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Updated: Jul 13, 2026

An Orthotopic Mouse Model of Spontaneous Breast Cancer Metastasis
Published on: August 14, 2016
Spontaneous mammary tumors differ widely in their inherent sensitivity to adoptively transferred T cells
Erika M Wall1, Katy Milne, Michele L Martin
1Trev & Joyce Deeley Research Centre, British Columbia Cancer Agency, Victoria, British Columbia, Canada.
Abstract:
Immunotherapy of cancer can lead to the selection of antigen loss variants, which provides strong rationale to target oncogenes that are essential for tumor growth or viability. To investigate this concept, we tagged the HER2/neu oncogene with epitopes from ovalbumin to confer recognition by T-cell receptor transgenic CD8(+) (OT-I) and CD4(+) (OT-II) T cells. Transgenic mice expressing neu(OT-I/OT-II) developed mammary adenocarcinomas at 6 to 10 months of age. Adoptively transferred naive OT-I cells (with or without OT-II cells) proliferated vigorously on encountering neu(OT-I/OT-II)-expressing tumors. This was followed by the complete regression of 37% of tumors, whereas others showed partial/stable responses (40%) or progressive disease (23%). Those tumors undergoing complete regression never recurred. In mice with multiple primary tumors, simultaneous regressions and nonregressions were often seen, indicating that immune evasion occurred at a local rather than systemic level. The majority of nonregressing tumors expressed Neu(OT-I/OT-II) and MHC class I, and many avoided rejection through a profound block to T-cell infiltration. Thus, T cells directed against an essential oncogene can permanently eradicate a subset of spontaneous, established mammary tumors. However, in other tumors, local barriers severely limit the therapeutic response. To maximize the efficacy of immunotherapy against spontaneous cancers, predictive strategies that take into account the heterogeneity of the tumor microenvironment will be required.
Insights
Targeting essential oncogenes like HER2/neu with T cells can lead to complete eradication of some mammary tumors. However, local immune evasion limits therapeutic response in others, necessitating personalized strategies.
Area of Science:
- Oncology
- Immunology
- Cancer Genetics
Background:
- Immunotherapy can select for antigen loss variants, highlighting the need to target essential oncogenes.
- HER2/neu is a crucial oncogene in mammary adenocarcinoma development.
Purpose of the Study:
- To investigate the efficacy of T-cell-mediated immunotherapy targeting the HER2/neu oncogene.
- To assess tumor regression and immune evasion mechanisms in spontaneous mammary tumors.
Main Methods:
- Engineered HER2/neu oncogene with ovalbumin epitopes for T-cell recognition (CD8+ OT-I and CD4+ OT-II).
- Developed transgenic mice with neu(OT-I/OT-II) expressing mammary adenocarcinomas.
- Adoptively transferred naive T cells to assess tumor response and analyze non-regressing tumors.
Main Results:
- Adoptively transferred T cells proliferated upon encountering neu(OT-I/OT-II) tumors, leading to complete regression in 37% of cases.
- Completely regressed tumors showed no recurrence; however, 23% had progressive disease.
- Non-regressing tumors often exhibited blocked T-cell infiltration, indicating local immune evasion.
Conclusions:
- T cells targeting essential oncogenes can achieve permanent eradication in a subset of spontaneous mammary tumors.
- Local barriers within the tumor microenvironment significantly limit immunotherapy efficacy.
- Predictive strategies accounting for tumor microenvironment heterogeneity are crucial for optimizing cancer immunotherapy.

