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使用改良线性阵列检测方案进行人乳头瘤病毒基因分型

Human papillomavirus genotyping using a modified linear array detection protocol.

作者信息

Stevens Matthew P, Garland Suzanne M, Tabrizi Sepehr N

机构信息

Department of Microbiology, The Royal Women's Hospital, Carlton, Vic., Australia.

出版信息

J Virol Methods. 2006 Jul;135(1):124-6. doi: 10.1016/j.jviromet.2006.02.007. Epub 2006 Mar 27.

Abstract

A standardized PCR-based linear array genotyping assay has been developed (Roche Molecular Systems) allowing the concurrent typing of 37 human papillomavirus (HPV) types. A component of this assay, the PCR amplicon detection protocol, requires the use of a shaking water-bath incubator for amplicon/probe hybridization and subsequent stringent washing, which many laboratories may find cumbersome or simply not possess. In this study, the utility of a dry-air incubator in substitution of the recommended shaking water-bath for use in this assay was confirmed. DNA was extracted by AmpliLute method from 150 PreservCyt specimens collected from patients undergoing ablation treatment for histologically confirmed cervical abnormality. The DNA was amplified by PCR and amplicons detected by both standard and modified protocols, varying only by the method of incubation for DNA hybridization and stringent washing. Identical HPV-type profiles were generated in 149/150 (99.3%) of the specimens tested by both protocols, representing a near perfect level of concordance (kappa = 0.98). It was proposed that this modification would markedly simplify the detection process, reduce setup time and eliminate the potential for water spillover, thereby allowing more laboratories to adopt this method subsequent to in-house validation.

摘要

已开发出一种基于聚合酶链反应(PCR)的标准化线性阵列基因分型检测方法(罗氏分子系统公司),可同时对37种人乳头瘤病毒(HPV)进行分型。该检测方法的一个组成部分,即PCR扩增子检测方案,需要使用振荡水浴箱进行扩增子/探针杂交及后续的严格洗涤,许多实验室可能会觉得这很麻烦,或者根本没有这种设备。在本研究中,证实了可用干式空气培养箱替代推荐使用的振荡水浴箱用于该检测方法。采用AmpliLute方法从150份PreservCyt标本中提取DNA,这些标本来自经组织学确诊为宫颈异常并接受消融治疗的患者。通过PCR扩增DNA,并采用标准方案和改良方案检测扩增子,二者仅在DNA杂交和严格洗涤的孵育方法上有所不同。两种方案检测的150份标本中有149份(99.3%)产生了相同的HPV型别谱,一致性接近完美水平(kappa = 0.98)。有人提出,这种改良将显著简化检测过程,减少准备时间并消除水溢出的可能性,从而使更多实验室在经过内部验证后能够采用该方法。

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