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The Impact of HER3 Dynamics Altered by HER3-DXd Alone and in Combination with Driver Oncogene Inhibitors on HER3-DXd
Nagiho Komatsu1, Saori Sato2, Ryuichi Nakamura1
1Translational Research Laboratory, Daiichi Sankyo Co., Ltd., 1-2-58 Hiromachi, Shinagawa, Tokyo 140-8710, Japan.
Abstract:
Targeted therapies have revolutionized treatment paradigms for a variety of cancer types; however, challenges including primary and acquired resistance persist, and there remains a high demand for novel treatment options. HER3 (ErbB3), a member of the human epidermal growth factor receptor family of receptor tyrosine kinases, is a target of HER3-DXd, an antibody-drug conjugate currently under clinical investigation. As was previously reported, the cytotoxic activity of HER3-DXd in preclinical models is primarily mediated by the antitumor activity of the released payload. Therefore, we investigated the impact of HER3 expression changes on payload release after HER3-DXd treatment using HER3-positive human cancer cell lines and their xenograft models. In vitro studies showed that the amount of payload released from cells after HER3-DXd treatment was associated with baseline HER3 expression levels, HER3 internalization rate, and turnover rate. In female CAnN.Cg-Foxn1nu/CrlCrlj mouse models, dose and dosing interval influenced membrane HER3 expression levels and tumor payload concentrations. Furthermore, membrane HER3 was upregulated by tyrosine kinase inhibitor treatment in non-small-cell lung cancer cell lines harboring specific driver mutations, including EGFR-activating mutations, ROS1 fusions, and ALK fusions. The increase in HER3 expression induced by osimertinib treatment was associated with increased payload release in PC-9 cells. Our results indicate that HER3 dynamics, as well as baseline HER3 expression, modulate payload release from HER3-DXd and support combination strategies to potentiate the antitumor activity of HER3-DXd.
Insights
Payload release from HER3-DXd antibody-drug conjugates depends on human epidermal growth factor receptor 3 (HER3) expression levels and dynamics. Understanding these factors can help optimize HER3-DXd efficacy and combination strategies for cancer treatment.
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- Targeted cancer therapies show promise but face resistance challenges.
- Novel treatment strategies are needed to overcome resistance.
- HER3 (ErbB3) is a target for the antibody-drug conjugate HER3-DXd.
Purpose of the Study:
- To investigate how changes in HER3 expression affect payload release from HER3-DXd.
- To explore the influence of HER3 dynamics on HER3-DXd's cytotoxic activity.
- To identify potential combination strategies for enhancing HER3-DXd efficacy.
Main Methods:
- In vitro studies using HER3-positive human cancer cell lines.
- In vivo studies using xenograft mouse models.
- Analysis of HER3 expression, internalization, and turnover rates.
- Assessment of payload release and tumor concentrations.
- Investigation of HER3 upregulation by tyrosine kinase inhibitors (TKIs).
Main Results:
- Payload release correlated with baseline HER3 expression, internalization, and turnover rates in vitro.
- Dosing influenced membrane HER3 levels and tumor payload concentrations in vivo.
- TKIs like osimertinib upregulated membrane HER3 in non-small-cell lung cancer cell lines with specific driver mutations (EGFR, ROS1, ALK).
- Increased HER3 expression from osimertinib treatment led to enhanced payload release in PC-9 cells.
Conclusions:
- HER3 expression levels and dynamics significantly modulate payload release from HER3-DXd.
- HER3 dynamics are crucial for determining HER3-DXd's antitumor activity.
- Combination strategies involving HER3-targeting agents and TKIs may potentiate HER3-DXd efficacy.
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