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Updated: May 31, 2026

Assessing Functional Performance in the Mdx Mouse Model
Published on: March 27, 2014
Regimen-dependent glucocorticoid effects improve muscle performance without altering CNS physiology in mdx mice
Gretel S Major1,2, Jiayi Chen1, Eva van den Berg1
1School of Biological Sciences, University of Canterbury, Christchurch, New Zealand.
Abstract:
Duchenne muscular dystrophy (DMD) is a multisystem disorder affecting striated muscle, metabolism and the central nervous system (CNS). Although glucocorticoids remain the standard therapy, muscle-centric evaluations typically fail to capture how dosing regimen and compound selection affect CNS and metabolic phenotypes. Here, we compared daily and weekly dosing of prednisolone and vamorolone in juvenile mdx mice over 6 weeks to determine how these variables influence multisystem outcomes. Multiorgan efficacy and adverse effects were quantified across behavioural, endocrine, metabolic, cardiovascular and muscle domains using behavioural assays, in vivo and functional muscle testing, haemodynamic evaluation and histopathology. Daily glucocorticoid dosing failed to improve muscle function or strength, whereas weekly vamorolone produced the most robust improvements in functional and in vivo muscle strength. Daily prednisolone reduced circulating creatine kinase levels, but this biochemical change did not translate into enhanced muscle function outcomes. Daily regimens also induced severe adrenal cortical atrophy, yet these endocrine alterations were dissociated from CNS stress and anxiety responses, which remained unchanged by treatment. In addition, daily dosing caused pronounced systemic metabolic consequences, whereas weekly regimens substantially attenuated these effects, identifying dosing frequency as a key determinant of safety. Together, these findings demonstrate that glucocorticoid regimen selection fundamentally reshapes the efficacy versus adverse effect profile and underscores the value of integrated multiorgan evaluation in DMD. This work highlights the need to expand therapeutic assessments beyond muscle pathology and raises new questions about how glucocorticoid signalling differentially engages peripheral and central physiological systems. KEY POINTS: Duchenne muscular dystrophy affects multiple physiological systems, yet current glucocorticoid assessments rarely capture the CNS and metabolic effects of dosing regimens. Weekly vamorolone dosing improved muscle strength in mdx mice, while daily prednisolone failed to improve performance despite lowering plasma creatine kinase. Stress- and anxiety-related behaviours remained unchanged, despite adrenal atrophy revealing a disconnect between peripheral endocrine disruption and CNS phenotypes. Daily glucocorticoid regimens triggered endocrine and metabolic side effects, whereas weekly dosing reduced these effects. Prednisolone and vamorolone produced broadly similar systemic side-effect profiles, but dosing frequency was the primary determinant of their severity.
Insights
Dosing frequency significantly impacts Duchenne muscular dystrophy (DMD) treatment. Weekly vamorolone improved muscle strength in mice, while daily glucocorticoids showed limited benefit and severe side effects.
Area of Science:
- Biomedical Science
- Pharmacology
- Neurology
Background:
- Duchenne muscular dystrophy (DMD) is a multisystem disorder impacting muscle, metabolism, and the central nervous system (CNS).
- Glucocorticoids are standard DMD therapy, but their effects on CNS and metabolic phenotypes are poorly understood.
- Current assessments often overlook how dosing regimens influence multisystem outcomes.
Purpose of the Study:
- To compare daily versus weekly dosing of prednisolone and vamorolone in juvenile mdx mice.
- To evaluate the influence of dosing regimen and compound selection on multisystem efficacy and adverse effects.
- To determine how dosing frequency affects CNS, metabolic, and muscle outcomes in a preclinical DMD model.
Main Methods:
- Juvenile mdx mice were treated with daily or weekly prednisolone and vamorolone for 6 weeks.
- Multiorgan outcomes were assessed using behavioral assays, muscle function tests, and histopathology.
- Endocrine, metabolic, and cardiovascular parameters were quantified to assess systemic effects.
Main Results:
- Weekly vamorolone demonstrated the most significant improvements in functional and in vivo muscle strength.
- Daily glucocorticoid dosing failed to improve muscle function despite lowering creatine kinase levels.
- Daily regimens induced severe adrenal atrophy and metabolic consequences, which were attenuated by weekly dosing.
- CNS stress and anxiety responses were unaffected by treatment, indicating a dissociation from peripheral endocrine changes.
Conclusions:
- Dosing frequency is a critical determinant of glucocorticoid efficacy and safety in DMD.
- Integrated multiorgan evaluation is essential for understanding the full impact of DMD therapies.
- Therapeutic assessments should extend beyond muscle pathology to encompass CNS and metabolic effects.

