Neutrophil diversity in the host defense niche 2261060

M Marie Siwicki (1University of Calgary) P Paul Kubes (Calvin, Phoebe, and Joan Snyder Institute for Chronic Diseases, Cumming School of Medicine, University of Calgary)

Abstract

Abstract Introduction Neutrophils are powerful antimicrobial innate immune cells, without which a host is highly susceptible to morbidity and death caused by infections. However, in recent years, their role in noninfectious contexts has been highlighted, including in cardiac stress, autoimmunity, and cancer. Across settings, the concept of neutrophil heterogeneity has emerged, yet the basis and functional implications of this diversity remain largely unknown. Many devoted studies have examined contexts of cancer or other lifestyle diseases–arenas largely departed from the selective pressures that shaped neutrophil biology. Therefore, we sought to study neutrophil diversity in an evolutionarily powerful setting: infection and acute injury to the skin. Methods Using spectral flow cytometry, along with intravital microscopy and transgenic mice that enable tracking neutrophils over time, we assessed neutrophil dynamics and plasticity, as well as relationships between environment, phenotype, function, and behavior in vivo. Results We found that neutrophils rapidly specify their phenotype upon extravasating to a site of challenge. During response to a biofilm infection, neutrophil phenotypes shifted over time, reflecting both plasticity and turnover. Several phenotypic changes seen during the infection response were absent in a noninfectious wound, highlighting the challenge-specific nature of neutrophil phenotypic adaptation. Notably, we identified an unexpected population of CD101-low mature neutrophils, expressing elevated levels of PD-L1 and ICAM-1, associated with the infection response. This population was characteristic of a highly structured neutrophil swarm. Conclusion This work provides fundamental insights into the evolved capacity of neutrophils to diversify in vivo, revealing that neutrophil phenotypes are dynamic even in acute settings of inflammation, and tightly linked to a cell’s environment. It further aligns observations of phenotypic adaptation with specific host defensive behaviors. Funding Source Damon Runyon Postdoctoral Fellowship Award Topic Categories Innate Immune Responses and Host Defense: Cellular Mechanisms (INC)

Article Details

Volume / Issue Vol. 215, Issue Supplement_1
Published August 01, 2026
ISSN 0022-1767
Publisher American Association of Immunologists

Authors (2)

M

Marie Siwicki

1University of Calgary

P

Paul Kubes

Calvin, Phoebe, and Joan Snyder Institute for Chronic Diseases, Cumming School of Medicine, University of Calgary