Head and neck squamous cell carcinoma (HNSCC), France's 5th most common cancer (15,000 annual cases), presents significant public health challenges due to high morbidity and functional/aesthetic sequelae from treatments (mutilating surgery, radiotherapy, chemotherapy). Major risk factors, tobacco and alcohol, create a chronic inflammatory environment promoting tumor development. The upper aerodigestive tract microbiome, influenced by these exposures and local alterations (necrosis, bleeding, ulcerations), is emerging as a potential factor in tumor progression, severity biomarker, or therapeutic target, though its exact role (cause or consequence) remains to be elucidated Objectives: * Primary: Compare bacterial microbiome composition between tumor tissue, adjacent healthy mucosa, and pharyngeal secretions * Secondary: * Correlate microbiome diversity/composition with clinical and epidemiological characteristics * Identify microbiome variations by tumor stage, histology, and infiltration * Discover diagnostic/prognostic microbial markers * Analyze somatic variants (SNP/CNV) via whole-genome sequencing (WGS) and their association with microbiome profiles and clinical parameters Study Design: Prospective, cross-sectional study with paired design (each patient serves as their own control to minimize genetic variation biases) Methods: * Samples: Tumor, adjacent healthy tissue, and pharyngeal secretions (3 samples/patient) * Sequencing: Metagenomic sequencing (complete bacterial genomes) when biomass permits, or targeted 16S rRNA sequencing to identify dominant genera. * Pilot study: 20 patients to select the optimal technique and validate feasibility, particularly assessing DNA quantity in these low-biomass environments Population: Adults with suspected HNSCC scheduled for panendoscopy Exclusion criteria: Recent antibiotics/corticosteroids (12 weeks), immunosuppression (uncontrolled HIV, active hematologic malignancies, autoimmune diseases on immunosuppressants, organ/stem cell transplants, uncontrolled diabetes), immunomodulatory treatments (3 months), recurrence, pregnancy, non-French speakers, legal guardianship, or lack of social security. Safety: No additional risks beyond standard panendoscopy. Expected impact: This approach may pave the way for innovative diagnostic or therapeutic strategies based on microbiome modulation in HNSCC.
Study Type
INTERVENTIONAL
Allocation
NA
Purpose
BASIC_SCIENCE
Masking
NONE
Enrollment
120
Additional biopsies (beyond standard clinical practice) taken during panendoscopy to collect: * Tumor tissue * Adjacent healthy mucosa * Pharyngeal secretions These samples are used for microbiome analysis. head and neck squamous cell carcinoma Note: The panendoscopy itself is a standard clinical procedure, but the additional biopsies for research purposes represent the study-specific intervention.
Additional biopsies (beyond standard clinical practice) taken during panendoscopy to collect: * Tumor tissue * Adjacent healthy mucosa * Pharyngeal secretions These samples are used for microbiome analysis. head and neck squamous cell carcinoma Note: The panendoscopy itself is a standard clinical procedure, but the additional biopsies for research purposes represent the study-specific intervention.
Centre Hospitalier Sud Francilien
Corbeil-Essonnes, France, France
The difference in bacterial composition between the tumor, healthy mucosa, and hypopharyngeal secretions will be assessed
Time frame: at day 1
Correlations between tumor microbiome diversity and composition and clinical/epidemiological data
tumor microbiome diversity (by sequencing) tumor microbiome composition (by sequencing)
Time frame: at day 1
Differences in the tumor microbiome between subgroups defined by tumor stage, histological type, or infiltration, using differentiation tests
Time frame: at day 1
Differential bacterial genera or strains between tumor, healthy, and pharyngeal microbiomes
Time frame: at day 1
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