GLP-1 regulates osteo-adipogenic fate of BMSCs via HIF-2-AKT signaling and supports trabecular bone in glucocorticoid-induced osteoporosis.
Stem Cell Reports · 2026
Last updated 2026-09-22| Journal | Stem Cell Reports, 2026 |
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Abstract
Bone marrow mesenchymal stem cell (BMSC) lineage commitment contributes to metabolic bone diseases, but whether glucagon-like peptide-1 (GLP-1) regulates osteo-adipogenic fate remains unclear. Here, RNA sequencing was performed to identify potential pathways regulated by GLP-1 in BMSCs, followed by gain- and loss-of-function experiments. Furthermore, BMSC-specific Hif-2α knockout mice with glucocorticoid-induced osteoporosis were treated with semaglutide to evaluate skeletal effects. GLP-1 suppressed adipogenesis and promoted osteogenesis of BMSCs in a dose-dependent manner. Transcriptomic analysis identified PI3K-AKT and hypoxia signaling as major GLP-1-regulated pathways. Mechanistically, GLP-1 inhibited AKT activation during adipogenesis and reshaped AKT signaling dynamics during osteogenesis. Loss of HIF-2α largely abolished GLP-1-mediated regulation of AKT activity. In vivo, semaglutide improved trabecular bone mass in osteoporotic mice, whereas this bone-protective effect was markedly diminished in Hif-2α-knockout mice. Our findings suggest that GLP-1 modulates BMSC lineage commitment by inhibiting adipogenesis and enhancing osteogenesis through HIF-2α-associated regulation of AKT signaling.
Verbatim abstract via PubMed 42425087 ↗