Facts and New Hopes on Selective FGFR Inhibitors in Solid Tumors
Francesco Facchinetti1, Antoine Hollebecque2, Rastislav Bahleda2
1INSERM U981, Gustave Roussy Cancer Campus, Université Paris Saclay, Villejuif, France.
Abstract:
Precision oncology relies on the identification of molecular alterations, responsible for tumor initiation and growth, which are suitable targets of specific inhibitors. The development of FGFR inhibitors represents an edifying example of the rapid evolution in the field of targeted oncology, with 10 different FGFR tyrosine kinase inhibitors actually under clinical investigation. In parallel, the discovery of FGFR activating molecular alterations (mainly FGFR3 mutations and FGFR2 fusions) across many tumor types, especially urothelial carcinomas and intrahepatic cholangiocarcinomas, widens the selection of patients that might benefit from selective FGFR inhibitors. The ongoing concomitant clinical evaluation of selective FGFR inhibitors in molecularly selected solid tumors brings new hopes for patients with metastatic cancer, for tumors so far excluded from molecularly guided treatments. Matching molecularly selected tumors with selective FGFR inhibitors has indeed led to promising results in phase I and II trials, justifying their registration to be expected in a near future, such as the recent accelerated approval of erdafitinib granted by the FDA for urothelial cancer. Widening our knowledge of the activity, efficacy, and toxicities relative to the selective FGFR tyrosine kinase inhibitors under clinical investigation, according to the exact FGFR molecular alteration, will be crucial to determine the optimal therapeutic strategy for patients suffering from FGFR-driven tumors. Similarly, identifying with appropriate molecular diagnostic, every single tumor harboring targetable FGFR alterations will be of utmost importance to attain the best outcomes for patients with FGFR-driven cancer.
Insights
Targeted therapies for FGFR-driven cancers are advancing rapidly. Identifying specific FGFR alterations and matching them with selective inhibitors offers new hope for patients with metastatic disease.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Precision oncology targets molecular alterations driving tumor growth.
- Fibroblast Growth Factor Receptor (FGFR) inhibitors are a key area of targeted therapy development.
- FGFR alterations are implicated in various cancers, including urothelial and intrahepatic cholangiocarcinomas.
Purpose of the Study:
- To review the development and clinical investigation of FGFR inhibitors.
- To highlight the expanding role of FGFR alterations in patient selection for targeted therapies.
- To discuss the future directions in optimizing FGFR-targeted treatment strategies.
Main Methods:
- Review of clinical trials and research on FGFR inhibitors.
- Analysis of molecular alterations (mutations, fusions) in FGFR genes.
- Evaluation of patient selection criteria for FGFR-targeted therapies.
Main Results:
- Ten different FGFR tyrosine kinase inhibitors are under clinical investigation.
- FGFR alterations are found in various solid tumors, expanding patient eligibility.
- Early-phase trials show promising results for selective FGFR inhibitors in molecularly selected patients.
- Erdafitinib received accelerated FDA approval for urothelial cancer.
Conclusions:
- Selective FGFR inhibitors show promise for FGFR-driven tumors, including metastatic cancers.
- Understanding the specific FGFR alteration is crucial for optimizing treatment efficacy and toxicity.
- Accurate molecular diagnostics are essential for identifying patients who can benefit from FGFR-targeted therapies.
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