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Published on: September 20, 2016
Targeting HER2 Exon 20 Insertion-Mutant Lung Adenocarcinoma with a Novel Tyrosine Kinase Inhibitor Mobocertinib
Han Han1, Shuai Li2, Ting Chen3
1Department of Thoracic Surgery, Fudan University Shanghai Cancer Center, Shanghai, China.
Abstract:
No targeted treatments are currently approved for HER2 exon 20 insertion-mutant lung adenocarcinoma patients. Mobocertinib (TAK-788) is a potent irreversible tyrosine kinase inhibitor (TKI) designed to target human epidermal growth factor receptor 2 (HER2/ERBB2) exon 20 insertion mutations. However, the function of mobocertinib on HER2 exon 20 insertion-mutant lung cancer is still unclear. Here we conducted systematic characterization of preclinical models to understand the activity profile of mobocertinib against HER2 exon 20 insertions. In HER2 exon 20 insertion-mutant cell lines, the IC50 of mobocertinib was higher than poziotinib and comparable with or slightly lower than afatinib, neratinib, and pyrotinib. Mobocertinib had the lowest HER2 exon 20 insertion IC50/wild-type (WT) EGFR IC50 ratio, indicating that mobocertinib displayed the best selectivity profile in these models. Also, mobocertinib showed strong inhibitory activity in HER2 exon 20YVMA allograft and patient-derived xenograft models. In genetically engineered mouse models, HER2 exon 20G776>VC lung tumors exhibited a sustained complete response to mobocertinib, whereas HER2 exon 20YVMA tumors showed only partial and transient response. Combined treatment with a second antibody-drug conjugate (ADC) against HER2, ado-trastuzumab emtansine (T-DM1), synergized with mobocertinib in HER2 exon 20YVMA tumors. In addition to the tumor cell autonomous effect, sustained tumor growth control derived from M1 macrophage infiltration and CD4+ T-cell activation. These findings support the ongoing clinical development of mobocertinib (NCT02716116) and provide a rationale for future clinical evaluation of T-DM1 combinational therapy in HER2 exon 20YVMA insertion-mutant lung adenocarcinoma patients. SIGNIFICANCE: This study elucidates the potent inhibitory activity of mobocertinib against HER2 exon 20 insertion-mutant lung cancer and the synergic effect of combined mobocertinib and T-DM1, providing a strong rationale for clinical investigation.
Insights
Mobocertinib effectively targets HER2 exon 20 insertion mutations in lung cancer preclinical models, showing strong selectivity. Combination therapy with T-DM1 demonstrates synergistic effects, supporting further clinical trials for HER2-mutant lung adenocarcinoma.
Area of Science:
- Oncology
- Pharmacology
- Genetics
Background:
- Lung adenocarcinoma patients with HER2 exon 20 insertion mutations lack approved targeted therapies.
- Mobocertinib is an irreversible tyrosine kinase inhibitor designed for HER2 exon 20 insertion mutations.
- The precise activity profile of mobocertinib against these mutations requires further elucidation.
Purpose of the Study:
- To systematically characterize the preclinical activity of mobocertinib against HER2 exon 20 insertion mutations in lung cancer.
- To evaluate the selectivity of mobocertinib compared to other HER2-targeted agents.
- To investigate the efficacy of mobocertinib, alone and in combination with T-DM1, in relevant preclinical models.
Main Methods:
- In vitro IC50 determination of mobocertinib in HER2 exon 20 insertion-mutant cell lines.
- Assessment of mobocertinib's inhibitory activity in HER2 exon 20 YVMA allograft and patient-derived xenograft models.
- Evaluation of mobocertinib and T-DM1 combination therapy in genetically engineered mouse models with HER2 exon 20 mutations.
Main Results:
- Mobocertinib demonstrated potent inhibition in HER2 exon 20 insertion-mutant cell lines and xenograft models.
- Mobocertinib exhibited the best selectivity profile (lowest IC50 ratio of HER2 exon 20 insertion to WT EGFR).
- Combination of mobocertinib and T-DM1 showed synergistic effects in HER2 exon 20 YVMA models, involving immune cell activation.
Conclusions:
- Mobocertinib displays significant preclinical activity and selectivity against HER2 exon 20 insertion-mutant lung cancer.
- Combination therapy with T-DM1 enhances anti-tumor response, suggesting a potential clinical benefit.
- These findings support the ongoing clinical development of mobocertinib and warrant investigation of T-DM1 combination therapy.
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