QIAGEN, Inc., Research and Development, 1201 Clopper Road, Gaithersburg, MD 20878, USA.
J Mol Diagn. 2010 Nov;12(6):847-53. doi: 10.2353/jmoldx.2010.100045. Epub 2010 Sep 16.
Infection with a high-risk carcinogenic type of human papillomavirus (HPV) is necessary for the development of cervical cancer. The digene HC2 HPV Test (HC2) is an important screening tool but lacks genotyping capability. To address this issue, we developed an assay for the rapid genotyping of HPV in cervical specimens. The three steps of this assay include Hybrid Capture target enrichment, whole-genome amplification, and Luminex XMAP detection. The assay includes the simultaneous detection of two genomic regions from each of 17 high-risk and two low-risk HPV types most associated with disease. The assay performance was tested on HPV plasmids as well as clinical specimens. An analytical limit of detection of 100 copies or less was demonstrated for linear, circular, and integrated HPV DNA. This finding is at least 1 log lower than the HC2 assay limit of detection. There was no cross-reactivity among the HPV types up to 1,000,000 copies. There was also no substantial assay interference from substances in cervical specimens. Although the clinical performance of the assay was not formally tested, the assay had good agreement (Cohen's kappa equal to 0.72) with both a PCR-based HPV genotyping assay (n = 131) and the HC2 assay (n = 502) using representative cervical specimens. This assay may be easy to automate and could be applied for the detection of other targets in future studies.
高危致癌型人乳头瘤病毒(HPV)感染是宫颈癌发展的必要条件。Digene HC2 HPV 检测(HC2)是一种重要的筛查工具,但缺乏基因分型能力。为了解决这个问题,我们开发了一种用于宫颈标本中 HPV 快速基因分型的检测方法。该方法包括三个步骤:杂交捕获目标富集、全基因组扩增和 Luminex XMAP 检测。该检测方法同时检测与疾病最相关的 17 种高危型和 2 种低危型 HPV 中的每一种的两个基因组区域。该检测方法的性能在 HPV 质粒以及临床标本上进行了测试。结果表明,线性、环状和整合 HPV DNA 的分析检测限为 100 拷贝或更低。这一发现比 HC2 检测方法的检测限低至少 1 个对数级。在 100 万拷贝以内,HPV 类型之间没有交叉反应。宫颈标本中的物质对检测也没有实质性的干扰。尽管该检测方法的临床性能尚未正式测试,但它与基于 PCR 的 HPV 基因分型检测方法(n = 131)和 HC2 检测方法(n = 502)具有良好的一致性(Cohen's kappa 等于 0.72),使用的是有代表性的宫颈标本。该检测方法可能易于自动化,并且可以在未来的研究中应用于其他目标的检测。