An ERBB1-3 Neutralizing Antibody Mixture With High Activity Against Drug-Resistant HER21 Breast Cancers With ERBB Ligand Overexpression

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Abstract

Background: Plasticity of the ERBB receptor network has been suggested to cause acquired resistance to anti–human epidermal growth factor receptor 2 (HER2) therapies. Thus, we studied whether a novel approach using an ERBB1-3-neutralizing antibody mixture can block these compensatory mechanisms of resistance. Methods: HER2þ cell lines and xenografts (n ≥ 6 mice per group) were treated with the ERBB1-3 antibody mixture Pan-HER, trastuzumab/lapatinib (TL), trastuzumab/pertuzumab (TP), or T-DM1. Downregulation of ERBB receptors was assessed by immunoblot analysis and immunohistochemistry. Paired pre- and post-T-DM1 tumor biopsies from patients (n = 11) with HER2-amplified breast cancer were evaluated for HER2 and P-HER3 expression by immunohistochemistry and/or fluorescence in situ hybridization. ERBB ligands were measured by quantitative reverse transcription polymerase chain reaction. Drug-resistant cells were generated by chronic treatment with T-DM1. All statistical tests were two-sided. Results: Treatment with Pan-HER inhibited growth and promoted degradation of ERBB1-3 receptors in a panel of HER2þ breast cancer cells. Compared with TL, TP, and T-DM1, Pan-HER induced a similar antitumor effect against established BT474 and HCC1954 tumors, but was superior to TL against MDA-361 xenografts (TL mean = 2026 mm3, SD = 924 mm3, vs Pan-HER mean = 565 mm3, SD = 499 mm3, P = .04). Pan-HER-treated BT474 xenografts did not recur after treatment discontinuation, whereas tumors treated with TL, TP, and T-DM1 did. Post-TP and post-T-DM1 recurrent tumors expressed higher levels of neuregulin-1 (NRG1), HER3 and P-HER3 (all P

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Schwarz, L. J., Hutchinson, K. E., Rexer, B. N., Estrada, M. V., Gonzalez Ericsson, P. I., Sanders, M. E., … Arteaga, C. L. (2017). An ERBB1-3 Neutralizing Antibody Mixture With High Activity Against Drug-Resistant HER21 Breast Cancers With ERBB Ligand Overexpression. Journal of the National Cancer Institute, 109(11). https://doi.org/10.1093/jnci/djx065

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