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Inflammatory Micro-Environmental Cues of Human Atherothrombotic Arteries Confer to Vascular Smooth Muscle Cells the Capacity to Trigger Lymphoid Neogenesis

BACKGROUND: Experimental atherosclerosis is characterized by the formation of tertiary lymphoid structures (TLOs) within the adventitial layer, which involves the chemokine-expressing aortic smooth muscle cells (SMCs). TLOs have also been described around human atherothrombotic arteries but the mech...

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Autores principales: Guedj, Kevin, Khallou-Laschet, Jamila, Clement, Marc, Morvan, Marion, Delbosc, Sandrine, Gaston, Anh-Thu, Andreata, Francesco, Castier, Yves, Deschildre, Catherine, Michel, Jean-Baptiste, Caligiuri, Giuseppina, Nicoletti, Antonino
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4280229/
https://www.ncbi.nlm.nih.gov/pubmed/25548922
http://dx.doi.org/10.1371/journal.pone.0116295
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author Guedj, Kevin
Khallou-Laschet, Jamila
Clement, Marc
Morvan, Marion
Delbosc, Sandrine
Gaston, Anh-Thu
Andreata, Francesco
Castier, Yves
Deschildre, Catherine
Michel, Jean-Baptiste
Caligiuri, Giuseppina
Nicoletti, Antonino
author_facet Guedj, Kevin
Khallou-Laschet, Jamila
Clement, Marc
Morvan, Marion
Delbosc, Sandrine
Gaston, Anh-Thu
Andreata, Francesco
Castier, Yves
Deschildre, Catherine
Michel, Jean-Baptiste
Caligiuri, Giuseppina
Nicoletti, Antonino
author_sort Guedj, Kevin
collection PubMed
description BACKGROUND: Experimental atherosclerosis is characterized by the formation of tertiary lymphoid structures (TLOs) within the adventitial layer, which involves the chemokine-expressing aortic smooth muscle cells (SMCs). TLOs have also been described around human atherothrombotic arteries but the mechanisms of their formation remain poorly investigated. Herein, we tested whether human vascular SMCs play the role of chemokine-expressing cells that would trigger the formation of TLOs in atherothrombotic arteries. RESULTS: We first characterized, by flow cytometry and immunofluorescence analysis, the prevalence and cell composition of TLOs in human abdominal aneurysms of the aorta (AAAs), an evolutive form of atherothrombosis. Chemotaxis experiments revealed that the conditioned medium from AAA tissues recruited significantly more B and T lymphocytes than the conditioned medium from control (N-AAA) tissues. This was associated with an increase in the concentration of CXCL13, CXCL16, CCL19, CCL20, and CCL21 chemokines in the conditioned medium from AAA tissues. Immunofluorescence analysis of AAA cryosections revealed that α-SMA-positive SMCs were the main contributors to the chemokine production. These results were confirmed by RT-qPCR assays where we found that primary vascular SMCs from AAA tissues expressed significantly more chemokines than SMCs from N-AAA. Finally, in vitro experiments demonstrated that the inflammatory cytokines found to be increased in the conditioned medium from AAA were able to trigger the production of chemokines by primary SMCs. CONCLUSION: Together, these results suggest that human vascular SMCs in atherothrombotic arteries, in response to inflammatory signals, are converted into chemokine-expressing cells that trigger the recruitment of immune cells and the formation of aortic TLOs.
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spelling pubmed-42802292015-01-07 Inflammatory Micro-Environmental Cues of Human Atherothrombotic Arteries Confer to Vascular Smooth Muscle Cells the Capacity to Trigger Lymphoid Neogenesis Guedj, Kevin Khallou-Laschet, Jamila Clement, Marc Morvan, Marion Delbosc, Sandrine Gaston, Anh-Thu Andreata, Francesco Castier, Yves Deschildre, Catherine Michel, Jean-Baptiste Caligiuri, Giuseppina Nicoletti, Antonino PLoS One Research Article BACKGROUND: Experimental atherosclerosis is characterized by the formation of tertiary lymphoid structures (TLOs) within the adventitial layer, which involves the chemokine-expressing aortic smooth muscle cells (SMCs). TLOs have also been described around human atherothrombotic arteries but the mechanisms of their formation remain poorly investigated. Herein, we tested whether human vascular SMCs play the role of chemokine-expressing cells that would trigger the formation of TLOs in atherothrombotic arteries. RESULTS: We first characterized, by flow cytometry and immunofluorescence analysis, the prevalence and cell composition of TLOs in human abdominal aneurysms of the aorta (AAAs), an evolutive form of atherothrombosis. Chemotaxis experiments revealed that the conditioned medium from AAA tissues recruited significantly more B and T lymphocytes than the conditioned medium from control (N-AAA) tissues. This was associated with an increase in the concentration of CXCL13, CXCL16, CCL19, CCL20, and CCL21 chemokines in the conditioned medium from AAA tissues. Immunofluorescence analysis of AAA cryosections revealed that α-SMA-positive SMCs were the main contributors to the chemokine production. These results were confirmed by RT-qPCR assays where we found that primary vascular SMCs from AAA tissues expressed significantly more chemokines than SMCs from N-AAA. Finally, in vitro experiments demonstrated that the inflammatory cytokines found to be increased in the conditioned medium from AAA were able to trigger the production of chemokines by primary SMCs. CONCLUSION: Together, these results suggest that human vascular SMCs in atherothrombotic arteries, in response to inflammatory signals, are converted into chemokine-expressing cells that trigger the recruitment of immune cells and the formation of aortic TLOs. Public Library of Science 2014-12-30 /pmc/articles/PMC4280229/ /pubmed/25548922 http://dx.doi.org/10.1371/journal.pone.0116295 Text en © 2014 Guedj et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Guedj, Kevin
Khallou-Laschet, Jamila
Clement, Marc
Morvan, Marion
Delbosc, Sandrine
Gaston, Anh-Thu
Andreata, Francesco
Castier, Yves
Deschildre, Catherine
Michel, Jean-Baptiste
Caligiuri, Giuseppina
Nicoletti, Antonino
Inflammatory Micro-Environmental Cues of Human Atherothrombotic Arteries Confer to Vascular Smooth Muscle Cells the Capacity to Trigger Lymphoid Neogenesis
title Inflammatory Micro-Environmental Cues of Human Atherothrombotic Arteries Confer to Vascular Smooth Muscle Cells the Capacity to Trigger Lymphoid Neogenesis
title_full Inflammatory Micro-Environmental Cues of Human Atherothrombotic Arteries Confer to Vascular Smooth Muscle Cells the Capacity to Trigger Lymphoid Neogenesis
title_fullStr Inflammatory Micro-Environmental Cues of Human Atherothrombotic Arteries Confer to Vascular Smooth Muscle Cells the Capacity to Trigger Lymphoid Neogenesis
title_full_unstemmed Inflammatory Micro-Environmental Cues of Human Atherothrombotic Arteries Confer to Vascular Smooth Muscle Cells the Capacity to Trigger Lymphoid Neogenesis
title_short Inflammatory Micro-Environmental Cues of Human Atherothrombotic Arteries Confer to Vascular Smooth Muscle Cells the Capacity to Trigger Lymphoid Neogenesis
title_sort inflammatory micro-environmental cues of human atherothrombotic arteries confer to vascular smooth muscle cells the capacity to trigger lymphoid neogenesis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4280229/
https://www.ncbi.nlm.nih.gov/pubmed/25548922
http://dx.doi.org/10.1371/journal.pone.0116295
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