Related Experiment Video
Updated: May 23, 2026

Characterizing Exon Skipping Efficiency in DMD Patient Samples in Clinical Trials of Antisense Oligonucleotides
Published on: May 7, 2020
Denosumab treatment for fibrous dysplasia
Alison M Boyce1, William H Chong, Jack Yao
1Skeletal Clinical Studies Unit, Craniofacial and Skeletal Diseases Branch, National Institute of Dental and Craniofacial Research, National Institutes of Health, Bethesda, MD, USA.
Abstract:
Fibrous dysplasia (FD) is a skeletal disease caused by somatic activating mutations of the cyclic adenosine monophosphate (cAMP)-regulating protein, α-subunit of the Gs stimulatory protein (G(s) α). These mutations lead to replacement of normal bone by proliferative osteogenic precursors, resulting in deformity, fracture, and pain. Medical treatment has been ineffective in altering the disease course. Receptor activator of NF-κB ligand (RANKL) is a cell-surface protein involved in many cellular processes, including osteoclastogenesis, and is reported to be overexpressed in FD-like bone cells. Denosumab is a humanized monoclonal antibody to RANKL approved for treatment of osteoporosis and prevention of skeletal-related events from bone metastases. We present the case of a 9-year-old boy with severe FD who was treated with denosumab for a rapidly expanding femoral lesion. Immunohistochemical staining on a pretreatment bone biopsy specimen revealed marked RANKL expression. He was started on monthly denosumab, with an initial starting dose of 1 mg/kg and planned 0.25 mg/kg dose escalations every 3 months. Over 7 months of treatment he showed marked reduction in pain, bone turnover markers (BTMs), and tumor growth rate. Denosumab did not appear to impair healing of a femoral fracture that occurred while on treatment. With initiation of treatment he developed hypophosphatemia and secondary hyperparathyroidism, necessitating supplementation with phosphorus, calcium, and calcitriol. BTMs showed rapid and sustained suppression. With discontinuation there was rapid and dramatic rebound of BTMs with cross-linked C-telopeptide (reflecting osteoclast activity) exceeding pretreatment levels, accompanied by severe hypercalcemia. In this child, denosumab lead to dramatic reduction of FD expansion and FD-related bone pain. Denosumab was associated with clinically significant disturbances of mineral metabolism both while on treatment and after discontinuation. Denosumab treatment of FD warrants further study to confirm efficacy and determine potential morbidity, as well as to determine the mechanism of RANKL in the pathogenesis of FD and related bone marrow stromal cell diseases.
Insights
Denosumab effectively reduced pain and lesion growth in a child with fibrous dysplasia (FD). However, it caused significant mineral metabolism disturbances, requiring careful monitoring and further study for FD treatment.
Area of Science:
- Endocrinology
- Oncology
- Orthopedics
Background:
- Fibrous dysplasia (FD) is a rare skeletal disorder caused by Gsα protein mutations, leading to bone deformity and pain.
- Current medical treatments for FD are largely ineffective in altering disease progression.
- Receptor activator of NF-κB ligand (RANKL) is implicated in FD pathogenesis and is overexpressed in FD-like bone cells.
Observation:
- A 9-year-old boy with severe FD and a rapidly expanding femoral lesion was treated with denosumab, a RANKL inhibitor.
- Pretreatment bone biopsy showed high RANKL expression.
- The patient received monthly denosumab injections with dose escalations.
Findings:
- Denosumab treatment led to significant reductions in pain, bone turnover markers (BTMs), and tumor growth rate over 7 months.
- A femoral fracture sustained during treatment healed without apparent impairment.
- Treatment induced hypophosphatemia and secondary hyperparathyroidism, requiring supplementation.
- Discontinuation resulted in a rapid rebound of BTMs and severe hypercalcemia.
Implications:
- Denosumab shows potential efficacy in reducing FD expansion and associated bone pain.
- Treatment is linked to significant mineral metabolism disturbances, necessitating careful management.
- Further research is crucial to confirm denosumab's efficacy, assess morbidity, and elucidate RANKL's role in FD pathogenesis.
