Shi P Y, Kauffman E B, Ren P, Felton A, Tai J H, Dupuis A P, Jones S A, Ngo K A, Nicholas D C, Maffei J, Ebel G D, Bernard K A, Kramer L D
Wadsworth Center for Laboratories and Research, New York State Department of Health, Albany, New York 12201, USA.
J Clin Microbiol. 2001 Apr;39(4):1264-71. doi: 10.1128/JCM.39.4.1264-1271.2001.
The recent outbreaks of West Nile virus (WNV) in the northeastern United States and other regions of the world have made it essential to develop an efficient protocol for surveillance of WNV. In the present report, we describe a high-throughput procedure that combines automated RNA extraction, amplification, and detection of WNV RNA. The procedure analyzed 96 samples in approximately 4.5 h. A robotic system, the ABI Prism 6700 Automated Nucleic Acid workstation, extracted RNA and set up reactions for real-time reverse transcription (RT)-PCR in a 96-well format. The robot extracted RNA with a recovery as efficient as that of a commercial RNA extraction kit. A real-time RT-PCR assay was used to detect and quantitate WNV RNA. Using in vitro transcribed RNA, we estimated the detection limit of the real-time RT-PCR to be approximately 40 copies of RNA. A standard RT-PCR assay was optimized to a sensitivity similar to that of the real-time RT-PCR. The standard assay can be reliably used to test a small number of samples or to confirm previous test results. Using internal primers in a nested RT-PCR, we increased the sensitivity by approximately 10-fold compared to that of the standard RT-PCR. The results of the study demonstrated for the first time that the use of an automated system for the purpose of large-scale viral RNA surveillance dramatically increased the speed and efficiency of sample throughput for diagnosis.
近期美国东北部及世界其他地区爆发的西尼罗河病毒(WNV)疫情使得制定一套高效的WNV监测方案变得至关重要。在本报告中,我们描述了一种高通量程序,该程序结合了WNV RNA的自动化提取、扩增和检测。该程序在约4.5小时内分析了96个样本。一个机器人系统,即ABI Prism 6700自动化核酸工作站,以96孔板形式提取RNA并设置实时逆转录(RT)-PCR反应。该机器人提取RNA的回收率与商用RNA提取试剂盒一样高效。使用实时RT-PCR检测法来检测和定量WNV RNA。利用体外转录的RNA,我们估计实时RT-PCR的检测限约为40个RNA拷贝。对标准RT-PCR检测法进行了优化,使其灵敏度与实时RT-PCR相似。该标准检测法可可靠地用于检测少量样本或确认先前的检测结果。在巢式RT-PCR中使用内部引物,与标准RT-PCR相比,我们将灵敏度提高了约10倍。该研究结果首次表明,使用自动化系统进行大规模病毒RNA监测极大地提高了样本通量用于诊断的速度和效率。