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Updated: Oct 10, 2025

Assessing Functional Performance in the Mdx Mouse Model
Published on: March 27, 2014
Alteration of skeletal and cardiac muscles function in DBA/2J mdx mice background: a focus on high intensity interval
Narjes Baati1, Nathalie Mougenot2, Mégane Lemaitre3
1Institute of Sport and Health Sciences of Paris - URP3625, Université de Paris, Paris, France.
Abstract:
Duchenne muscular dystrophy (DMD) is a recessive hereditary myopathy due to deficiency of functional dystrophin. Current therapeutic interventions need more investigation to slow down the progression of skeletal and cardiac muscle weakness. In humans, there is a lack of an adapted training program. In animals, the murine Mdx model with a DBA/2J background (D2-mdx) was recently suggested to present pathological features closer to that of humans. In this study, we characterized skeletal and cardiac muscle functions in males and females D2-mdx mice compared to control groups. We also evaluated the impact of high intensity interval training (HIIT) in these muscles in females and males. HIIT was performed 5 times per week during a month on a motorized treadmill. Specific maximal isometric force production and weakness were measured in the tibialis anterior muscle (TA). Sedentary male and female D2-mdx mice produced lower absolute and specific maximal force compared to control mice. Dystrophic mice showed a decline of force generation during repetitive stimulation compared to controls. This reduction was greater for male D2-mdx mice than females. Furthermore, trained D2-mdx males showed an improvement in force generation after the fifth lengthening contraction compared to sedentary D2-mdx males. Moreover, echocardiography measures revealed a decrease in left ventricular end-diastolic volume, left ventricular ejection volume and left ventricular end-diastolic diameter in sedentary male and female D2-mdx mice. Overall, our results showed a serious muscle function alteration in female and male D2-mdx mice compared to controls. HIIT may delay force loss especially in male D2-mdx mice.
Insights
Duchenne muscular dystrophy (DMD) mouse models show significant muscle weakness. High-intensity interval training (HIIT) may help improve force generation, particularly in male D2-mdx mice with DMD.
Area of Science:
- Biomedical Science
- Genetics
- Physiology
Background:
- Duchenne muscular dystrophy (DMD) is a genetic disorder causing progressive muscle weakness.
- Current treatments for DMD lack comprehensive strategies to mitigate skeletal and cardiac muscle decline.
- The D2-mdx mouse model exhibits pathological similarities to human DMD, making it valuable for research.
Purpose of the Study:
- To characterize skeletal and cardiac muscle function in male and female D2-mdx mice.
- To evaluate the effects of high-intensity interval training (HIIT) on muscle function in D2-mdx mice.
- To compare the functional deficits and training responses between male and female D2-mdx mice.
Main Methods:
- Skeletal muscle function was assessed via maximal isometric force production and repetitive stimulation in the tibialis anterior muscle.
- Cardiac function was evaluated using echocardiography.
- Mice underwent a one-month high-intensity interval training (HIIT) program on a motorized treadmill.
Main Results:
- D2-mdx mice (both sexes) exhibited reduced maximal force and impaired force generation during repetitive stimulation compared to controls.
- Male D2-mdx mice showed a greater decline in force generation than females.
- HIIT improved force generation after lengthening contractions in trained male D2-mdx mice compared to sedentary controls.
- Echocardiography revealed decreased cardiac volumes and diameters in sedentary D2-mdx mice of both sexes.
Conclusions:
- D2-mdx mice display significant skeletal and cardiac muscle dysfunction, mirroring human DMD.
- HIIT demonstrates potential in delaying force loss, especially in male D2-mdx mice.
- Further research into adapted training programs for DMD is warranted.

