Metastatic potential of NET in neoplastic disease

In response to various stimuli, neutrophils and eosinophils can release neutrophil extracellular traps (NET) consisting of proteolytic enzymes, DNA and other components of the cell nucleus. The NETosis process has been characterized as a mechanism of programmed cell death, which leads to chromatin d...

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Main Authors: Iwona Homa-Mlak, Aleksandra Majdan, Radosław Mlak, Teresa Małecka-Massalska
Format: Article
Language:English
Published: Index Copernicus International S.A. 2016-08-01
Series:Postępy Higieny i Medycyny Doświadczalnej
Subjects:
NET
Online Access:http://phmd.pl/gicid/01.3001.0009.6867
id doaj-c26e6e8107e34d6695380f6784cfab46
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spelling doaj-c26e6e8107e34d6695380f6784cfab462020-11-24T23:26:09ZengIndex Copernicus International S.A.Postępy Higieny i Medycyny Doświadczalnej0032-54491732-26932016-08-017088789510.5604/01.3001.0009.686701.3001.0009.6867Metastatic potential of NET in neoplastic diseaseIwona Homa-Mlak0Aleksandra Majdan1Radosław Mlak2Teresa Małecka-Massalska3Katedra i Zakład Fizjologii Człowieka Uniwersytetu Medycznego w LublinieKatedra i Zakład Fizjologii Człowieka Uniwersytetu Medycznego w LublinieKatedra i Zakład Fizjologii Człowieka Uniwersytetu Medycznego w LublinieKatedra i Zakład Fizjologii Człowieka Uniwersytetu Medycznego w LublinieIn response to various stimuli, neutrophils and eosinophils can release neutrophil extracellular traps (NET) consisting of proteolytic enzymes, DNA and other components of the cell nucleus. The NETosis process has been characterized as a mechanism of programmed cell death, which leads to chromatin decondensation and disintegration of organelles, followed by lysis of the cell membrane. In recent years the significant role of neutrophils in the pathogenesis of cancer has been highlighted. The presence of two subpopulations of TAN with different phenotypes and functions – acting antitumor “N1” and the pro-cancerous “N2” – has been discovered. By the release of cytokines and chemokines neutrophils may affect angiogenesis and contribute to escape of tumor cells from immune surveillance. Interactions between cells and the microenvironment are of vital importance both for the preservation of homeostasis in normal tissue and tumor growth. They affect the initiation of disease progression and prognosis. The impact of NETosis on the process of metastasis is evaluated in the context of the functions of the individual components of the NET (MMP-9, CG, NE). Furthermore, presumably the pro- or anti-tumor effect of NETosis depends on many factors including the status of the immune system or tumor microenvironment. Probably the cancer cells can be captured by the NET microenvironment in the same manner as microorganisms. However, the high concentration of proteins released during NETosis can induce their proliferation and inhibit apoptosis, thus promoting tumor growth. A better understanding of NETosis function in tumor progression may lead to the emergence of new prognostic factors and targets for therapy in many types of cancer. http://phmd.pl/gicid/01.3001.0009.6867NETneutrofilechoroby nowotworowepowstawanie przerzutówNeutrophilsneoplastic diseases
collection DOAJ
language English
format Article
sources DOAJ
author Iwona Homa-Mlak
Aleksandra Majdan
Radosław Mlak
Teresa Małecka-Massalska
spellingShingle Iwona Homa-Mlak
Aleksandra Majdan
Radosław Mlak
Teresa Małecka-Massalska
Metastatic potential of NET in neoplastic disease
Postępy Higieny i Medycyny Doświadczalnej
NET
neutrofile
choroby nowotworowe
powstawanie przerzutów
Neutrophils
neoplastic diseases
author_facet Iwona Homa-Mlak
Aleksandra Majdan
Radosław Mlak
Teresa Małecka-Massalska
author_sort Iwona Homa-Mlak
title Metastatic potential of NET in neoplastic disease
title_short Metastatic potential of NET in neoplastic disease
title_full Metastatic potential of NET in neoplastic disease
title_fullStr Metastatic potential of NET in neoplastic disease
title_full_unstemmed Metastatic potential of NET in neoplastic disease
title_sort metastatic potential of net in neoplastic disease
publisher Index Copernicus International S.A.
series Postępy Higieny i Medycyny Doświadczalnej
issn 0032-5449
1732-2693
publishDate 2016-08-01
description In response to various stimuli, neutrophils and eosinophils can release neutrophil extracellular traps (NET) consisting of proteolytic enzymes, DNA and other components of the cell nucleus. The NETosis process has been characterized as a mechanism of programmed cell death, which leads to chromatin decondensation and disintegration of organelles, followed by lysis of the cell membrane. In recent years the significant role of neutrophils in the pathogenesis of cancer has been highlighted. The presence of two subpopulations of TAN with different phenotypes and functions – acting antitumor “N1” and the pro-cancerous “N2” – has been discovered. By the release of cytokines and chemokines neutrophils may affect angiogenesis and contribute to escape of tumor cells from immune surveillance. Interactions between cells and the microenvironment are of vital importance both for the preservation of homeostasis in normal tissue and tumor growth. They affect the initiation of disease progression and prognosis. The impact of NETosis on the process of metastasis is evaluated in the context of the functions of the individual components of the NET (MMP-9, CG, NE). Furthermore, presumably the pro- or anti-tumor effect of NETosis depends on many factors including the status of the immune system or tumor microenvironment. Probably the cancer cells can be captured by the NET microenvironment in the same manner as microorganisms. However, the high concentration of proteins released during NETosis can induce their proliferation and inhibit apoptosis, thus promoting tumor growth. A better understanding of NETosis function in tumor progression may lead to the emergence of new prognostic factors and targets for therapy in many types of cancer.
topic NET
neutrofile
choroby nowotworowe
powstawanie przerzutów
Neutrophils
neoplastic diseases
url http://phmd.pl/gicid/01.3001.0009.6867
work_keys_str_mv AT iwonahomamlak metastaticpotentialofnetinneoplasticdisease
AT aleksandramajdan metastaticpotentialofnetinneoplasticdisease
AT radosławmlak metastaticpotentialofnetinneoplasticdisease
AT teresamałeckamassalska metastaticpotentialofnetinneoplasticdisease
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