A human vaccine strategy based on chimpanzee adenoviral and MVA vectors that primes, boosts, and sustains functional HCV-specific T cell memory

A protective vaccine against hepatitis C virus (HCV) remains an unmet clinical need. HCV infects millions of people worldwide and is a leading cause of liver cirrhosis and hepatocellular cancer. Animal challenge experiments, immunogenetics studies, and assessment of host immunity during acute infect...

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Κύριοι συγγραφείς: Swadling, L, Capone, S, Antrobus, R, Brown, A, Richardson, R, Newell, E, Halliday, J, Kelly, C, Bowen, D, Fergusson, J, Kurioka, A, Ammendola, V, Del Sorbo, M, Grazioli, F, Esposito, M, Siani, L, Traboni, C, Hill, A, Colloca, S, Davis, M, Nicosia, A, Cortese, R, Folgori, A, Klenerman, P, Barnes, E
Μορφή: Journal article
Γλώσσα:English
Έκδοση: American Association for the Advancement of Science 2014
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author Swadling, L
Capone, S
Antrobus, R
Brown, A
Richardson, R
Newell, E
Halliday, J
Kelly, C
Bowen, D
Fergusson, J
Kurioka, A
Ammendola, V
Del Sorbo, M
Grazioli, F
Esposito, M
Siani, L
Traboni, C
Hill, A
Colloca, S
Davis, M
Nicosia, A
Cortese, R
Folgori, A
Klenerman, P
Barnes, E
author_facet Swadling, L
Capone, S
Antrobus, R
Brown, A
Richardson, R
Newell, E
Halliday, J
Kelly, C
Bowen, D
Fergusson, J
Kurioka, A
Ammendola, V
Del Sorbo, M
Grazioli, F
Esposito, M
Siani, L
Traboni, C
Hill, A
Colloca, S
Davis, M
Nicosia, A
Cortese, R
Folgori, A
Klenerman, P
Barnes, E
author_sort Swadling, L
collection OXFORD
description A protective vaccine against hepatitis C virus (HCV) remains an unmet clinical need. HCV infects millions of people worldwide and is a leading cause of liver cirrhosis and hepatocellular cancer. Animal challenge experiments, immunogenetics studies, and assessment of host immunity during acute infection highlight the critical role that effective T cell immunity plays in viral control. In this first-in-man study, we have induced antiviral immunity with functional characteristics analogous to those associated with viral control in natural infection, and improved upon a vaccine based on adenoviral vectors alone. We assessed a heterologous prime-boost vaccination strategy based on a replicative defective simian adenoviral vector (ChAd3) and modified vaccinia Ankara (MVA) vector encoding the NS3, NS4, NS5A, and NS5B proteins of HCV genotype 1b. Analysis used single-cell mass cytometry and human leukocyte antigen class I peptide tetramer technology in healthy human volunteers. We show that HCV-specific T cells induced by ChAd3 are optimally boosted with MVA, and generate very high levels of both CD8+ and CD4+ HCV-specific T cells targeting multiple HCV antigens. Sustained memory and effector T cell populations are generated, and T cell memory evolved over time with improvement of quality (proliferation and polyfunctionality) after heterologous MVA boost. We have developed an HCV vaccine strategy, with durable, broad, sustained, and balanced T cell responses, characteristic of those associated with viral control, paving the way for the first efficacy studies of a prophylactic HCV vaccine.
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spelling oxford-uuid:9df107ca-eb81-48ef-86c8-0bb16f47e1c12022-03-27T00:46:43ZA human vaccine strategy based on chimpanzee adenoviral and MVA vectors that primes, boosts, and sustains functional HCV-specific T cell memoryJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:9df107ca-eb81-48ef-86c8-0bb16f47e1c1EnglishSymplectic Elements at OxfordAmerican Association for the Advancement of Science2014Swadling, LCapone, SAntrobus, RBrown, ARichardson, RNewell, EHalliday, JKelly, CBowen, DFergusson, JKurioka, AAmmendola, VDel Sorbo, MGrazioli, FEsposito, MSiani, LTraboni, CHill, AColloca, SDavis, MNicosia, ACortese, RFolgori, AKlenerman, PBarnes, EA protective vaccine against hepatitis C virus (HCV) remains an unmet clinical need. HCV infects millions of people worldwide and is a leading cause of liver cirrhosis and hepatocellular cancer. Animal challenge experiments, immunogenetics studies, and assessment of host immunity during acute infection highlight the critical role that effective T cell immunity plays in viral control. In this first-in-man study, we have induced antiviral immunity with functional characteristics analogous to those associated with viral control in natural infection, and improved upon a vaccine based on adenoviral vectors alone. We assessed a heterologous prime-boost vaccination strategy based on a replicative defective simian adenoviral vector (ChAd3) and modified vaccinia Ankara (MVA) vector encoding the NS3, NS4, NS5A, and NS5B proteins of HCV genotype 1b. Analysis used single-cell mass cytometry and human leukocyte antigen class I peptide tetramer technology in healthy human volunteers. We show that HCV-specific T cells induced by ChAd3 are optimally boosted with MVA, and generate very high levels of both CD8+ and CD4+ HCV-specific T cells targeting multiple HCV antigens. Sustained memory and effector T cell populations are generated, and T cell memory evolved over time with improvement of quality (proliferation and polyfunctionality) after heterologous MVA boost. We have developed an HCV vaccine strategy, with durable, broad, sustained, and balanced T cell responses, characteristic of those associated with viral control, paving the way for the first efficacy studies of a prophylactic HCV vaccine.
spellingShingle Swadling, L
Capone, S
Antrobus, R
Brown, A
Richardson, R
Newell, E
Halliday, J
Kelly, C
Bowen, D
Fergusson, J
Kurioka, A
Ammendola, V
Del Sorbo, M
Grazioli, F
Esposito, M
Siani, L
Traboni, C
Hill, A
Colloca, S
Davis, M
Nicosia, A
Cortese, R
Folgori, A
Klenerman, P
Barnes, E
A human vaccine strategy based on chimpanzee adenoviral and MVA vectors that primes, boosts, and sustains functional HCV-specific T cell memory
title A human vaccine strategy based on chimpanzee adenoviral and MVA vectors that primes, boosts, and sustains functional HCV-specific T cell memory
title_full A human vaccine strategy based on chimpanzee adenoviral and MVA vectors that primes, boosts, and sustains functional HCV-specific T cell memory
title_fullStr A human vaccine strategy based on chimpanzee adenoviral and MVA vectors that primes, boosts, and sustains functional HCV-specific T cell memory
title_full_unstemmed A human vaccine strategy based on chimpanzee adenoviral and MVA vectors that primes, boosts, and sustains functional HCV-specific T cell memory
title_short A human vaccine strategy based on chimpanzee adenoviral and MVA vectors that primes, boosts, and sustains functional HCV-specific T cell memory
title_sort human vaccine strategy based on chimpanzee adenoviral and mva vectors that primes boosts and sustains functional hcv specific t cell memory
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