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采用创新技术巢式高分辨率熔解曲线分析对人乳头瘤病毒基因型进行鉴别。

Discrimination of human papillomavirus genotypes using innovative technique nested-high resolution melting.

机构信息

Cellular and Molecular Research Center, Qom University of Medical Sciences, Qom, 3736175513, Iran.

Medical Sciences Research Center, Ghalib University, Kabul, Afghanistan.

出版信息

Sci Rep. 2022 Aug 17;12(1):13943. doi: 10.1038/s41598-022-14730-9.

Abstract

The prompt detection of human papillomavirus and discrimination of its genotypes by combining conventional methods in new molecular laboratories is essential to achieve the global call of eliminating cervical cancer. After predicting the melting temperature of an approximately 221 bp region of the L1 gene from different HPV genotypes by bioinformatics software, an innovative technique based on the nested- high resolution melting was designed with three approaches and using conventional PCR, qPCR, and diagnostic standards. HPV-positive samples identified by microarray along with diagnostic standards were evaluated by qPCR-HRM and discordant results were subjected to sequencing and analyzed in silico using reference types. In addition to screening for human papillomavirus, nested-qPCR-HRM is one of the modified HRM techniques which can discriminate some genotypes, including 6, 16, 18, 52, 59, 68 and 89. Despite the differences in diagnostic capabilities among HRM, microarray and sequencing, a number of similarities between HRM, and sequencing were diagnostically identified as the gold standard method. However, the bioinformatics analysis and melting temperature studies of the selected region in different HPV genotypes showed that it could be predicted. With numerous HPV genotypes and significant genetic diversity among them, determining the virus genotype is important. Therefore, our goal in this design was to use the specific molecular techniques with several specific primers to increase sensitivity and specificity for discriminating a wide range of HPV genotypes. This approach led to new findings to evaluate the ability of different approaches and procedures in accordance with bioinformatics.

摘要

为实现全球消除宫颈癌的号召,在新的分子实验室中结合常规方法对人乳头瘤病毒(HPV)进行快速检测并对其基因型进行区分至关重要。通过生物信息学软件对不同 HPV 基因型的 L1 基因约 221bp 区域的熔解温度进行预测后,设计了一种基于巢式-高分辨率熔解曲线分析(HRM)的创新技术,采用了三种方法并结合常规 PCR、qPCR 和诊断标准。利用微阵列鉴定的 HPV 阳性样本与诊断标准进行 qPCR-HRM 评估,对于存在差异的结果进行测序并使用参考类型进行计算机分析。除了 HPV 筛查外,巢式 qPCR-HRM 是一种改良的 HRM 技术,可以区分一些基因型,包括 6、16、18、52、59、68 和 89。尽管 HRM、微阵列和测序在诊断能力方面存在差异,但 HRM 和测序之间存在许多相似之处,被诊断为金标准方法。然而,对不同 HPV 基因型中选定区域的生物信息学分析和熔解温度研究表明,这是可以预测的。由于 HPV 基因型众多,且存在显著的遗传多样性,确定病毒基因型非常重要。因此,我们的设计目标是使用特定的分子技术和几个特定的引物来提高对广泛的 HPV 基因型进行区分的灵敏度和特异性。这种方法为评估不同方法和程序的能力提供了新的发现,符合生物信息学的要求。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fb90/9385744/7ae0a7c06402/41598_2022_14730_Fig1_HTML.jpg

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