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Induction of Invasive Transitional Cell Bladder Carcinoma in Immune Intact Human MUC1 Transgenic Mice: A Model for Immunotherapy Development
Published on: October 30, 2013
Carcinoembryonic antigen transgenic mouse models for immunotherapy and development of cancer vaccines
Malaya Bhattacharya-Chatterjee1, Asim Saha1, Kenneth A Foon2
1University of Cincinnati Medical Center, Cincinnati, Ohio.
Abstract:
The goal of cancer therapy remains as the long-term eradication of tumor cells without adverse effects on normal tissue. Conventional approaches utilizing chemotherapy and radiotherapy are limited by both their toxicity and lack of specificity. In recent years, investigators have carried out several studies designed to evaluate whether human tumor-associated antigens (TAAs) can be exploited as targets for immunotherapy, specifically for human cancer vaccine development. A major limitation in immunotherapy studies of human cancer is the general lack of appropriate preclinical models. Clinical studies can be difficult to implement, particularly when a clear understanding of the potential efficacy, limitation, and safety of an immunotherapeutic strategy is not available from relevant animal investigations. However, mice carrying a transgene for a human tumor self-antigen may provide a more acceptable experimental model in which knowledge about immunotherapeutic strategies aiming at the TAA of interest can be enhanced prior to initiating clinical trials. Since the different strategies in experimental immunotherapy of cancer have been directed to activate different immune system components, a variety of transgenic mouse models have been generated expressing either TAA, human leukocyte antigen (HLA), oncogene, or immune effector cell molecules. These models may serve as an excellent platform for the identification of novel targets for immunotherapy as well as to evaluate the efficacy of targeted therapies and will lead to the development of clinical trials for cancer patients. In this unit, a brief overview of the generation and study of different vaccine approaches in carcinoembryonic antigen (CEA) transgenic mouse models and the experimental findings in mouse models that spontaneously develop gastrointestinal tumors and express the CEA transgene is provided.
Insights
Developing effective cancer vaccines requires better preclinical models. Transgenic mice expressing human tumor antigens offer a promising platform to test immunotherapies before human clinical trials.
Area of Science:
- Oncology
- Immunology
- Genetics
Background:
- Conventional cancer therapies like chemotherapy and radiotherapy lack specificity and cause adverse effects.
- Human tumor-associated antigens (TAAs) are potential targets for cancer immunotherapy and vaccine development.
- A significant hurdle in cancer immunotherapy research is the absence of suitable preclinical models.
Purpose of the Study:
- To evaluate the utility of transgenic mouse models for studying cancer immunotherapy.
- To explore the potential of human tumor-associated antigens (TAAs) as targets for cancer vaccines.
- To provide an overview of vaccine approaches in carcinoembryonic antigen (CEA) transgenic mouse models.
Main Methods:
- Generation of transgenic mouse models expressing human tumor antigens (TAAs), human leukocyte antigen (HLA), oncogenes, or immune effector cell molecules.
- Utilizing mouse models that spontaneously develop tumors and express specific TAAs, such as CEA.
- Investigating different experimental immunotherapy strategies in these models.
Main Results:
- Transgenic mouse models expressing human TAAs can serve as valuable preclinical platforms for immunotherapy research.
- These models facilitate the evaluation of novel therapeutic targets and efficacy of targeted therapies.
- Experimental findings in CEA transgenic models inform the development of clinical trials.
Conclusions:
- Transgenic mouse models are crucial for advancing cancer immunotherapy research by bridging the gap between preclinical studies and clinical trials.
- These models enhance the understanding of immunotherapeutic strategies targeting TAAs.
- The development and study of these models are vital for improving cancer treatment outcomes.
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