Neutrophils in the tumor microenvironment: trying to heal the wound that cannot heal

KL Singel, BH Segal - Immunological reviews, 2016 - Wiley Online Library
KL Singel, BH Segal
Immunological reviews, 2016Wiley Online Library
Neutrophils are the first responders to infection and injury and are critical for antimicrobial
host defense. Through the generation of reactive oxidants, activation of granular constituents
and neutrophil extracellular traps, neutrophils target microbes and prevent their
dissemination. While these pathways are beneficial in the context of trauma and infection,
their off‐target effects in the context of tumor are variable. Tumor‐derived factors have been
shown to reprogram the marrow, skewing toward the expansion of myelopoiesis. This can …
Summary
Neutrophils are the first responders to infection and injury and are critical for antimicrobial host defense. Through the generation of reactive oxidants, activation of granular constituents and neutrophil extracellular traps, neutrophils target microbes and prevent their dissemination. While these pathways are beneficial in the context of trauma and infection, their off‐target effects in the context of tumor are variable. Tumor‐derived factors have been shown to reprogram the marrow, skewing toward the expansion of myelopoiesis. This can result in stimulation of both neutrophilic leukocytosis and the release of immature granulocytic populations that accumulate in circulation and in the tumor microenvironment. While activated neutrophils have been shown to kill tumor cells, there is growing evidence for neutrophil activation driving tumor progression and metastasis through a number of pathways, including stimulation of thrombosis and angiogenesis, stromal remodeling, and impairment of T cell‐dependent anti‐tumor immunity. There is also growing appreciation of neutrophil heterogeneity in cancer, with distinct neutrophil populations promoting cancer control or progression. In addition to the effects of tumor on neutrophil responses, anti‐neoplastic treatment, including surgery, chemotherapy, and growth factors, can influence neutrophil responses. Future directions for research are expected to result in more mechanistic knowledge of neutrophil biology in the tumor microenvironment that may be exploited as prognostic biomarkers and therapeutic targets.
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