Related Experiment Video
Updated: Mar 19, 2026

Modeling Myotonic Dystrophy 1 in C2C12 Myoblast Cells
Published on: July 29, 2016
A Molecular Signature of Myalgia in Myotonic Dystrophy 2
Rabih Moshourab1, Vinko Palada2, Stefanie Grunwald2
1Molecular Physiology of Somatic Sensation, Max Delbrück Center for Molecular Medicine, Berlin, Germany; Dept. of Anesthesiology, Charité Universitätsmedizin Berlin, Berlin, Germany.
Background:
Chronic muscle pain affects close to 20% of the population and is a major health burden. The underlying mechanisms of muscle pain are difficult to investigate as pain presents in patients with very diverse histories. Treatment options are therefore limited and not tailored to underlying mechanisms. To gain insight into the pathophysiology of myalgia we investigated a homogeneous group of patients suffering from myotonic dystrophy type 2 (DM2), a monogenic disorder presenting with myalgia in at least 50% of affected patients.
Methods:
After IRB approval we performed an observational cross-sectional cohort study and recruited 42 patients with genetically confirmed DM2 plus 20 healthy age and gender matched control subjects. All participants were subjected to an extensive sensory-testing protocol. In addition, RNA sequencing was performed from 12 muscle biopsy specimens obtained from DM2 patients.
Findings:
Clinical sensory testing as well as RNA sequencing clearly separated DM2 myalgic from non-myalgia patients and also from healthy controls. In particular pressure pain thresholds were significantly lowered for all muscles tested in myalgic DM2 patients but were not significantly different between non-myalgic patients and healthy controls. The expression of fourteen muscle expressed genes in myalgic patients was significantly up or down-regulated in myalgic compared to non-myalgic DM2 patients.
Interpretation:
Our data support the idea that molecular changes in the muscles of DM2 patients are associated with muscle pain. Further studies should address whether muscle-specific molecular pathways play a significant role in myalgia in order to facilitate the development of mechanism-based therapeutic strategies to treat musculoskeletal pain.
Funding:
This study was funded by the German Research Society (DFG, GK1631), KAP programme of Charité Universitätsmedizin Berlin and Max Delbrück Center for Molecular Medicine.
Insights
Myotonic dystrophy type 2 (DM2) patients with muscle pain show distinct molecular changes in muscles. These findings in DM2 myalgia could lead to targeted treatments for chronic muscle pain.
Area of Science:
- Neurology
- Genetics
- Molecular Biology
Background:
- Chronic muscle pain (myalgia) affects nearly 20% of the population, posing a significant health burden.
- Investigating myalgia mechanisms is challenging due to patient heterogeneity.
- Myotonic dystrophy type 2 (DM2) offers a model for studying myalgia due to its genetic basis and high prevalence of muscle pain.
Purpose of the Study:
- To investigate the underlying mechanisms of myalgia in a homogeneous group of patients with myotonic dystrophy type 2 (DM2).
- To identify molecular differences in muscles between DM2 patients with and without myalgia, and compare them to healthy controls.
Main Methods:
- An observational, cross-sectional cohort study involving 42 genetically confirmed DM2 patients and 20 healthy controls.
- Comprehensive sensory testing was performed on all participants.
- RNA sequencing was conducted on muscle biopsy specimens from 12 DM2 patients.
Main Results:
- Clinical sensory testing and RNA sequencing differentiated DM2 patients with myalgia from those without and from healthy controls.
- DM2 patients with myalgia exhibited significantly lower pressure pain thresholds compared to non-myalgic DM2 patients and healthy controls.
- Significant up- or down-regulation of fourteen muscle-expressed genes was observed in myalgic DM2 patients compared to non-myalgic DM2 patients.
Conclusions:
- Molecular alterations within muscles of DM2 patients are associated with muscle pain.
- Further research into muscle-specific molecular pathways may enable mechanism-based therapies for musculoskeletal pain.
Related Concept Videos
Myasthenia Gravis: Diagnostic Tests
The edrophonium test is a diagnostic tool for myasthenia gravis. It involves...
Satellite Stem Cells and Muscular Dystrophy

