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Basic Concepts of Microarrays and Potential Applications in Clinical Microbiology

机译:微阵列的基本概念及其在临床微生物学中的潜在应用

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摘要

Summary: The introduction of in vitro nucleic acid amplification techniques, led by real-time PCR, into the clinical microbiology laboratory has transformed the laboratory detection of viruses and select bacterial pathogens. However, the progression of the molecular diagnostic revolution currently relies on the ability to efficiently and accurately offer multiplex detection and characterization for a variety of infectious disease pathogens. Microarray analysis has the capability to offer robust multiplex detection but has just started to enter the diagnostic microbiology laboratory. Multiple microarray platforms exist, including printed double-stranded DNA and oligonucleotide arrays, in situ-synthesized arrays, high-density bead arrays, electronic microarrays, and suspension bead arrays. One aim of this paper is to review microarray technology, highlighting technical differences between them and each platform's advantages and disadvantages. Although the use of microarrays to generate gene expression data has become routine, applications pertinent to clinical microbiology continue to rapidly expand. This review highlights uses of microarray technology that impact diagnostic microbiology, including the detection and identification of pathogens, determination of antimicrobial resistance, epidemiological strain typing, and analysis of microbial infections using host genomic expression and polymorphism profiles.
机译:摘要:以实时PCR为首的体外核酸扩增技术在临床微生物学实验室中的应用已改变了实验室对病毒的检测和细菌病原体的选择。然而,分子诊断革命的进展当前依赖于有效和准确地为多种传染病病原体提供多重检测和表征的能力。微阵列分析具有提供可靠的多重检测的能力,但刚刚开始进入诊断微生物学实验室。存在多个微阵列平台,包括印刷的双链DNA和寡核苷酸阵列,原位合成的阵列,高密度磁珠阵列,电子微阵列和悬浮磁珠阵列。本文的目的是回顾微阵列技术,重点介绍它们之间的技术差异以及每个平台的优缺点。尽管使用微阵列产生基因表达数据已成为常规,但与临床微生物学有关的应用仍在迅速扩展。这篇综述重点介绍了影响诊断微生物学的微阵列技术的应用,包括检测和鉴定病原体,确定抗微生物药物的耐药性,流行病学菌株类型以及使用宿主基因组表达和多态性谱分析微生物感染。

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