Genomic and Transcriptomic Landscape of an Oral Squamous Cell Carcinoma Mouse Model for Immunotherapy

Author:

Lee Yi-Mei12ORCID,Hsu Chia-Lang34ORCID,Chen Yu-Hsin124ORCID,Ou Da-Liang45ORCID,Hsu Chiun467ORCID,Tan Ching-Ting1289ORCID

Affiliation:

1. 1Department of Otolaryngology, National Taiwan University Hospital, Taipei, Taiwan.

2. 2Stem Cell Core Laboratory, Center of Genomic Medicine, National Taiwan University, Taipei, Taiwan.

3. 3Department of Medical Research, National Taiwan University Hospital, Taipei, Taiwan.

4. 4Graduate Institute of Oncology, National Taiwan University College of Medicine, Taipei, Taiwan.

5. 5YongLin Institute of Health, National Taiwan University, Taipei, Taiwan.

6. 6Department of Oncology, National Taiwan University Cancer Center, Taipei, Taiwan.

7. 7Department of Oncology, National Taiwan University Hospital, Taipei, Taiwan.

8. 8Department of Otolaryngology, National Taiwan University College of Medicine, Taipei, Taiwan.

9. 9Department of Otolaryngology, National Taiwan University Hospital Hsin-Chu Branch, Hsinchu, Taiwan.

Abstract

Abstract The immune checkpoint inhibitor (ICI), anti–programmed death-1 (anti–PD-1), has shown moderate efficacy in some patients with head and neck squamous cell carcinoma (HNSCC). Because of this, it is imperative to establish a mouse tumor model to explore mechanisms of antitumor immunity and to develop novel therapeutic options. Here, we examined the 4-nitroquinoline-1-oxide (4NQO)–induced oral squamous cell carcinoma (OSCC) model for genetic aberrations, transcriptomic profiles, and immune cell composition at different pathologic stages. Genomic exome analysis in OSCC-bearing mice showed conservation of critical mutations found in human HNSCC. Transcriptomic data revealed that a key signature comprised of immune-related genes was increased beginning at the moderate dysplasia stages. We first identified that macrophage composition in primary tumors differed across pathologic stages, leading to an oncogenic evolution through a change in the M1/M2 macrophage ratio during tumorigenesis. We treated the 4NQO-induced OSCC-bearing mice with anti–PD-1 and agonistic anti-CD40, which modulated multiple immune responses. The growth of tumor cells was significantly decreased by agonistic anti-CD40 by promoting an increase in the M1/M2 ratio. By examining cross-species genomic conservation in human and mouse tumors, our study demonstrates the molecular mechanisms underlying the development of OSCC and the regulation of contributing immune-related factors, and aims to facilitate the development of suitable ICI-based treatments for patients with HNSCC.

Funder

National Taiwan University Hospital

National Health Research Institutes of Taiwan and National Taiwan University Hospital Hsin-Chu Branch

Hsin-Chu Science Park

National Science and Technology Council

Publisher

American Association for Cancer Research (AACR)

Subject

Cancer Research,Immunology

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