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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
Development of active specific immunotherapeutic agents based on cancer-associated mucins
1Faculty of Pharmacy and Pharmaceutical Sciences, University of Alberta, Edmonton, Canada.
Abstract:
As a result of aberrant glycosylation, cancer-associated mucins expose to the immune system certain carbohydrate, peptide, and possibly glycopeptide epitopes that are not exposed on the normal mucins. This provides the basis for our development of synthetic carbohydrate, peptide, and glycopeptide-based ASI agents corresponding to the cancer-associated mucin epitopes. Our studies on ASI formulations based on carbohydrate structures such as TF and STn have demonstrated their ability to induce immune response relevant to the native epitopes on the cancer cells in animal models and in cancer patients. Further, such immune responses were able to mediate cancer rejection in an animal model. Similar studies on peptide epitopes of a cancer-associated mucin, MUC1, have also shown the ability of the synthetic antigen to induce anticancer immune responses in an animal model. Ongoing studies on the carbohydrate and peptide epitopes would allow us to define the most important target structures on cancer-associated mucins that can selectively stimulate cancer-specific immune responses. Our long-term goal is to develop multiepitopic glycopeptide ASI formulations capable of stimulating strong CMI responses against common carcinomas.
Insights
Synthetic antigens targeting cancer-associated mucin epitopes can stimulate immune responses against cancer cells. These approaches show promise for cancer rejection and developing new cancer immunotherapies.
Area of Science:
- Oncology
- Immunology
- Glycobiology
Background:
- Aberrant glycosylation of cancer-associated mucins exposes unique epitopes.
- These epitopes can serve as targets for cancer immunotherapy.
Purpose of the Study:
- To develop synthetic antigens (ASI agents) mimicking cancer-associated mucin epitopes.
- To evaluate the immunogenicity and efficacy of these ASI agents in preclinical and clinical settings.
Main Methods:
- Development of synthetic carbohydrate, peptide, and glycopeptide-based ASI agents.
- Testing ASI formulations in animal models and cancer patients.
- Assessing immune responses and cancer rejection mediated by ASI agents.
Main Results:
- ASI formulations based on TF and STn carbohydrate epitopes induced relevant immune responses in animal models and patients.
- These immune responses mediated cancer rejection in an animal model.
- Synthetic MUC1 peptide epitopes also induced anticancer immune responses in animal models.
Conclusions:
- Synthetic mucin epitopes can elicit cancer-specific immune responses.
- ASI agents targeting cancer-associated mucin epitopes are a promising strategy for cancer immunotherapy.
- Further research aims to develop multiepitopic formulations for strong CMI responses against carcinomas.
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