AZD8055 enhances in vivo efficacy of afatinib in chordomas
Tianna Zhao1, I-Mei Siu1, Tara Williamson1
1Department of Neurosurgery, Johns Hopkins University School of Medicine, Baltimore, MD, USA.
Abstract:
Chordomas are primary bone tumors that arise in the cranial base, mobile spine, and sacrococcygeal region, affecting patients of all ages. Currently, there are no approved agents for chordoma patients. Here, we evaluated the anti-tumor efficacy of small molecule inhibitors that target oncogenic pathways in chordoma, as single agents and in combination, to identify novel therapeutic approaches with the greatest translational potential. A panel of small molecule compounds was screened in vivo against patient-derived xenograft (PDX) models of chordoma, and potentially synergistic combinations were further evaluated using chordoma cell lines and xenograft models. Among the tested agents, inhibitors of EGFR (BIBX 1382, erlotinib, and afatinib), c-MET (crizotinib), and mTOR (AZD8055) significantly inhibited tumor growth in vivo but did not induce tumor regression. Co-inhibition of EGFR and c-MET using erlotinib and crizotinib synergistically reduced cell viability in chordoma cell lines but did not result in enhanced in vivo activity. Co-inhibition of EGFR and mTOR pathways using afatinib and AZD8055 synergistically reduced cell viability in chordoma cell lines. Importantly, this dual inhibition completely suppressed tumor growth in vivo, showing improved tumor control. Together, these data demonstrate that individual inhibitors of EGFR, c-MET, and mTOR pathways suppress chordoma growth both in vitro and in vivo. mTOR inhibition increased the efficacy of EGFR inhibition on chordoma growth in several preclinical models. The insights gained from our study potentially provide a novel combination therapeutic strategy for patients with chordoma. © 2021 The Authors. The Journal of Pathology published by John Wiley & Sons, Ltd. on behalf of The Pathological Society of Great Britain and Ireland.
Insights
Targeting epidermal growth factor receptor (EGFR) and the mechanistic target of rapamycin (mTOR) pathways with combined small molecule inhibitors shows promise for treating chordoma bone tumors. This combination therapy effectively suppressed tumor growth in preclinical models, offering a potential new treatment strategy.
Area of Science:
- Oncology
- Pharmacology
- Cancer Biology
Background:
- Chordomas are rare, aggressive primary bone tumors affecting the skull base, spine, and sacrococcygeal regions.
- Currently, no approved targeted therapies exist for chordoma patients, highlighting the need for novel treatment strategies.
- Oncogenic signaling pathways, including EGFR, c-MET, and mTOR, are implicated in chordoma development and progression.
Purpose of the Study:
- To evaluate the anti-tumor efficacy of small molecule inhibitors targeting oncogenic pathways in chordoma.
- To identify synergistic combinations of inhibitors with potential for clinical translation in chordoma treatment.
- To investigate the combined effects of EGFR and mTOR pathway inhibition in preclinical chordoma models.
Main Methods:
- Screening of small molecule inhibitors against patient-derived chordoma xenograft (PDX) models.
- Evaluation of synergistic combinations in chordoma cell lines and subsequent validation in xenograft models.
- Assessment of tumor growth inhibition and regression following treatment with single agents and combinations.
Main Results:
- Individual inhibitors of EGFR, c-MET, and mTOR significantly inhibited chordoma tumor growth in vivo.
- Co-inhibition of EGFR and mTOR pathways synergistically reduced cell viability and completely suppressed tumor growth in vivo.
- Combined EGFR and c-MET inhibition showed synergy in cell lines but not enhanced efficacy in vivo.
Conclusions:
- Targeting EGFR, c-MET, and mTOR pathways individually suppresses chordoma growth.
- Combination therapy with EGFR and mTOR inhibitors demonstrates significant preclinical efficacy against chordoma.
- This dual inhibition strategy represents a promising novel therapeutic approach for chordoma patients.
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