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From depression to bone health: Examining the skeletal effects of classical and rapid-acting antidepressants.

Depression is a brain disorder with systemic consequences including effects on bone health. Clinical and preclinical evidence has associated major depressive disorder (MDD) with reduced bone mineral density (BMD), increased bone resorption and a higher risk of fractures, particul

Authors
Louka P, Pitsillides A, Koumas M, Papacharalambous C, Sophocleous A
Journal
The international journal of neuropsychopharmacology
Published
2026-08-01
DOI
10.1093/ijnp/pyag044
PMID
42616023
Content type
Paper
Relation to the core question
Adjacent. Real psychedelic literature that does not bear on whether independent observers report the same forms. Most of this bibliography is adjacent, and that is not a criticism of the source.
Authority
Academic

Abstract

Depression is a brain disorder with systemic consequences including effects on bone health. Clinical and preclinical evidence has associated major depressive disorder (MDD) with reduced bone mineral density (BMD), increased bone resorption and a higher risk of fractures, particularly in older adults and postmenopausal women. Plausible mediators include chronic stress, hypothalamic-pituitary-adrenal (HPA) axis dysregulation, increased pro-inflammatory cytokines and altered serotonergic signalling, each of which can affect the balance of bone remodelling. Classical antidepressants, particularly selective serotonin reuptake inhibitors (SSRIs), have been associated with adverse bone outcomes in human studies, with parallel in vitro evidence indicating inhibition of osteoblast differentiation and mineralisation and increased osteoclast activity. Human biomarker studies and preclinical evidence suggest that ketamine-related compounds can modulate bone-related pathways, although the direction and clinical relevance of these effects appear context-, dose-, exposure- and model-dependent. Acute and repeated ketamine administration in patients with depression has been associated with changes in bone-turnover markers, including osteoprotegerin (OPG)/receptor activator of nuclear factor kappa-B (NF-κB) ligand (RANKL)-related and other bone-marker profiles, while rodent studies suggest that the (R)-ketamine enantiomer (arketamine) may attenuate stress- and ovariectomy-induced reductions in BMD and normalise the OPG/RANKL ratio. Conversely, preclinical bone-regeneration and explant data indicate that ketamine exposure can reduce bone-cell viability and impair bone healing under specific experimental conditions. The impact of the bioactive metabolite (2R,6R)-hydroxynorketamine (HNK), which is under clinical development for depression, on bone health remains unclear. At present, the evidence on the skeletal effects of ketamine, its enantiomers and its metabolites remains preli

Topics

  • ketamine

Citation

Louka P, Pitsillides A, Koumas M, Papacharalambous C, Sophocleous A (2026) From depression to bone health: Examining the skeletal effects of classical and rapid-acting antidepressants.. The international journal of neuropsychopharmacology. doi:10.1093/ijnp/pyag044

View source

DOI: 10.1093/ijnp/pyag044

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