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Updated: Apr 30, 2026

Therapy Testing in a Spheroid-based 3D Cell Culture Model for Head and Neck Squamous Cell Carcinoma
Published on: April 20, 2018
Rac1 as a potential therapeutic target for chemo-radioresistant head and neck squamous cell carcinomas (HNSCC)
S Skvortsov1, J Dudás2, P Eichberger1
1Department of Therapeutic Radiology and Oncology, Innsbruck Medical University, Innsbruck, Austria.
Background:
In order to improve therapy for HNSCC patients, novel methods to predict and combat local and/or distant tumour relapses are urgently needed. This study has been dedicated to the hypothesis that Rac1, a Rho GTPase, is implicated in HNSCC insensitivity to chemo-radiotherapy resulting in tumour recurrence development.
Methods:
Parental and radiation-resistant (IRR) HNSCC cells were used to support this hypothesis. All cells were investigated for their sensitivity to ionising radiation and cisplatin, Rac1 activity, its intracellular expression and subcellular localisation. Additionally, tumour tissues obtained from 60 HNSCC patients showing different therapy response were evaluated for intratumoral Rac1 expression.
Results:
Radiation-resistant IRR cells also revealed resistance to cisplatin accompanied by increased expression, activity and trend towards nuclear translocation of Rac1 protein. Chemical inhibition of Rac1 expression and activity resulted in significant improvement of HNSCC sensitivity to ionising radiation and cisplatin. Preclinical results were confirmed in clinical samples. Although Rac1 was poorly presented in normal mucosa, tumour tissues revealed increased Rac1 expression. The most pronounced Rac1 presence was observed in HNSCC patients with poor early or late responses to chemo-radiotherapy. Tissues taken at recurrence were characterised not only by enhanced Rac1 expression but also increased nuclear Rac1 content.
Conclusions:
Increased expression, activity and subcellular localisation of Rac1 could be associated with lower early response rate and higher risk of tumour recurrences in HNSCC patients and warrants further validation in larger independent studies. Inhibition of Rac1 activity can be useful in overcoming treatment resistance and could be proposed for HNSCC patients with primary or secondary chemo-radioresistance.
Insights
Rac1 protein is linked to head and neck cancer treatment resistance and recurrence. Inhibiting Rac1 may improve chemo-radiotherapy effectiveness in HNSCC patients, offering new hope for combating tumor relapse.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Head and Neck Squamous Cell Carcinoma (HNSCC) patients urgently need improved therapies to prevent tumor relapses.
- This study investigates the role of Rac1, a Rho GTPase, in HNSCC chemo-radiotherapy resistance and recurrence.
Purpose of the Study:
- To determine if Rac1 is involved in HNSCC treatment resistance and recurrence.
- To evaluate the potential of Rac1 inhibition as a therapeutic strategy for HNSCC.
Main Methods:
- Utilized parental and radiation-resistant HNSCC cell lines to assess sensitivity to radiation and cisplatin.
- Analyzed Rac1 activity, expression, and localization in cells and in tumor tissues from 60 HNSCC patients.
Main Results:
- Radiation-resistant cells showed increased Rac1 activity, expression, and nuclear translocation, correlating with cisplatin resistance.
- Inhibiting Rac1 enhanced HNSCC sensitivity to chemo-radiotherapy.
- Elevated Rac1 expression, particularly in the nucleus, was observed in patient tumors with poor treatment response and recurrence.
Conclusions:
- Increased Rac1 expression, activity, and nuclear localization are associated with poor treatment response and higher recurrence risk in HNSCC.
- Rac1 inhibition shows promise for overcoming chemo-radiotherapy resistance in HNSCC patients, potentially reducing tumor recurrence.
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