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.

Ebiomedicine
|June 21, 2016
PubMed
Abstract

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.