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DNA microarray technique for detection and identification of seven flaviviruses pathogenic for man.

机译:DNA芯片技术可检测和鉴定7种对人类致病的黄病毒。

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A flavivirus microarray was developed for detection and identification of yellow fever (YF), West Nile, Japanese encephalitis (JE), and the dengue 1-4 viruses, which are causing severe human disease all over the world. The microarray was based on 500-nucleotide probe fragments from five different parts of the seven viral genomes. A low-stringent amplification method targeting the corresponding regions of the viral genomic RNA was developed and combined with hybridization to the microarray for detection and identification. For distinction of the generated virus-specific fluorescence-patterns a fitting analysis procedure was adapted. The method was verified as functional for all seven flaviviruses and the strategy for the amplification, combined with the long probes, provided a high tolerance for smaller genetic variability, most suitable for these rapidly changing RNA viruses. A potentially high detection and identification capacity was proven on diverged strains of West Nile and dengue viruses. The lower limit for detection was equivalent, or better, when compared to routinely used RT-PCR methods. The performance of the method was verified on human patient samples containing dengue viruses, or normal human serum spiked with YF or JE viruses. The results demonstrated the ability of the flavivirus microarray to screen simultaneously a sample for several viruses in parallel, in combination with a good lower limit of detection.
机译:开发了一种黄病毒微阵列,用于检测和鉴定黄热病,西尼罗河病,日本脑炎和登革热1-4病毒,这些病毒在世界范围内引起严重的人类疾病。该微阵列基于来自七个病毒基因组五个不同部分的500个核苷酸的探针片段。开发了针对病毒基因组RNA相应区域的低严格扩增方法,并将其与微阵列杂交进行检测和鉴定。为了区分所产生的病毒特异性荧光模式,采用了拟合分析程序。该方法对所有七种黄病毒均有效,并且与长探针结合的扩增策略对较小的基因变异具有较高的耐受性,最适合于这些快速变化的RNA病毒。在西尼罗河病毒和登革热病毒的不同菌株中证明了潜在的高检测和鉴定能力。与常规使用的RT-PCR方法相比,检测的下限相当或更好。该方法的性能在含有登革热病毒或掺有YF或JE病毒的正常人血清的人类患者样品中得到了验证。结果证明黄病毒微阵列能够同时筛选样品中几种病毒,同时具有良好的检测下限。

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