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GII.P16-GII.2 Recombinant Norovirus VLPs Polarize Macrophages Into the M1 Phenotype for Th1 Immune Responses

Norovirus (NoV) is a zoonotic virus that causes diarrhea in humans and animals. Outbreaks in nosocomial settings occur annually worldwide, endangering public health and causing serious social and economic burdens. The latter quarter of 2016 witnessed the emergence of the GII.P16-GII.2 recombinant no...

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Autores principales: Han, Ji Cheng, Li, Qiu Xuan, Fang, Jin Bo, Zhang, Jin Yong, Li, Yi Quan, Li, Shan Zhi, Cheng, Cheng, Xie, Chang Zhan, Nan, Fu Long, Zhang, He, Li, Zhuo Xin, Jin, Ning Yi, Zhu, Guang Ze, Lu, Hui Jun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8637406/
https://www.ncbi.nlm.nih.gov/pubmed/34868056
http://dx.doi.org/10.3389/fimmu.2021.781718
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author Han, Ji Cheng
Li, Qiu Xuan
Fang, Jin Bo
Zhang, Jin Yong
Li, Yi Quan
Li, Shan Zhi
Cheng, Cheng
Xie, Chang Zhan
Nan, Fu Long
Zhang, He
Li, Zhuo Xin
Jin, Ning Yi
Zhu, Guang Ze
Lu, Hui Jun
author_facet Han, Ji Cheng
Li, Qiu Xuan
Fang, Jin Bo
Zhang, Jin Yong
Li, Yi Quan
Li, Shan Zhi
Cheng, Cheng
Xie, Chang Zhan
Nan, Fu Long
Zhang, He
Li, Zhuo Xin
Jin, Ning Yi
Zhu, Guang Ze
Lu, Hui Jun
author_sort Han, Ji Cheng
collection PubMed
description Norovirus (NoV) is a zoonotic virus that causes diarrhea in humans and animals. Outbreaks in nosocomial settings occur annually worldwide, endangering public health and causing serious social and economic burdens. The latter quarter of 2016 witnessed the emergence of the GII.P16-GII.2 recombinant norovirus throughout Asia. This genotype exhibits strong infectivity and replication characteristics, proposing its potential to initiate a pandemic. There is no vaccine against GII.P16-GII.2 recombinant norovirus, so it is necessary to design a preventive vaccine. In this study, GII.P16-GII.2 type norovirus virus-like particles (VLPs) were constructed using the baculovirus expression system and used to conduct immunizations in mice. After immunization of mice, mice were induced to produce memory T cells and specific antibodies, indicating that the VLPs induced specific cellular and humoral immune responses. Further experiments were then initiated to understand the underlying mechanisms involved in antigen presentation. Towards this, we established co-cultures between dendritic cells (DCs) or macrophages (Mø) and naïve CD4+T cells and simulated the antigen presentation process by incubation with VLPs. Thereafter, we detected changes in cell surface molecules, cytokines and related proteins. The results indicated that VLPs effectively promoted the phenotypic maturation of Mø but not DCs, as indicated by significant changes in the expression of MHC-II, costimulatory factors and related cytokines in Mø. Moreover, we found VLPs caused Mø to polarize to the M1 type and release inflammatory cytokines, thereby inducing naïve CD4+ T cells to perform Th1 immune responses. Therefore, this study reveals the mechanism of antigen presentation involving GII.P16-GII.2 recombinant norovirus VLPs, providing a theoretical basis for both understanding responses to norovirus infection as well as opportunities for vaccine development.
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spelling pubmed-86374062021-12-03 GII.P16-GII.2 Recombinant Norovirus VLPs Polarize Macrophages Into the M1 Phenotype for Th1 Immune Responses Han, Ji Cheng Li, Qiu Xuan Fang, Jin Bo Zhang, Jin Yong Li, Yi Quan Li, Shan Zhi Cheng, Cheng Xie, Chang Zhan Nan, Fu Long Zhang, He Li, Zhuo Xin Jin, Ning Yi Zhu, Guang Ze Lu, Hui Jun Front Immunol Immunology Norovirus (NoV) is a zoonotic virus that causes diarrhea in humans and animals. Outbreaks in nosocomial settings occur annually worldwide, endangering public health and causing serious social and economic burdens. The latter quarter of 2016 witnessed the emergence of the GII.P16-GII.2 recombinant norovirus throughout Asia. This genotype exhibits strong infectivity and replication characteristics, proposing its potential to initiate a pandemic. There is no vaccine against GII.P16-GII.2 recombinant norovirus, so it is necessary to design a preventive vaccine. In this study, GII.P16-GII.2 type norovirus virus-like particles (VLPs) were constructed using the baculovirus expression system and used to conduct immunizations in mice. After immunization of mice, mice were induced to produce memory T cells and specific antibodies, indicating that the VLPs induced specific cellular and humoral immune responses. Further experiments were then initiated to understand the underlying mechanisms involved in antigen presentation. Towards this, we established co-cultures between dendritic cells (DCs) or macrophages (Mø) and naïve CD4+T cells and simulated the antigen presentation process by incubation with VLPs. Thereafter, we detected changes in cell surface molecules, cytokines and related proteins. The results indicated that VLPs effectively promoted the phenotypic maturation of Mø but not DCs, as indicated by significant changes in the expression of MHC-II, costimulatory factors and related cytokines in Mø. Moreover, we found VLPs caused Mø to polarize to the M1 type and release inflammatory cytokines, thereby inducing naïve CD4+ T cells to perform Th1 immune responses. Therefore, this study reveals the mechanism of antigen presentation involving GII.P16-GII.2 recombinant norovirus VLPs, providing a theoretical basis for both understanding responses to norovirus infection as well as opportunities for vaccine development. Frontiers Media S.A. 2021-11-18 /pmc/articles/PMC8637406/ /pubmed/34868056 http://dx.doi.org/10.3389/fimmu.2021.781718 Text en Copyright © 2021 Han, Li, Fang, Zhang, Li, Li, Cheng, Xie, Nan, Zhang, Li, Jin, Zhu and Lu https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Han, Ji Cheng
Li, Qiu Xuan
Fang, Jin Bo
Zhang, Jin Yong
Li, Yi Quan
Li, Shan Zhi
Cheng, Cheng
Xie, Chang Zhan
Nan, Fu Long
Zhang, He
Li, Zhuo Xin
Jin, Ning Yi
Zhu, Guang Ze
Lu, Hui Jun
GII.P16-GII.2 Recombinant Norovirus VLPs Polarize Macrophages Into the M1 Phenotype for Th1 Immune Responses
title GII.P16-GII.2 Recombinant Norovirus VLPs Polarize Macrophages Into the M1 Phenotype for Th1 Immune Responses
title_full GII.P16-GII.2 Recombinant Norovirus VLPs Polarize Macrophages Into the M1 Phenotype for Th1 Immune Responses
title_fullStr GII.P16-GII.2 Recombinant Norovirus VLPs Polarize Macrophages Into the M1 Phenotype for Th1 Immune Responses
title_full_unstemmed GII.P16-GII.2 Recombinant Norovirus VLPs Polarize Macrophages Into the M1 Phenotype for Th1 Immune Responses
title_short GII.P16-GII.2 Recombinant Norovirus VLPs Polarize Macrophages Into the M1 Phenotype for Th1 Immune Responses
title_sort gii.p16-gii.2 recombinant norovirus vlps polarize macrophages into the m1 phenotype for th1 immune responses
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8637406/
https://www.ncbi.nlm.nih.gov/pubmed/34868056
http://dx.doi.org/10.3389/fimmu.2021.781718
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