Characterization of GLPG0492, a selective androgen receptor modulator, in a mouse model of hindlimb immobilization

Roland Blanqué, Liên Lepescheux, Marielle Auberval

  • 1GALAPAGOS SASU, 102 Avenue Gaston Roussel, 93230 Romainville, France. philippe.clement-lacroixl@glpg.com.

Abstract

Insights

Selective Androgen Receptor Modulators (SARMs) like GLPG0492 show potential for treating muscle atrophy. This non-steroidal SARM effectively combats muscle loss from immobilization, offering a safer alternative to testosterone therapy.

Area of Science:

  • Pharmacology
  • Muscle Physiology
  • Biomarker Discovery

Background:

  • Muscle wasting, common in aging and chronic diseases, leads to functional decline.
  • Testosterone therapy for muscle atrophy carries risks (cardiovascular, prostate cancer).
  • Selective Androgen Receptor Modulators (SARMs) offer muscle anabolism with fewer side effects on reproductive tissues.

Purpose of the Study:

  • Evaluate the efficacy of the non-steroidal SARM GLPG0492 in a mouse model of immobilization-induced muscle atrophy.
  • Compare GLPG0492's effects to testosterone propionate (TP).
  • Identify plasma biomarkers associated with muscle function and potential clinical translation.

Main Methods:

  • Utilized a mouse model of hindlimb immobilization.
  • Administered GLPG0492 and testosterone propionate (TP) for comparison.
  • Conducted gene expression analysis on tibialis muscle samples.
  • Performed plasma metabolomic profiling using 1H-NMR.

Main Results:

  • GLPG0492 partially prevented immobilization-induced muscle atrophy in a dose-dependent manner.
  • GLPG0492 demonstrated efficacy comparable to TP in reducing muscle loss while sparing reproductive tissues.
  • Both GLPG0492 and TP modulated signaling pathways controlling muscle mass homeostasis.
  • Identified a plasma GLPG0492 signature linked to cellular bioenergetic processes.

Conclusions:

  • GLPG0492 shows promise as a therapeutic agent for musculo-skeletal atrophy.
  • Potential applications include conditions like coma, paralysis, and limb immobilization.
  • Non-steroidal SARMs represent a viable alternative to testosterone for muscle atrophy treatment.

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