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Updated: May 5, 2026

Next Generation Sequencing for the Detection of Actionable Mutations in Solid and Liquid Tumors
Published on: September 20, 2016
Genomic aberrations in the FGFR pathway: opportunities for targeted therapies in solid tumors
R Dienstmann1, J Rodon2, A Prat3
1Molecular Pathology Lab, Massachusetts General Hospital Cancer Center, Boston, USA.
Abstract:
The fibroblast growth factor receptor (FGFR) cascade plays crucial roles in tumor cell proliferation, angiogenesis, migration and survival. Accumulating evidence suggests that in some tumor types, FGFRs are bona fide oncogenes to which cancer cells are addicted. Because FGFR inhibition can reduce proliferation and induce cell death in a variety of in vitro and in vivo tumor models harboring FGFR aberrations, a growing number of research groups have selected FGFRs as targets for anticancer drug development. Multikinase FGFR/vascular endothelial growth factor receptor (VEGFR) inhibitors have shown promising activity in breast cancer patients with FGFR1 and/or FGF3 amplification. Early clinical trials with selective FGFR inhibitors, which may overcome the toxicity constraints raised by multitarget kinase inhibition, are recruiting patients with known FGFR(1-4) status based on genomic screens. Preliminary signs of antitumor activity have been demonstrated in some tumor types, including squamous cell lung carcinomas. Rational combination of targeted therapies is expected to further increase the efficacy of selective FGFR inhibitors. Herein, we discuss unsolved questions in the clinical development of these agents and suggest guidelines for management of hyperphosphatemia, a class-specific mechanism-based toxicity. In addition, we propose standardized definitions for FGFR1 and FGFR2 gene amplification based on in situ hybridization methods. Extended access to next-generation sequencing platforms will facilitate the identification of diseases in which somatic FGFR(1-4) mutations, amplifications and fusions are potentially driving cancer cell viability, further strengthening the role of FGFR signaling in cancer biology and providing more possibilities for the therapeutic application of FGFR inhibitors.
Insights
Fibroblast growth factor receptor (FGFR) inhibitors show promise as targeted cancer therapies by inhibiting tumor growth and survival. Clinical trials are exploring selective FGFR inhibitors for various cancers with FGFR alterations.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Fibroblast growth factor receptor (FGFR) signaling is critical for tumor progression, including proliferation, angiogenesis, migration, and survival.
- FGFRs can act as oncogenes in certain cancers, making cancer cells dependent on this pathway.
- FGFR aberrations (mutations, amplifications, fusions) are increasingly recognized as drivers of cancer viability.
Purpose of the Study:
- To review the role of FGFR signaling in cancer and the development of FGFR inhibitors as targeted therapies.
- To discuss the clinical development of FGFR inhibitors, including early clinical trial findings and challenges.
- To propose guidelines for managing hyperphosphatemia and standardize definitions for FGFR gene amplification.
Main Methods:
- Review of preclinical and clinical data on FGFR inhibitors.
- Analysis of clinical trial outcomes in patients with FGFR-altered cancers.
- Discussion of diagnostic methods like in situ hybridization and next-generation sequencing for FGFR status.
Main Results:
- Multikinase FGFR/VEGFR inhibitors show activity in breast cancer with FGFR1/FGF3 amplification.
- Early trials with selective FGFR inhibitors demonstrate antitumor activity in some tumor types, including squamous cell lung carcinoma.
- Hyperphosphatemia is a class-specific toxicity requiring management guidelines.
Conclusions:
- FGFR inhibitors represent a promising targeted therapy approach for cancers with FGFR aberrations.
- Further research is needed to optimize combination therapies and address clinical development challenges.
- Standardized diagnostic approaches and toxicity management are crucial for effective FGFR inhibitor therapy.
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