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.

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.

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