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Resistance to Selective FGFR Inhibitors in FGFR-Driven Urothelial Cancer
Francesco Facchinetti1, Antoine Hollebecque2,3, Floriane Braye1
1Université Paris-Saclay, Gustave Roussy, Inserm U981, Villejuif, France.
Abstract:
Several fibroblast growth factor receptor (FGFR) inhibitors are approved or in clinical development for the treatment of FGFR-driven urothelial cancer, and molecular mechanisms of resistance leading to patient relapses have not been fully explored. We identified 21 patients with FGFR-driven urothelial cancer treated with selective FGFR inhibitors and analyzed postprogression tissue and/or circulating tumor DNA (ctDNA). We detected single mutations in the FGFR tyrosine kinase domain in seven (33%) patients (FGFR3 N540K, V553L/M, V555L/M, E587Q; FGFR2 L551F) and multiple mutations in one (5%) case (FGFR3 N540K, V555L, and L608V). Using Ba/F3 cells, we defined their spectrum of resistance/sensitivity to multiple selective FGFR inhibitors. Eleven (52%) patients harbored alterations in the PI3K-mTOR pathway (n = 4 TSC1/2, n = 4 PIK3CA, n = 1 TSC1 and PIK3CA, n = 1 NF2, n = 1 PTEN). In patient-derived models, erdafitinib was synergistic with pictilisib in the presence of PIK3CA E545K, whereas erdafitinib-gefitinib combination was able to overcome bypass resistance mediated by EGFR activation.
Significance:
In the largest study on the topic thus far, we detected a high frequency of FGFR kinase domain mutations responsible for resistance to FGFR inhibitors in urothelial cancer. Off-target resistance mechanisms involved primarily the PI3K-mTOR pathway. Our findings provide preclinical evidence sustaining combinatorial treatment strategies to overcome bypass resistance. See related commentary by Tripathi et al., p. 1964. This article is featured in Selected Articles from This Issue, p. 1949.
Insights
Mechanisms of resistance to fibroblast growth factor receptor (FGFR) inhibitors in urothelial cancer involve FGFR mutations and PI3K-mTOR pathway alterations. Combinatorial therapies show promise for overcoming treatment resistance.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Fibroblast growth factor receptor (FGFR) inhibitors are crucial for treating FGFR-driven urothelial cancer.
- Mechanisms of resistance to these inhibitors and subsequent patient relapse require further investigation.
Purpose of the Study:
- To identify molecular mechanisms of resistance to selective FGFR inhibitors in urothelial cancer.
- To evaluate potential combinatorial treatment strategies to overcome resistance.
Main Methods:
- Analysis of postprogression tissue and circulating tumor DNA (ctDNA) from 21 patients treated with FGFR inhibitors.
- Functional characterization of identified mutations using Ba/F3 cell models.
- Preclinical testing of drug combinations in patient-derived models.
Main Results:
- High frequency of FGFR kinase domain mutations (33% single, 5% multiple) identified as a resistance mechanism.
- Alterations in the PI3K-mTOR pathway (TSC1/2, PIK3CA, NF2, PTEN) were observed in 52% of patients.
- Synergy between erdafitinib and pictilisib observed with PIK3CA E545K; erdafitinib-gefitinib combination overcame EGFR-mediated resistance.
Conclusions:
- FGFR mutations and PI3K-mTOR pathway alterations are key mechanisms of resistance to FGFR inhibitors in urothelial cancer.
- Preclinical data support combinatorial strategies, such as FGFR and PI3K-mTOR inhibition, to overcome resistance.
- Targeting bypass resistance pathways may improve therapeutic outcomes for patients with urothelial cancer.
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