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Rapid Genotyping of Human Papillomavirus by Post-PCR Array-Based Hybridization Techniques

机译:PCR阵列杂交技术对人乳头瘤病毒的快速基因分型

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摘要

Kinetic hybridization measurements on a microarray are expected to become a valuable tool for genotyping applications. A method has been developed that enables kinetic hybridization measurements of PCR products on a low-density microarray. This is accomplished by pumping a solution containing PCR products up and down through a porous microarray substrate. After every pumping cycle, the fluorescently labeled PCR products hybridized to capture probes immobilized on the solid surface of the porous microarray substrate are measured. By this method, both binding curves and high-resolution melting curves are obtained instead of the single endpoint hybridization intensities as with commonly used post-PCR array-based hybridization techniques. We used 20 subtypes of the human papillomavirus (HPV) as a model system to test our detection method and blindly analyzed 216 clinical samples. We compared our microarray flowthrough method with a reference method, PCR followed by a reverse line blot (RLB). Real-time hybridization measurements followed by high-resolution melting curves of low concentrations of fluorescently labeled HPV targets on a microarray were successfully carried out without any additional chemical signal amplification. The results of our new method were in good agreement (93%, with a kappa coefficient of κ = 0.88 [95% CI, 0.81 to 0.94]) with the RLB results. All discrepant samples were analyzed by a third method, enzyme immunoassay (EIA). Furthermore, in a number of cases, we were able to identify false-positive samples by making use of the information contained in the kinetic binding and melting curves. This clearly demonstrates the added value of the use of kinetic measurements and high-resolution melting curves, especially for highly homologous targets.
机译:芯片上的动力学杂交测量有望成为基因分型应用的有价值的工具。已经开发出一种方法,该方法能够在低密度微阵列上动态测量PCR产物。这是通过向上和向下通过多孔微阵列底物泵送包含PCR产物的溶液来完成的。在每个泵送循环后,测量与固定在多孔微阵列基质固体表面上的捕获探针杂交的荧光标记PCR产物。通过这种方法,可以获得结合曲线和高分辨率熔解曲线,而不是像通常使用的基于PCR后阵列的杂交技术那样获得单终点杂交强度。我们使用人类乳头瘤病毒(HPV)的20个亚型作为模型系统来测试我们的检测方法,并盲目分析了216个临床样本。我们将我们的微阵列流穿方法与参考方法,PCR和反向线印迹(RLB)进行了比较。在没有任何其他化学信号放大的情况下,成功进行了实时杂交测量,然后进行了微阵列上低浓度荧光标记的HPV靶标的高分辨率解链曲线。我们的新方法的结果与RLB结果吻合良好(93%,卡伯系数κ= 0.88 [95%CI,0.81至0.94])。通过第三种方法,酶免疫测定法(EIA)分析所有差异样品。此外,在许多情况下,我们能够利用动力学结合和解链曲线中包含的信息来鉴定假阳性样品。这清楚地证明了使用动力学测量和高分辨率熔解曲线的附加价值,尤其是对于高度同源的靶标。

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