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Updated: Feb 2, 2026

Therapy Testing in a Spheroid-based 3D Cell Culture Model for Head and Neck Squamous Cell Carcinoma
Published on: April 20, 2018
Identification and validation of novel microenvironment-based immune molecular subgroups of head and neck squamous
1Department of Radiation Oncology, Sun Yat-sen University Cancer Center, Guangzhou; State Key Laboratory of Oncology in South China, Guangzhou; Collaborative Innovation Center for Cancer Medicine, Guangzhou; Guangdong Key Laboratory of Nasopharyngeal Carcinoma Diagnosis and Therapy, Guangzhou, People's Republic of China.
Background:
Targeting the immune checkpoint pathway has demonstrated antitumor cytotoxicity in treatment-refractory head and neck squamous cell carcinoma (HNSC). To understand the molecular mechanisms underpinning its antitumor response, we characterized the immune landscape of HNSC by their tumor and stromal compartments to identify novel immune molecular subgroups.
Patients And Methods:
A training cohort of 522 HNSC samples from the Cancer Genome Atlas profiled by RNA sequencing was analyzed. We separated gene expression patterns from tumor, stromal, and immune cell gene using a non-negative matrix factorization algorithm. We correlated the expression patterns with a set of immune-related gene signatures, potential immune biomarkers, and clinicopathological features. Six independent datasets containing 838 HNSC samples were used for validation.
Results:
Approximately 40% of HNSCs in the cohort (211/522) were identified to show enriched inflammatory response, enhanced cytolytic activity, and active interferon-γ signaling (all, P < 0.001). We named this new molecular class of tumors the Immune Class. Then we found it contained two distinct microenvironment-based subtypes, characterized by markers of active or exhausted immune response. The Exhausted Immune Class was characterized by enrichment of activated stroma and anti-inflammatory M2 macrophage signatures, WNT/transforming growth factor-β signaling pathway activation and poor survival (all, P < 0.05). An enriched proinflammatory M1 macrophage signature, enhanced cytolytic activity, abundant tumor-infiltrating lymphocytes, high human papillomavirus (HPV) infection, and favorable prognosis were associated with Active Immune Class (all, P < 0.05). The robustness of these immune molecular subgroups was verified in the validation cohorts, and Active Immune Class showed potential response to programmed cell death-1 blockade (P = 0.01).
Conclusions:
This study revealed a novel Immune Class in HNSC; two subclasses characterized by active or exhausted immune responses were also identified. These findings provide new insights into tailoring immunotherapeutic strategies for different HNSC subgroups.
Insights
This study identified a new Immune Class in head and neck squamous cell carcinoma (HNSC), with two subtypes: Active and Exhausted Immune Classes. The Active Immune Class shows better prognosis and potential response to immunotherapy.
Area of Science:
- Oncology
- Immunology
- Genomics
Background:
- Immune checkpoint inhibitors show promise in refractory head and neck squamous cell carcinoma (HNSC).
- Understanding the immune landscape of HNSC is crucial for identifying novel immune molecular subgroups and improving treatment strategies.
Purpose of the Study:
- To characterize the immune landscape of HNSC by analyzing tumor and stromal compartments.
- To identify novel immune molecular subgroups within HNSC based on gene expression patterns.
Main Methods:
- Analyzed RNA sequencing data from 522 HNSC samples using non-negative matrix factorization.
- Correlated gene expression patterns with immune signatures, biomarkers, and clinicopathological features.
- Validated findings in six independent HNSC datasets (838 samples).
Main Results:
- Identified an 'Immune Class' in ~40% of HNSC with enriched inflammation, cytolytic activity, and interferon-γ signaling.
- Discovered two subtypes: Active Immune Class (pro-inflammatory M1 macrophages, high HPV, favorable prognosis) and Exhausted Immune Class (anti-inflammatory M2 macrophages, activated stroma, poor survival).
- Active Immune Class demonstrated potential response to PD-1 blockade in validation cohorts.
Conclusions:
- Revealed a novel Immune Class in HNSC with two distinct immune microenvironment-based subtypes.
- Findings offer insights for tailoring immunotherapeutic strategies to specific HNSC subgroups.
- Distinguishing between Active and Exhausted Immune Classes may guide personalized treatment decisions in HNSC.
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