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GZMKhigh CD8+ T effector memory cells are associated with CD15high neutrophil abundance in non-metastatic colorectal tumors and predict poor clinical outcome

Author

Listed:
  • Silvia Tiberti

    (European Institute of Oncology- IRCCS)

  • Carlotta Catozzi

    (European Institute of Oncology- IRCCS)

  • Ottavio Croci

    (Fondazione Istituto Italiano di Tecnologia (IIT))

  • Mattia Ballerini

    (European Institute of Oncology- IRCCS)

  • Danilo Cagnina

    (European Institute of Oncology- IRCCS)

  • Chiara Soriani

    (European Institute of Oncology- IRCCS)

  • Caterina Scirgolea

    (IRCCS- Humanitas Research Hospital-)

  • Zheng Gong

    (The Jackson Laboratory)

  • Jiatai He

    (The Jackson Laboratory
    University of Maine)

  • Angeli D. Macandog

    (European Institute of Oncology- IRCCS)

  • Amir Nabinejad

    (European Institute of Oncology- IRCCS)

  • Carina B. Nava Lauson

    (European Institute of Oncology- IRCCS)

  • Arianna Quinte’

    (European Institute of Oncology- IRCCS)

  • Giovanni Bertalot

    (APSS Trento Hospital & Health Care)

  • Wanda L. Petz

    (European Institute of Oncology-IRCCS)

  • Simona P. Ravenda

    (European Institute of Oncology-IRCCS)

  • Valerio Licursi

    (National Research Council (CNR) of Italy)

  • Paola Paci

    (Sapienza - University of Rome)

  • Marco Rasponi

    (Information and Bioengineering, Politecnico di Milano)

  • Luca Rotta

    (European Institute of Oncology- IRCCS)

  • Nicola Fazio

    (European Institute of Oncology-IRCCS)

  • Guangwen Ren

    (The Jackson Laboratory)

  • Uberto Fumagalli-Romario

    (European Institute of Oncology-IRCCS)

  • Martin H. Schaefer

    (European Institute of Oncology- IRCCS)

  • Stefano Campaner

    (Fondazione Istituto Italiano di Tecnologia (IIT))

  • Enrico Lugli

    (IRCCS- Humanitas Research Hospital-)

  • Luigi Nezi

    (European Institute of Oncology- IRCCS)

  • Teresa Manzo

    (European Institute of Oncology- IRCCS)

Abstract

CD8+ T cells are a major prognostic determinant in solid tumors, including colorectal cancer (CRC). However, understanding how the interplay between different immune cells impacts on clinical outcome is still in its infancy. Here, we describe that the interaction of tumor infiltrating neutrophils expressing high levels of CD15 with CD8+ T effector memory cells (TEM) correlates with tumor progression. Mechanistically, stromal cell-derived factor-1 (CXCL12/SDF-1) promotes the retention of neutrophils within tumors, increasing the crosstalk with CD8+ T cells. As a consequence of the contact-mediated interaction with neutrophils, CD8+ T cells are skewed to produce high levels of GZMK, which in turn decreases E-cadherin on the intestinal epithelium and favors tumor progression. Overall, our results highlight the emergence of GZMKhigh CD8+ TEM in non-metastatic CRC tumors as a hallmark driven by the interaction with neutrophils, which could implement current patient stratification and be targeted by novel therapeutics.

Suggested Citation

  • Silvia Tiberti & Carlotta Catozzi & Ottavio Croci & Mattia Ballerini & Danilo Cagnina & Chiara Soriani & Caterina Scirgolea & Zheng Gong & Jiatai He & Angeli D. Macandog & Amir Nabinejad & Carina B. N, 2022. "GZMKhigh CD8+ T effector memory cells are associated with CD15high neutrophil abundance in non-metastatic colorectal tumors and predict poor clinical outcome," Nature Communications, Nature, vol. 13(1), pages 1-20, December.
  • Handle: RePEc:nat:natcom:v:13:y:2022:i:1:d:10.1038_s41467-022-34467-3
    DOI: 10.1038/s41467-022-34467-3
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    1. Vincenzo Bronte & Sven Brandau & Shu-Hsia Chen & Mario P. Colombo & Alan B. Frey & Tim F. Greten & Susanna Mandruzzato & Peter J. Murray & Augusto Ochoa & Suzanne Ostrand-Rosenberg & Paulo C. Rodrigue, 2016. "Recommendations for myeloid-derived suppressor cell nomenclature and characterization standards," Nature Communications, Nature, vol. 7(1), pages 1-10, November.
    2. Lei Zhang & Xin Yu & Liangtao Zheng & Yuanyuan Zhang & Yansen Li & Qiao Fang & Ranran Gao & Boxi Kang & Qiming Zhang & Julie Y. Huang & Hiroyasu Konno & Xinyi Guo & Yingjiang Ye & Songyuan Gao & Shan , 2018. "Lineage tracking reveals dynamic relationships of T cells in colorectal cancer," Nature, Nature, vol. 564(7735), pages 268-272, December.
    3. Xiaoping Han & Ziming Zhou & Lijiang Fei & Huiyu Sun & Renying Wang & Yao Chen & Haide Chen & Jingjing Wang & Huanna Tang & Wenhao Ge & Yincong Zhou & Fang Ye & Mengmeng Jiang & Junqing Wu & Yanyu Xia, 2020. "Construction of a human cell landscape at single-cell level," Nature, Nature, vol. 581(7808), pages 303-309, May.
    4. Yannick Simoni & Etienne Becht & Michael Fehlings & Chiew Yee Loh & Si-Lin Koo & Karen Wei Weng Teng & Joe Poh Sheng Yeong & Rahul Nahar & Tong Zhang & Hassen Kared & Kaibo Duan & Nicholas Ang & Micha, 2018. "Bystander CD8+ T cells are abundant and phenotypically distinct in human tumour infiltrates," Nature, Nature, vol. 557(7706), pages 575-579, May.
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