Related Experiment Video
Updated: Apr 3, 2026

Chromogenic In Situ Hybridization as a Tool for HPV-Related Head and Neck Cancer Diagnosis
Published on: June 14, 2019
Development of a Clinical Assay to Guide Patient Therapy in HPV-Associated Head and Neck Cancer
Sri Vemulamanda1, Aditi Kothari1,2, Loris De Cecco3
1Department of Otolaryngology/Head and Neck Surgery, UNC School of Medicine, Chapel Hill, North Carolina.
Purpose:
Patients with human papillomavirus-associated head and neck squamous cell carcinoma (HPV+ HNSCC) have relatively favorable outcomes, but standard treatments like radiation or chemoradiation frequently result in long-term toxic side effects. Appropriate patient selection has been a barrier to effectively de-escalate therapy for HPV+ HNSCC, and the absence of accurate biomarkers likely contributed to failure of recent promising de-escalation trials that rely on histologic tumor characteristics, history of tobacco use, or tumor response to chemotherapy; This deficiency underlines the need to develop and validate an assay to accurately detect two subtypes of HPV+ HNSCC-one with good prognosis and one with poor prognosis.
Experimental Design:
These two subtypes are distinguished by the activity of NF-κB in tumors. We first developed a DNA-based marker panel consisting of genes that when mutated would lead to NF-κB activation. Additionally, we developed a custom NanoString assay to determine the expression of NF-κB target genes. These assays were tested to determine their accuracy in detecting tumor subtype.
Results:
We demonstrate that the NF-κB gene signature score, as determined using the NanoString assay, could more accurately classify HPV+ HNSCC as compared with the DNA-based marker panel. Patients with a high NF-κB gene signature score demonstrated significantly increased overall survival, indicating more sensitivity to (chemo)radiation treatment.
Conclusions:
The NF-κB gene signature score can accurately predict response to standard (chemo)radiation in HPV+ HNSCC. This molecular biomarker holds promise for clinical use in identifying patients who are likely to benefit from treatment de-escalation strategies, potentially reducing long-term side effects without compromising therapeutic efficacy.

