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.

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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