Spatial cellular order underlies locally-confined mechanisms of immune resistance in oropharyngeal cancer
Abstract
Abstract Oropharyngeal squamous cell carcinomas (OPSCCs) frequently result from oncogenic human papilloma virus (HPV) infections (HPV-OPSCC). The mechanisms underlying effective immune escape, despite abundant viral antigens, are incompletely understood. Here, we performed single-cell spatial gene expression profiling of HPV-OPSCC to characterize cellular organization and mechanisms of immune resistance. We describe distinct tumor-parenchymal immune foci that differ in cytokine expression, spatial location, immune cell infiltration and cancer cell states. Furthermore, immune foci display profound differences related to co-inhibitory receptor signaling and immunosuppressive myeloid cells, suggesting that different tumor-parenchymal regions may be dominated by distinct, locally-confined mechanisms of immunosuppression. Additionally, senescent-like HPV-OPSCC cells lacking HPV transcripts (HPVoff) are evident across the tumor parenchyma and able to evade HPV-specific T cell-mediated immunity in vitro. HPVoff cells are enriched within hypoxic regions and near IFN-γ producing T cells suggesting that both hypoxia and IFN-γ signaling can promote the HPVoff phenotype. In conclusion, our findings highlight a complex cellular interplay underlying heterogeneous cancer cell states, spatial immune cell organization, and diverse mechanisms of immune escape.
Article Details
Authors (18)
Cem Sievers
Yvette Robbins
Marco Craveiro
Jay Friedman
Angel Huynh
Xinping Yang
Michael Kelly
James W. Hodge
Dilara Akbulut
Martha Quezado
Wojciech Mydlarz
Nyall R. London
Nancy Judd
John Deeken
Gopal Bajaj
Tian-Gen Chang
Clint T. Allen
Charalampos S. Floudas