Remarkable preclinical activity of trastuzumab-deruxtecan (T-DXd) in FISH-negative, HER2 IHC 1+ and 2+ expressing primary endometrial cancer cell lines and xenografts

Luca Palmieri & Alessandro D. Santin et al. · 2026-02-13

1Citations
Antibody-drug conjugates (ADCs) targeting the human epidermal growth factor receptor 2 (HER2) such as trastuzumab deruxtecan (T-DXd) may offer a novel therapeutic option for endometrial cancer patients with HER2-overexpressing tumors. However, the activity of T-DXd in endometrial cancer patients with low HER2 expression (IHC 2+ or 1+, FISH negative) remains unreported. Accordingly, the objectives of this study were to evaluate T-DXd preclinical activity both in-vitro and in-vivo against primary FISH-negative endometrial endometrioid cancer (EEC) cell lines with IHC 1+ to 2+ HER2 expressions. Primary FISH-negative EEC cell lines with low HER2 expression were characterized by immunohistochemistry (IHC), flow cytometry (mean fluorescence intensity, MFI) and FISH assays. T-DXd efficacy was investigated in vitro by evaluating cell viability, DNA damage, antibody-dependent cell cytotoxicity and bystander killing. In vivo activity was assessed in HER2 2+ and 1+ FISH-negative EEC xenograft mouse model. T-DXd demonstrated significant in-vitro cytotoxicity in HER2 FISH-negative, IHC 2+ and 1+ cell lines. By contrast, in the HER2 IHC 0 cell line, no significant difference in cell death was observed between T-DXd and Control ADC. In vivo, T-DXd was highly effective in tumor growth suppression and significantly prolonged overall survival in both HER2 IHC 2+ and 1+ xenograft mouse models. T-DXd showed remarkable preclinical activity against HER2 FISH-negative, IHC-low EEC both in-vitro and in-vivo. These findings support its use beyond HER2-high expression and may represent a novel and effective treatment option for patients with HER2-low EEC who have progressed on standard chemotherapy and immunotherapy.
TL;DR

In vivo, T-DXd was highly effective in tumor growth suppression and significantly prolonged overall survival in both HER2 IHC 2+ and 1+ xenograft mouse models, and may represent a novel and effective treatment option for patients with HER2-low EEC who have progressed on standard chemotherapy and immunotherapy.

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Authors
Luca Palmieri, Stefania Bellone, Cem Demirkiran, Tobias M.P. Hartwich, Namrata Sethi, Victoria M. Ettorre, Sarah Ottum, Michelle Greenman, Natalia Buza, Pei Hui, Emanuele Perrone, Francesco Fanfani, Anna Fagotti, Elena Ratner, Alessandro D. Santin