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Investigation of a subunit protein vaccine for HFRS based on a consensus sequence between envelope glycoproteins of HTNV and SEOV

Due to the global resurgence of hemorrhagic fever with renal syndrome (HFRS), more attention is being focused on this dangerous illness. In China and Korea, the only vaccines available are the virus-inactivated vaccine against Hantaan virus (HTNV) or Seoul virus (SEOV), but their efficacy and safety...

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Autores principales: Liu, Rongrong, Lv, Yunhua, Sun, Wenjie, Li, Min, Ge, Ningning, Zhu, Cheng, Ding, Yaxin, Liu, Ziyu, Ma, Ruixue, Huang, Yuxiao, Hou, Shiyuan, Ying, Qikang, Gu, Tianle, Wang, Fang, Nie, Lingling, Wang, Youchun, Huang, Weijin, Shu, Jiayi, Wu, Xingan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10410520/
https://www.ncbi.nlm.nih.gov/pubmed/37329903
http://dx.doi.org/10.1016/j.virusres.2023.199149
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author Liu, Rongrong
Lv, Yunhua
Sun, Wenjie
Li, Min
Ge, Ningning
Zhu, Cheng
Ding, Yaxin
Liu, Ziyu
Ma, Ruixue
Huang, Yuxiao
Hou, Shiyuan
Ying, Qikang
Gu, Tianle
Wang, Fang
Nie, Lingling
Wang, Youchun
Huang, Weijin
Shu, Jiayi
Wu, Xingan
author_facet Liu, Rongrong
Lv, Yunhua
Sun, Wenjie
Li, Min
Ge, Ningning
Zhu, Cheng
Ding, Yaxin
Liu, Ziyu
Ma, Ruixue
Huang, Yuxiao
Hou, Shiyuan
Ying, Qikang
Gu, Tianle
Wang, Fang
Nie, Lingling
Wang, Youchun
Huang, Weijin
Shu, Jiayi
Wu, Xingan
author_sort Liu, Rongrong
collection PubMed
description Due to the global resurgence of hemorrhagic fever with renal syndrome (HFRS), more attention is being focused on this dangerous illness. In China and Korea, the only vaccines available are the virus-inactivated vaccine against Hantaan virus (HTNV) or Seoul virus (SEOV), but their efficacy and safety are inadequate. Therefore, it is important to develop new vaccines that are safer and more efficient to neutralize and regulate areas with a high prevalence of HFRS. We employed bioinformatics methods to design a recombinant protein vaccine based on conserved regions of protein consensus sequences in HTNV and SEOV membranes. The S2 Drosophila expression system was utilized to enhance protein expression, solubility and immunogenicity. After the Gn and Gc proteins of HTNV and SEOV were successfully expressed, mice were immunized, and the humoral immunity, cellular immunity, and in vivo protection of the HFRS universal subunit vaccine were systematically evaluated in mouse models. These results indicated that the HFRS subunit vaccine generated elevated levels of binding and neutralizing antibodies, particularly IgG1, compared to that of the traditional inactivated HFRS vaccine. Additionally, the spleen cells of immunized mice secreted IFN-r and IL-4 cytokines effectively. Moreover, the HTNV-Gc protein vaccine successfully protected suckling mice from HTNV infection and stimulated GC responses. In this research, a new scientific approach is investigated to develop a universal HFRS subunit protein vaccine that is capable of producing effective humoral and cellular immunity in mice. The results suggest that this vaccine could be a promising candidate for preventing HFRS in humans.
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spelling pubmed-104105202023-08-10 Investigation of a subunit protein vaccine for HFRS based on a consensus sequence between envelope glycoproteins of HTNV and SEOV Liu, Rongrong Lv, Yunhua Sun, Wenjie Li, Min Ge, Ningning Zhu, Cheng Ding, Yaxin Liu, Ziyu Ma, Ruixue Huang, Yuxiao Hou, Shiyuan Ying, Qikang Gu, Tianle Wang, Fang Nie, Lingling Wang, Youchun Huang, Weijin Shu, Jiayi Wu, Xingan Virus Res Article Due to the global resurgence of hemorrhagic fever with renal syndrome (HFRS), more attention is being focused on this dangerous illness. In China and Korea, the only vaccines available are the virus-inactivated vaccine against Hantaan virus (HTNV) or Seoul virus (SEOV), but their efficacy and safety are inadequate. Therefore, it is important to develop new vaccines that are safer and more efficient to neutralize and regulate areas with a high prevalence of HFRS. We employed bioinformatics methods to design a recombinant protein vaccine based on conserved regions of protein consensus sequences in HTNV and SEOV membranes. The S2 Drosophila expression system was utilized to enhance protein expression, solubility and immunogenicity. After the Gn and Gc proteins of HTNV and SEOV were successfully expressed, mice were immunized, and the humoral immunity, cellular immunity, and in vivo protection of the HFRS universal subunit vaccine were systematically evaluated in mouse models. These results indicated that the HFRS subunit vaccine generated elevated levels of binding and neutralizing antibodies, particularly IgG1, compared to that of the traditional inactivated HFRS vaccine. Additionally, the spleen cells of immunized mice secreted IFN-r and IL-4 cytokines effectively. Moreover, the HTNV-Gc protein vaccine successfully protected suckling mice from HTNV infection and stimulated GC responses. In this research, a new scientific approach is investigated to develop a universal HFRS subunit protein vaccine that is capable of producing effective humoral and cellular immunity in mice. The results suggest that this vaccine could be a promising candidate for preventing HFRS in humans. Elsevier 2023-06-20 /pmc/articles/PMC10410520/ /pubmed/37329903 http://dx.doi.org/10.1016/j.virusres.2023.199149 Text en © 2023 The Author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Liu, Rongrong
Lv, Yunhua
Sun, Wenjie
Li, Min
Ge, Ningning
Zhu, Cheng
Ding, Yaxin
Liu, Ziyu
Ma, Ruixue
Huang, Yuxiao
Hou, Shiyuan
Ying, Qikang
Gu, Tianle
Wang, Fang
Nie, Lingling
Wang, Youchun
Huang, Weijin
Shu, Jiayi
Wu, Xingan
Investigation of a subunit protein vaccine for HFRS based on a consensus sequence between envelope glycoproteins of HTNV and SEOV
title Investigation of a subunit protein vaccine for HFRS based on a consensus sequence between envelope glycoproteins of HTNV and SEOV
title_full Investigation of a subunit protein vaccine for HFRS based on a consensus sequence between envelope glycoproteins of HTNV and SEOV
title_fullStr Investigation of a subunit protein vaccine for HFRS based on a consensus sequence between envelope glycoproteins of HTNV and SEOV
title_full_unstemmed Investigation of a subunit protein vaccine for HFRS based on a consensus sequence between envelope glycoproteins of HTNV and SEOV
title_short Investigation of a subunit protein vaccine for HFRS based on a consensus sequence between envelope glycoproteins of HTNV and SEOV
title_sort investigation of a subunit protein vaccine for hfrs based on a consensus sequence between envelope glycoproteins of htnv and seov
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10410520/
https://www.ncbi.nlm.nih.gov/pubmed/37329903
http://dx.doi.org/10.1016/j.virusres.2023.199149
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