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Updated: Jan 25, 2026

Chromogenic In Situ Hybridization as a Tool for HPV-Related Head and Neck Cancer Diagnosis
Published on: June 14, 2019
Hybrid Capture 2 human papilloma virus testing for head and neck cytology specimens
Deborah J Chute1, Ghada T Aramouni1, Jennifer A Brainard1
1Anatomic Pathology, Cleveland Clinic, 9500 Euclid Avenue, Cleveland, Ohio.
Introduction:
High-risk human papilloma virus (hrHPV)-associated head and neck (HN) squamous cell carcinomas (SCCs) have important differences from non-hrHPV-related HNSCCs. A highly sensitive and specific test for HPV in cytology fine-needle aspirations (FNAs) would be useful, as it has the potential to alter therapy.
Materials And Methods:
Patients with an HN FNA diagnosed as SCC or suspicious for SCC were included. Hybrid Capture 2 (HC2) was performed on residual rinse material and chromogenic in situ hybridization (CISH) for hrHPV was performed on the cell block. HC2-positive samples were genotyped for HPV types 16, 18, and 45. "Gold standard" p16 and CISH testing was performed on histologic material from the primary tumor. Tumors concordantly positive for p16 and CISH were considered hrHPV-positive, concordantly negative were considered hrHPV-negative, and discordant results were considered hrHPV-equivocal.
Results:
A total of 96 FNAs from 95 patients were included. Surgical material was available in 80 patients. Of those, 29 patients (36%) were positive for hrHPV by "gold standard" testing, and 3 patients (4%) had equivocal results. HC2 was 72% sensitive and 100% specific for hrHPV. Sixty percent of HC2-positive aspirate samples were positive for HPV16. CISH was 61% sensitive and 79% specific for hrHPV. HC2 had a significantly better sensitivity and specificity than did CISH on paired sample analysis (P < .05).
Conclusions:
HC2 is a highly sensitive and specific assay for the detection of hrHPV in HN FNA samples. This new application of a familiar, widely available testing method has the potential to be clinically useful in the management of patients with HNSCC.
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