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An improved infectivity assay combining cell culture with real-time PCR for rapid quantification of human adenoviruses 41 and semi-quantification of human adenovirus in sewage

机译:一种改进的传染性测定法,结合了细胞培养和实时PCR技术,可快速定量检测人腺病毒41和对污水中人腺病毒进行半定量

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摘要

A protocol for the rapid detection and semi-quantification of human enteric adenovirus based on the quantification of viral mRNA during cell culture infectivity assay was developed. Infectivity assays for adenovirus incorporated cell culture and reverse transcription real-time PCR, where viral mRNA detection was used to monitor the progress of adenovirus infection (CC/mRNA qPCR). The cell line used was G293. This specific infectivity assay was calibrated against different initial concentrations of human adenovirus 41. In addition, the expression of the host's housekeeping (HK) gene, GAPDH, served as internal control for the mRNA assays for quality assurance of the mRNA extraction and reverse transcription steps. The concentrations of infectious human adenoviruses in different sewage samples were estimated semi-quantitatively using the CC/mRNA qPCR assay and calibration obtained for adenovirus 41. A linear relationship between concentrations of viral mRNA (hexon gene) and infectious units was observed between 107 to 101 infectious units per assay (R~2 = 0.97) in samples analyzed 3-5 days post infection. The expressions of host cell GAPDH gene were not significantly affected by infections with different concentrations of human adenovirus 41, and between virus positive and negative cell cultures (p > 0.1). The estimated concentrations of human adenoviruses in sewage samples ranged between 102 to 103 mRNA-IU/L. Most of the viruses detected in sewage samples were from human adenovirus species F. The CC/mRNA qPCR assay can be used for quantifying infectious human adenovirus 41, estimating the levels of human adenoviruses in sewage samples, and applied to other sample settings. The CC/mRNA qPCR protocol described here represents an improvement in the detection of human enteric adenoviruses by reducing incubation time (5 days); whereas the conventional cell culture method requires longer incubation periods (10-20 days). More importantly, this protocol can be used to more rapidly and semi-quantitatively estimate the levels of infectious human adenoviruses in environmental samples.
机译:建立了一种基于细胞培养感染性试验中病毒mRNA定量检测人肠道腺病毒的快速检测和半定量方法。腺病毒的感染性测定结合了细胞培养和逆转录实时PCR,其中病毒mRNA检测用于监测腺病毒感染的进展(CC / mRNA qPCR)。使用的细胞系是G293。针对不同初始浓度的人腺病毒41校准了这种特异性感染性测定。此外,宿主管家(HK)基因GAPDH的表达可作为mRNA测定的内部对照,以确保mRNA提取和逆转录步骤的质量。使用CC / mRNA qPCR分析法对腺病毒41进行标定,对不同污水样品中感染性人类腺病毒的浓度进行半定量估计。观察到病毒mRNA(六邻体基因)的浓度与感染单位之间的线性关系为107至101感染后3-5天分析的样品中每个测定的感染单位(R〜2 = 0.97)。宿主细胞GAPDH基因的表达不受不同浓度的人腺病毒41感染以及病毒阳性和阴性细胞培养之间的感染的显着影响(p> 0.1)。污水样品中人类腺病毒的估计浓度介于102到103 mRNA-IU / L之间。在污水样品中检测到的大多数病毒均来自人类腺病毒F。CC / mRNA qPCR分析可用于定量感染性人类腺病毒41,估算污水样品中人类腺病毒的水平,并应用于其他样品设置。本文所述的CC / mRNA qPCR方案通过减少孵育时间(5天)代表了对人类肠道腺病毒检测的一种改进。而传统的细胞培养方法需要更长的孵育时间(10-20天)。更重要的是,该协议可用于更快速和半定量地估计环境样品中人类感染性腺病毒的水平。

著录项

  • 来源
    《Water Research》 |2013年第9期|3183-3191|共9页
  • 作者单位

    Department of Environmental Sciences and Engineering, Gillings School of Global Public Health, University of North Carolina at Chapel Hill, Chapel Hill, NC 27599, USA;

    Department of Environmental Sciences and Engineering, Gillings School of Global Public Health, University of North Carolina at Chapel Hill, Chapel Hill, NC 27599, USA;

    Department of Environmental Sciences and Engineering, Gillings School of Global Public Health, University of North Carolina at Chapel Hill, Chapel Hill, NC 27599, USA;

    Department of Environmental Sciences and Engineering, Gillings School of Global Public Health, University of North Carolina at Chapel Hill, Chapel Hill, NC 27599, USA;

    Department of Environmental Sciences and Engineering, Gillings School of Global Public Health, University of North Carolina at Chapel Hill, Chapel Hill, NC 27599, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    enteric adenovirus; CC/mRNA; detection; real-time PCR;

    机译:肠腺病毒CC / mRNA;检测;实时PCR;
  • 入库时间 2022-08-17 13:45:38

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