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May 23, 2019Journal of Clinical Investigation312 citationsOpen Access

RANKL inhibition improves muscle strength and insulin sensitivity and restores bone mass

NBNicolas BonnetLBLucie BourgoinEBEmmanuel Biver

Key Points

  • This research aims to evaluate the effects of RANKL inhibition on muscle strength and insulin sensitivity in both osteoporotic women and mice with sarcopenia.
  • Investigated RANKL inhibitors like denosumab and OPG in osteoporotic women over 3 years and in HuRANKL-Tg+ and Pparb-/- mice.
  • Compared improvements in muscle strength, insulin sensitivity, and gene expression related to muscle weakness.
  • Measured appendicular lean mass, handgrip strength, limb force, muscle volume, and gene expression changes.
  • Denosumab significantly improved appendicular lean mass and handgrip strength in women compared to no treatment.
  • In HuRANKL-Tg+ mice, denosumab and OPG enhanced limb force proportionally to increased muscle mass and improved insulin sensitivity, while reducing inflammatory gene expression (myostatin, PTPRγ).
  • In Pparb-/- mice, OPG also enhanced muscle volume and force, normalizing insulin signaling and reducing inflammatory genes.

Abstract

Receptor activator of Nfkb ligand (RANKL) activates, while osteoprotegerin (OPG) inhibits, osteoclastogenesis. In turn a neutralizing Ab against RANKL, denosumab improves bone strength in osteoporosis. OPG also improves muscle strength in mouse models of Duchenne's muscular dystrophy (mdx) and denervation-induce atrophy, but its role and mechanisms of action on muscle weakness in other conditions remains to be investigated. We investigated the effects of RANKL inhibitors on muscle in osteoporotic women and mice that either overexpress RANKL (HuRANKL-Tg+), or lack Pparb and concomitantly develop sarcopenia (Pparb-/-). In women, denosumab over 3 years improved appendicular lean mass and handgrip strength compared to no treatment, whereas bisphosphonate did not. HuRANKL-Tg+ mice displayed lower limb force and maximal speed, while their leg muscle mass was diminished, with a lower number of type I and II fibers. Both OPG and denosumab increased limb force proportionally to the increase in muscle mass. They markedly improved muscle insulin sensitivity and glucose uptake, and decrease anti-myogenic and inflammatory gene expression in muscle, such as myostatin and protein tyrosine phosphatase receptor-γ. Similarly, in Pparb-/-, OPG increased muscle volume and force, while also normalizing their insulin signaling and higher expression of inflammatory genes in skeletal muscle. In conclusions, RANKL deteriorates, while its inhibitor improves, muscle strength and insulin sensitivity in osteoporotic mice and humans. Hence denosumab could represent a novel therapeutic approach for sarcopenia.

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Cite This Study

Bonnet et al. (2019) studied this question.

synapsesocial.com/papers/69d94d1dc7f0c3ae80a3cb6dhttps://doi.org/10.1172/jci125915
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1RANK-ligand inhibition to combat sarcopenia with underlying osteoporosis: a study protocol for a randomized, double-blind, double-dummy, active-controlled trial2025
  2. 2RANKL signaling drives skeletal muscle into the oxidative profile2024 · 12 citations
  3. 3Anti-RANKL improves muscle dysfunction and strengthens bone in laminin-α2-deficient dy2J/dy2J dystrophic mice.2026
  4. 4Rankl genetic deficiency and functional blockade undermine skeletal stem and progenitor cell differentiation2024 · 2 citations
  5. 5RANKL inhibition reduces lesional cellularity and Gαs variant expression and enables osteogenic maturation in fibrous dysplasia2024 · 22 citations