Cargando…

Senescent thyrocytes and thyroid tumor cells induce M2-like macrophage polarization of human monocytes via a PGE2-dependent mechanism

BACKGROUND: Thyroid carcinoma includes several variants characterized by different biological and clinical features: from indolent microcarcinoma to undifferentiated and aggressive anaplastic carcinoma. Inflammation plays a critical role in thyroid tumors. Conditions predisposing to cancer, as well...

Descripción completa

Detalles Bibliográficos
Autores principales: Mazzoni, Mara, Mauro, Giuseppe, Erreni, Marco, Romeo, Paola, Minna, Emanuela, Vizioli, Maria Grazia, Belgiovine, Cristina, Rizzetti, Maria Grazia, Pagliardini, Sonia, Avigni, Roberta, Anania, Maria Chiara, Allavena, Paola, Borrello, Maria Grazia, Greco, Angela
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6528237/
https://www.ncbi.nlm.nih.gov/pubmed/31113465
http://dx.doi.org/10.1186/s13046-019-1198-8
_version_ 1783420172173836288
author Mazzoni, Mara
Mauro, Giuseppe
Erreni, Marco
Romeo, Paola
Minna, Emanuela
Vizioli, Maria Grazia
Belgiovine, Cristina
Rizzetti, Maria Grazia
Pagliardini, Sonia
Avigni, Roberta
Anania, Maria Chiara
Allavena, Paola
Borrello, Maria Grazia
Greco, Angela
author_facet Mazzoni, Mara
Mauro, Giuseppe
Erreni, Marco
Romeo, Paola
Minna, Emanuela
Vizioli, Maria Grazia
Belgiovine, Cristina
Rizzetti, Maria Grazia
Pagliardini, Sonia
Avigni, Roberta
Anania, Maria Chiara
Allavena, Paola
Borrello, Maria Grazia
Greco, Angela
author_sort Mazzoni, Mara
collection PubMed
description BACKGROUND: Thyroid carcinoma includes several variants characterized by different biological and clinical features: from indolent microcarcinoma to undifferentiated and aggressive anaplastic carcinoma. Inflammation plays a critical role in thyroid tumors. Conditions predisposing to cancer, as well as oncogene activity, contribute to the construction of an inflammatory microenvironment that facilitates thyroid tumor progression. Moreover, oncogene-induced senescence, a mechanism tightly connected with inflammation, and able to restrain or promote cancer progression, is involved in thyroid cancer. The interactions between thyroid tumor cells and the microenvironment are not completely clarified. METHODS: We characterize in vitro the interplay between macrophages and senescent thyrocytes and tumor-derived cell lines, modeling early and late thyroid tumor stages, respectively. Purified peripheral blood-derived human monocytes were exposed to thyroid cell-derived conditioned medium (CM) and assessed for phenotype by flow cytometry. The factors secreted by thyroid cells and macrophages were identified by gene expression analysis and ELISA. The protumoral effect of macrophages was assessed by wound healing assay on K1 thyroid tumor cells. The expression of PTGS2 and M2 markers in thyroid tumors was investigated in publicly available datasets. RESULTS: Human monocytes exposed to CM from senescent thyrocytes and thyroid tumor cell lines undergo M2-like polarization, showing high CD206 and low MHC II markers, and upregulation of CCL17 secretion. The obtained M2-like macrophages displayed tumor-promoting activity. Among genes overexpressed in polarizing cells, we identified the prostaglandin-endoperoxide synthase enzyme (PTGS2/COX-2), which is involved in the production of prostaglandin E2 (PGE2). By using COX-2 inhibitors we demonstrated that the M2-like polarization ability of thyroid cells is related to the production of PGE2. Co-expression of PTGS2 and M2 markers is observed a significant fraction of human thyroid tumors. CONCLUSIONS: Our results demonstrate that both senescent thyrocytes and thyroid tumor cell lines trigger M2-like macrophage polarization that is related to PGE2 secretion. This suggests that the interaction with the microenvironment occurs at both early and late thyroid tumor stages, and favors tumor progression. The co-expression of PTGS2 gene and M2 markers in human thyroid carcinoma highlights the possibility to counteract tumor growth through COX-2 inhibition. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (10.1186/s13046-019-1198-8) contains supplementary material, which is available to authorized users.
format Online
Article
Text
id pubmed-6528237
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher BioMed Central
record_format MEDLINE/PubMed
spelling pubmed-65282372019-05-28 Senescent thyrocytes and thyroid tumor cells induce M2-like macrophage polarization of human monocytes via a PGE2-dependent mechanism Mazzoni, Mara Mauro, Giuseppe Erreni, Marco Romeo, Paola Minna, Emanuela Vizioli, Maria Grazia Belgiovine, Cristina Rizzetti, Maria Grazia Pagliardini, Sonia Avigni, Roberta Anania, Maria Chiara Allavena, Paola Borrello, Maria Grazia Greco, Angela J Exp Clin Cancer Res Research BACKGROUND: Thyroid carcinoma includes several variants characterized by different biological and clinical features: from indolent microcarcinoma to undifferentiated and aggressive anaplastic carcinoma. Inflammation plays a critical role in thyroid tumors. Conditions predisposing to cancer, as well as oncogene activity, contribute to the construction of an inflammatory microenvironment that facilitates thyroid tumor progression. Moreover, oncogene-induced senescence, a mechanism tightly connected with inflammation, and able to restrain or promote cancer progression, is involved in thyroid cancer. The interactions between thyroid tumor cells and the microenvironment are not completely