Neutrophil Extracellular Traps and Cancer: Trapping Our Attention with Their Involvement in Ovarian Cancer.
María CastañoSarai Tomás-PérezEva González-CantóCristina AghababyanAndrea Mascarós-MartínezNuria SantonjaAlejandro Herreros-PomaresJulia OtoPilar MedinaMartin GötteBárbara Andrea Mc CormackJosep Mari-AlexandreJuan Gilabert-EstellésPublished in: International journal of molecular sciences (2023)
Neutrophils, the most abundant circulating leukocytes, play a well-known role in defense against pathogens through phagocytosis and degranulation. However, a new mechanism involving the release of neutrophil extracellular traps (NETs) composed of DNA, histones, calprotectin, myeloperoxidase, and elastase, among others, has been described. The so-called NETosis process can occur through three different mechanisms: suicidal, vital, and mitochondrial NETosis. Apart from their role in immune defense, neutrophils and NETs have been involved in physiopathological conditions, highlighting immunothrombosis and cancer. Notably, neutrophils can either promote or inhibit tumor growth in the tumor microenvironment depending on cytokine signaling and epigenetic modifications. Several neutrophils' pro-tumor strategies involving NETs have been documented, including pre-metastatic niche formation, increased survival, inhibition of the immune response, and resistance to oncologic therapies. In this review, we focus on ovarian cancer (OC), which remains the second most incidental but the most lethal gynecologic malignancy, partly due to the presence of metastasis, often omental, at diagnosis and the resistance to treatment. We deepen the state-of-the-art on the participation of NETs in OC metastasis establishment and progression and their involvement in resistance to chemo-, immuno-, and radiotherapies. Finally, we review the current literature on NETs in OC as diagnostic and/or prognostic markers, and their contribution to disease progression at early and advanced stages. The panoramic view provided in this article might pave the way for enhanced diagnostic and therapeutic strategies to improve the prognosis of cancer patients and, specifically, OC patients.
Keyphrases
- papillary thyroid
- immune response
- end stage renal disease
- squamous cell
- ejection fraction
- newly diagnosed
- gene expression
- squamous cell carcinoma
- chronic kidney disease
- dna methylation
- depressive symptoms
- systematic review
- small cell lung cancer
- prognostic factors
- oxidative stress
- working memory
- peritoneal dialysis
- single molecule
- rheumatoid arthritis
- gram negative
- lymph node metastasis
- childhood cancer
- dendritic cells
- minimally invasive
- anti inflammatory
- combination therapy
- peripheral blood
- inflammatory response
- radiation therapy
- endometrial cancer
- multidrug resistant