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An Optimized High-Throughput Neutralization Assay for Hepatitis E Virus (HEV) Involving Detection of Secreted Porf2

Hepatitis E virus (HEV) is a common cause of acute hepatitis worldwide. Current methods for evaluating the neutralizing activity of HEV-specific antibodies include immunofluorescence focus assays (IFAs) and real-time PCR, which are insensitive and operationally complicated. Here, we developed a high...

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Autores principales: Liu, Chang, Cai, Wei, Yin, Xin, Tang, Zimin, Wen, Guiping, Ambardekar, Charuta, Li, Xinlei, Ying, Dong, Feng, Zongdi, Zheng, Zizheng, Xia, Ningshao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6356577/
https://www.ncbi.nlm.nih.gov/pubmed/30650547
http://dx.doi.org/10.3390/v11010064
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author Liu, Chang
Cai, Wei
Yin, Xin
Tang, Zimin
Wen, Guiping
Ambardekar, Charuta
Li, Xinlei
Ying, Dong
Feng, Zongdi
Zheng, Zizheng
Xia, Ningshao
author_facet Liu, Chang
Cai, Wei
Yin, Xin
Tang, Zimin
Wen, Guiping
Ambardekar, Charuta
Li, Xinlei
Ying, Dong
Feng, Zongdi
Zheng, Zizheng
Xia, Ningshao
author_sort Liu, Chang
collection PubMed
description Hepatitis E virus (HEV) is a common cause of acute hepatitis worldwide. Current methods for evaluating the neutralizing activity of HEV-specific antibodies include immunofluorescence focus assays (IFAs) and real-time PCR, which are insensitive and operationally complicated. Here, we developed a high-throughput neutralization assay by measuring secreted pORF2 levels using an HEV antigen enzyme-linked immunosorbent assay (ELISA) kit based on the highly replicating HEV genotype (gt) 3 strain Kernow. We evaluated the neutralizing activity of HEV-specific antibodies and the sera of vaccinated individuals (n = 15) by traditional IFA and the novel assay simultaneously. A linear regression analysis shows that there is a high degree of correlation between the two assays. Furthermore, the anti-HEV IgG levels exhibited moderate correlation with the neutralizing titers of the sera of vaccinated individuals, indicating that immunization with gt 1 can protect against gt 3 Kernow infection. We then determined specificity of the novel assay and the potential threshold of neutralizing capacity using anti-HEV IgG positive sera (n = 27) and anti-HEV IgG negative sera (n = 23). The neutralizing capacity of anti-HEV IgG positive sera was significantly stronger than that of anti-HEV IgG negative. In addition, ROC curve analysis shows that the potential threshold of neutralizing capacity of sera was 8.07, and the sensitivity and specificity of the novel assay was 88.6% and 100%, respectively. Our results suggest that the neutralization assay using the antigen ELISA kit could be a useful tool for HEV clinical research.
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spelling pubmed-63565772019-02-05 An Optimized High-Throughput Neutralization Assay for Hepatitis E Virus (HEV) Involving Detection of Secreted Porf2 Liu, Chang Cai, Wei Yin, Xin Tang, Zimin Wen, Guiping Ambardekar, Charuta Li, Xinlei Ying, Dong Feng, Zongdi Zheng, Zizheng Xia, Ningshao Viruses Communication Hepatitis E virus (HEV) is a common cause of acute hepatitis worldwide. Current methods for evaluating the neutralizing activity of HEV-specific antibodies include immunofluorescence focus assays (IFAs) and real-time PCR, which are insensitive and operationally complicated. Here, we developed a high-throughput neutralization assay by measuring secreted pORF2 levels using an HEV antigen enzyme-linked immunosorbent assay (ELISA) kit based on the highly replicating HEV genotype (gt) 3 strain Kernow. We evaluated the neutralizing activity of HEV-specific antibodies and the sera of vaccinated individuals (n = 15) by traditional IFA and the novel assay simultaneously. A linear regression analysis shows that there is a high degree of correlation between the two assays. Furthermore, the anti-HEV IgG levels exhibited moderate correlation with the neutralizing titers of the sera of vaccinated individuals, indicating that immunization with gt 1 can protect against gt 3 Kernow infection. We then determined specificity of the novel assay and the potential threshold of neutralizing capacity using anti-HEV IgG positive sera (n = 27) and anti-HEV IgG negative sera (n = 23). The neutralizing capacity of anti-HEV IgG positive sera was significantly stronger than that of anti-HEV IgG negative. In addition, ROC curve analysis shows that the potential threshold of neutralizing capacity of sera was 8.07, and the sensitivity and specificity of the novel assay was 88.6% and 100%, respectively. Our results suggest that the neutralization assay using the antigen ELISA kit could be a useful tool for HEV clinical research. MDPI 2019-01-15 /pmc/articles/PMC6356577/ /pubmed/30650547 http://dx.doi.org/10.3390/v11010064 Text en © 2019 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Communication
Liu, Chang
Cai, Wei
Yin, Xin
Tang, Zimin
Wen, Guiping
Ambardekar, Charuta
Li, Xinlei
Ying, Dong
Feng, Zongdi
Zheng, Zizheng
Xia, Ningshao
An Optimized High-Throughput Neutralization Assay for Hepatitis E Virus (HEV) Involving Detection of Secreted Porf2
title An Optimized High-Throughput Neutralization Assay for Hepatitis E Virus (HEV) Involving Detection of Secreted Porf2
title_full An Optimized High-Throughput Neutralization Assay for Hepatitis E Virus (HEV) Involving Detection of Secreted Porf2
title_fullStr An Optimized High-Throughput Neutralization Assay for Hepatitis E Virus (HEV) Involving Detection of Secreted Porf2
title_full_unstemmed An Optimized High-Throughput Neutralization Assay for Hepatitis E Virus (HEV) Involving Detection of Secreted Porf2
title_short An Optimized High-Throughput Neutralization Assay for Hepatitis E Virus (HEV) Involving Detection of Secreted Porf2
title_sort optimized high-throughput neutralization assay for hepatitis e virus (hev) involving detection of secreted porf2
topic Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6356577/
https://www.ncbi.nlm.nih.gov/pubmed/30650547
http://dx.doi.org/10.3390/v11010064
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