Hernandez Carolina, Patiño Luz H, Camargo Milena, Wang Ching Yi, Chen Feng, Liggayu Bernadette, Cao Liyong, Cordon-Cardo Carlos, Sordillo Emilia M, Paniz-Mondolfi Alberto, Ramírez Juan D
Molecular Microbiology Laboratory, Department of Pathology, Molecular and Cell-Based Medicine, Icahn School of Medicine at Mount Sinai, New York, New York.
Molecular Microbiology Laboratory, Department of Pathology, Molecular and Cell-Based Medicine, Icahn School of Medicine at Mount Sinai, New York, New York; Centro de Investigaciones en Microbiología y Biotecnología-UR, School of Sciences and Engineering, Universidad del Rosario, Bogotá, Colombia.
J Mol Diagn. 2025 Aug;27(8):757-767. doi: 10.1016/j.jmoldx.2025.04.010. Epub 2025 Jun 5.
Human papillomavirus (HPV) is linked to various cancers, including cervical, anal, and head and neck cancers. Conventional methods for HPV genotyping and commercial platforms are limited to detecting high-risk HPV genotypes primarily in gynecologic samples. Because of changing trends in the epidemiology and pathogenesis, there is a growing need for HPV genotyping techniques applicable to emerging clinical contexts involving diverse sample types, such as head and neck or anal samples, particularly for formalin-fixed, paraffin-embedded (FFPE) tissues. This study aimed to validate amplicon-based sequencing with Oxford Nanopore Technologies (ONT) for the detection and genotyping of HPV in 181 samples, including FFPE head and neck samples, and ThinPrep liquid-based cytology samples from anal and gynecologic tissues. Sanger sequencing was used as a reference for genotyping accuracy. The ONT sequencing method demonstrated a limit of detection of 1 copy/μL for HPV16 and HPV18. Perfect agreement (κ coefficient = 1.0) was observed for HPV detection across all sample types. Genotyping accuracy exceeded 95%, and ONT identified additional genotypes in certain anal and gynecologic samples that were undetected by Sanger sequencing. The assay showed high reproducibility, with consistent results across intrarun and interrun analyses. This study is the first to validate ONT sequencing for HPV genotyping in FFPE head and neck samples. ONT provides a rapid, cost-effective method for comprehensive HPV genotyping in diverse sample types.
人乳头瘤病毒(HPV)与多种癌症相关,包括宫颈癌、肛门癌以及头颈癌。传统的HPV基因分型方法和商业平台主要局限于在妇科样本中检测高危HPV基因型。由于流行病学和发病机制的变化趋势,对于适用于涉及多种样本类型(如头颈或肛门样本)的新出现临床情况的HPV基因分型技术的需求日益增长,尤其是对于福尔马林固定、石蜡包埋(FFPE)组织。本研究旨在验证基于扩增子的牛津纳米孔技术(ONT)测序法在181份样本中检测HPV并进行基因分型的能力,这些样本包括FFPE头颈样本以及来自肛门和妇科组织的ThinPrep液基细胞学样本。桑格测序用作基因分型准确性的参考。ONT测序方法对HPV16和HPV18的检测限为1拷贝/μL。在所有样本类型中,HPV检测均观察到完全一致性(κ系数 = 1.0)。基因分型准确性超过95%,并且ONT在某些肛门和妇科样本中鉴定出了桑格测序未检测到的其他基因型。该检测方法显示出高重复性,在批内和批间分析中结果一致。本研究首次验证了ONT测序用于FFPE头颈样本中HPV基因分型的能力。ONT为多种样本类型的全面HPV基因分型提供了一种快速、经济高效的方法。