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Therapy Testing in a Spheroid-based 3D Cell Culture Model for Head and Neck Squamous Cell Carcinoma
Published on: April 20, 2018
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.
Abstract:
Cutaneous squamous cell carcinoma is the second most prevalent malignancy, most frequently occurring in the head and neck (head and neck cutaneous squamous cell carcinoma). Treatment of locally advanced or metastatic disease is associated with functional morbidity and disfigurement. Underlying genetic mechanisms are poorly understood. Targeted sequencing of 48 clinically relevant genes was performed on DNA extracted from formalin-fixed and paraffin-embedded high-risk primary head and neck cutaneous squamous cell carcinomas that remained non-metastatic at minimum follow-up of 24 months. Associations of somatic mutations with clinicopathologic characteristics were evaluated and compared with those described in the literature for metastatic disease. Alterations in 44 cancer-associated genes were identified. TP53 was mutated in 100% of cases; APC, ATM, ERBB4, GNAQ, KIT, RB1 and ABL1 were altered in 60% of cases. FGFR2 mutations (40%) were exclusively seen in patients with perineural invasion. MLH1 mutations were exclusively seen in the two younger patients (<45 years). Lower incidences of NOTCH1 mutations were observed compared with that described in metastatic head and neck cutaneous squamous cell carcinoma in the literature. Somatic mutations susceptible to EGFR inhibitors, and other small molecular targeted therapeutics were seen in 60% of cases. This study provides insights into somatic mutations in non-metastatic, high-risk head and neck cutaneous squamous cell carcinoma and identifies potential therapeutic targets. Alterations in FGFR2 and NOTCH1 may have roles in local and distant disease progression.
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.
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