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Interferon regulatory factor-8 modulates the development of tumour-induced CD11b(+)Gr-1(+) myeloid cells

Tumour-induced myeloid-derived suppressor cells (MDSC) promote immune suppression and mediate tumour progression. However, the molecular basis for the generation of MDSC, which in mice co-express the CD11b(+) and Gr-1(+) cell surface markers remains unclear. Because CD11b(+)Gr-1(+) cells expand duri...

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Autores principales: Stewart, Trina J, Greeneltch, Kristy M, Reid, Julia E, Liewehr, David J, Steinberg, Seth M, Liu, Kebin, Abrams, Scott I
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons, Ltd 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3858838/
https://www.ncbi.nlm.nih.gov/pubmed/20196788
http://dx.doi.org/10.1111/j.1582-4934.2009.00685.x
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author Stewart, Trina J
Greeneltch, Kristy M
Reid, Julia E
Liewehr, David J
Steinberg, Seth M
Liu, Kebin
Abrams, Scott I
author_facet Stewart, Trina J
Greeneltch, Kristy M
Reid, Julia E
Liewehr, David J
Steinberg, Seth M
Liu, Kebin
Abrams, Scott I
author_sort Stewart, Trina J
collection PubMed
description Tumour-induced myeloid-derived suppressor cells (MDSC) promote immune suppression and mediate tumour progression. However, the molecular basis for the generation of MDSC, which in mice co-express the CD11b(+) and Gr-1(+) cell surface markers remains unclear. Because CD11b(+)Gr-1(+) cells expand during progressive tumour growth, this suggests that tumour-induced events alter signalling pathways that affect normal myeloid cell development. Interferon regulatory factor-8 (IRF-8), a member of the IFN-γ regulatory factor family, is essential for normal myelopoiesis. We therefore examined whether IRF-8 modulated tumour-induced CD11b(+)Gr-1(+) cell development or accumulation using both implantable (4T1) and transgenic (MMTV-PyMT) mouse models of mammary tumour growth. In the 4T1 model, both splenic and bone marrow-derived CD11b(+)Gr-1(+) cells of tumour-bearing mice displayed a marked reduction in IRF-8 expression compared to control populations. A causal link between IRF-8 expression and the emergence of tumour-induced CD11b(+)Gr-1(+) cells was explored in vivo using a double transgenic (dTg) mouse model designed to express transgenes for both IRF-8 and mammary carcinoma development. Despite the fact that tumour growth was unaffected, splenomegaly, as well as the frequencies and absolute numbers of CD11b(+)Gr-1(+) cells were significantly lower in dTg mice when compared with single transgenic tumour-bearing mice. Overall, these data reveal that IRF-8 plays an important role in tumour-induced development and/or accumulation of CD11b(+)Gr-1(+) cells, and establishes a molecular basis for the potential manipulation of these myeloid populations for cancer therapy.
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spelling pubmed-38588382013-12-11 Interferon regulatory factor-8 modulates the development of tumour-induced CD11b(+)Gr-1(+) myeloid cells Stewart, Trina J Greeneltch, Kristy M Reid, Julia E Liewehr, David J Steinberg, Seth M Liu, Kebin Abrams, Scott I J Cell Mol Med Molecular Oncology Tumour-induced myeloid-derived suppressor cells (MDSC) promote immune suppression and mediate tumour progression. However, the molecular basis for the generation of MDSC, which in mice co-express the CD11b(+) and Gr-1(+) cell surface markers remains unclear. Because CD11b(+)Gr-1(+) cells expand during progressive tumour growth, this suggests that tumour-induced events alter signalling pathways that affect normal myeloid cell development. Interferon regulatory factor-8 (IRF-8), a member of the IFN-γ regulatory factor family, is essential for normal myelopoiesis. We therefore examined whether IRF-8 modulated tumour-induced CD11b(+)Gr-1(+) cell development or accumulation using both implantable (4T1) and transgenic (MMTV-PyMT) mouse models of mammary tumour growth. In the 4T1 model, both splenic and bone marrow-derived CD11b(+)Gr-1(+) cells of tumour-bearing mice displayed a marked reduction in IRF-8 expression compared to control populations. A causal link between IRF-8 expression and the emergence of tumour-induced CD11b(+)Gr-1(+) cells was explored in vivo using a double transgenic (dTg) mouse model designed to express transgenes for both IRF-8 and mammary carcinoma development. Despite the fact that tumour growth was unaffected, splenomegaly, as well as the frequencies and absolute numbers of CD11b(+)Gr-1(+) cells were significantly lower in dTg mice when compared with single transgenic tumour-bearing mice. Overall, these data reveal that IRF-8 plays an important role in tumour-induced development and/or accumulation of CD11b(+)Gr-1(+) cells, and establishes a molecular basis for the potential manipulation of these myeloid populations for cancer therapy. John Wiley & Sons, Ltd 2009-09 2010-01-29 /pmc/articles/PMC3858838/ /pubmed/20196788 http://dx.doi.org/10.1111/j.1582-4934.2009.00685.x Text en No claim to original US Government work Journal compilation © 2009 Foundation for Cellular and Molecular Medicine/Blackwell Publishing Ltd
spellingShingle Molecular Oncology
Stewart, Trina J
Greeneltch, Kristy M
Reid, Julia E
Liewehr, David J
Steinberg, Seth M
Liu, Kebin
Abrams, Scott I
Interferon regulatory factor-8 modulates the development of tumour-induced CD11b(+)Gr-1(+) myeloid cells
title Interferon regulatory factor-8 modulates the development of tumour-induced CD11b(+)Gr-1(+) myeloid cells
title_full Interferon regulatory factor-8 modulates the development of tumour-induced CD11b(+)Gr-1(+) myeloid cells
title_fullStr Interferon regulatory factor-8 modulates the development of tumour-induced CD11b(+)Gr-1(+) myeloid cells
title_full_unstemmed Interferon regulatory factor-8 modulates the development of tumour-induced CD11b(+)Gr-1(+) myeloid cells
title_short Interferon regulatory factor-8 modulates the development of tumour-induced CD11b(+)Gr-1(+) myeloid cells
title_sort interferon regulatory factor-8 modulates the development of tumour-induced cd11b(+)gr-1(+) myeloid cells
topic Molecular Oncology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3858838/
https://www.ncbi.nlm.nih.gov/pubmed/20196788
http://dx.doi.org/10.1111/j.1582-4934.2009.00685.x
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