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阵列技术在临床病毒学中的作用:事实还是虚构?

A role for arrays in clinical virology: fact or fiction?

作者信息

Clewley Jonathan P

机构信息

Sexually Transmitted and Blood Borne Virus Laboratory, Central Public Health Laboratory, 61 Colindale Avenue, London NW9 5HT, UK.

出版信息

J Clin Virol. 2004 Jan;29(1):2-12. doi: 10.1016/j.jcv.2003.08.002.

Abstract

Microarrays of DNA probes have at least three roles in clinical virology. These are: firstly, in diagnosis, to recognise the causative agent of an illness; secondly, for molecular typing for (i) patient management, (ii) epidemiological reasons (e.g. investigating routes of transmission), (iii) purposes related to vaccine use; and thirdly, in research, to investigate the interactions between the virus and the host cell. Microarrays intended for syndromic diagnostic purposes require genome specific probes to capture the unknown target viral sequences and thereby reveal the presence of that virus in a test sample. Microarrays intended for typing and patient management, e.g. monitoring antiviral drug resistant mutations require a set of probes representing the important sequence variants of one or more viral genes. Microarrays intended for research into virus-host interactions require probes representative of each individual gene or mRNA of either the virus or the host genome. Diagnostic microarrays are dependent for their utility and versatility on generic, multiplex or random polymerase chain reactions that will amplify any of several (unknown) viral target sequences from a patient sample. In this review, the existing and potential applications of microarrays in virology, and the problems that need to be overcome for future success, are discussed.

摘要

DNA 探针微阵列在临床病毒学中至少有三个作用。这些作用是:首先,在诊断方面,识别疾病的病原体;其次,用于分子分型,(i)用于患者管理,(ii)出于流行病学原因(例如调查传播途径),(iii)与疫苗使用相关的目的;第三,在研究中,研究病毒与宿主细胞之间的相互作用。用于综合征诊断目的的微阵列需要基因组特异性探针来捕获未知的目标病毒序列,从而揭示测试样品中该病毒的存在。用于分型和患者管理的微阵列,例如监测抗病毒药物耐药突变,需要一组代表一个或多个病毒基因重要序列变体的探针。用于病毒 - 宿主相互作用研究的微阵列需要代表病毒或宿主基因组中每个单独基因或 mRNA 的探针。诊断微阵列的实用性和多功能性依赖于通用、多重或随机聚合酶链反应,这些反应将扩增患者样品中几种(未知)病毒靶序列中的任何一种。在这篇综述中,讨论了微阵列在病毒学中的现有和潜在应用,以及未来取得成功需要克服的问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2689/7128301/6b4ea2027a77/gr1.jpg

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