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Quantification of Hantaan Virus with a SYBR Green Ⅰ-Based One-Step qRT-PCR Assay

Hantaan virus (HTNV) is a major zoonotic pathogen that causes hemorrhagic fever with renal syndrome (HFRS) in Asia, especially in China. Shaanxi province, which is located in northwest of China, is one of the areas in China most severely afflicted with HFRS epidemics annually. This study aims to est...

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Autores principales: Jiang, Wei, Yu, Hai-tao, Zhao, Ke, Zhang, Ye, Du, Hong, Wang, Ping-zhong, Bai, Xue-fan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3836762/
https://www.ncbi.nlm.nih.gov/pubmed/24278449
http://dx.doi.org/10.1371/journal.pone.0081525
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author Jiang, Wei
Yu, Hai-tao
Zhao, Ke
Zhang, Ye
Du, Hong
Wang, Ping-zhong
Bai, Xue-fan
author_facet Jiang, Wei
Yu, Hai-tao
Zhao, Ke
Zhang, Ye
Du, Hong
Wang, Ping-zhong
Bai, Xue-fan
author_sort Jiang, Wei
collection PubMed
description Hantaan virus (HTNV) is a major zoonotic pathogen that causes hemorrhagic fever with renal syndrome (HFRS) in Asia, especially in China. Shaanxi province, which is located in northwest of China, is one of the areas in China most severely afflicted with HFRS epidemics annually. This study aims to establish a quantitative RT-PCR (qRT-PCR) assay to detect HTNV both in cell culture and clinical serum samples. We established a SYBR Green Ⅰ-based one-step qRT-PCR assay that targets the S segment of the HTNV genome for rapid detection and quantification. The HTNV cRNA standards were constructed by in vitro transcription, and the copy numbers of the HTNV cRNA were quantified. Standard curve was generated by determining the mean cycle threshold (Ct) values versus 10-fold serial dilutions of the HTNV cRNA over a range of 1×10(8) to 1×10(3) copies/μl. The standard curve had a reaction efficiency of 102.1%, a correlation coefficient (R(2)) of 0.998, and a slope of -3.273. The coefficient of variation (CV) of the intra- and inter-assays ranged from 0.68% to 3.00% and from 0.86% to 3.21%, respectively. The cycle intervals of the qRT-PCR assay between each dilution ranged from 2.9 to 3.8 cycles, and the lowest detection limit of the qRT-PCR assay was 10 copies/μl. The assay exhibited high specificity that was confirmed by melting curve analysis, and no cross reaction with the Seoul virus (SEOV) and other viruses (HBV, HCV and HIV) was observed. HTNV RNA was also detected in the 27 serum samples of clinical HFRS patients using the assay, and the HTNV RNA viral load ranged from 2.06×10(1) to 1.95×10(5) copies/μl. The SYBR Green Ⅰ-based one-step qRT-PCR assay is a sensitive, specific, reproducible, and simple method for detecting and quantifying HTNV in cell culture and clinical samples.
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spelling pubmed-38367622013-11-25 Quantification of Hantaan Virus with a SYBR Green Ⅰ-Based One-Step qRT-PCR Assay Jiang, Wei Yu, Hai-tao Zhao, Ke Zhang, Ye Du, Hong Wang, Ping-zhong Bai, Xue-fan PLoS One Research Article Hantaan virus (HTNV) is a major zoonotic pathogen that causes hemorrhagic fever with renal syndrome (HFRS) in Asia, especially in China. Shaanxi province, which is located in northwest of China, is one of the areas in China most severely afflicted with HFRS epidemics annually. This study aims to establish a quantitative RT-PCR (qRT-PCR) assay to detect HTNV both in cell culture and clinical serum samples. We established a SYBR Green Ⅰ-based one-step qRT-PCR assay that targets the S segment of the HTNV genome for rapid detection and quantification. The HTNV cRNA standards were constructed by in vitro transcription, and the copy numbers of the HTNV cRNA were quantified. Standard curve was generated by determining the mean cycle threshold (Ct) values versus 10-fold serial dilutions of the HTNV cRNA over a range of 1×10(8) to 1×10(3) copies/μl. The standard curve had a reaction efficiency of 102.1%, a correlation coefficient (R(2)) of 0.998, and a slope of -3.273. The coefficient of variation (CV) of the intra- and inter-assays ranged from 0.68% to 3.00% and from 0.86% to 3.21%, respectively. The cycle intervals of the qRT-PCR assay between each dilution ranged from 2.9 to 3.8 cycles, and the lowest detection limit of the qRT-PCR assay was 10 copies/μl. The assay exhibited high specificity that was confirmed by melting curve analysis, and no cross reaction with the Seoul virus (SEOV) and other viruses (HBV, HCV and HIV) was observed. HTNV RNA was also detected in the 27 serum samples of clinical HFRS patients using the assay, and the HTNV RNA viral load ranged from 2.06×10(1) to 1.95×10(5) copies/μl. The SYBR Green Ⅰ-based one-step qRT-PCR assay is a sensitive, specific, reproducible, and simple method for detecting and quantifying HTNV in cell culture and clinical samples. Public Library of Science 2013-11-21 /pmc/articles/PMC3836762/ /pubmed/24278449 http://dx.doi.org/10.1371/journal.pone.0081525 Text en © 2013 Jiang et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Jiang, Wei
Yu, Hai-tao
Zhao, Ke
Zhang, Ye
Du, Hong
Wang, Ping-zhong
Bai, Xue-fan
Quantification of Hantaan Virus with a SYBR Green Ⅰ-Based One-Step qRT-PCR Assay
title Quantification of Hantaan Virus with a SYBR Green Ⅰ-Based One-Step qRT-PCR Assay
title_full Quantification of Hantaan Virus with a SYBR Green Ⅰ-Based One-Step qRT-PCR Assay
title_fullStr Quantification of Hantaan Virus with a SYBR Green Ⅰ-Based One-Step qRT-PCR Assay
title_full_unstemmed Quantification of Hantaan Virus with a SYBR Green Ⅰ-Based One-Step qRT-PCR Assay
title_short Quantification of Hantaan Virus with a SYBR Green Ⅰ-Based One-Step qRT-PCR Assay
title_sort quantification of hantaan virus with a sybr green ⅰ-based one-step qrt-pcr assay
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3836762/
https://www.ncbi.nlm.nih.gov/pubmed/24278449
http://dx.doi.org/10.1371/journal.pone.0081525
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