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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
The DNA damage response network in the treatment of head and neck squamous cell carcinoma
A Psyrri1, M Gkotzamanidou1, G Papaxoinis2
1Section of Medical Oncology, Department of Internal Medicine, Faculty of Medicine, National and Kapodistrian University of Athens, Attikon University Hospital, Athens, Greece.
Background:
We sought to determine whether DNA damage response (DDR)-related aberrations predict therapeutic benefit in cisplatin-treated head and neck squamous cell carcinoma (HNSCC) patients and how DDR pathways are modulated after treatment with olaparib alone or in combination with cisplatin or durvalumab.
Patients And Methods:
Oxidative stress, abasic sites and DDR-related parameters, including endogenous DNA damage, DNA repair mechanisms and apoptosis rates, were evaluated in HNSCC cell lines and peripheral blood mononuclear cells from 46 healthy controls (HC) and 70 HNSCC patients at baseline and following treatment with cisplatin-containing chemoradiation or nivolumab or enrolled in the OPHELIA phase II trial (NCT02882308; olaparib alone, olaparib plus cisplatin, olaparib plus durvalumab).
Results:
HNSCC patients at diagnosis exhibited deregulated DDR-related parameters and higher levels of oxidative stress and abasic sites compared with HC (all P < 0.05). Accordingly, nucleotide excision repair (NER; ERCC1, ERCC2/XPD, XPA, XPC) and base excision repair (APEX1, XRCC1) genes were downregulated in patients versus HC whereas double-strand breaks repair (MRE11A, RAD50, RAD51, XRCC2) and mismatch repair (MLH1, MSH2, MSH3) genes were overexpressed. Corresponding results were obtained in cell lines (all P < 0.001). Excellent correlations were observed between individual ex vivo and in vivo/therapeutic results, with cisplatin non-responders showing higher levels of endogenous DNA damage, augmented oxidative stress and abasic sites, increased NER capacities and reduced apoptosis than responders (all P < 0.05). Also, longer progression-free survival correlated with lower NER capacity (P = 0.037) and increased apoptosis (P = 0.029). Interestingly, treatment with olaparib-containing regimens results in the accumulation of cytotoxic DNA damage and exerts an extra antitumor effect by elevating oxidative stress (all P < 0.05). Nivolumab induced no significant changes in the DDR parameters examined.
Conclusions:
Aberrations in DDR signals are implicated in the response to HNSCC chemotherapy and can be exploited as novel therapeutic targets, sensitive/effective non-invasive biomarkers as well as for the design of novel clinical trials.
Insights
DNA damage response (DDR) aberrations predict cisplatin treatment outcomes in head and neck squamous cell carcinoma (HNSCC). DDR alterations can guide novel therapeutic strategies and biomarker development for HNSCC patients.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Head and neck squamous cell carcinoma (HNSCC) patients exhibit deregulated DNA damage response (DDR) parameters.
- Elevated oxidative stress and abasic sites are observed in HNSCC patients compared to healthy controls.
Purpose of the Study:
- To determine if DDR aberrations predict therapeutic benefit in cisplatin-treated HNSCC.
- To investigate DDR pathway modulation by olaparib, cisplatin, or durvalumab in HNSCC.
Main Methods:
- Evaluated oxidative stress, abasic sites, and DDR parameters in HNSCC cell lines and patient samples.
- Assessed DDR markers at baseline and post-treatment in HNSCC patients and controls.
- Analyzed data from the OPHELIA phase II trial (NCT02882308) involving olaparib regimens.
Main Results:
- HNSCC patients showed altered DDR gene expression (downregulated NER/BER, upregulated DSBR/MMR) versus controls.
- Cisplatin non-responders had higher endogenous DNA damage, oxidative stress, and NER capacity, with reduced apoptosis.
- Olaparib-containing regimens induced DNA damage, increased oxidative stress, and showed antitumor effects; nivolumab had no significant DDR impact.
Conclusions:
- DDR aberrations are crucial in HNSCC response to chemotherapy.
- DDR alterations represent potential therapeutic targets and non-invasive biomarkers for HNSCC.
- Findings support the design of novel clinical trials targeting DDR pathways in HNSCC.
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