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Development of a BoHV-4 viral vector expressing tgD of BoHV-1 and evaluation of its immunogenicity in mouse model

In recent years, Bovine herpesvirus 4 (BoHV-4) has emerged as an attractive gene delivery viral vector, mainly for vaccination purposes in the veterinary field. In the present study, a new infectious clone of the BoHV-4 genome carrying a bacterial artificial chromosome vector (BoHV-4-BAC) was develo...

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Autores principales: Bilge-Dagalp, Seval, Farzani, Touraj Aligholipour, Dogan, Firat, Akkutay Yoldar, Zeynep, Ozkul, Aykut, Alkan, Feray, Donofrio, Gaetano
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer International Publishing 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8275906/
https://www.ncbi.nlm.nih.gov/pubmed/34255309
http://dx.doi.org/10.1007/s42770-021-00525-z
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author Bilge-Dagalp, Seval
Farzani, Touraj Aligholipour
Dogan, Firat
Akkutay Yoldar, Zeynep
Ozkul, Aykut
Alkan, Feray
Donofrio, Gaetano
author_facet Bilge-Dagalp, Seval
Farzani, Touraj Aligholipour
Dogan, Firat
Akkutay Yoldar, Zeynep
Ozkul, Aykut
Alkan, Feray
Donofrio, Gaetano
author_sort Bilge-Dagalp, Seval
collection PubMed
description In recent years, Bovine herpesvirus 4 (BoHV-4) has emerged as an attractive gene delivery viral vector, mainly for vaccination purposes in the veterinary field. In the present study, a new infectious clone of the BoHV-4 genome carrying a bacterial artificial chromosome vector (BoHV-4-BAC) was developed by homologous recombination in mammalian cell culture and bacterial systems, and exploited to express a truncated form of glycoprotein D (tgD) of Bovine herpesvirus 1 (BoHV-1) (BoHV-4-tgD∆TK) as a vaccine candidate. This construct’s immunogenicity was compared to a DNA vector expressing the same antigen (pC-tgD) in a BALB/c mouse model. After the mice were immunized, total and specific antibody responses, cytokine responses, total splenocyte cells proliferation/cytotoxicity, and virus neutralization assays were conducted to analyze the immune response elicited by both constructs. Mice from both vaccine groups developed significant humoral and cellular immune responses after a booster dose regime was conducted on day 28 post-injection. In almost all immunological assays, BoHV-4-tgDΔTK induced as high an immune response as pC-tgD. In both vaccine constructs, neutralizing antibodies were a significant determining factor in protection against BoHV-1, even after the first injection. We conclude that a BoHV-4-based viral vector offers an effective immunization strategy as an alternative to DNA-based immunization platforms, at least to combat BoHV-1.
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spelling pubmed-82759062021-07-14 Development of a BoHV-4 viral vector expressing tgD of BoHV-1 and evaluation of its immunogenicity in mouse model Bilge-Dagalp, Seval Farzani, Touraj Aligholipour Dogan, Firat Akkutay Yoldar, Zeynep Ozkul, Aykut Alkan, Feray Donofrio, Gaetano Braz J Microbiol Bacterial, Fungal and Virus Molecular Biology - Research Paper In recent years, Bovine herpesvirus 4 (BoHV-4) has emerged as an attractive gene delivery viral vector, mainly for vaccination purposes in the veterinary field. In the present study, a new infectious clone of the BoHV-4 genome carrying a bacterial artificial chromosome vector (BoHV-4-BAC) was developed by homologous recombination in mammalian cell culture and bacterial systems, and exploited to express a truncated form of glycoprotein D (tgD) of Bovine herpesvirus 1 (BoHV-1) (BoHV-4-tgD∆TK) as a vaccine candidate. This construct’s immunogenicity was compared to a DNA vector expressing the same antigen (pC-tgD) in a BALB/c mouse model. After the mice were immunized, total and specific antibody responses, cytokine responses, total splenocyte cells proliferation/cytotoxicity, and virus neutralization assays were conducted to analyze the immune response elicited by both constructs. Mice from both vaccine groups developed significant humoral and cellular immune responses after a booster dose regime was conducted on day 28 post-injection. In almost all immunological assays, BoHV-4-tgDΔTK induced as high an immune response as pC-tgD. In both vaccine constructs, neutralizing antibodies were a significant determining factor in protection against BoHV-1, even after the first injection. We conclude that a BoHV-4-based viral vector offers an effective immunization strategy as an alternative to DNA-based immunization platforms, at least to combat BoHV-1. Springer International Publishing 2021-07-13 /pmc/articles/PMC8275906/ /pubmed/34255309 http://dx.doi.org/10.1007/s42770-021-00525-z Text en © Sociedade Brasileira de Microbiologia 2021
spellingShingle Bacterial, Fungal and Virus Molecular Biology - Research Paper
Bilge-Dagalp, Seval
Farzani, Touraj Aligholipour
Dogan, Firat
Akkutay Yoldar, Zeynep
Ozkul, Aykut
Alkan, Feray
Donofrio, Gaetano
Development of a BoHV-4 viral vector expressing tgD of BoHV-1 and evaluation of its immunogenicity in mouse model
title Development of a BoHV-4 viral vector expressing tgD of BoHV-1 and evaluation of its immunogenicity in mouse model
title_full Development of a BoHV-4 viral vector expressing tgD of BoHV-1 and evaluation of its immunogenicity in mouse model
title_fullStr Development of a BoHV-4 viral vector expressing tgD of BoHV-1 and evaluation of its immunogenicity in mouse model
title_full_unstemmed Development of a BoHV-4 viral vector expressing tgD of BoHV-1 and evaluation of its immunogenicity in mouse model
title_short Development of a BoHV-4 viral vector expressing tgD of BoHV-1 and evaluation of its immunogenicity in mouse model
title_sort development of a bohv-4 viral vector expressing tgd of bohv-1 and evaluation of its immunogenicity in mouse model
topic Bacterial, Fungal and Virus Molecular Biology - Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8275906/
https://www.ncbi.nlm.nih.gov/pubmed/34255309
http://dx.doi.org/10.1007/s42770-021-00525-z
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