Key result
AAV8-mediated systemic transfer of myostatin propeptide significantly increased muscle mass in both slow and fast muscles, but functional improvement in force output was restricted to slow muscle.
Absolute Event Rate: 256.7% vs 220.6%
p-value: p=0.008
Systemic myostatin inhibition via AAV8-mediated propeptide transfer increases muscle mass globally but only improves contractile force in slow-twitch muscles, suggesting muscle-specific functional effects for gene therapy.
Fiber-type differences in force gains caution against uniform myostatin gene therapy expectations; leaves open human translation studies.
Myostatin is a member of the transformating growth factor-beta (TGF-beta) superfamily of proteins and is produced almost exclusively in skeletal muscle tissue, where it is secreted and circulates as a serum protein. Myostatin acts as a negative regulator of muscle mass through the canonical SMAD2/3/4 signaling pathway. Naturally occurring myostatin mutants exhibit a 'double muscling' phenotype in which muscle mass is dramatically increased as a result of both hypertrophy and hyperplasia. Myostatin is naturally inhibited by its own propeptide; therefore, we assessed the impact of adeno-associated virus-8 (AAV8) myostatin propeptide vectors when systemically introduced in MF-1 mice. We noted a significant systemic increase in muscle mass in both slow and fast muscle phenotypes, with no evidence of hyperplasia; however, the nuclei-to- cytoplasm ratio in all myofiber types was significantly reduced. An increase in muscle mass in slow (soleus) muscle led to an increase in force output; however, an increase in fast (extensor digitorum longus [EDL]) muscle mass did not increase force output. These results suggest that the use of gene therapeutic regimens of myostatin inhibition for age-related or disease-related muscle loss may have muscle-specific effects.
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Foster et al. (2009) studied Normal muscle (model for muscle-wasting diseases). AAV8-mediated myostatin propeptide (AAV8ProMyo) vs. Uninjected control was evaluated on Tetanic isometric force of soleus muscle at 4 weeks (mN) (p=0.008). AAV8-mediated systemic transfer of myostatin propeptide significantly increased muscle mass in both slow and fast muscles, but functional improvement in force output was restricted to slow muscle.
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