups. In BFRâ¯+â¯Ex group, the PGC-1α protein increased in both soleus and EDL (Pâ¯<â¯0.001 compared to other groups). Also the PGC-1α of soleus muscle was higher in Ex and Shâ¯+â¯Ex groups versus CTL and Sh groups (Pâ¯<â¯0.05). SIGNIFICANCE:Findings suggest that low endurance exercise plus BFR improves the MuSK and hypertrophy index of both slow and fast muscles of elderly rats probably through the rise of PGC-1α expression.
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