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Innovative DNA Vaccine for Human Papillomavirus (HPV)-Associated Head and Neck Cancer

Human papillomavirus (HPV), particularly type 16, has been associated with a subset of head and neck cancers. The viral-encoded oncogenic proteins E6 and E7 represent ideal targets for immunotherapy against HPV-associated head and neck cancers. DNA vaccines have emerged as attractive approaches for...

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Autores principales: Wu, Annie, Zeng, Qi, Kang, Tae Heung, Peng, Shiwen, Roosinovich, Elena, Pai, Sara I., Hung, Chien-Fu
Formato: Texto
Lenguaje:English
Publicado: 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3032008/
https://www.ncbi.nlm.nih.gov/pubmed/20981112
http://dx.doi.org/10.1038/gt.2010.151
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author Wu, Annie
Zeng, Qi
Kang, Tae Heung
Peng, Shiwen
Roosinovich, Elena
Pai, Sara I.
Hung, Chien-Fu
author_facet Wu, Annie
Zeng, Qi
Kang, Tae Heung
Peng, Shiwen
Roosinovich, Elena
Pai, Sara I.
Hung, Chien-Fu
author_sort Wu, Annie
collection PubMed
description Human papillomavirus (HPV), particularly type 16, has been associated with a subset of head and neck cancers. The viral-encoded oncogenic proteins E6 and E7 represent ideal targets for immunotherapy against HPV-associated head and neck cancers. DNA vaccines have emerged as attractive approaches for immunotherapy due to its simplicity, safety, and ease of preparation. Intradermal administration of DNA vaccine via gene gun represents an efficient method to deliver DNA directly into dendritic cells for priming antigen-specific T cells. We have previously shown that a DNA vaccine encoding an invariant chain (Ii), in which the class II-associated Ii peptide (CLIP) region has been replaced by a Pan-DR-epitope (PADRE) sequence to form Ii-PADRE, is capable of generating PADRE-specific CD4+ T cells in vaccinated mice. In the current study, we hypothesize a DNA vaccine encoding Ii-PADRE linked to E6 (Ii-PADRE-E6) will further enhance E6-specific CD8+ T cell immune responses through PADRE-specific CD4+ T helper cells. We found that mice vaccinated with Ii-PADRE-E6 DNA generated comparable levels of PADRE-specific CD4+ T cell immune responses as well as significantly stronger E6-specific CD8+ T cell immune responses and antitumor effects against the lethal challenge of E6-expressing tumor compared to mice vaccinated with Ii-E6 DNA. Taken together, our data indicates that vaccination with Ii-E6 DNA with PADRE replacing the CLIP region is capable of enhancing the E6-specific CD8+ T cell immune response generated by the Ii-E6 DNA. Thus, Ii-PADRE-E6 represents a novel DNA vaccine for the treatment of HPV-associated head and neck cancer and other HPV-associated malignancies.
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spelling pubmed-30320082011-09-01 Innovative DNA Vaccine for Human Papillomavirus (HPV)-Associated Head and Neck Cancer Wu, Annie Zeng, Qi Kang, Tae Heung Peng, Shiwen Roosinovich, Elena Pai, Sara I. Hung, Chien-Fu Gene Ther Article Human papillomavirus (HPV), particularly type 16, has been associated with a subset of head and neck cancers. The viral-encoded oncogenic proteins E6 and E7 represent ideal targets for immunotherapy against HPV-associated head and neck cancers. DNA vaccines have emerged as attractive approaches for immunotherapy due to its simplicity, safety, and ease of preparation. Intradermal administration of DNA vaccine via gene gun represents an efficient method to deliver DNA directly into dendritic cells for priming antigen-specific T cells. We have previously shown that a DNA vaccine encoding an invariant chain (Ii), in which the class II-associated Ii peptide (CLIP) region has been replaced by a Pan-DR-epitope (PADRE) sequence to form Ii-PADRE, is capable of generating PADRE-specific CD4+ T cells in vaccinated mice. In the current study, we hypothesize a DNA vaccine encoding Ii-PADRE linked to E6 (Ii-PADRE-E6) will further enhance E6-specific CD8+ T cell immune responses through PADRE-specific CD4+ T helper cells. We found that mice vaccinated with Ii-PADRE-E6 DNA generated comparable levels of PADRE-specific CD4+ T cell immune responses as well as significantly stronger E6-specific CD8+ T cell immune responses and antitumor effects against the lethal challenge of E6-expressing tumor compared to mice vaccinated with Ii-E6 DNA. Taken together, our data indicates that vaccination with Ii-E6 DNA with PADRE replacing the CLIP region is capable of enhancing the E6-specific CD8+ T cell immune response generated by the Ii-E6 DNA. Thus, Ii-PADRE-E6 represents a novel DNA vaccine for the treatment of HPV-associated head and neck cancer and other HPV-associated malignancies. 2010-10-28 2011-03 /pmc/articles/PMC3032008/ /pubmed/20981112 http://dx.doi.org/10.1038/gt.2010.151 Text en Users may view, print, copy, download and text and data- mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Wu, Annie
Zeng, Qi
Kang, Tae Heung
Peng, Shiwen
Roosinovich, Elena
Pai, Sara I.
Hung, Chien-Fu
Innovative DNA Vaccine for Human Papillomavirus (HPV)-Associated Head and Neck Cancer
title Innovative DNA Vaccine for Human Papillomavirus (HPV)-Associated Head and Neck Cancer
title_full Innovative DNA Vaccine for Human Papillomavirus (HPV)-Associated Head and Neck Cancer
title_fullStr Innovative DNA Vaccine for Human Papillomavirus (HPV)-Associated Head and Neck Cancer
title_full_unstemmed Innovative DNA Vaccine for Human Papillomavirus (HPV)-Associated Head and Neck Cancer
title_short Innovative DNA Vaccine for Human Papillomavirus (HPV)-Associated Head and Neck Cancer
title_sort innovative dna vaccine for human papillomavirus (hpv)-associated head and neck cancer
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3032008/
https://www.ncbi.nlm.nih.gov/pubmed/20981112
http://dx.doi.org/10.1038/gt.2010.151
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