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Immune prevention of mammary carcinogenesis in HER-2/neu transgenic mice: a microarray scenario
Annalisa Astolfi1, Simona Rolla, Patrizia Nanni
1Cancer Research Section, Department of Experimental Pathology, University of Bologna, Bologna, 40126, Italy.
Abstract:
Neoplastic transformation is a multistep process in which gene products of specific regulatory pathways are involved at each stage. Identification of these overexpressed or mutated gene products provides an unprecedented opportunity to address the immune system against defined antigens and eliminate transformed cells. Mice transgenic for these oncogenes (e.g. HER-2/neu, a prototype of deregulated oncogenic protein kinase membrane receptors) are ideal experimental models for assessing the potential of active immunization. The demonstration that vaccines can cure HER-2/neu transplantable tumors, prevent their onset and delay the progression of preneoplastic lesions in mice at risk suggests that efficient immunological inhibition of HER-2/neu carcinogenesis can be achieved by specific vaccination. To further explore this issue, halting of tumor progression in the mammary glands of BALB-neuT mice with two immunization protocols in two laboratories has been studied independently by DNA microarray analysis. Combination of the two sets of results revealed a clear correlation between them when the tumor mass was titrated by transcription profiling. It was also clear that both protocols induced a strong, polyclonal antibody response and halted tumor growth at a condition very similar to that at which the vaccination began. Differences in the expression profiles were mainly related to the expression levels of a few chemokines and T-cell-specific genes that may be in some way correlated with the efficacy of the vaccination. Last, combination of the expression data with the protection results indicated that chronic vaccination is needed to maintain an active IFN-gamma-mediated response in the mammary gland.
Insights
Active immunization targeting HER-2/neu oncogenes can prevent and treat tumors in mice. Chronic vaccination is crucial for maintaining an effective immune response against cancer.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Neoplastic transformation involves gene products in regulatory pathways.
- Overexpressed or mutated genes offer targets for cancer immunotherapy.
- Mice transgenic for oncogenes like HER-2/neu serve as models for active immunization studies.
Purpose of the Study:
- To investigate the efficacy of two immunization protocols in halting mammary tumor progression in BALB-neuT mice.
- To analyze gene expression profiles associated with vaccination-induced tumor inhibition.
- To correlate transcription profiling with tumor mass and vaccination efficacy.
Main Methods:
- Utilized DNA microarray analysis to study gene expression in mammary glands of vaccinated BALB-neuT mice.
- Compared results from two independent laboratories and two distinct immunization protocols.
- Correlated transcription profiling data with tumor mass and protection results.
Main Results:
- Both immunization protocols induced a strong, polyclonal antibody response and halted tumor growth.
- Transcription profiling showed a clear correlation with tumor mass.
- Differences in expression profiles were linked to chemokines and T-cell-specific genes, potentially indicating vaccination efficacy.
- Chronic vaccination was necessary to maintain an active IFN-gamma-mediated response in the mammary gland.
Conclusions:
- Specific vaccination can achieve efficient immunological inhibition of HER-2/neu carcinogenesis.
- Gene expression profiling provides insights into the mechanisms of anti-tumor immunity.
- Sustained vaccination is required for long-term protection against mammary tumors.
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