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Carboxypeptidase-M is regulated by lipids and CSFs in macrophages and dendritic cells and expressed selectively in tissue granulomas and foam cells

Granulomatous inflammations, characterized by the presence of activated macrophages (MAs) forming epithelioid cell (EPC) clusters, are usually easy to recognize. However, in ambiguous cases the use of a MA marker that expresses selectively in EPCs may be needed. Here, we report that carboxypeptidase...

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Autores principales: Tsakiris, Ioannis, Torocsik, Daniel, Gyongyosi, Adrienn, Dozsa, Aniko, Szatmari, Istvan, Szanto, Attila, Soos, Gyorgyike, Nemes, Zoltan, Igali, Laszlo, Marton, Ildiko, Takats, Zoltan, Nagy, Laszlo, Dezso, Balazs
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3290762/
https://www.ncbi.nlm.nih.gov/pubmed/22157720
http://dx.doi.org/10.1038/labinvest.2011.168
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author Tsakiris, Ioannis
Torocsik, Daniel
Gyongyosi, Adrienn
Dozsa, Aniko
Szatmari, Istvan
Szanto, Attila
Soos, Gyorgyike
Nemes, Zoltan
Igali, Laszlo
Marton, Ildiko
Takats, Zoltan
Nagy, Laszlo
Dezso, Balazs
author_facet Tsakiris, Ioannis
Torocsik, Daniel
Gyongyosi, Adrienn
Dozsa, Aniko
Szatmari, Istvan
Szanto, Attila
Soos, Gyorgyike
Nemes, Zoltan
Igali, Laszlo
Marton, Ildiko
Takats, Zoltan
Nagy, Laszlo
Dezso, Balazs
author_sort Tsakiris, Ioannis
collection PubMed
description Granulomatous inflammations, characterized by the presence of activated macrophages (MAs) forming epithelioid cell (EPC) clusters, are usually easy to recognize. However, in ambiguous cases the use of a MA marker that expresses selectively in EPCs may be needed. Here, we report that carboxypeptidase-M (CPM), a MA-differentiation marker, is preferentially induced in EPCs of all granuloma types studied, but not in resting MAs. As CPM is not expressed constitutively in MAs, this allows utilization of CPM-immunohistochemistry in diagnostics of minute granuloma detection when dense non-granulomatous MAs are also present. Despite this rule, hardly any detectable CPM was found in advanced/active tubercle caseous disease, albeit in early tuberculosis granuloma, MAs still expressed CPM. Indeed, in vitro both the CPM-protein and -mRNA became downregulated when MAs were infected with live mycobacteria. In vitro, MA-CPM transcript is neither induced remarkably by interferon-γ, known to cause classical MA activation, nor by IL-4, an alternative MA activator. Instead, CPM is selectively expressed in lipid-laden MAs, including the foam cells of atherosclerotic plaques, xanthomatous lesions and lipid pneumonias. By using serum, rich in lipids, and low-density lipoprotein (LDL) or VLDL, CPM upregulation could be reproduced in vitro in monocyte-derived MAs both at transcriptional and protein levels, and the increase is repressed under lipid-depleted conditions. The microarray analyses support the notion that CPM induction correlates with a robust progressive increase in CPM gene expression during monocyte to MA maturation and dendritic cell (DC) differentiation mediated by granulocyte–MA-colony-stimulating factor+IL-4. M-CSF alone also induced CPM. These results collectively indicate that CPM upregulation in MAs is preferentially associated with increased lipid uptake, and exposure to CSF, features of EPCs, also. Therefore, CPM-immunohistochemistry is useful for granuloma and foam MA detections in tissue sections. Furthermore, the present data offer CPM for the first time to be a novel marker and cellular player in lipid uptake and/or metabolism of MAs by promoting foam cell formation.
