Effect of constitutive inactivation of the myostatin gene on the gain in muscle strength during postnatal growth in two murine models

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Abstract

Introduction: The effect of constitutive inactivation of the gene encoding myostatin on the gain in muscle performance during postnatal growth has not been well characterized. Methods: We analyzed 2 murine myostatin knockout (KO) models, (i) the Lee model (KOLee) and (ii) the Grobet model (KOGrobet), and measured the contraction of tibialis anterior muscle in situ. Results: Absolute maximal isometric force was increased in 6-month-old KOLee and KOGrobet mice, as compared to wild-type mice. Similarly, absolute maximal power was increased in 6-month-old KOLee mice. In contrast, specific maximal force (relative maximal force per unit of muscle mass was decreased in all 6-month-old male and female KO mice, except in 6-month-old female KOGrobet mice, whereas specific maximal power was reduced only in male KOLee mice. Conclusions: Genetic inactivation of myostatin increases maximal force and power, but in return it reduces muscle quality, particularly in male mice. Muscle Nerve 55: 254–261, 2017.

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Stantzou, A., Ueberschlag-Pitiot, V., Thomasson, R., Furling, D., Bonnieu, A., Amthor, H., & Ferry, A. (2017). Effect of constitutive inactivation of the myostatin gene on the gain in muscle strength during postnatal growth in two murine models. Muscle and Nerve, 55(2), 254–261. https://doi.org/10.1002/mus.25220

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