Analysis of clinically relevant somatic mutations in high-risk head and neck cutaneous squamous cell carcinoma

Catherine Zilberg1, Matthew Weicai Lee1, Bing Yu1,2

  • 1Central Clinical School, The University of Sydney, Sydney, Australia.

Insights

This study investigated genetic mutations in high-risk, non-metastatic head and neck cutaneous squamous cell carcinoma. TP53 mutations were universal, while FGFR2 and NOTCH1 alterations may influence disease progression, suggesting potential therapeutic targets.

Area of Science:

  • Oncology
  • Genetics
  • Dermatology

Background:

  • Cutaneous squamous cell carcinoma (CSCC) is a prevalent malignancy, particularly in the head and neck.
  • Locally advanced or metastatic CSCC treatment leads to significant morbidity and disfigurement.
  • The genetic underpinnings of non-metastatic, high-risk CSCC remain poorly understood.

Purpose of the Study:

  • To identify somatic mutations in high-risk, non-metastatic head and neck CSCC.
  • To explore associations between these mutations and clinicopathologic characteristics.
  • To uncover potential therapeutic targets for this disease subset.

Main Methods:

  • Targeted sequencing of 48 cancer-associated genes was performed on tumor DNA.
  • DNA was extracted from formalin-fixed, paraffin-embedded tissue of high-risk primary HNCC.
  • Clinicopathologic characteristics were analyzed alongside mutation data and compared to literature.

Main Results:

  • Alterations in 44 cancer-associated genes were identified in the studied cohort.
  • TP53 mutations were present in 100% of cases; APC, ATM, ERBB4, GNAQ, KIT, RB1, and ABL1 were altered in 60%.
  • FGFR2 mutations (40%) correlated with perineural invasion, and MLH1 mutations were found in younger patients. NOTCH1 mutations were less frequent than in metastatic disease.

Conclusions:

  • This study elucidates the somatic mutation landscape of non-metastatic, high-risk head and neck CSCC.
  • Identified mutations in genes like FGFR2 and NOTCH1 may play roles in local and distant disease progression.
  • The presence of actionable mutations suggests potential for targeted therapies, including EGFR inhibitors.