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Inducing Immunity Where It Matters: Orthotopic HPV Tumor Models and Therapeutic Vaccinations
Samantha Zottnick1,2,3, Alessa L Voß1,2, Angelika B Riemer1,2
1Immunotherapy and Immunoprevention, German Cancer Research Center (DKFZ), Heidelberg, Germany.
Abstract:
Anogenital and oropharyngeal cancers caused by human papillomavirus (HPV) infections account for 4.5% of all cancer cases worldwide. So far, only the initial infection with selected high-risk types can be prevented by prophylactic vaccination. Already existing persistent HPV infections, however, can currently only be treated by surgical removal of resulting lesions. Therapeutic HPV vaccination, promoting cell-based anti-HPV immunity, would be ideal to eliminate and protect against HPV-induced lesions and tumors. A multitude of vaccination approaches has been tested to date, many of which led to high amounts of HPV-specific T cells in vivo. However, growing evidence suggests that not the induction of systemic but of local immunity is paramount for tackling mucosal infections and tumors. Therefore, recent therapeutic vaccination studies have focused on how to induce tissue-resident T cells in the anogenital and oropharyngeal mucosa. These approaches include direct mucosal vaccinations and influencing the migration of systemic T cells toward the mucosa. The efficacy of these new vaccination approaches is best tested in vivo by utilizing orthotopic tumor models, i.e. HPV-positive tumors being located in the animal's mucosa. In line with this, we here review existing HPV tumor models and describe two novel tumorigenic cell lines for the MHC-humanized mouse model A2.DR1. These were used for the establishment of an HPV16 E6/E7-positive vaginal tumor model, suitable for testing therapeutic vaccines containing HLA-A2-restricted HPV16-derived epitopes. The newly developed MHC-humanized orthotopic HPV16-positive tumor model is likely to improve the translatability of in vivo findings to the clinical setting.
Insights
Therapeutic human papillomavirus (HPV) vaccination aims to eliminate existing HPV infections. New models focus on inducing local immunity in mucosal tissues to improve treatment efficacy for HPV-induced cancers.
Area of Science:
- Oncology
- Immunology
- Vaccinology
Background:
- Human papillomavirus (HPV) causes significant anogenital and oropharyngeal cancers globally.
- Current prophylactic vaccines prevent HPV infection but do not treat existing infections.
- Therapeutic HPV vaccination strategies are crucial for eliminating persistent infections and tumors.
Purpose of the Study:
- To review existing HPV tumor models for therapeutic vaccine testing.
- To establish a novel, translatable orthotopic tumor model for evaluating therapeutic HPV vaccines.
- To focus on inducing local mucosal immunity for improved therapeutic outcomes.
Main Methods:
- Review of existing in vivo HPV tumor models.
- Development of two novel tumorigenic cell lines for MHC-humanized mouse models (A2.DR1).
- Establishment of an HPV16 E6/E7-positive vaginal tumor model for testing HLA-A2-restricted vaccines.
Main Results:
- Identification and characterization of suitable cell lines for a new tumor model.
- Successful establishment of an orthotopic HPV16-positive vaginal tumor model in MHC-humanized mice.
- The model is designed to test therapeutic vaccines targeting HPV16-derived epitopes.
Conclusions:
- The newly developed MHC-humanized orthotopic HPV16-positive tumor model enhances preclinical testing of therapeutic HPV vaccines.
- This model is expected to improve the clinical translatability of in vivo research findings.
- Focusing on local mucosal immunity is key for effective therapeutic HPV vaccination.
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