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RANKL inhibition reduces lesional cellularity and Gαs variant expression and enables osteogenic maturation in fibrous dysplasia

摘要Fibrous dysplasia(FD)is a rare,disabling skeletal disease for which there are no established treatments.Growing evidence supports inhibiting the osteoclastogenic factor receptor activator of nuclear kappa-B ligand(RANKL)as a potential treatment strategy.In this study,we investigated the mechanisms underlying RANKL inhibition in FD tissue and its likely indirect effects on osteoprogenitors by evaluating human FD tissue pre-and post-treatment in a phase 2 clinical trial of denosumab(NCT03571191)and in murine in vivo and ex vivo preclinical models.Histological analysis of human and mouse tissue demonstrated increased osteogenic maturation,reduced cellularity,and reduced expression of the pathogenic Gαs variant in FD lesions after RANKL inhibition.RNA sequencing of human and mouse tissue supported these findings.The interaction between osteoclasts and mutant osteoprogenitors was further assessed in an ex vivo lesion model,which indicated that the proliferation of abnormal FD osteoprogenitors was dependent on osteoclasts.The results from this study demonstrated that,in addition to its expected antiosteoclastic effect,denosumab reduces FD lesion activity by decreasing FD cell proliferation and increasing osteogenic maturation,leading to increased bone formation within lesions.These findings highlight the unappreciated role of cellular crosstalk between osteoclasts and preosteoblasts/osteoblasts as a driver of FD pathology and demonstrate a novel mechanism of action of denosumab in the treatment of bone disease.

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作者 Luis F.de Castro [1] Jarred M.Whitlock [2] Zachary Michel [1] Kristen Pan [3] Jocelyn Taylor [4] Vivian Szymczuk [4] Brendan Boyce [5] Daniel Martin [6] Vardit Kram [4] Rebeca Galisteo [1] Kamran Melikov [2] Leonid V.Chernomordik [2] Michael T.Collins [1] Alison M.Boyce [4] 学术成果认领
作者单位 Skeletal Disorders and Mineral Homeostasis Section,National Institute of Dental and Craniofacial Research,National Institutes of Health,Bethesda,MD,USA [1] Section on Membrane Biology,Eunice Kennedy Shriver National Institute of Child Health and Human Development,National Institutes of Health,Bethesda,MD,USA [2] Metabolic Bone Disorders Unit,National Institute of Dental and Craniofacial Research,National Institutes of Health,Bethesda,MD,USA;Department of Plastic and Reconstructive Surgery,The Johns Hopkins Medical Institutions,Baltimore,MD,USA [3] Metabolic Bone Disorders Unit,National Institute of Dental and Craniofacial Research,National Institutes of Health,Bethesda,MD,USA [4] Department of Pathology and Laboratory Medicine,University of Rochester Medical Center,Rochester,NY,USA [5] NIDCR Genomics and Computational Biology Core,National Institute of Dental and Craniofacial Research,National Institutes of Health,Bethesda,MD,USA [6]
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DOI 10.1038/s41413-023-00311-7
发布时间 2024-05-21(万方平台首次上网日期,不代表论文的发表时间)
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骨研究(英文版)

骨研究(英文版)

2024年12卷1期

165-179页

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