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Published on: July 4, 2017
Skeletal overgrowth in a pre-pubescent child treated with pan-FGFR inhibitor
Fataneh Majlessipour1, Gaohui Zhu2,3, Nicole Baca1
1Pediatric Hematology and Oncology, Cedars-Sinai Guerin Children's and Cedars-Sinai Cancer, Los Angeles, CA, 90048, USA.
Abstract:
Fibroblast growth factors and their receptors (FGFR) have major roles in both human growth and oncogenesis. In adults, therapeutic FGFR inhibitors have been successful against tumors that carry somatic FGFR mutations. In pediatric patients, trials testing these anti-tumor FGFR inhibitor therapeutics are underway, with several recent reports suggesting modest positive responses. Herein, we report an unforeseen outcome in a pre-pubescent child with an FGFR1-mutated glioma who was successfully treated with FDA-approved erdafitinib, a pan-FGFR inhibitor approved for treatment of Bladder tumors. While on treatment with erdafitinib, the patient experienced rapid skeletal and long bone overgrowth resulting in kyphoscoliosis, reminiscent of patients with congenital loss-of-function FGFR3 mutations. We utilized normal dermal fibroblast cells established from the patient as a surrogate model to demonstrate that insulin-like growth factor 1 (IGF-1), a factor important for developmental growth of bones and tissues, can activate the PI3K/AKT pathway in erdafitinib-treated cells but not the MAPK/ERK pathway. The IGF-I-activated PI3K/AKT signaling rescued normal fibroblasts from the cytotoxic effects of erdafitinib by promoting cell survival. We, therefore, postulate that IGF-I-activated P13K/AKT signaling likely continues to promote bone elongation in the growing child, but not in adults, treated with therapeutic pan-FGFR inhibitors. Importantly, since activated MAPK signaling counters bone elongation, we further postulate that prolonged blockage of the MAPK pathway with pan-FGFR inhibitors, together with actions of growth-promoting factors including IGF-1, could explain the abnormal skeletal and axial growth suffered by our pre-pubertal patient during systemic therapeutic use of pan-FGFR inhibitors. Further studies to find more targeted, and/or appropriate dosing, of pan-FGFR inhibitor therapeutics for children are essential to avoid unexpected off-target effects as was observed in our young patient.
Insights
Fibroblast growth factor receptor (FGFR) inhibitors caused unexpected bone overgrowth in a child with glioma. Insulin-like growth factor 1 (IGF-1) activated survival pathways, promoting growth in pediatric patients treated with FGFR inhibitors.
Area of Science:
- Oncology
- Pediatric Oncology
- Molecular Biology
Background:
- Fibroblast growth factors (FGFs) and their receptors (FGFRs) are crucial in human development and cancer.
- FGFR inhibitors are effective against adult tumors with somatic FGFR mutations.
- Pediatric trials for FGFR inhibitors are ongoing, showing some positive responses.
Observation:
- A pre-pubescent child with FGFR1-mutated glioma experienced rapid skeletal overgrowth while treated with erdafitinib, a pan-FGFR inhibitor.
- This overgrowth mimicked conditions seen in patients with loss-of-function FGFR3 mutations.
- Fibroblast cells from the patient showed that IGF-1 activated PI3K/AKT signaling, not MAPK/ERK, in the presence of erdafitinib.
Findings:
- Insulin-like growth factor 1 (IGF-1) promoted cell survival in erdafitinib-treated fibroblasts by activating the PI3K/AKT pathway.
- This suggests IGF-1-mediated PI3K/AKT signaling may drive bone elongation in growing children on pan-FGFR inhibitors.
- Blocked MAPK signaling, combined with growth factors like IGF-1, may explain the observed abnormal skeletal growth.
Implications:
- Therapeutic FGFR inhibitors may have different effects in pediatric patients due to ongoing growth.
- Targeted dosing and further research are crucial for safe and effective FGFR inhibitor use in children.
- Understanding IGF-1's role in mediating FGFR inhibitor side effects is vital for pediatric cancer treatment.
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