首页> 美国卫生研究院文献>Journal of Clinical Microbiology >A Human Papilloma Virus Testing Algorithm Comprising a Combination of the L1 Broad-Spectrum SPF10 PCR Assay and a Novel E6 High-Risk Multiplex Type-Specific Genotyping PCR Assay
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A Human Papilloma Virus Testing Algorithm Comprising a Combination of the L1 Broad-Spectrum SPF10 PCR Assay and a Novel E6 High-Risk Multiplex Type-Specific Genotyping PCR Assay

机译:人乳头瘤病毒测试算法包括L1广谱SPF10 PCR检测和新型E6高风险多重类型特异性基因分型PCR检测的组合

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摘要

Human papillomavirus (HPV) epidemiological and vaccine studies require highly sensitive HPV detection and genotyping systems. To improve HPV detection by PCR, the broad-spectrum L1-based SPF10 PCR DNA enzyme immunoassay (DEIA) LiPA system and a novel E6-based multiplex type-specific system (MPTS123) that uses Luminex xMAP technology were combined into a new testing algorithm. To evaluate this algorithm, cervical swabs (n = 860) and cervical biopsy specimens (n = 355) were tested, with a focus on HPV types detected by the MPTS123 assay (types 16, 18, 31, 33, 35, 39, 45, 51, 52, 56, 58, 59, 66, 68, 6, and 11). Among the HPV-positive samples, identifications of individual HPV genotypes were compared. When all MPTS123 targeted genotypes were considered together, good overall agreement was found (κ = 0.801, 95% confidence interval [CI], 0.784 to 0.818) with identification by SPF10 LiPA, but significantly more genotypes (P < 0.0001) were identified by the MPTS123 PCR Luminex assay, especially for HPV types 16, 35, 39, 45, 58, and 59. An alternative type-specific assay was evaluated that is based on detection of a limited number of HPV genotypes by type-specific PCR and a reverse hybridization assay (MPTS12 RHA). This assay showed results similar to those of the expanded MPTS123 Luminex assay. These results confirm the fact that broad-spectrum PCRs are hampered by type competition when multiple HPV genotypes are present in the same sample. Therefore, a testing algorithm combining the broad-spectrum PCR and a range of type-specific PCRs can offer a highly accurate method for the analysis of HPV infections and diminish the rate of false-negative results and may be particularly useful for epidemiological and vaccine studies.
机译:人乳头瘤病毒(HPV)流行病学和疫苗研究需要高度敏感的HPV检测和基因分型系统。为了改善通过PCR的HPV检测,将基于广谱L1的SPF10 PCR DNA酶免疫分析(DEIA)LiPA系统和使用Luminex xMAP技术的新型基于E6的多重类型特异性系统(MPTS123)组合为新的测试算法。为了评估此算法,测试了宫颈拭子(n = 860)和宫颈活检标本(n = 355),重点是通过MPTS123分析检测到的HPV类型(类型16、18、31、33、35、39、45 ,51、52、56、58、59、66、68、6和11)。在HPV阳性样品中,比较了单个HPV基因型的鉴定。当一起考虑所有MPTS123靶向基因型时,发现通过SPF10 LiPA鉴定具有良好的总体一致性(κ= 0.801,95%置信区间[CI],0.784至0.818),但是通过SPF10 LiPA鉴定出的基因型明显更多(P <0.0001)。 MPTS123 PCR Luminex分析,尤其是针对HPV 16、35、39、45、58和59型的Luminex分析。评估了另一种基于类型的PCR的反向检测,该检测基于通过类型特异性PCR检测到有限数量的HPV基因型和反向杂交测定(MPTS12 RHA)。该测定显示出与扩展的MPTS123 Luminex测定相似的结果。这些结果证实了当同一样品中存在多种HPV基因型时,广谱PCR受类型竞争的阻碍。因此,结合广谱PCR和一系列特定类型PCR的测试算法可以为HPV感染的分析提供高度准确的方法,并减少假阴性结果的发生率,这可能在流行病学和疫苗研究中特别有用。

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