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Updated: May 5, 2026

Assessing Functional Performance in the Mdx Mouse Model
Published on: March 27, 2014
Effects of Dantrolene Therapy on Disease Phenotype in Dystrophin Deficient mdx Mice
James L Quinn1, Tony Huynh, Kitipong Uaesoontrachoon
1Research Center for Genetic Medicine, Children's National Medical Center, Washington, DC, USA.
Abstract:
Dystrophin deficiency causes contraction-induced injury and damage to the muscle fiber, resulting in sustained increase in intracellular calcium levels, activation of calcium-dependent proteases and cell death. It is known that the Ryanodine receptor (RyR1) on the sarcoplasmic reticular (SR) membrane controls calcium release. Dantrolene, an FDA approved skeletal muscle relaxant, inhibits the release of calcium from the SR during excitation-contraction and suppresses uncontrolled calcium release by directly acting on the RyR complex to limit its activation. This study examines whether Dantrolene can reduce the disease phenotype in the mdx mouse model of muscular dystrophy. We treated mdx mice (4 weeks old) with daily intraperitoneal injections of 40mg/kg of Dantrolene for 6 weeks and measured functional (grip strength, in vitro force contractions), behavioral (open field digiscan), imagining (optical imaging for inflammation), histological (H&E), and molecular (protein and RNA) endpoints in a blinded fashion. We found that treatment with Dantrolene resulted in decreased grip strength and open field behavioral activity in mdx mice. There was no significant difference in inflammation either by optical imaging analysis of cathepsin activity or histological (H&E) analysis. In vitro force contraction measures showed no changes in EDL muscle-specific force, lengthening-contraction force deficit, or fatigue resistance. We found Dantrolene treatment significantly reduces serum CK levels. Further, Dantrolene-treated mice showed decreased SERCA1 but not RyR1 expression in skeletal muscle. These results suggest that Dantrolene treatment alone has no significant beneficial effects at the tested doses in young mdx mice.
Insights
Dantrolene treatment did not improve muscle function or reduce inflammation in young mdx mice with muscular dystrophy. While it lowered serum creatine kinase (CK) levels, it also decreased grip strength and behavioral activity.
Area of Science:
- Biomedical Science
- Muscle Physiology
- Pharmacology
Background:
- Dystrophin deficiency in muscular dystrophy leads to muscle fiber damage and increased intracellular calcium.
- Ryanodine receptor 1 (RyR1) regulates calcium release from the sarcoplasmic reticulum (SR).
- Dantrolene inhibits calcium release from the SR, potentially mitigating muscle damage.
Purpose of the Study:
- To investigate the therapeutic potential of Dantrolene in the mdx mouse model of muscular dystrophy.
- To assess Dantrolene's effects on disease phenotype, muscle function, and molecular markers.
Main Methods:
- Young mdx mice received daily Dantrolene injections for six weeks.
- Evaluated functional (grip strength, in vitro force contractions), behavioral, imaging, histological, and molecular endpoints.
- Blinded analysis was performed on all collected data.
Main Results:
- Dantrolene treatment decreased grip strength and open field activity in mdx mice.
- No significant changes in inflammation were observed via optical imaging or histology.
- In vitro muscle force, force deficit, and fatigue resistance remained unchanged.
- Serum creatine kinase (CK) levels were significantly reduced.
- Skeletal muscle SERCA1 expression decreased, but RyR1 expression did not change.
Conclusions:
- Dantrolene monotherapy at the tested dose showed no significant beneficial effects on the disease phenotype in young mdx mice.
- Further research may be needed to explore combination therapies or different dosing strategies.
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