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Published on: June 13, 2014
HER-2/neu is a tumor rejection target in tolerized HER-2/neu transgenic mice
R T Reilly1, M B Gottlieb, A M Ercolini
1Department of Oncology, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205, USA.
Abstract:
HER-2/neu (neu-N) transgenic mice, which express the nontransforming rat proto-oncogene, develop spontaneous focal mammary adenocarcinomas beginning at 5-6 months of age. The development and histology of these tumors bears a striking resemblance to what is seen in patients with breast cancer. We have characterized the immunological responses to HER-2/neu (neu) in this animal model. neu-positive tumor lines, which were derived from spontaneous tumors that formed in neu-N animals, are highly immunogenic in parental, FVB/N mice. In contrast, a 100-fold lower tumor challenge is sufficient for growth in 100% of transgenic animals. Despite significant tolerance to the transgene, neu-specific immune responses similar to those observed in breast cancer patients can be demonstrated in neu-N mice prior to vaccination. Both cellular and humoral neu-specific responses in transgenic mice can be boosted with neu-specific vaccination, although to a significantly lesser degree than what is observed in FVB/N mice, indicating that the T cells involved are less responsive than in the nontoleragenic parental strain. Using irradiated whole-cell and recombinant vaccinia virus vaccinations we are able to protect neu-N mice from a neu-expressing tumor challenge. T-cell depletion experiments demonstrated that the observed protection is T cell dependent. The vaccine-dependent neu-specific immune response is also sufficient to delay the onset of spontaneous tumor formation in these mice. These data suggest that, despite tolerance to neu in this transgenic model, it is possible to immunize neu-specific T cells to achieve neu-specific tumor rejection in vivo. These transgenic mice provide a spontaneous tumor model for identifying vaccine approaches potent enough to overcome mechanisms of immune tolerance that are likely to exist in patients with cancer.
Insights
HER-2/neu (neu-N) transgenic mice develop mammary tumors resembling human breast cancer. Vaccination can boost immune responses and protect against tumors, suggesting potential for cancer immunotherapy in patients.
Area of Science:
- Immunology
- Oncology
- Transgenic animal models
Background:
- HER-2/neu (neu-N) transgenic mice spontaneously develop mammary adenocarcinomas.
- Tumor development and histology mimic human breast cancer.
- These mice exhibit tolerance to the neu transgene.
Purpose of the Study:
- To characterize immunological responses to HER-2/neu (neu) in this model.
- To evaluate the efficacy of neu-specific vaccination.
- To assess the potential for overcoming immune tolerance in cancer therapy.
Main Methods:
- Generation and characterization of neu-positive tumor lines from spontaneous tumors.
- Assessment of cellular and humoral neu-specific immune responses.
- Vaccination studies using irradiated whole-cell and recombinant vaccinia virus.
- T-cell depletion experiments.
Main Results:
- Neu-positive tumors are immunogenic in parental FVB/N mice but grow readily in neu-N mice.
- Neu-N mice show some neu-specific immune responses despite tolerance, which can be boosted by vaccination.
- Vaccination protects neu-N mice from neu-expressing tumor challenge in a T-cell dependent manner.
- Vaccination delays spontaneous tumor formation.
Conclusions:
- Despite immune tolerance, neu-specific T cells can be effectively immunized in this model.
- Vaccination strategies can overcome tolerance and induce tumor rejection in vivo.
- This transgenic model is valuable for developing cancer vaccines to overcome immune tolerance in patients.

