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Mouse models expressing human carcinoembryonic antigen (CEA) as a transgene: evaluation of CEA-based cancer vaccines
Kenneth W Hance1, Hasan E Zeytin, John W Greiner
1Laboratory of Tumor Immunology and Biology, Center for Cancer Research, National Cancer Institute/NIH, Bethesda, MD 20892, USA.
Abstract:
In recent years, investigators have carried out several studies designed to evaluate whether human tumor-associated antigens might be exploited as targets for active specific immunotherapy, specifically human cancer vaccines. Not too long ago such an approach would have been met with considerable skepticism because the immune system was believed to be a rigid discriminator between self and non-self which, in turn, protected the host from a variety of pathogens. That viewpoint has been challenged in recent years by a series of studies indicating that antigenic determinants of self have not induced absolute host immune tolerance. Moreover, under specific conditions that evoke danger signals, peptides from self-antigen can be processed by the antigen-presenting cellular machinery, loaded onto the major histocompatibility antigen groove to serve as targets for immune intervention. Those findings provide the rationale to investigate a wide range of tumor-associated antigens, including differentiation antigens, oncogenes, and tumor suppressor genes as possible immune-based targets. One of those tumor-associated antigens is the carcinoembryonic antigen (CEA). Described almost 40 years ago, CEA is a M(r) 180-200,000 oncofetal antigen that is one of the more widely studied human tumor-associated antigens. This review will provide: (i) a brief overview of the CEA gene family, (ii) a summary of early preclinical findings on overcoming immune tolerance to CEA, and (iii) the rationale to develop mouse models which spontaneously develop gastrointestinal tumors and express the CEA transgene. Those models have been used extensively in the study of overcoming host immune tolerance to CEA, a self, tumor-associated antigen, and the experimental findings have served as the rationale for the design of early clinical trials to evaluate CEA-based cancer vaccines.
Insights
Active specific immunotherapy using human cancer vaccines targets tumor-associated antigens like carcinoembryonic antigen (CEA). Research shows overcoming immune tolerance to CEA is possible, paving the way for CEA-based cancer vaccine clinical trials.
Area of Science:
- Immunology
- Oncology
- Vaccinology
Background:
- The immune system was historically considered a strict self/non-self discriminator, limiting therapeutic interventions.
- Recent studies challenge this, showing self-antigens can be immune targets under specific 'danger signal' conditions.
- Tumor-associated antigens (TAAs) are now investigated as targets for active specific immunotherapy, including cancer vaccines.
Purpose of the Study:
- To review the potential of human tumor-associated antigens as targets for active specific immunotherapy.
- To provide an overview of the carcinoembryonic antigen (CEA) gene family.
- To summarize preclinical findings on overcoming immune tolerance to CEA and present the rationale for CEA-based cancer vaccines.
Main Methods:
- Review of existing literature on tumor-associated antigens and immune tolerance.
- Analysis of preclinical findings related to overcoming immune tolerance to CEA.
- Discussion of the development and utility of mouse models expressing CEA transgenes for gastrointestinal tumors.
Main Results:
- Self-antigens, including CEA, can be processed and presented to elicit immune responses, challenging the concept of absolute immune tolerance.
- Preclinical studies demonstrate methods to overcome immune tolerance to CEA.
- Mouse models with spontaneous gastrointestinal tumors expressing CEA have been developed and utilized.
Conclusions:
- Overcoming immune tolerance to self-antigens like CEA is feasible and provides a strong rationale for developing CEA-based cancer vaccines.
- Experimental findings support the design of early clinical trials for CEA-based cancer vaccines.
- Active specific immunotherapy targeting TAAs represents a promising avenue in cancer treatment.
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