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首页> 外文期刊>Journal of Clinical Microbiology >Bead-Based Multiplex Genotyping of 58 Cutaneous Human Papillomavirus Types
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Bead-Based Multiplex Genotyping of 58 Cutaneous Human Papillomavirus Types

机译:基于珠子的58种人类乳头瘤病毒的多重基因分型

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Cutaneous human papillomaviruses (HPVs) are a heterogeneous, nonmonophyletic assembly, comprising about 50 characterized types and at least 133 isolates putatively representing new types. Their natural history of infection and potential association with nonmelanoma skin cancer are not well understood. Several PCR systems have been developed that amplify a broad spectrum of cutaneous HPVs. However, amplicon genotyping by sequencing or reverse line blot assays are complex and not well suited for high-throughput analyses. We developed a novel multiplex cutaneous papillomavirus genotyping (McPG) assay for 38 defined and 20 putative cutaneous HPVs of the beta, gamma, mu, and nu genera. Viral DNA was amplified by the use of a modified single-tube nested “hanging-droplet” FAP PCR. The amplifiable papillomavirus (PV) spectrum was enlarged by the use of 9 outer and 13 inner primers. Biotinylated PCR products were hybridized to type-specific oligonucleotide probes coupled to fluorescence-labeled polystyrene beads and analyzed using Luminex technology. Analytical sensitivity was analyzed for 38 defined HPVs and was ≤100 genome copies for all types. Integrated β-globin primers allow for simultaneous DNA quality control. McPG is characterized by high reproducibility (κ= 0.84, 95% confidence interval = 0.79 to 0.88), good concordance with the original nested FAP PCR, followed by sequencing (70.2% complete or partial agreement) when 322 skin biopsy DNA samples were analyzed, and improved ability to detect multiple infections (on average 2.5 HPV types per HPV-positive sample compared to 1.7 HPV types with nested FAP-PCR). In conclusion, McPG is a powerful tool for genotyping multiple cutaneous HPVs in a high-throughput format and is thus suitable for large-scale epidemiological studies.
机译:皮肤人乳头瘤病毒(HPV)是一种异质,非单基因的装配体,包含约50种特征类型和至少133种可能代表新类型的分离株。他们的自然感染史以及与非黑色素瘤皮肤癌的潜在关联尚不清楚。已经开发了几种PCR系统,其扩增了广谱的皮肤HPV。然而,通过测序或反向线印迹分析的扩增子基因分型是复杂的,并且不适合用于高通量分析。我们开发了一种新颖的多重皮肤乳头瘤病毒基因分型(McPG)分析方法,用于检测38个已定义和20个假定的β,γ,μ和nu属皮肤HPV。通过使用改良的单管嵌套“悬滴” FAP PCR扩增病毒DNA。通过使用9个外部引物和13个内部引物可放大乳头瘤病毒(PV)光谱。将生物素化的PCR产物与偶联有荧光标记的聚苯乙烯珠的类型特异性寡核苷酸探针杂交,并使用Luminex技术进行分析。分析了38种定义的HPV的分析灵敏度,所有类型的分析灵敏度均≤100个基因组拷贝。集成的β-珠蛋白引物可用于同时进行DNA质量控制。 McPG的特点是可重复性高(κ= 0.84,95%置信区间= 0.79至0.88),与原始的嵌套FAP PCR一致性好,随后在分析322个皮肤活检DNA样品时进行测序(完全或部分一致的70.2%),并提高了检测多种感染的能力(每个HPV阳性样品平均有2.5种HPV类型,而采用嵌套式FAP-PCR则为1.7种HPV类型)。总之,McPG是用于以高通量形式对多种皮肤HPV基因型进行分型的有力工具,因此适用于大规模流行病学研究。

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