clarified. METHODS: We characterize in vitro the interplay between macrophages and senescent thyrocytes and tumor-derived cell lines, modeling early and late thyroid tumor stages, respectively. Purified peripheral blood-derived human monocytes were exposed to thyroid cell-derived conditioned medium (CM) and assessed for phenotype by flow cytometry. The factors secreted by thyroid cells and macrophages were identified by gene expression analysis and ELISA. The protumoral effect of macrophages was assessed by wound healing assay on K1 thyroid tumor cells. The expression of PTGS2 and M2 markers in thyroid tumors was investigated in publicly available datasets. RESULTS: Human monocytes exposed to CM from senescent thyrocytes and thyroid tumor cell lines undergo M2-like polarization, showing high CD206 and low MHC II markers, and upregulation of CCL17 secretion. The obtained M2-like macrophages displayed tumor-promoting activity. Among genes overexpressed in polarizing cells, we identified the prostaglandin-endoperoxide synthase enzyme (PTGS2/COX-2), which is involved in the production of prostaglandin E2 (PGE2). By using COX-2 inhibitors we demonstrated that the M2-like polarization ability of thyroid cells is related to the production of PGE2. Co-expression of PTGS2 and M2 markers is observed a significant fraction of human thyroid tumors. CONCLUSIONS: Our results demonstrate that both senescent thyrocytes and thyroid tumor cell lines trigger M2-like macrophage polarization that is related to PGE2 secretion. This suggests that the interaction with the microenvironment occurs at both early and late thyroid tumor stages, and favors tumor progression. The co-expression of PTGS2 gene and M2 markers in human thyroid carcinoma highlights the possibility to counteract tumor growth through COX-2 inhibition. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (10.1186/s13046-019-1198-8) contains supplementary material, which is available to authorized users. BioMed Central 2019-05-21 /pmc/articles/PMC6528237/ /pubmed/31113465 http://dx.doi.org/10.1186/s13046-019-1198-8 Text en © The Author(s). 2019 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research
Mazzoni, Mara
Mauro, Giuseppe
Erreni, Marco
Romeo, Paola
Minna, Emanuela
Vizioli, Maria Grazia
Belgiovine, Cristina
Rizzetti, Maria Grazia
Pagliardini, Sonia
Avigni, Roberta
Anania, Maria Chiara
Allavena, Paola
Borrello, Maria Grazia
Greco, Angela
Senescent thyrocytes and thyroid tumor cells induce M2-like macrophage polarization of human monocytes via a PGE2-dependent mechanism
title Senescent thyrocytes and thyroid tumor cells induce M2-like macrophage polarization of human monocytes via a PGE2-dependent mechanism
title_full Senescent thyrocytes and thyroid tumor cells induce M2-like macrophage polarization of human monocytes via a PGE2-dependent mechanism
title_fullStr Senescent thyrocytes and thyroid tumor cells induce M2-like macrophage polarization of human monocytes via a PGE2-dependent mechanism
title_full_unstemmed Senescent thyrocytes and thyroid tumor cells induce M2-like macrophage polarization of human monocytes via a PGE2-dependent mechanism
title_short Senescent thyrocytes and thyroid tumor cells induce M2-like macrophage polarization of human monocytes via a PGE2-dependent mechanism
title_sort senescent thyrocytes and thyroid tumor cells induce m2-like macrophage polarization of human monocytes via a pge2-dependent mechanism
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6528237/
https://www.ncbi.nlm.nih.gov/pubmed/31113465
http://dx.doi.org/10.1186/s13046-019-1198-8
work_keys_str_mv AT mazzonimara senescentthyrocytesandthyroidtumorcellsinducem2likemacrophagepolarizationofhumanmonocytesviaapge2dependentmechanism
AT maurogiuseppe senescentthyrocytesandthyroidtumorcellsinducem2likemacrophagepolarizationofhumanmonocytesviaapge2dependentmechanism
AT errenimarco senescentthyrocytesandthyroidtumorcellsinducem2likemacrophagepolarizationofhumanmonocytesviaapge2dependentmechanism
AT romeopaola senescentthyrocytesandthyroidtumorcellsinducem2likemacrophagepolarizationofhumanmonocytesviaapge2dependentmechanism
AT minnaemanuela senescentthyrocytesandthyroidtumorcellsinducem2likemacrophagepolarizationofhumanmonocytesviaapge2dependentmechanism
AT viziolimariagrazia senescentthyrocytesandthyroidtumorcellsinducem2likemacrophagepolarizationofhumanmonocytesviaapge2dependentmechanism
AT belgiovinecristina senescentthyrocytesandthyroidtumorcellsinducem2likemacrophagepolarizationofhumanmonocytesviaapge2dependentmechanism
AT rizzettimariagrazia senescentthyrocytesandthyroidtumorcellsinducem2likemacrophagepolarizationofhumanmonocytesviaapge2dependentmechanism
AT pagliardinisonia senescentthyrocytesandthyroidtumorcellsinducem2likemacrophagepolarizationofhumanmonocytesviaapge2dependentmechanism
AT avigniroberta senescentthyrocytesandthyroidtumorcellsinducem2likemacrophagepolarizationofhumanmonocytesviaapge2dependentmechanism
AT ananiamariachiara senescentthyrocytesandthyroidtumorcellsinducem2likemacrophagepolarizationofhumanmonocytesviaapge2dependentmechanism
AT allavenapaola senescentthyrocytesandthyroidtumorcellsinducem2likemacrophagepolarizationofhumanmonocytesviaapge2dependentmechanism
AT borrellomariagrazia senescentthyrocytesandthyroidtumorcellsinducem2likemacrophagepolarizationofhumanmonocytesviaapge2dependentmechanism
AT grecoangela senescentthyrocytesandthyroidtumorcellsinducem2likemacrophagepolarizationofhumanmonocytesviaapge2dependentmechanism