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A Novel and Secure Pseudovirus Reporter System Based Assay for Neutralizing and Enhancing Antibody Assay Against Marburg Virus

Marburg virus (MARV) is one of the principal members of the filovirus family, which can cause fatal hemorrhagic fever in humans. There are currently no prophylactic and therapeutic drugs on the market, and the high pathogenicity and infectivity of MARV make its research highly dependent on biosafety...

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Detalles Bibliográficos
Autores principales: Bi, Jinhao, Wang, Haojie, Pei, Hongyan, Han, Qiuxue, Feng, Na, Wang, Qi, Wang, Xinyue, Wang, Zhenshan, Wei, Shimeng, Ge, Liangpeng, Wu, Meng, Liang, Hao, Yang, Songtao, Yan, Feihu, Zhao, Yongkun, Xia, Xianzhu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9224600/
https://www.ncbi.nlm.nih.gov/pubmed/35756049
http://dx.doi.org/10.3389/fmicb.2022.927122
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author Bi, Jinhao
Wang, Haojie
Pei, Hongyan
Han, Qiuxue
Feng, Na
Wang, Qi
Wang, Xinyue
Wang, Zhenshan
Wei, Shimeng
Ge, Liangpeng
Wu, Meng
Liang, Hao
Yang, Songtao
Yan, Feihu
Zhao, Yongkun
Xia, Xianzhu
author_facet Bi, Jinhao
Wang, Haojie
Pei, Hongyan
Han, Qiuxue
Feng, Na
Wang, Qi
Wang, Xinyue
Wang, Zhenshan
Wei, Shimeng
Ge, Liangpeng
Wu, Meng
Liang, Hao
Yang, Songtao
Yan, Feihu
Zhao, Yongkun
Xia, Xianzhu
author_sort Bi, Jinhao
collection PubMed
description Marburg virus (MARV) is one of the principal members of the filovirus family, which can cause fatal hemorrhagic fever in humans. There are currently no prophylactic and therapeutic drugs on the market, and the high pathogenicity and infectivity of MARV make its research highly dependent on biosafety level 4 conditions, severely hindering the development of vaccines and therapies. Therefore, the development of medicines, such as MARV serological diagnosis, vaccines, and therapeutic antibody drugs, urgently needs a safe, convenient, and biosafety level 2 detection method to measure the neutralizing activity of MARV antibodies. To this end, we report a neutralization assay relying on a Rabies virus (RABV) reverse genetic operating system. We constructed infectious clones carrying the eGFP reporter gene and the full length of the original unmodified MARV GP gene. Based on the critical parameters of phylogenetic analysis, recombinant viruses targeting representative strains in the two major MARV lineages were successfully rescued. These pseudoviruses are safe in mice, and their inability to infect cells after being neutralized by antibodies can be visualized under a fluorescence microscope. We tested the system using the neutralizing antibody MR191. MR191 can significantly block the infection of BSR cells with pseudovirus. We compared it with the traditional lentivirus-type pseudovirus system to verify the system’s credibility and obtained the same results as reported in the literature. In general, we have established a safe and visualized method for evaluating the neutralizing activity of MARV antibodies. Compared with traditional methods, it has the advantages of convenient operation, short cycle, and low cost. It is a candidate method that can replace actual viruses for a neutralization assay.
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spelling pubmed-92246002022-06-24 A Novel and Secure Pseudovirus Reporter System Based Assay for Neutralizing and Enhancing Antibody Assay Against Marburg Virus Bi, Jinhao Wang, Haojie Pei, Hongyan Han, Qiuxue Feng, Na Wang, Qi Wang, Xinyue Wang, Zhenshan Wei, Shimeng Ge, Liangpeng Wu, Meng Liang, Hao Yang, Songtao Yan, Feihu Zhao, Yongkun Xia, Xianzhu Front Microbiol Microbiology Marburg virus (MARV) is one of the principal members of the filovirus family, which can cause fatal hemorrhagic fever in humans. There are currently no prophylactic and therapeutic drugs on the market, and the high pathogenicity and infectivity of MARV make its research highly dependent on biosafety level 4 conditions, severely hindering the development of vaccines and therapies. Therefore, the development of medicines, such as MARV serological diagnosis, vaccines, and therapeutic antibody drugs, urgently needs a safe, convenient, and biosafety level 2 detection method to measure the neutralizing activity of MARV antibodies. To this end, we report a neutralization assay relying on a Rabies virus (RABV) reverse genetic operating system. We constructed infectious clones carrying the eGFP reporter gene and the full length of the original unmodified MARV GP gene. Based on the critical parameters of phylogenetic analysis, recombinant viruses targeting representative strains in the two major MARV lineages were successfully rescued. These pseudoviruses are safe in mice, and their inability to infect cells after being neutralized by antibodies can be visualized under a fluorescence microscope. We tested the system using the neutralizing antibody MR191. MR191 can significantly block the infection of BSR cells with pseudovirus. We compared it with the traditional lentivirus-type pseudovirus system to verify the system’s credibility and obtained the same results as reported in the literature. In general, we have established a safe and visualized method for evaluating the neutralizing activity of MARV antibodies. Compared with traditional methods, it has the advantages of convenient operation, short cycle, and low cost. It is a candidate method that can replace actual viruses for a neutralization assay. Frontiers Media S.A. 2022-06-09 /pmc/articles/PMC9224600/ /pubmed/35756049 http://dx.doi.org/10.3389/fmicb.2022.927122 Text en Copyright © 2022 Bi, Wang, Pei, Han, Feng, Wang, Wang, Wang, Wei, Ge, Wu, Liang, Yang, Yan, Zhao and Xia. 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 Microbiology
Bi, Jinhao
Wang, Haojie
Pei, Hongyan
Han, Qiuxue
Feng, Na
Wang, Qi
Wang, Xinyue
Wang, Zhenshan
Wei, Shimeng
Ge, Liangpeng
Wu, Meng
Liang, Hao
Yang, Songtao
Yan, Feihu
Zhao, Yongkun
Xia, Xianzhu
A Novel and Secure Pseudovirus Reporter System Based Assay for Neutralizing and Enhancing Antibody Assay Against Marburg Virus
title A Novel and Secure Pseudovirus Reporter System Based Assay for Neutralizing and Enhancing Antibody Assay Against Marburg Virus
title_full A Novel and Secure Pseudovirus Reporter System Based Assay for Neutralizing and Enhancing Antibody Assay Against Marburg Virus
title_fullStr A Novel and Secure Pseudovirus Reporter System Based Assay for Neutralizing and Enhancing Antibody Assay Against Marburg Virus
title_full_unstemmed A Novel and Secure Pseudovirus Reporter System Based Assay for Neutralizing and Enhancing Antibody Assay Against Marburg Virus
title_short A Novel and Secure Pseudovirus Reporter System Based Assay for Neutralizing and Enhancing Antibody Assay Against Marburg Virus
title_sort novel and secure pseudovirus reporter system based assay for neutralizing and enhancing antibody assay against marburg virus
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9224600/
https://www.ncbi.nlm.nih.gov/pubmed/35756049
http://dx.doi.org/10.3389/fmicb.2022.927122
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