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spelling pubmed-32907622012-03-02 Carboxypeptidase-M is regulated by lipids and CSFs in macrophages and dendritic cells and expressed selectively in tissue granulomas and foam cells Tsakiris, Ioannis Torocsik, Daniel Gyongyosi, Adrienn Dozsa, Aniko Szatmari, Istvan Szanto, Attila Soos, Gyorgyike Nemes, Zoltan Igali, Laszlo Marton, Ildiko Takats, Zoltan Nagy, Laszlo Dezso, Balazs Lab Invest Research Article Granulomatous inflammations, characterized by the presence of activated macrophages (MAs) forming epithelioid cell (EPC) clusters, are usually easy to recognize. However, in ambiguous cases the use of a MA marker that expresses selectively in EPCs may be needed. Here, we report that carboxypeptidase-M (CPM), a MA-differentiation marker, is preferentially induced in EPCs of all granuloma types studied, but not in resting MAs. As CPM is not expressed constitutively in MAs, this allows utilization of CPM-immunohistochemistry in diagnostics of minute granuloma detection when dense non-granulomatous MAs are also present. Despite this rule, hardly any detectable CPM was found in advanced/active tubercle caseous disease, albeit in early tuberculosis granuloma, MAs still expressed CPM. Indeed, in vitro both the CPM-protein and -mRNA became downregulated when MAs were infected with live mycobacteria. In vitro, MA-CPM transcript is neither induced remarkably by interferon-γ, known to cause classical MA activation, nor by IL-4, an alternative MA activator. Instead, CPM is selectively expressed in lipid-laden MAs, including the foam cells of atherosclerotic plaques, xanthomatous lesions and lipid pneumonias. By using serum, rich in lipids, and low-density lipoprotein (LDL) or VLDL, CPM upregulation could be reproduced in vitro in monocyte-derived MAs both at transcriptional and protein levels, and the increase is repressed under lipid-depleted conditions. The microarray analyses support the notion that CPM induction correlates with a robust progressive increase in CPM gene expression during monocyte to MA maturation and dendritic cell (DC) differentiation mediated by granulocyte–MA-colony-stimulating factor+IL-4. M-CSF alone also induced CPM. These results collectively indicate that CPM upregulation in MAs is preferentially associated with increased lipid uptake, and exposure to CSF, features of EPCs, also. Therefore, CPM-immunohistochemistry is useful for granuloma and foam MA detections in tissue sections. Furthermore, the present data offer CPM for the first time to be a novel marker and cellular player in lipid uptake and/or metabolism of MAs by promoting foam cell formation. Nature Publishing Group 2012-03 2011-12-12 /pmc/articles/PMC3290762/ /pubmed/22157720 http://dx.doi.org/10.1038/labinvest.2011.168 Text en Copyright © 2012 United States and Canadian Academy of Pathology, Inc. http://creativecommons.org/licenses/by-nc-nd/3.0/ This work is licensed under the Creative Commons Attribution-NonCommercial-No Derivative Works 3.0 Unported License. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-nd/3.0/
spellingShingle Research Article
Tsakiris, Ioannis
Torocsik, Daniel
Gyongyosi, Adrienn
Dozsa, Aniko
Szatmari, Istvan
Szanto, Attila
Soos, Gyorgyike
Nemes, Zoltan
Igali, Laszlo
Marton, Ildiko
Takats, Zoltan
Nagy, Laszlo
Dezso, Balazs
Carboxypeptidase-M is regulated by lipids and CSFs in macrophages and dendritic cells and expressed selectively in tissue granulomas and foam cells
title Carboxypeptidase-M is regulated by lipids and CSFs in macrophages and dendritic cells and expressed selectively in tissue granulomas and foam cells
title_full Carboxypeptidase-M is regulated by lipids and CSFs in macrophages and dendritic cells and expressed selectively in tissue granulomas and foam cells
title_fullStr Carboxypeptidase-M is regulated by lipids and CSFs in macrophages and dendritic cells and expressed selectively in tissue granulomas and foam cells
title_full_unstemmed Carboxypeptidase-M is regulated by lipids and CSFs in macrophages and dendritic cells and expressed selectively in tissue granulomas and foam cells
title_short Carboxypeptidase-M is regulated by lipids and CSFs in macrophages and dendritic cells and expressed selectively in tissue granulomas and foam cells
title_sort carboxypeptidase-m is regulated by lipids and csfs in macrophages and dendritic cells and expressed selectively in tissue granulomas and foam cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3290762/
https://www.ncbi.nlm.nih.gov/pubmed/22157720
http://dx.doi.org/10.1038/labinvest.2011.168
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