Chemotherapy induces myeloid-driven spatially confined T cell exhaustion in ovarian cancer
Launonen, Inga Maria; Niemiec, Iga; Hincapié-Otero, María; Erkan, Erdogan Pekcan; Junquera, Ada; Afenteva, Daria; Falco, Matias M.; Liang, Zhihan; Salko, Matilda; Chamchougia, Foteini; Szabo, Angela; Perez-Villatoro, Fernando; Li, Yilin; Micoli, Giulia; Nagaraj, Ashwini; Haltia, Ulla Maija; Kahelin, Essi; Oikkonen, Jaana; Hynninen, Johanna; Virtanen, Anni; Nirmal, Ajit J.; Vallius, Tuulia; Hautaniemi, Sampsa; Sorger, Peter K.; Vähärautio, Anna; Färkkilä, Anniina (2024-12-09)
Launonen, Inga Maria
Niemiec, Iga
Hincapié-Otero, María
Erkan, Erdogan Pekcan
Junquera, Ada
Afenteva, Daria
Falco, Matias M.
Liang, Zhihan
Salko, Matilda
Chamchougia, Foteini
Szabo, Angela
Perez-Villatoro, Fernando
Li, Yilin
Micoli, Giulia
Nagaraj, Ashwini
Haltia, Ulla Maija
Kahelin, Essi
Oikkonen, Jaana
Hynninen, Johanna
Virtanen, Anni
Nirmal, Ajit J.
Vallius, Tuulia
Hautaniemi, Sampsa
Sorger, Peter K.
Vähärautio, Anna
Färkkilä, Anniina
09.12.2024
Cancer Cell
Julkaisun pysyvä osoite on
https://urn.fi/URN:NBN:fi:tuni-202501021038
https://urn.fi/URN:NBN:fi:tuni-202501021038
Kuvaus
Peer reviewed
Tiivistelmä
Anti-tumor immunity is crucial for high-grade serous ovarian cancer (HGSC) prognosis, yet its adaptation upon standard chemotherapy remains poorly understood. Here, we conduct spatial and molecular characterization of 117 HGSC samples collected before and after chemotherapy. Our single-cell and spatial analyses reveal increasingly versatile immune cell states forming spatiotemporally dynamic microcommunities. We describe Myelonets, networks of interconnected myeloid cells that contribute to CD8+ T cell exhaustion post-chemotherapy and show that M1/M2 polarization at the tumor-stroma interface is associated with CD8+ T cell exhaustion and exclusion, correlating with poor chemoresponse. Single-cell and spatial transcriptomics reveal prominent myeloid-T cell interactions via NECTIN2-TIGIT induced by chemotherapy. Targeting these interactions using a functional patient-derived immuno-oncology platform demonstrates that high NECTIN2-TIGIT signaling in matched tumors predicts responses to immune checkpoint blockade. Our discovery of clinically relevant myeloid-driven spatial T cell exhaustion unlocks immunotherapeutic strategies to unleash CD8+ T cell-mediated anti-tumor immunity in HGSC.
Kokoelmat
- TUNICRIS-julkaisut [20210]