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Live-attenuated Salmonella enterica serotype Choleraesuis vaccine with regulated delayed fur mutation confer protection against Streptococcus suis in mice

BACKGROUND: Recombinant Salmonella enterica serotype Choleraesuis (S. Choleraesuis) vaccine vector could be used to deliver heterologous antigens to prevent and control pig diseases. We have previously shown that a live-attenuated S. Choleraesuis vaccine candidate strain rSC0011 (ΔP(crp527)::TT araC...

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Autores principales: Li, Yu-an, Chen, Yunyun, Du, Yuan zhao, Guo, Weiwei, Chu, Dianfeng, Fan, Juan, Wang, Xiaobo, Bellefleur, Matthew, Wang, Shifeng, Shi, Huoying
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7203871/
https://www.ncbi.nlm.nih.gov/pubmed/32381017
http://dx.doi.org/10.1186/s12917-020-02340-4
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author Li, Yu-an
Chen, Yunyun
Du, Yuan zhao
Guo, Weiwei
Chu, Dianfeng
Fan, Juan
Wang, Xiaobo
Bellefleur, Matthew
Wang, Shifeng
Shi, Huoying
author_facet Li, Yu-an
Chen, Yunyun
Du, Yuan zhao
Guo, Weiwei
Chu, Dianfeng
Fan, Juan
Wang, Xiaobo
Bellefleur, Matthew
Wang, Shifeng
Shi, Huoying
author_sort Li, Yu-an
collection PubMed
description BACKGROUND: Recombinant Salmonella enterica serotype Choleraesuis (S. Choleraesuis) vaccine vector could be used to deliver heterologous antigens to prevent and control pig diseases. We have previously shown that a live-attenuated S. Choleraesuis vaccine candidate strain rSC0011 (ΔP(crp527)::TT araC P(BAD)crp Δpmi-2426 ΔrelA199::araC P(BAD)lacI TT ΔasdA33, Δ, deletion, TT, terminator) delivering SaoA, a conserved surface protein in most of S. suis serotypes, provided excellent protection against S. suis challenge, but occasionally lead to morbidity (enteritidis) in vaccinated mice (approximately 1 in every 10 mice). Thus, alternated attenuation method was sought to reduce the reactogenicity of strain rSC0011. Herein, we described another recombinant attenuated S. Choleraesuis vector, rSC0012 (ΔP(fur88):: TT araC P(BAD)fur Δpmi-2426 ΔrelA199:: araC P(BAD)lacI TT ΔasdA33) with regulated delayed fur mutation to avoid inducing disease symptoms while exhibiting a high degree of immunogenicity. RESULTS: The strain rSC0012 strain with the ΔP(fur88)::TT araC P(BAD)fur mutation induced less production of inflammatory cytokines than strain rSC0011 with the ΔP(crp527)::TT araC P(BAD)crp mutation in mice. When delivering the same pS-SaoA plasmid, the intraperitoneal LD(50) of rSC0012 was 18.2 times higher than that of rSC0011 in 3-week-old BALB/C mice. rSC0012 with either pS-SaoA or pYA3493 was cleared from spleen and liver tissues 7 days earlier than rSC0011 with same vectors after oral inoculation. The strain rSC0012 synthesizing SaoA induced high titers of anti-SaoA antibodies in both systemic (IgG in serum) and mucosal (IgA in vaginal washes) sites, as well as increased level of IL-4, the facilitator of Th2-type T cell immune response in mice. The recombinant vaccine rSC0012(pS-SaoA) conferred high percentage of protection against S. suis or S. Choleraesuis challenge in BALB/C mice. CONCLUSIONS: The live-attenuated Salmonella enterica serotype Choleraesuis vaccine rSC0012(pS-SaoA) with regulated delayed fur mutation provides a foundation for the development of a safe and effective vaccine against S. Choleraesuis and S. suis.
