Efficacy of futibatinib, an irreversible fibroblast growth factor receptor inhibitor, in FGFR-altered breast cancer

Author:

Saridogan Turcin,Akcakanat Argun,Zhao Ming,Evans Kurt W.,Yuca Erkan,Scott Stephen,Kirby Bryce P.,Zheng Xiaofeng,Ha Min Jin,Chen Huiqin,Ng Patrick K. S.,DiPeri Timothy P.,Mills Gordon B.,Rodon Ahnert Jordi,Damodaran Senthil,Meric-Bernstam Funda

Abstract

AbstractSeveral alterations in fibroblast growth factor receptor (FGFR) genes have been found in breast cancer; however, they have not been well characterized as therapeutic targets. Futibatinib (TAS-120; Taiho) is a novel, selective, pan-FGFR inhibitor that inhibits FGFR1-4 at nanomolar concentrations. We sought to determine futibatinib’s efficacy in breast cancer models. Nine breast cancer patient–derived xenografts (PDXs) with various FGFR1-4 alterations and expression levels were treated with futibatinib. Antitumor efficacy was evaluated by change in tumor volume and time to tumor doubling. Alterations indicating sensitization to futibatinib in vivo were further characterized in vitro. FGFR gene expression between patient tumors and matching PDXs was significantly correlated; however, overall PDXs had higher FGFR3-4 expression. Futibatinib inhibited tumor growth in 3 of 9 PDXs, with tumor stabilization in an FGFR2-amplified model and prolonged regression (> 110 days) in an FGFR2 Y375C mutant/amplified model. FGFR2 overexpression and, to a greater extent, FGFR2 Y375C expression in MCF10A cells enhanced cell growth and sensitivity to futibatinib. Per institutional and public databases, FGFR2 mutations and amplifications had a population frequency of 1.1%–2.6% and 1.5%–2.5%, respectively, in breast cancer patients. FGFR2 alterations in breast cancer may represent infrequent but highly promising targets for futibatinib.

Funder

Breast Cancer Research Foundation

Susan G. Komen

Taiho Pharmaceuticals

National Cancer Institute

Nellie B. Connally Breast Cancer Research Endowment

The University of Texas MD Anderson Cancer Center Sheikh Khalifa Bin Zayed Al Nahyan Institute for Personalized Cancer

The University of Texas MD Anderson Breast Cancer Moonshot Program

National Institutes of Health

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

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