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FGF-23 in fibrous dysplasia of bone and its relationship to renal phosphate wasting
Mara Riminucci, Michael T. Collins, Neal S. Fedarko, Natasha Cherman, Alessandro Corsi, Kenneth E. White, Steven Waguespack, Anurag Gupta, Tamara Hannon, Michael J. Econs, Paolo Bianco, Pamela Gehron Robey
Mara Riminucci, Michael T. Collins, Neal S. Fedarko, Natasha Cherman, Alessandro Corsi, Kenneth E. White, Steven Waguespack, Anurag Gupta, Tamara Hannon, Michael J. Econs, Paolo Bianco, Pamela Gehron Robey
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Article Bone biology

FGF-23 in fibrous dysplasia of bone and its relationship to renal phosphate wasting

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Abstract

FGF-23, a novel member of the FGF family, is the product of the gene mutated in autosomal dominant hypophosphatemic rickets (ADHR). FGF-23 has been proposed as a circulating factor causing renal phosphate wasting not only in ADHR (as a result of inadequate degradation), but also in tumor-induced osteomalacia (as a result of excess synthesis by tumor cells). Renal phosphate wasting occurs in approximately 50% of patients with McCune-Albright syndrome (MAS) and fibrous dysplasia of bone (FD), which result from postzygotic mutations of the GNAS1 gene. We found that FGF-23 is produced by normal and FD osteoprogenitors and bone-forming cells in vivo and in vitro. In situ hybridization analysis of FGF-23 mRNA expression identified “fibrous” cells, osteogenic cells, and cells associated with microvascular walls as specific cellular sources of FGF-23 in FD. Serum levels of FGF-23 were increased in FD/MAS patients compared with normal age-matched controls and significantly higher in FD/MAS patients with renal phosphate wasting compared with those without, and correlated with disease burden bone turnover markers commonly used to assess disease activity. Production of FGF-23 by FD tissue may play an important role in the renal phosphate–wasting syndrome associated with FD/MAS.

Authors

Mara Riminucci, Michael T. Collins, Neal S. Fedarko, Natasha Cherman, Alessandro Corsi, Kenneth E. White, Steven Waguespack, Anurag Gupta, Tamara Hannon, Michael J. Econs, Paolo Bianco, Pamela Gehron Robey

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Figure 6

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Expression of FGF-23 mRNA and protein. (a) RT-PCR primer sets that gener...
Expression of FGF-23 mRNA and protein. (a) RT-PCR primer sets that generate 251- and 373-bp products. FGF-23 mRNA was identified in fresh FD tissue (lane 1), in normal, nonclonal bone marrow stromal cells (BMSC) and multicolony-derived strains (MCDS) from a normal donor (lane 2), nonclonal strains of FD-derived stromal cells (comprising mutated and nonmutated cells) (lane 3), in pure strains of GNAS1-mutated stromal cells (FD 100% mut) (lane 4), and in HTB cells from normal (lanes 5 and 6) and FD (lane 7) donors. The identity of the amplification product was verified by DNA sequencing. (b) Conditioned medium from serum-free cultures of normal bone marrow stromal cells (BMSC), FD-derived nonclonal multicolony (mixed) strains and pure strains of GNAS1-mutated stromal cells (FD 100% mut), and normal and FD HTB cells (HTB) were harvested at 24 hours and analyzed by ELISA for production of FGF-23. Measurable levels of FGF-23 were observed in all cultures, with no significant difference between GNAS1-mutation status or type of cell culture. The values represent the combined results of two separate experiments and error bars represent standard error of the mean. Standard medium (containing 15% FBS) does not contain detectable FGF-23. RIU, relative immunoreactive unit.

Copyright © 2026 American Society for Clinical Investigation
ISSN: 0021-9738 (print), 1558-8238 (online)

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