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Updated: May 20, 2026

Establishing Dual Resistance to EGFR-TKI and MET-TKI in Lung Adenocarcinoma Cells In Vitro with a 2-step Dose-escalation Procedure
Published on: August 11, 2017
Novel bispecific T-cell engagers overcoming acquired EGFR resistance
Lennart Kühl1, Ann-Kathrin Löffler1, Oliver Seifert1,2
1Institute of Cell Biology and Immunology, University of Stuttgart, Stuttgart, Germany.
Abstract:
Epidermal growth factor receptor (EGFR) is a validated therapeutic target in several human cancers harboring wild-type KRAS. However, intrinsic and acquired resistance to EGFR-targeted antibody therapies such as cetuximab remains a major limitation to achieving broad and durable treatment responses. Extensive clinical and translational studies have shown that resistance frequently arises from missense mutations within the extracellular domain (ECD) of EGFR. In this study, we developed novel antagonistic EGFR antibodies that bind epitopes overlapping but distinct from the cetuximab-binding site while retaining high affinity for all major EGFR ECD escape variants. Antibody binding effectively inhibited EGFR phosphorylation, downstream signaling, and tumor cell proliferation. The antibodies were further engineered into bispecific EGFR × CD3 T-cell engagers (TCEs) with either 1 + 1 or 2 + 1 stoichiometries. In contrast to cetuximab-based TCEs, the newly developed EGFR-directed TCEs efficiently induced T cell-mediated cytotoxicity against tumor cells expressing wild-type EGFR as well as the clinically relevant ECD escape variants S492R and G465R. Anti-tumor activity was additionally demonstrated in an EGFR-expressing CT-26 syngeneic tumor model in vivo. Collectively, these findings define a promising therapeutic strategy to overcome resistance to current EGFR-targeted therapies and provide a strong rationale for the development of next-generation T-cell - redirecting therapies in patients with EGFR-positive malignancies.
Insights
Novel antagonistic antibodies targeting epidermal growth factor receptor (EGFR) overcome resistance to current therapies. These engineered T-cell engagers show potent anti-tumor activity against EGFR-positive cancers, including resistant variants.
Area of Science:
- Oncology
- Immunotherapy
- Molecular Biology
Background:
- Epidermal growth factor receptor (EGFR) is a key target in cancers with wild-type KRAS.
- Resistance to EGFR-targeted therapies like cetuximab limits treatment efficacy.
- EGFR extracellular domain (ECD) mutations are a common cause of resistance.
Purpose of the Study:
- Develop novel antagonistic EGFR antibodies to overcome resistance.
- Engineer these antibodies into bispecific T-cell engagers (TCEs).
- Evaluate the efficacy of these novel TCEs against EGFR variants.
Main Methods:
- Designed novel antagonistic EGFR antibodies with high affinity for ECD escape variants.
- Engineered antibodies into bispecific EGFR × CD3 T-cell engagers (1+1 or 2+1 stoichiometry).
- Assessed antibody and TCE efficacy in inhibiting EGFR signaling, cell proliferation, and inducing T cell-mediated cytotoxicity in vitro and in vivo.
Main Results:
- New antibodies bound distinct epitopes, inhibited EGFR phosphorylation, signaling, and proliferation.
- EGFR-directed TCEs showed potent T cell-mediated cytotoxicity against wild-type and resistant EGFR variants (S492R, G465R).
- Demonstrated anti-tumor activity in an in vivo EGFR-expressing tumor model.
Conclusions:
- Novel EGFR antibodies and TCEs effectively overcome resistance to current EGFR-targeted therapies.
- These findings support the development of next-generation T-cell redirecting therapies for EGFR-positive malignancies.
- Presents a promising strategy for treating resistant cancers.
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