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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.
Background:
Muscle wasting is a hallmark of many chronic conditions but also of aging and results in a progressive functional decline leading ultimately to disability. Androgens, such as testosterone were proposed as therapy to counteract muscle atrophy. However, this treatment is associated with potential cardiovascular and prostate cancer risks and therefore not acceptable for long-term treatment. Selective Androgen receptor modulators (SARM) are androgen receptor ligands that induce muscle anabolism while having reduced effects in reproductive tissues. Therefore, they represent an alternative to testosterone therapy. Our objective was to demonstrate the activity of SARM molecule (GLPG0492) on a immobilization muscle atrophy mouse model as compared to testosterone propionate (TP) and to identify putative biomarkers in the plasma compartment that might be related to muscle function and potentially translated into the clinical space.
Methods:
GLPG0492, a non-steroidal SARM, was evaluated and compared to TP in a mouse model of hindlimb immobilization.
Results:
GLPG0492 treatment partially prevents immobilization-induced muscle atrophy with a trend to promote muscle fiber hypertrophy in a dose-dependent manner. Interestingly, GLPG0492 was found as efficacious as TP at reducing muscle loss while sparing reproductive tissues. Furthermore, gene expression studies performed on tibialis samples revealed that both GLPG0492 and TP were slowing down muscle loss by negatively interfering with major signaling pathways controlling muscle mass homeostasis. Finally, metabolomic profiling experiments using 1H-NMR led to the identification of a plasma GLPG0492 signature linked to the modulation of cellular bioenergetic processes.
Conclusions:
Taken together, these results unveil the potential of GLPG0492, a non-steroidal SARM, as treatment for, at least, musculo-skeletal atrophy consecutive to coma, paralysis, or limb immobilization.
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.

