Cargando…

ICP8-vhs- HSV-2 Vaccine Expressing B7 Costimulation Molecules Optimizes Safety and Efficacy against HSV-2 Infection in Mice

Herpes simplex virus 2 (HSV-2) causes most sexually transmitted genital ulcerative disease. No effective prophylactic vaccine is currently available. Replication-defective (ICP8-) HSV stimulates immune responses in animals without producing progeny virus, making it potentially useful as a safe form...

Descripción completa

Detalles Bibliográficos
Autores principales: Korom, Maria, Wang, Hong, Bernier, Kaelin M., Geiss, Brian J., Morrison, Lynda A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10384616/
https://www.ncbi.nlm.nih.gov/pubmed/37515256
http://dx.doi.org/10.3390/v15071570
_version_ 1785081201103470592
author Korom, Maria
Wang, Hong
Bernier, Kaelin M.
Geiss, Brian J.
Morrison, Lynda A.
author_facet Korom, Maria
Wang, Hong
Bernier, Kaelin M.
Geiss, Brian J.
Morrison, Lynda A.
author_sort Korom, Maria
collection PubMed
description Herpes simplex virus 2 (HSV-2) causes most sexually transmitted genital ulcerative disease. No effective prophylactic vaccine is currently available. Replication-defective (ICP8-) HSV stimulates immune responses in animals without producing progeny virus, making it potentially useful as a safe form of a live vaccine against HSV. We previously demonstrated that mice generate a stronger response to ICP8- virus encoding B7-2 costimulation molecules than to the parental replication-defective virus. We have also demonstrated enhanced immunogenicity of an ICP8-, virion host shutoff (vhs)- virus which can no longer destabilize viral and host mRNAs. Here, we constructed a triple mutant, ICP8-vhs-B7-2+ strain, and compared it to both double mutant viruses. Immunization of mice with a single dose of ICP8-B7-2+ or ICP8-vhs-B7-2+ virus decreased challenge virus replication in the vaginal mucosa, genital disease, and mortality more effectively than immunization with the ICP8-vhs- virus. Immunization with ICP8-B7-2+ or ICP8-vhs-B7-2+ virus also effectively suppressed subsequent HSV-2 infection of the nervous system compared to immunization with the ICP8-vhs- virus. ICP8-B7-2+ and ICP8-vhs-B7-2+ strains induced more IFN gamma-producing CD8 T cells and memory CD8 T cells than did ICP8-vhs- virus, potentially explaining the enhanced protective effects. Thus, B7 costimulation molecules expressed from a replication-defective vaccine can enhance vaccine efficacy, even in an immunocompetent host.
format Online
Article
Text
id pubmed-10384616
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-103846162023-07-30 ICP8-vhs- HSV-2 Vaccine Expressing B7 Costimulation Molecules Optimizes Safety and Efficacy against HSV-2 Infection in Mice Korom, Maria Wang, Hong Bernier, Kaelin M. Geiss, Brian J. Morrison, Lynda A. Viruses Article Herpes simplex virus 2 (HSV-2) causes most sexually transmitted genital ulcerative disease. No effective prophylactic vaccine is currently available. Replication-defective (ICP8-) HSV stimulates immune responses in animals without producing progeny virus, making it potentially useful as a safe form of a live vaccine against HSV. We previously demonstrated that mice generate a stronger response to ICP8- virus encoding B7-2 costimulation molecules than to the parental replication-defective virus. We have also demonstrated enhanced immunogenicity of an ICP8-, virion host shutoff (vhs)- virus which can no longer destabilize viral and host mRNAs. Here, we constructed a triple mutant, ICP8-vhs-B7-2+ strain, and compared it to both double mutant viruses. Immunization of mice with a single dose of ICP8-B7-2+ or ICP8-vhs-B7-2+ virus decreased challenge virus replication in the vaginal mucosa, genital disease, and mortality more effectively than immunization with the ICP8-vhs- virus. Immunization with ICP8-B7-2+ or ICP8-vhs-B7-2+ virus also effectively suppressed subsequent HSV-2 infection of the nervous system compared to immunization with the ICP8-vhs- virus. ICP8-B7-2+ and ICP8-vhs-B7-2+ strains induced more IFN gamma-producing CD8 T cells and memory CD8 T cells than did ICP8-vhs- virus, potentially explaining the enhanced protective effects. Thus, B7 costimulation molecules expressed from a replication-defective vaccine can enhance vaccine efficacy, even in an immunocompetent host. MDPI 2023-07-18 /pmc/articles/PMC10384616/ /pubmed/37515256 http://dx.doi.org/10.3390/v15071570 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Korom, Maria
Wang, Hong
Bernier, Kaelin M.
Geiss, Brian J.
Morrison, Lynda A.
ICP8-vhs- HSV-2 Vaccine Expressing B7 Costimulation Molecules Optimizes Safety and Efficacy against HSV-2 Infection in Mice
title ICP8-vhs- HSV-2 Vaccine Expressing B7 Costimulation Molecules Optimizes Safety and Efficacy against HSV-2 Infection in Mice
title_full ICP8-vhs- HSV-2 Vaccine Expressing B7 Costimulation Molecules Optimizes Safety and Efficacy against HSV-2 Infection in Mice
title_fullStr ICP8-vhs- HSV-2 Vaccine Expressing B7 Costimulation Molecules Optimizes Safety and Efficacy against HSV-2 Infection in Mice
title_full_unstemmed ICP8-vhs- HSV-2 Vaccine Expressing B7 Costimulation Molecules Optimizes Safety and Efficacy against HSV-2 Infection in Mice
title_short ICP8-vhs- HSV-2 Vaccine Expressing B7 Costimulation Molecules Optimizes Safety and Efficacy against HSV-2 Infection in Mice
title_sort icp8-vhs- hsv-2 vaccine expressing b7 costimulation molecules optimizes safety and efficacy against hsv-2 infection in mice
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10384616/
https://www.ncbi.nlm.nih.gov/pubmed/37515256
http://dx.doi.org/10.3390/v15071570
work_keys_str_mv AT korommaria icp8vhshsv2vaccineexpressingb7costimulationmoleculesoptimizessafetyandefficacyagainsthsv2infectioninmice
AT wanghong icp8vhshsv2vaccineexpressingb7costimulationmoleculesoptimizessafetyandefficacyagainsthsv2infectioninmice
AT bernierkaelinm icp8vhshsv2vaccineexpressingb7costimulationmoleculesoptimizessafetyandefficacyagainsthsv2infectioninmice
AT geissbrianj icp8vhshsv2vaccineexpressingb7costimulationmoleculesoptimizessafetyandefficacyagainsthsv2infectioninmice
AT morrisonlyndaa icp8vhshsv2vaccineexpressingb7costimulationmoleculesoptimizessafetyandefficacyagainsthsv2infectioninmice