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Hiding in plain sight: Gene panel and genetic markers reveal 26-year undiagnosed tumor-induced osteomalacia of the rib concurrently misdiagnosed as X-linked hypophosphatemia
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Hiding in plain sight: Gene panel and genetic markers reveal 26-year undiagnosed tumor-induced osteomalacia of the rib concurrently misdiagnosed as X-linked hypophosphatemia

J.M. Colazo, J.A. DeCorte, E.A. Gillaspie, A.L. Folpe and K.M. Dahir
Bone Reports, Vol.14
2021

Abstract

68Ga-DOTATATE Burosumab Chromogenic in situ hybridization FGF23 FGFR1 Fibroblast growth factor 23 Fibroblast growth factor receptor 1 fibronectin FN1 FN1-FGFR1 Paraneoplastic PHEX phosphate wasting disorders Phosphaturic mesenchymal tumor phosphorous RNA sequencing TIO Tumor-induced osteomalacia X-linked hypophosphatemic rickets XLH burosumab fibroblast growth factor 23 fibroblast growth factor receptor 1 fibronectin gallium dotatate ga 68 parathyroid hormone[1-34] vitamin D adult Article bone pain calcium blood level case report clinical article diagnostic error disease exacerbation dual energy X ray absorptiometry family history fatigue female follow up fracture fusion gene gait disorder genetic marker human in situ hybridization muscle weakness oncogenic osteomalacia pain phenotype phosphate blood level priority journal rib resection RNA sequencing spine fracture X linked hypophosphatemic rickets
Tumor-induced osteomalacia (TIO), caused by phosphaturic mesenchymal tumors (PMTs), is a rare paraneoplastic syndrome characterized by frequent bone fractures, bone pain, muscle weakness, and affected gait. These tumors typically secrete high levels of Fibroblastic Growth Factor 23 (FGF23), a hormone which acts on the kidney to cause hypophosphatemia, ultimately impairing bone mineralization. In this case report, we present a 41-year-old female with FGF23-mediated hypophosphatemia with a 26-year delay in TIO diagnosis and a concurrent misdiagnosis of X-linked hypophosphatemic rickets (XLH). Given an absence of family history of hypophosphatemia, a 13-gene hypophosphatemia panel including XLH (PHEX gene) was performed and came back negative prompting a diagnostic search for a PMT causing TIO. A 68Ga-DOTATATE PET/CT scan revealed the presence of a 9th right rib lesion, for which she underwent rib resection. The patient's laboratory values (notably serum phosphorus, calcium, and vitamin D) normalized, with FGF23 decreasing immediately after surgery, and symptoms resolving over the next three months. Chromogenic in situ hybridization (CISH) and RNA-sequencing of the tumor were positive for FGF23 (CISH) and the transcriptional marker FN1-FGFR1, a novel fusion gene between fibronectin (FN1) and Fibroblast Growth Factor Receptor 1 (FGFR1), previously determined to be present in the majority of TIO-associated tumors. This case demonstrates the notion that rare and diagnostically challenging disorders like TIO can be undiagnosed and/or misdiagnosed for many years, even by experienced clinicians and routine lab testing. It also underscores the power of novel tools available to clinicians such as gene panels, CISH, and RNA sequencing, and their ability to characterize TIO and its related tumors in the context of several phenotypically similar diseases. © 2020 The Authors
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https://www.scopus.com/inward/record.uri?eid=2-s2.0-85098978872&doi=10.1016%2fj.bonr.2020.100744&partnerID=40&md5=af944b09f7eb81d8f79dfc5c9a2f656bView
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https://doi.org/10.1016/j.bonr.2020.100744View
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