Related Experiment Video
Updated: Jan 19, 2026

Matrix-assisted Autologous Chondrocyte Transplantation for Remodeling and Repair of Chondral Defects in a Rabbit Model
Published on: May 21, 2013
Drug Sensitivity Prediction Models Reveal a Link between DNA Repair Defects and Poor Prognosis in HNSCC
Paul B M Essers1, Martijn van der Heijden1,2, Caroline V M Verhagen1
1Division of Cell Biology, The Netherlands Cancer Institute, Amsterdam, the Netherlands.
Abstract:
Head and neck squamous cell carcinoma (HNSCC) is characterized by the frequent manifestation of DNA crosslink repair defects. We established novel expression-based DNA repair defect markers to determine the clinical impact of such repair defects. Using hypersensitivity to the DNA crosslinking agents, mitomycin C and olaparib, as proxies for functional DNA repair defects in a panel of 25 HNSCC cell lines, we applied machine learning to define gene expression models that predict repair defects. The expression profiles established predicted hypersensitivity to DNA-damaging agents and were associated with mutations in crosslink repair genes, as well as downregulation of DNA damage response and repair genes, in two independent datasets. The prognostic value of the repair defect prediction profiles was assessed in two retrospective cohorts with a total of 180 patients with advanced HPV-negative HNSCC, who were treated with cisplatin-based chemoradiotherapy. DNA repair defects, as predicted by the profiles, were associated with poor outcome in both patient cohorts. The poor prognosis association was particularly strong in normoxic tumor samples and was linked to an increased risk of distant metastasis. In vitro, only crosslink repair-defective HNSCC cell lines are highly migratory and invasive. This phenotype could also be induced in cells by inhibiting rad51 in repair competent and reduced by DNA-PK inhibition. In conclusion, DNA crosslink repair prediction expression profiles reveal a poor prognosis association in HNSCC. SIGNIFICANCE: This study uses innovative machine learning-based approaches to derive models that predict the effect of DNA repair defects on treatment outcome in HNSCC.Graphical Abstract: http://cancerres.aacrjournals.org/content/canres/79/21/5597/F1.large.jpg.
Insights
Novel gene expression profiles predict DNA crosslink repair defects in head and neck squamous cell carcinoma (HNSCC). These defects are linked to poor treatment outcomes and increased metastasis risk in HNSCC patients.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Head and neck squamous cell carcinoma (HNSCC) frequently exhibits DNA crosslink repair defects.
- Developing markers to predict these defects is crucial for understanding treatment outcomes.
Purpose of the Study:
- To establish novel expression-based markers for DNA repair defects in HNSCC.
- To determine the clinical impact of these predicted repair defects on patient prognosis.
Main Methods:
- Utilized hypersensitivity to DNA crosslinking agents (mitomycin C, olaparib) in 25 HNSCC cell lines.
- Applied machine learning to define gene expression models predicting repair defects.
- Validated profiles in independent datasets and assessed prognostic value in 180 HPV-negative HNSCC patients treated with chemoradiotherapy.
Main Results:
- Established gene expression profiles accurately predicted hypersensitivity to DNA-damaging agents and correlated with known repair gene mutations.
- Predicted DNA repair defects were associated with poor prognosis in advanced HPV-negative HNSCC patients treated with cisplatin.
- Poor prognosis was more pronounced in normoxic tumors and linked to higher distant metastasis risk; *in vitro* studies showed increased migration and invasion in repair-defective cells.
Conclusions:
- Novel DNA crosslink repair prediction expression profiles are associated with poor prognosis in HNSCC.
- Machine learning-derived models can predict the impact of DNA repair defects on treatment outcomes in HNSCC.
- These findings highlight the clinical significance of DNA repair mechanisms in HNSCC progression and treatment response.
Related Concept Videos
Overview of DNA Repair
Chemically...
08:58Matrix-assisted Autologous Chondrocyte Transplantation for Remodeling and Repair of Chondral Defects in a Rabbit Model
14:09Genetic Studies of Human DNA Repair Proteins Using Yeast as a Model System
Sensitivity, Specificity, and Predicted Value
Sensitivity is the...
11:31Repair of a Critical-sized Calvarial Defect Model Using Adipose-derived Stromal Cells Harvested from Lipoaspirate
09:19Evaluating the Effectiveness of Cancer Drug Sensitization In Vitro and In Vivo
