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Neutrophil extracellular traps sequester circulating tumor cells and promote metastasis

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TLDR
It is reported that circulating tumor cells become trapped within NETs in vitro under static and dynamic conditions and NETs are identified as potential therapeutic targets in the context of systemic infection.
Abstract
The majority of patients with cancer undergo at least one surgical procedure as part of their treatment. Severe postsurgical infection is associated with adverse oncologic outcomes; however, the mechanisms underlying this phenomenon are unclear. Emerging evidence suggests that neutrophils, which function as the first line of defense during infections, facilitate cancer progression. Neutrophil extracellular traps (NETs) are extracellular neutrophil-derived DNA webs released in response to inflammatory cues that trap and kill invading pathogens. The role of NETs in cancer progression is entirely unknown. We report that circulating tumor cells become trapped within NETs in vitro under static and dynamic conditions. In a murine model of infection using cecal ligation and puncture, we demonstrated microvascular NET deposition and consequent trapping of circulating lung carcinoma cells within DNA webs. NET trapping was associated with increased formation of hepatic micrometastases at 48 hours and gross metastatic disease burden at 2 weeks following tumor cell injection. These effects were abrogated by NET inhibition with DNAse or a neutrophil elastase inhibitor. These findings implicate NETs in the process of cancer metastasis in the context of systemic infection and identify NETs as potential therapeutic targets.

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Circulating tumor cells and coagulation-Minireview.

TL;DR: Various interactions of circulating tumor cells with the coagulation pathway in cancer patient are discussed.
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Efficient Propagation of Circulating Tumor Cells: A First Step for Probing Tumor Metastasis.

TL;DR: A new method for the isolation and culture of circulating tumor cells from metastatic breast cancer patients is described, demonstrating a 100% success rate and suggesting that a reconsideration of the parameters for circulating tumor cell isolation should be undertaken.
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Tumor ENPP1 (CD203a)/Haptoglobin Axis Exploits Myeloid-Derived Suppressor Cells to Promote Post-Radiotherapy Local Recurrence in Breast Cancer

TL;DR: Zhang et al. as mentioned in this paper identified Enpp1 (Ectonucleotide pyrophosphatase /phosphodiesterase 1/CD203a) to be closely associated with localized failure in breast cancer patients post-surgery and post-irradiation (IR) is linked to a dismal prognosis.
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CCDC25: precise navigator for neutrophil extracellular traps on the prometastatic road.

TL;DR: Yang et al. demonstrated that NET-DNA functions as a chemotactic factor that directly stimulates the migration, adhesion and proliferation of cancer cells, and proposed that the prometastatic function of NETs relies on merely trapping circulating cancer cells.
Journal ArticleDOI

Recent advances in microscopic techniques for visualizing leukocytes in vivo

TL;DR: A brief review summarizes the developments enabling the tracking of immune responses in vivo, including advances in intravital microscopy approaches that enabled a new vista of their behavior within intact tissues in real time.
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