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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.
Abstract:
Actinic keratoses and cutaneous squamous cell carcinomas are associated with infections with human papillomavirus of genus beta (betaHPV) in immunosuppressed patients. To date, targeted therapy against betaHPV-associated skin cancer does not exist because of the large number of betaHPV without defined high-risk types. In this study, we hypothesized that the activation of innate antiviral immunity in the skin, asymptomatically infected with betaHPV, induces an antitumor response by in situ autovaccination and prevents the formation of betaHPV-associated skin cancer. To test this, we used the preclinical keratin-14-HPV8 transgenic mouse model, which develops skin tumors after mechanical wounding. Remarkably, treatment with the antiviral immune response activating polyinosinic-polycytidylic acid (poly[I:C]) completely prevented cutaneous tumor growth. The induction of the IFN-induced genes Cxcl10 and Ifit1 by poly(I:C) depended on MDA5 activation. Increased numbers of total and activated CD4 and CD8 T cells were detected in poly(I:C)-treated skin. T cells were found in the skin of poly(I:C)-treated mice but not in the skin tumors of untreated mice. T-cell depletion showed a predominant role of CD4 T cells in poly(I:C)-mediated tumor prevention. Our findings identify the MDA5 ligand poly(I:C) as a promising candidate for in situ autovaccination approaches, which might serve as a treatment strategy against betaHPV-related skin diseases.
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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