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NET‐producing CD16 high CD62L dim neutrophils migrate to tumor sites and predict improved survival in patients with HNSCC
Author(s) -
Millrud Camilla Rydberg,
Kågedal Åsa,
Kumlien Georén Susanna,
Winqvist Ola,
Uddman Rolf,
Razavi Ronia,
MunckWikland Eva,
Cardell Lars Olaf
Publication year - 2017
Publication title -
international journal of cancer
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.475
H-Index - 234
eISSN - 1097-0215
pISSN - 0020-7136
DOI - 10.1002/ijc.30671
Subject(s) - neutrophil extracellular traps , cd16 , neutrophil elastase , flow cytometry , head and neck squamous cell carcinoma , cancer research , cancer , immune system , immunology , tumor progression , myeloperoxidase , medicine , biology , inflammation , head and neck cancer , cd3 , cd8
The concept of functional neutrophil subsets is new and their clinical significance in malignancies is unknown. Our study investigated the role of CD16 dim CD62L high , CD16 high CD62L high and CD16 high CD62L dim neutrophil subsets in head and neck squamous cell carcinoma (HNSCC) patients. These neutrophil subsets may play different roles in immune‐related activity in cancer, based on their profile, activation state and migration ability within a tumor site, which may be important in predicting cancer prognoses. Tumor biopsies and blood were obtained from newly diagnosed untreated HNSCC patients and healthy controls. Neutrophil subsets and their phenotype were characterized using flow cytometry. Isolated granulocytes were assessed for anti‐tumor immune functions. Compared to controls HNSCC patients exhibited increased CD16 high CD62L dim neutrophils in blood; this subset displayed a distinct phenotypes with high expression of CD11b and CD18. This subset was prone to migrate into the tumor facilitated by tumor‐derived IL‐8. Furthermore, IL‐8 was also found to activate neutrophils and thereby promoting subset transition. Various assays demonstrated that activated CD16 high CD62L dim neutrophils inhibited migration, proliferation and induced apoptosis of FaDu cancer cells. Neutrophil elastase detected in activated CD16 high CD62L dim neutrophils and tumor biopsies suggested that CD16 high CD62L dim neutrophils impart anti‐tumoral activity via neutrophil extracellular traps. Furthermore, increased fraction of CD16 high CD62L dim neutrophils was shown to correlate with an increased survival rate. Our study demonstrates the clinical relevance of the CD16 high CD62L dim neutrophil subset, providing evidence for its increased migration capacity, its anti‐tumor activity including increased NET formation and finally its correlation with increased survival in HNSCC patients.