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Updated: May 15, 2026

Intramucosal Inoculation of Squamous Cell Carcinoma Cells in Mice for Tumor Immune Profiling and Treatment Response Assessment
Published on: April 22, 2019
Immunotherapy in new pre-clinical models of HPV-associated oral cancers
Francesca Paolini1, Silvia Massa, Isabella Manni
1Laboratory of Virology; Regina Elena National Cancer Institute; Rome, Italy.
Abstract:
Cervical, anal, penile and a sub-set of head and neck (HN) tumors are critical health problems caused by high risk Human Papilloma Viruses (HPVs), like HPV type 16. No specific/effective pharmacological treatments exist. A valid preventive vaccination as well as the immunotherapy of persistent infections, pre-cancerous lesions or early-stage cancers could drive the HPV disease burden down. These treatments might be featured through low-cost platforms like those based on DNA and plant biotechnologies to produce tailored and enhanced formulations taking profit from the use of plants as bio-factories and as a source of immune-stimulators. Finally, and regardless of the formulation type, pre-clinical tests and models are crucial to foresee efficacy of immunotherapy before clinical trials. In this study, we created an orthotopic mouse model for HPV-related oral tumors, a subset of HN tumors for which no models have been generated before. The model was obtained by inducing the stable expression of the HPV16 E7 protein into the mouse oral squamous cell carcinoma (OSCC) AT-84 (AT-84 E7). The AT-84 E7 cells were injected into the mouth pavement of C3H mice via an extra-oral route to obtain orthotopic tumors. The model turned out to mimic the natural history of the human HPV oral cancer. From AT-84 E7, through engineering to express luciferase, the bioluminescent AT-84 E7-Luc cells were obtained for a fast and easy monitoring by imaging. The AT-84 E7 and the AT-84 E7-Luc tumors were used to test the efficacy of E7-based therapeutic vaccines that we had previously generated and that had been already proven to be active in mice against non-orthotopic E7-expressing tumors (TC-1 cells). In particular, we used genetic and plant-derived formulations based on attenuated HPV16 E7 variants either fused to plant virus genes with immunological activity or produced by tobacco plants. Mice were monitored by imaging allowing to test the size reduction of the mouth implanted experimental tumors in function of the different regimens used. The proposed tumor model is easy to handle and to reproduce and it is efficacious in monitoring immunotherapy. Furthermore, it is expected to be more predictive of clinical outcome of therapeutic vaccines than non-orthotopic models that are currently used. Finally, imaging offers unique opportunities to predict formulation efficacy through measuring tumor growth in vivo.
Insights
Researchers developed a new orthotopic mouse model for oral tumors caused by Human Papilloma Virus (HPV). This model effectively monitors immunotherapy efficacy for HPV-related cancers, offering a more predictive preclinical tool.
Area of Science:
- Oncology
- Virology
- Biotechnology
Background:
- High-risk Human Papilloma Viruses (HPVs), such as HPV type 16, are linked to critical cancers including cervical, anal, penile, and head and neck (HN) tumors.
- Currently, no specific pharmacological treatments exist for these HPV-driven cancers, highlighting the need for effective preventive and therapeutic strategies.
Purpose of the Study:
- To develop and validate a novel orthotopic mouse model for HPV-related oral tumors, a subset of HN cancers.
- To assess the efficacy of E7-based therapeutic vaccines using this new model and advanced imaging techniques.
Main Methods:
- An orthotopic mouse model was created by inducing stable expression of the HPV16 E7 protein in mouse oral squamous cell carcinoma (OSCC) AT-84 cells (AT-84 E7).
- AT-84 E7 cells were injected into the oral cavity of C3H mice to establish orthotopic tumors, mimicking human oral cancer.
- Bioluminescent AT-84 E7-Luc cells were engineered for efficient tumor monitoring via imaging.
- The efficacy of genetic and plant-derived E7-based therapeutic vaccines was evaluated in mice bearing these orthotopic tumors.
Main Results:
- The developed orthotopic model accurately mimics the natural progression of human HPV oral cancer.
- The model demonstrated efficacy in monitoring immunotherapy, with imaging allowing for assessment of tumor size reduction in response to different vaccine regimens.
- E7-based therapeutic vaccines, including plant-derived formulations, showed activity in reducing tumor size within the orthotopic model.
Conclusions:
- The novel orthotopic mouse model is easy to handle, reproducible, and effective for monitoring immunotherapy against HPV-related oral tumors.
- This model is expected to be more predictive of clinical outcomes for therapeutic vaccines compared to existing non-orthotopic models.
- In vivo imaging provides a valuable tool for predicting the efficacy of therapeutic formulations by measuring tumor growth.
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