Lawrence Livermore National Laboratory, 7000 East Avenue, Livermore, CA 94550, USA.
Analyst. 2010 Sep;135(9):2316-22. doi: 10.1039/c0an00223b. Epub 2010 Jul 2.
Multiplex RT-PCR suspension array assays provide a powerful tool for identifying the causative agent(s) of respiratory infections. These assays are time consuming and laborious on a time-per-sample basis if only a few samples require processing. To address this shortcoming and provide an automated solution for fast detection and identification of viral pathogens, we developed the first automated multiplex RT-PCR suspension array instrument capable of handling unprepared clinical samples. The instrument requires less than 3 minutes of hands-on time for a result generated in approximately 2.5 hours. In analytical studies, the instrument performed as well as manually performed assays. The performance of the instrument and loaded multiplex viral detection assay was then tested using unprepared nasopharyngeal samples. The instrument-performed assay detected 61 of 71 RSV positive samples, for a sensitivity of 85.9%. Adenovirus (n = 5) and influenza B (n = 3) were less prevalent in the sample set, but detected to similar levels, 80% and 75%, respectively. The same sample set was also tested using FDA approved immuno-assay rapid tests, and the instrument was found to be more sensitive than the rapid tests with the sole exception being influenza A (n = 16), which was poorly detected due to significant sequence mismatches between the influenza A primer/probe set included in the multiplex mixture and the circulating influenza A strains. Overall, these data demonstrate the developed prototype platform performs multiplex array assays as well as hand-performed assays, and that the instrument's sensitivity and specificity are dictated by the quality of the loaded multiplex assay.
多重 RT-PCR 悬浮阵列分析为鉴定呼吸道感染的病原体提供了有力的工具。如果只需要处理少数几个样本,这些分析在每个样本的时间上是耗时且费力的。为了解决这个缺点,并提供一种快速检测和识别病毒病原体的自动化解决方案,我们开发了第一个能够处理未处理临床样本的自动化多重 RT-PCR 悬浮阵列仪器。该仪器生成结果大约需要 2.5 小时,实际操作时间不到 3 分钟。在分析研究中,该仪器的性能与手动进行的分析相当。然后使用未处理的鼻咽样本测试仪器和加载的多重病毒检测分析的性能。仪器进行的分析检测到 71 个 RSV 阳性样本中的 61 个,灵敏度为 85.9%。腺病毒(n = 5)和乙型流感(n = 3)在样本集中的出现率较低,但检测到的水平相似,分别为 80%和 75%。同样的样本集也使用美国食品药品监督管理局批准的免疫测定快速检测进行了测试,发现该仪器比快速检测更敏感,唯一的例外是甲型流感(n = 16),由于多重混合物中包含的甲型流感引物/探针与循环甲型流感株之间存在显著的序列不匹配,甲型流感的检测效果较差。总体而言,这些数据表明开发的原型平台能够与手动进行的分析一样进行多重阵列分析,并且仪器的灵敏度和特异性取决于加载的多重分析的质量。