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Updated: May 23, 2026

Myo-mechanical Analysis of Isolated Skeletal Muscle
Published on: February 22, 2011
The myostatin null mutation and clenbuterol administration elicit additive effects in mice
A C Dilger1, S R Gabriel, L W Kutzler
1Department of Animal Sciences, University of Illinois Urbana-Champaign, Urbana, IL, 61801, USA.
Abstract:
In mice, the myostatin (Mstn) null mutation and treatment with clenbuterol both increase muscle growth and decrease fat mass. Our objective was to determine whether mechanistic overlap exists by administering clenbuterol to Mstn null mice. Male Mstn null and wild-type mice of similar genetic backgrounds received either 0 (control) or 20 p.p.m. clenbuterol in tap water free choice for 14 days. Several traits were measured to estimate muscle and fat growth. The Mstn null mutation resulted in increased body and empty carcass weight, increased muscle weights and decreased fat pad weights. Fat content was reduced and protein content was increased in the empty carcasses of Mstn null mice. Similarly, treatment with clenbuterol resulted in increased body and empty carcass weight, increased muscle weights and reduced fat pad weights. Fat content of empty carcasses and viscera was reduced and protein content of empty carcasses was increased with clenbuterol treatment. A significant interaction of genotype and clenbuterol treatment would indicate an altered responsiveness of Mstn null mice to clenbuterol. However, only the weight of gastrocnemius muscles exhibited a significant (P = 0.01) interaction of genotype and clenbuterol treatment, indicating that Mstn null mice were less responsive to clenbuterol compared with wild-type mice. Thus, for all other traits, the impact of Mstn null mutation and clenbuterol treatment was completely additive. These data suggest that disruption of Mstn function does not alter the response of mice to β-adrenergic agonists.
Insights
The myostatin (Mstn) null mutation and clenbuterol both promote muscle growth. Mstn null mice showed reduced responsiveness to clenbuterol, suggesting additive effects rather than mechanistic overlap.
Area of Science:
- Muscle physiology
- Pharmacology
Background:
- Myostatin (Mstn) null mutation and clenbuterol treatment independently increase muscle mass and decrease fat.
- Investigating potential mechanistic overlap between Mstn disruption and clenbuterol action is crucial.
Purpose of the Study:
- To determine if administering clenbuterol to Mstn null mice reveals mechanistic overlap in muscle growth and fat reduction.
- To assess the interaction between Mstn deficiency and clenbuterol treatment on physiological traits.
Main Methods:
- Male Mstn null and wild-type mice were treated with clenbuterol (20 p.p.m.) or control for 14 days.
- Measurements included body weight, carcass weight, muscle weights, and fat pad weights.
- Analysis of carcass and visceral fat content, and protein content.
Main Results:
- Both Mstn null mutation and clenbuterol treatment increased body weight, carcass weight, and muscle weights, while decreasing fat pad weights.
- Fat content was reduced and protein content increased in Mstn null mice and with clenbuterol treatment.
- A significant interaction was observed only in gastrocnemius muscle weight, indicating reduced responsiveness to clenbuterol in Mstn null mice.
Conclusions:
- The effects of Mstn null mutation and clenbuterol treatment on most measured traits were additive.
- Disruption of myostatin function does not alter the response of mice to beta-adrenergic agonists like clenbuterol.

