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Oncolytic adenoviruses coated with MHC-I tumor epitopes increase the antitumor immunity and efficacy against melanoma.
Capasso, Cristian; Hirvinen, Mari; Garofalo, Mariangela; Romaniuk, Dmitrii; Kuryk, Lukasz; Sarvela, Teea; Vitale, Andrea; Antopolsky, Maxim; Magarkar, Aniket; Viitala, Tapani; Suutari, Teemu; Bunker, Alex; Yliperttula, Marjo; Urtti, Arto; Cerullo, Vincenzo.
Afiliação
  • Capasso C; Laboratory of Immunovirotherapy, Division of Pharmaceutical Biosciences and Center for Drug Research, University of Helsinki , Viikinkaari 5 , Helsinki, Finland.
  • Hirvinen M; Laboratory of Immunovirotherapy, Division of Pharmaceutical Biosciences and Center for Drug Research, University of Helsinki , Viikinkaari 5 , Helsinki, Finland.
  • Garofalo M; Laboratory of Immunovirotherapy, Division of Pharmaceutical Biosciences and Center for Drug Research, University of Helsinki, Viikinkaari 5, Helsinki, Finland; Department of Molecular Medicine and Medical Biotechnology, University of Naples "Federico II", Via Pansini, Naples, Italy.
  • Romaniuk D; Laboratory of Immunovirotherapy, Division of Pharmaceutical Biosciences and Center for Drug Research, University of Helsinki , Viikinkaari 5 , Helsinki, Finland.
  • Kuryk L; Laboratory of Immunovirotherapy, Division of Pharmaceutical Biosciences and Center for Drug Research, University of Helsinki , Viikinkaari 5 , Helsinki, Finland.
  • Sarvela T; Laboratory of Immunovirotherapy, Division of Pharmaceutical Biosciences and Center for Drug Research, University of Helsinki , Viikinkaari 5 , Helsinki, Finland.
  • Vitale A; Department of Movement Sciences and Wellness (DiSMEB), University of Naples Parthenope, Via Medina 40, Naples, Italy, CEINGE-Biotecnologie Avanzate , Via G. Salvatore 486 , Naples, Italy.
  • Antopolsky M; Division of Pharmaceutical Biosciences and Center for Drug Research, University of Helsinki , Viikinkaari 5 , Helsinki, Finland.
  • Magarkar A; Division of Pharmaceutical Biosciences and Center for Drug Research, University of Helsinki , Viikinkaari 5 , Helsinki, Finland.
  • Viitala T; Division of Pharmaceutical Biosciences and Center for Drug Research, University of Helsinki , Viikinkaari 5 , Helsinki, Finland.
  • Suutari T; Division of Pharmaceutical Biosciences and Center for Drug Research, University of Helsinki , Viikinkaari 5 , Helsinki, Finland.
  • Bunker A; Division of Pharmaceutical Biosciences and Center for Drug Research, University of Helsinki , Viikinkaari 5 , Helsinki, Finland.
  • Yliperttula M; Division of Pharmaceutical Biosciences and Center for Drug Research, University of Helsinki , Viikinkaari 5 , Helsinki, Finland.
  • Urtti A; Division of Pharmaceutical Biosciences and Center for Drug Research, University of Helsinki, Viikinkaari 5, Helsinki, Finland; School of Pharmacy, University of Eastern Finland, Yliopistonranta 1, Kuopio, Finland.
  • Cerullo V; Laboratory of Immunovirotherapy, Division of Pharmaceutical Biosciences and Center for Drug Research, University of Helsinki , Viikinkaari 5 , Helsinki, Finland.
Oncoimmunology ; 5(4): e1105429, 2016 Apr.
Article em En | MEDLINE | ID: mdl-27141389
ABSTRACT
The stimulation of the immune system using oncolytic adenoviruses (OAds) has attracted significant interest and several studies suggested that OAds immunogenicity might be important for their efficacy. Therefore, we developed a versatile and rapid system to adsorb tumor-specific major histocompatibility complex class I (MHC-I) peptides onto the viral surface to drive the immune response toward the tumor epitopes. By studying the model epitope SIINFEKL, we demonstrated that the peptide-coated OAd (PeptiCRAd) retains its infectivity and the cross presentation of the modified-exogenous epitope on MHC-I is not hindered. We then showed that the SIINFEKL-targeting PeptiCRAd achieves a superior antitumor efficacy and increases the percentage of antitumor CD8+ T cells and mature epitope-specific dendritic cells in vivo. PeptiCRAds loaded with clinically relevant tumor epitopes derived from tyrosinase-related protein 2 (TRP-2) and human gp100 could reduce the growth of primary-treated tumors and secondary-untreated melanomas, promoting the expansion of antigen-specific T-cell populations. Finally, we tested PeptiCRAd in humanized mice bearing human melanomas. In this model, a PeptiCRAd targeting the human melanoma-associated antigen A1 (MAGE-A1) and expressing granulocyte and macrophage colony-stimulating factor (GM-CSF) was able to eradicate established tumors and increased the human MAGE-A1-specific CD8+ T cell population. Herein, we show that the immunogenicity of OAds plays a key role in their efficacy and it can be exploited to direct the immune response system toward exogenous tumor epitopes. This versatile and rapid system overcomes the immunodominance of the virus and elicits a tumor-specific immune response, making PeptiCRAd a promising approach for clinical testing.
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Texto completo: 1 Base de dados: MEDLINE Tipo de estudo: Prognostic_studies Idioma: En Ano de publicação: 2016 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Tipo de estudo: Prognostic_studies Idioma: En Ano de publicação: 2016 Tipo de documento: Article