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Updated: Dec 23, 2025

Intramucosal Inoculation of Squamous Cell Carcinoma Cells in Mice for Tumor Immune Profiling and Treatment Response Assessment
Published on: April 22, 2019
Immune-checkpoint molecules on regulatory T-cells as a potential therapeutic target in head and neck squamous cell
Susumu Suzuki1,2, Tetsuya Ogawa3, Rui Sano3
1Research Creation Support Centre, Aichi Medical University, Nagakute, Japan.
Abstract:
Immune-checkpoint inhibitors improve the survival of head and neck squamous cell carcinoma (HNSCC) patients. Although recent studies have demonstrated that the tumor immune microenvironment (TIME) has critical roles in immunotherapy, the precise mechanisms involved are unclear. Therefore, further investigations of TIME are required for the improvement of immunotherapy. The frequency of effector regulatory T-cells (eTregs) and the expression of immune-checkpoint molecules (ICM) on eTregs and conventional T-cells (Tconvs) both in peripheral blood lymphocytes (PBL) and tumor-infiltrating lymphocytes (TIL) from HNSCC patients were analyzed by flow cytometry and their distributions were evaluated by multi-color immunofluorescence microscopy. High frequency eTreg infiltration into HNSCC tissues was observed and high expressions of CD25, FOXP3, stimulatory-ICM (4-1BB, ICOS, OX40 and GITR) and inhibitory-ICM (programmed cell death-1 [PD-1] and cytotoxic T-lymphocyte-associated protein-4 [CTLA-4]) were found on invasive eTregs. In contrast, the expression of stimulatory-ICM on Tconvs was low and the expression of inhibitory-ICM was high. In addition, ICM-ligands (programmed cell death-1 [PD-L1], galectin-9 and CEACAM-1) were frequently expressed on cancer cells. PD-L1 and galectin-9 were also expressed on macrophages. PD-1+ T-cells interacted with PD-L1+ cancer cells or PD-L1+ macrophages. This suggested that in TIL, eTregs are highly activated, but Tconvs are exhausted or inactivated by eTregs and immune-checkpoint systems, and ICM and eTregs are strongly involved in the creation of an immunosuppressive environment in HNSCC tissues. These suggested eTreg targeting drugs are expected to be a combination partner with immune-checkpoint inhibitors that will improve immunotherapy of HNSCC.
Insights
Immune-checkpoint inhibitors show promise for head and neck cancer. Effector regulatory T-cells (eTregs) in tumors create an immunosuppressive environment, suggesting eTreg-targeting drugs could enhance immunotherapy.
Area of Science:
- Immunology
- Oncology
- Cancer Research
Background:
- Immune-checkpoint inhibitors (ICIs) improve survival in head and neck squamous cell carcinoma (HNSCC).
- The tumor immune microenvironment (TIME) critically influences immunotherapy efficacy, but mechanisms remain unclear.
- Further TIME investigation is crucial for advancing HNSCC immunotherapy.
Purpose of the Study:
- To analyze effector regulatory T-cells (eTregs) and immune-checkpoint molecules (ICMs) in HNSCC.
- To evaluate the distribution and expression of eTregs and ICMs in tumor tissues and peripheral blood.
- To elucidate the role of eTregs and ICMs in creating an immunosuppressive TIME in HNSCC.
Main Methods:
- Flow cytometry to quantify eTreg frequency and ICM expression on T-cells.
- Multi-color immunofluorescence microscopy to assess cellular distribution.
- Analysis of ICM-ligand expression on cancer cells and macrophages.
Main Results:
- High infiltration of activated eTregs expressing stimulatory and inhibitory ICMs observed in HNSCC tissues.
- Conventional T-cells (Tconvs) showed low stimulatory and high inhibitory ICM expression.
- ICM-ligands (PD-L1, galectin-9, CEACAM-1) were expressed on cancer cells and macrophages, with PD-1+ T-cells interacting with PD-L1+ cells.
Conclusions:
- eTregs and ICMs contribute significantly to the immunosuppressive TIME in HNSCC.
- Tconvs appear exhausted or inactivated within the HNSCC tumor microenvironment.
- Targeting eTregs in combination with ICIs may improve immunotherapy outcomes for HNSCC patients.
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