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The regulatory mechanism of neutrophil extracellular traps in cancer biological behavior.

Hui WangYiyin ZhangQianling WangXiaoli WeiHua WangKangsheng Gu
Published in: Cell & bioscience (2021)
As the predominant host defense against pathogens, neutrophil extracellular traps (NETs) have attracted increasing attention due to their vital roles in infectious inflammation in the past few years. Interestingly, NETs also play important roles in noninfectious conditions, such as rheumatism and cancer. The process of NETs formation can be regulated and the form of cell death accompanied by the formation of NETs is regarded as "NETosis". A large amount of evidence has confirmed that many stimuli can facilitate the release of NETs from neutrophils. Furthermore, it has been illustrated that NETs promote tumor growth and progression via many molecular pathways. Meanwhile, NETs also can promote metastasis in many kinds of cancers based on multiple studies. In addition, some researchs have found that NETs can promote coagulation and cancer-associated thrombosis. In the present review, it will highlight how NETosis, which is stimulated by various stimuli and signaling pathways, affects cancer biological behaviors via NETs. Given their crucial roles in cancer, NETs will become possible therapeutic targets for inhibiting proliferation, metastasis and thrombosis in cancer patients.
Keyphrases
  • papillary thyroid
  • cell death
  • signaling pathway
  • squamous cell
  • pulmonary embolism
  • squamous cell carcinoma
  • childhood cancer
  • transcription factor
  • young adults
  • cell proliferation
  • multidrug resistant