第九章水媒病毒的检测。

Perspectives in medical virology Pub Date : 2007-01-01 Epub Date: 2007-09-06 DOI:10.1016/S0168-7069(07)17009-9
Peter Wyn-Jones
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引用次数: 13

摘要

水中的病毒通常浓度过低,无法通过直接分析检测出来。水样的病毒学调查通常是一个多阶段的过程,包括病毒的浓度,然后是适当的检测程序。有几种检测病毒的方法。部分或全部浓缩物可以接种到细胞培养物中以检测传染性细胞致病性病毒,如果以定量方式进行,则可以枚举病毒,计数以斑块形成单位,组织培养感染剂量或最可能数量单位报告。病毒可从细胞培养物中分离和鉴定。在培养中繁殖而不产生可识别的细胞病变效应的病毒有时可通过免疫过氧化物酶或免疫荧光染色检测到。浓缩物也可以用分子生物学方法(通常是聚合酶链反应(PCR)或实时PCR)进行分析。问题是,这种技术通常不能检测到传染性病毒,而最近出现了新的方法来应对这一挑战。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Chapter 9 The Detection of Waterborne Viruses.

Viruses in water are usually present in concentrations too low for detection by direct analysis. Virological investigation of water samples is always a multi-stage process involving concentration of viruses present followed by an appropriate detection procedure. There are several approaches to detection of viruses. Part or all of the concentrate may be inoculated into cell cultures to detect infectious cytopathogenic virus, and if this is done in a quantitative fashion the virus can be enumerated, the count being reported as plaque-forming units, the tissue culture infectious dose, or most probable number units. The virus may be isolated and identified from the cell cultures. Viruses that multiply without producing an identifiable cytopathic effect in culture may sometimes be detected by immunoperoxidase or immunofluorescence staining. The concentrate may also be analyzed by molecular biological procedures (usually polymerase chain reaction (PCR) or real-time-PCR). The problem then is that such techniques do not usually detect the infectious virus, and novel approaches have been made recently to meet this challenge.

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Pneumonia virus of mice. Chapter 1 Overview of Health-Related Water Virology. Chapter 7 Global Supply of Virus-Safe Drinking Water. Chapter 9 The Detection of Waterborne Viruses. Index.
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