Poly(I:C) Treatment Prevents Skin Tumor Formation in the Preclinical HPV8 Transgenic Mouse Model

Martin Hufbauer1, Stephanie Rattay1, Christian Hagen2

  • 1Institute of Virology, University of Cologne, Medical Faculty and University Hospital Cologne, Cologne, Germany.

Insights

Activating innate immunity with polyinosinic-polycytidylic acid (poly[I:C]) prevented skin tumors in mice. This approach may offer a new strategy for treating beta-human papillomavirus (betaHPV) skin diseases.

Area of Science:

  • Immunology
  • Dermatology
  • Virology

Background:

  • Actinic keratoses and cutaneous squamous cell carcinomas are linked to beta-human papillomavirus (betaHPV) in immunosuppressed individuals.
  • Lack of targeted therapies for betaHPV-associated skin cancers stems from numerous betaHPV types without defined high-risk classifications.

Purpose of the Study:

  • To investigate if activating innate antiviral immunity in betaHPV-infected skin can induce an antitumor response via in situ autovaccination.
  • To determine if this immune activation can prevent betaHPV-associated skin cancer development.

Main Methods:

  • Utilized the keratin-14-HPV8 transgenic mouse model, which develops skin tumors post-mechanical wounding.
  • Administered polyinosinic-polycytidylic acid (poly[I:C]) to activate innate antiviral immunity.
  • Analyzed the induction of IFN-induced genes (Cxcl10, Ifit1), MDA5 activation, and T-cell populations (CD4, CD8).

Main Results:

  • Poly(I:C) treatment completely prevented cutaneous tumor development in the mouse model.
  • Poly(I:C}-induced gene expression was dependent on MDA5 activation.
  • Increased CD4 and CD8 T cells were observed in treated skin, with CD4 T cells playing a predominant role in tumor prevention.

Conclusions:

  • Polyinosinic-polycytidylic acid (poly[I:C]), a MDA5 ligand, shows potential for in situ autovaccination.
  • This strategy may offer a novel treatment approach for betaHPV-related skin diseases.

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