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spelling pubmed-72038712020-05-09 Live-attenuated Salmonella enterica serotype Choleraesuis vaccine with regulated delayed fur mutation confer protection against Streptococcus suis in mice Li, Yu-an Chen, Yunyun Du, Yuan zhao Guo, Weiwei Chu, Dianfeng Fan, Juan Wang, Xiaobo Bellefleur, Matthew Wang, Shifeng Shi, Huoying BMC Vet Res Research Article BACKGROUND: Recombinant Salmonella enterica serotype Choleraesuis (S. Choleraesuis) vaccine vector could be used to deliver heterologous antigens to prevent and control pig diseases. We have previously shown that a live-attenuated S. Choleraesuis vaccine candidate strain rSC0011 (ΔP(crp527)::TT araC P(BAD)crp Δpmi-2426 ΔrelA199::araC P(BAD)lacI TT ΔasdA33, Δ, deletion, TT, terminator) delivering SaoA, a conserved surface protein in most of S. suis serotypes, provided excellent protection against S. suis challenge, but occasionally lead to morbidity (enteritidis) in vaccinated mice (approximately 1 in every 10 mice). Thus, alternated attenuation method was sought to reduce the reactogenicity of strain rSC0011. Herein, we described another recombinant attenuated S. Choleraesuis vector, rSC0012 (ΔP(fur88):: TT araC P(BAD)fur Δpmi-2426 ΔrelA199:: araC P(BAD)lacI TT ΔasdA33) with regulated delayed fur mutation to avoid inducing disease symptoms while exhibiting a high degree of immunogenicity. RESULTS: The strain rSC0012 strain with the ΔP(fur88)::TT araC P(BAD)fur mutation induced less production of inflammatory cytokines than strain rSC0011 with the ΔP(crp527)::TT araC P(BAD)crp mutation in mice. When delivering the same pS-SaoA plasmid, the intraperitoneal LD(50) of rSC0012 was 18.2 times higher than that of rSC0011 in 3-week-old BALB/C mice. rSC0012 with either pS-SaoA or pYA3493 was cleared from spleen and liver tissues 7 days earlier than rSC0011 with same vectors after oral inoculation. The strain rSC0012 synthesizing SaoA induced high titers of anti-SaoA antibodies in both systemic (IgG in serum) and mucosal (IgA in vaginal washes) sites, as well as increased level of IL-4, the facilitator of Th2-type T cell immune response in mice. The recombinant vaccine rSC0012(pS-SaoA) conferred high percentage of protection against S. suis or S. Choleraesuis challenge in BALB/C mice. CONCLUSIONS: The live-attenuated Salmonella enterica serotype Choleraesuis vaccine rSC0012(pS-SaoA) with regulated delayed fur mutation provides a foundation for the development of a safe and effective vaccine against S. Choleraesuis and S. suis. BioMed Central 2020-05-07 /pmc/articles/PMC7203871/ /pubmed/32381017 http://dx.doi.org/10.1186/s12917-020-02340-4 Text en © The Author(s) 2020 Open AccessThis article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article's Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article's Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated in a credit line to the data.
spellingShingle Research Article
Li, Yu-an
Chen, Yunyun
Du, Yuan zhao
Guo, Weiwei
Chu, Dianfeng
Fan, Juan
Wang, Xiaobo
Bellefleur, Matthew
Wang, Shifeng
Shi, Huoying
Live-attenuated Salmonella enterica serotype Choleraesuis vaccine with regulated delayed fur mutation confer protection against Streptococcus suis in mice
title Live-attenuated Salmonella enterica serotype Choleraesuis vaccine with regulated delayed fur mutation confer protection against Streptococcus suis in mice
title_full Live-attenuated Salmonella enterica serotype Choleraesuis vaccine with regulated delayed fur mutation confer protection against Streptococcus suis in mice
title_fullStr Live-attenuated Salmonella enterica serotype Choleraesuis vaccine with regulated delayed fur mutation confer protection against Streptococcus suis in mice
title_full_unstemmed Live-attenuated Salmonella enterica serotype Choleraesuis vaccine with regulated delayed fur mutation confer protection against Streptococcus suis in mice
title_short Live-attenuated Salmonella enterica serotype Choleraesuis vaccine with regulated delayed fur mutation confer protection against Streptococcus suis in mice
title_sort live-attenuated salmonella enterica serotype choleraesuis vaccine with regulated delayed fur mutation confer protection against streptococcus suis in mice
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7203871/
https://www.ncbi.nlm.nih.gov/pubmed/32381017
http://dx.doi.org/10.1186/s12917-020-02340-4
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