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An ErbB3 antibody, MM-121, is active in cancers with ligand-dependent activation
Birgit Schoeberl1, Anthony C Faber, Danan Li
1Merrimack Pharmaceuticals, Inc, Cambridge, Massachusetts, USA.
Abstract:
ErbB3 is a critical activator of phosphoinositide 3-kinase (PI3K) signaling in epidermal growth factor receptor (EGFR; ErbB1), ErbB2 [human epidermal growth factor receptor 2 (HER2)], and [hepatocyte growth factor receptor (MET)] addicted cancers, and reactivation of ErbB3 is a prominent method for cancers to become resistant to ErbB inhibitors. In this study, we evaluated the in vivo efficacy of a therapeutic anti-ErbB3 antibody, MM-121. We found that MM-121 effectively blocked ligand-dependent activation of ErbB3 induced by either EGFR, HER2, or MET. Assessment of several cancer cell lines revealed that MM-121 reduced basal ErbB3 phosphorylation most effectively in cancers possessing ligand-dependent activation of ErbB3. In those cancers, MM-121 treatment led to decreased ErbB3 phosphorylation and, in some instances, decreased ErbB3 expression. The efficacy of single-agent MM-121 was also examined in xenograft models. A machine learning algorithm found that MM-121 was most effective against xenografts with evidence of ligand-dependent activation of ErbB3. We subsequently investigated whether MM-121 treatment could abrogate resistance to anti-EGFR therapies by preventing reactivation of ErbB3. We observed that an EGFR mutant lung cancer cell line (HCC827), made resistant to gefitinib by exogenous heregulin, was resensitized by MM-121. In addition, we found that a de novo lung cancer mouse model induced by EGFR T790M-L858R rapidly became resistant to cetuximab. Resistance was associated with an increase in heregulin expression and ErbB3 activation. However, concomitant cetuximab treatment with MM-121 blocked reactivation of ErbB3 and resulted in a sustained and durable response. Thus, these results suggest that targeting ErbB3 with MM-121 can be an effective therapeutic strategy for cancers with ligand-dependent activation of ErbB3.
Insights
The anti-ErbB3 antibody MM-121 effectively targets cancers dependent on ErbB3 signaling. MM-121 shows promise in overcoming resistance to existing cancer therapies, particularly in ligand-dependent ErbB3-activated tumors.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- ErbB3 is a key signaling activator in cancers driven by EGFR, HER2, and MET.
- ErbB3 reactivation is a common mechanism of resistance to ErbB inhibitors.
Purpose of the Study:
- To evaluate the in vivo efficacy of the therapeutic anti-ErbB3 antibody MM-121.
- To determine if MM-121 can overcome resistance to anti-EGFR therapies.
Main Methods:
- In vivo efficacy assessment of MM-121 in xenograft models.
- Machine learning analysis to identify MM-121 efficacy predictors.
- Combination therapy studies with MM-121 and anti-EGFR agents.
Main Results:
- MM-121 blocked ligand-dependent ErbB3 activation by EGFR, HER2, and MET.
- MM-121 reduced ErbB3 phosphorylation and expression in sensitive cell lines.
- MM-121 resensitized resistant lung cancer cells to gefitinib and improved responses in combination therapy models.
Conclusions:
- MM-121 is effective against cancers with ligand-dependent ErbB3 activation.
- Targeting ErbB3 with MM-121 represents a viable therapeutic strategy for overcoming resistance to ErbB inhibitors.
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