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首页> 外文期刊>Journal of clinical virology: The official publication of the Pan American Society for Clinical Virology >Automation of the linear array HPV genotyping test and its application for routine typing of human papillomaviruses in cervical specimens of women without cytological abnormalities in Switzerland.
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Automation of the linear array HPV genotyping test and its application for routine typing of human papillomaviruses in cervical specimens of women without cytological abnormalities in Switzerland.

机译:线性阵列HPV基因分型测试的自动化及其在瑞士无细胞学异常女性宫颈样本中常规检测人乳头瘤病毒的应用。

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BACKGROUND: There is a need for reliable, automated high throughput HPV detection and genotyping methods for pre- and post-prophylactic vaccine intervention analyses. OBJECTIVES: To optimize the linear array (LA) HPV genotyping test (Roche Diagnostics, Rotkreuz) in regard to possible automation steps for the routine laboratory diagnosis of HPV infections and to analyze the HPV genotype distribution in cervical specimens of women without cytological abnormalities in Switzerland. STUDY DESIGN: 680 cervical cell specimens with normal cytology, obtained from women undergoing routine cervical screening by liquid-based Pap smear, were analyzed by the LA HPV genotyping test for HPV-DNA. RESULTS: The automation of the LA HPV genotyping test resulted in a total hands-on time reduction of 255 min (from 480 to 225 min; 53%). Any of 37 HPV genotypes were detected in 117 (17.2%) and high-risk (HR) HPV in 55 (8.1%) of 680 women with normal cytology. The highest prevalence of any HPV (28.1%) and HR-HPV (15.1%) was observed in age-group 21-30 and showed a continuous decrease in older age-groups. The most common HR-HPV genotypes were HPV-16 (12%), HPV-31 (9.4%), HPV-52 (6%), HPV-51 (5.1%), HPV-45 (4.3%), HPV-58 (4.3%) and HPV-59 (4.3%). CONCLUSIONS: The optimization and automation of the LA HPV genotyping test makes it suited for high throughput HPV detection and typing. The epidemiological data provides information about distribution of HPV genotypes in women without cytological abnormalities in Switzerland and may be important for determining the future impact of vaccines and potential changes in the country's epidemiological HPV profile.
机译:背景:需要用于预防性疫苗干预之前和之后的可靠,自动化的高通量HPV检测和基因分型方法。目的:优化线性阵列(LA)HPV基因分型测试(Roche Diagnostics,Rotkreuz),以进行常规实验室诊断HPV感染的可能自动化步骤,并分析瑞士没有细胞学异常的女性子宫颈标本中HPV基因型分布。研究设计:通过LA HPV基因分型测试对HPV DNA进行分析,从通过液体宫颈涂片常规宫颈筛查的妇女中获得的680例细胞学正常的宫颈细胞标本。结果:LA HPV基因分型测试的自动化导致总动手时间减少了255分钟(从480到225分钟;减少了53%)。在680名细胞学正常的女性中,有117种(17.6%)和37种高危(HR)HPV被检测到37种HPV基因型。在21至30岁年龄组中观察到所有HPV的最高患病率(28.1%)和HR-HPV(15.1%),并且在较高年龄组中持续下降。最常见的HR-HPV基因型是HPV-16(12%),HPV-31(9.4%),HPV-52(6%),HPV-51(5.1%),HPV-45(4.3%),HPV- 58(4.3%)和HPV-59(4.3%)。结论:LA HPV基因分型测试的优化和自动化使其适用于高通量HPV检测和分型。流行病学数据提供了有关瑞士没有细胞学异常的女性中HPV基因型分布的信息,对于确定疫苗的未来影响以及该国流行病学HPV概况的潜在变化可能是重要的。

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