分子诊断技术在病毒检测中的应用。

The Open Virology Journal Pub Date : 2012-01-01 Epub Date: 2012-11-30 DOI:10.2174/1874357901206010104
Fernando Cobo
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引用次数: 0

摘要

核酸扩增技术是目前病毒性疾病诊断和患者管理的常用技术。在过去的30年里,随着临床诊断中几种检测方法的发现和引入,这些技术有了快速但非常规的发展路线。商业上可获得的方法数量的增加促进了世界上大多数实验室使用这一技术。这项技术减少了一些其他技术的使用,如基于病毒培养的方法和临床病毒学实验室的血清学分析。此外,核酸扩增技术是目前几种疾病诊断的参考方法,也是最有用的检测方法。这些技术的引入及其自动化为临床实验室影响患者护理提供了新的机会。在这一领域进行核酸检测的主要目的是以合理的费用及时提供对高质量患者护理有用的结果,因为快速结果与患者护理的改善有关。利用聚合酶链反应、实时聚合酶链反应或核酸序列扩增等扩增技术进行病毒检测、基因分型和定量,具有灵敏度高、重现性好、动态范围广等优点。本文综述了最新的主要核酸技术及其临床应用,以及这些技术目前给临床病毒学实验室带来的特殊挑战和机遇。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of molecular diagnostic techniques for viral testing.

Nucleic acid amplification techniques are commonly used currently to diagnose viral diseases and manage patients with this kind of illnesses. These techniques have had a rapid but unconventional route of development during the last 30 years, with the discovery and introduction of several assays in clinical diagnosis. The increase in the number of commercially available methods has facilitated the use of this technology in the majority of laboratories worldwide. This technology has reduced the use of some other techniques such as viral culture based methods and serological assays in the clinical virology laboratory. Moreover, nucleic acid amplification techniques are now the methods of reference and also the most useful assays for the diagnosis in several diseases. The introduction of these techniques and their automation provides new opportunities for the clinical laboratory to affect patient care. The main objectives in performing nucleic acid tests in this field are to provide timely results useful for high-quality patient care at a reasonable cost, because rapid results are associated with improvements in patients care. The use of amplification techniques such as polymerase chain reaction, real-time polymerase chain reaction or nucleic acid sequence-based amplification for virus detection, genotyping and quantification have some advantages like high sensitivity and reproducibility, as well as a broad dynamic range. This review is an up-to-date of the main nucleic acid techniques and their clinical applications, and special challenges and opportunities that these techniques currently provide for the clinical virology laboratory.

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