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Matrix metalloproteinase-9 might affect adaptive immunity in non-ST segment elevation acute coronary syndromes by increasing CD31 cleavage on CD4+ T-cells

AIMS: In patients with acute coronary syndrome (ACS), the higher activity of effector T-cells suggests that mechanisms involving adaptive immunity dysregulation might play a role in coronary instability. The shedding of the functional CD31 domain 1–5 leads to uncontrolled lymphocyte activation. In e...

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Autores principales: Angelini, Giulia, Flego, Davide, Vinci, Ramona, Pedicino, Daniela, Trotta, Francesco, Ruggio, Aureliano, Piemontese, Giuseppe P, Galante, Domenico, Ponzo, Myriana, Biasucci, Luigi M, Liuzzo, Giovanna, Crea, Filippo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5915953/
https://www.ncbi.nlm.nih.gov/pubmed/29211854
http://dx.doi.org/10.1093/eurheartj/ehx684
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author Angelini, Giulia
Flego, Davide
Vinci, Ramona
Pedicino, Daniela
Trotta, Francesco
Ruggio, Aureliano
Piemontese, Giuseppe P
Galante, Domenico
Ponzo, Myriana
Biasucci, Luigi M
Liuzzo, Giovanna
Crea, Filippo
author_facet Angelini, Giulia
Flego, Davide
Vinci, Ramona
Pedicino, Daniela
Trotta, Francesco
Ruggio, Aureliano
Piemontese, Giuseppe P
Galante, Domenico
Ponzo, Myriana
Biasucci, Luigi M
Liuzzo, Giovanna
Crea, Filippo
author_sort Angelini, Giulia
collection PubMed
description AIMS: In patients with acute coronary syndrome (ACS), the higher activity of effector T-cells suggests that mechanisms involving adaptive immunity dysregulation might play a role in coronary instability. The shedding of the functional CD31 domain 1–5 leads to uncontrolled lymphocyte activation. In experimental models, matrix metalloproteinase-9 (MMP-9) has been implicated in endothelial CD31 cleavage. Interestingly, higher serum levels of MMP-9 have been observed in ACS. We aim to investigate the mechanisms underlying CD31 dysregulation in ACS. METHODS AND RESULTS: To assess CD31 cleavage on CD4+ T-cells, we analysed by flow cytometry CD4+ T-cells of 30 ACS, 25 stable angina (SA) patients, and 28 controls (CTRL) using two different CD31 antibodies that specifically recognize domain 1–5 or the non-functional membrane-proximal domain 6. The ratio between the domains was significantly lower in ACS than in SA and CTRL (P = 0.002 ACS vs. SA; P = 0.002 ACS vs. CTRL). After stimulation with anti-CD3/CD28, the 1–5/6 domain ratio was significantly lower in ACS than in SA (P = 0.005). ELISA of supernatants obtained from T-cell receptor-stimulated CD4+ T-cells showed higher production of MMP-9 in ACS than in SA (P < 0.001). CD31 domain 1–5 expression in activated CD4+ T-cells from ACS patients increased after treatment with a specific MMP-9 inhibitor (P = 0.042). CONCLUSION: Our study suggest that enhanced MMP-9 release plays a key role in determining the cleavage and shedding of the functional CD31 domain 1–5 in CD4+ T-cells of ACS patients. This mechanism might represent an important therapeutic target to modulate T-cell dysregulation in ACS.
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spelling pubmed-59159532018-04-30 Matrix metalloproteinase-9 might affect adaptive immunity in non-ST segment elevation acute coronary syndromes by increasing CD31 cleavage on CD4+ T-cells Angelini, Giulia Flego, Davide Vinci, Ramona Pedicino, Daniela Trotta, Francesco Ruggio, Aureliano Piemontese, Giuseppe P Galante, Domenico Ponzo, Myriana Biasucci, Luigi M Liuzzo, Giovanna Crea, Filippo Eur Heart J Basic Science AIMS: In patients with acute coronary syndrome (ACS), the higher activity of effector T-cells suggests that mechanisms involving adaptive immunity dysregulation might play a role in coronary instability. The shedding of the functional CD31 domain 1–5 leads to uncontrolled lymphocyte activation. In experimental models, matrix metalloproteinase-9 (MMP-9) has been implicated in endothelial CD31 cleavage. Interestingly, higher serum levels of MMP-9 have been observed in ACS. We aim to investigate the mechanisms underlying CD31 dysregulation in ACS. METHODS AND RESULTS: To assess CD31 cleavage on CD4+ T-cells, we analysed by flow cytometry CD4+ T-cells of 30 ACS, 25 stable angina (SA) patients, and 28 controls (CTRL) using two different CD31 antibodies that specifically recognize domain 1–5 or the non-functional membrane-proximal domain 6. The ratio between the domains was significantly lower in ACS than in SA and CTRL (P = 0.002 ACS vs. SA; P = 0.002 ACS vs. CTRL). After stimulation with anti-CD3/CD28, the 1–5/6 domain ratio was significantly lower in ACS than in SA (P = 0.005). ELISA of supernatants obtained from T-cell receptor-stimulated CD4+ T-cells showed higher production of MMP-9 in ACS than in SA (P < 0.001). CD31 domain 1–5 expression in activated CD4+ T-cells from ACS patients increased after treatment with a specific MMP-9 inhibitor (P = 0.042). CONCLUSION: Our study suggest that enhanced MMP-9 release plays a key role in determining the cleavage and shedding of the functional CD31 domain 1–5 in CD4+ T-cells of ACS patients. This mechanism might represent an important therapeutic target to modulate T-cell dysregulation in ACS. Oxford University Press 2018-04-01 2017-12-02 /pmc/articles/PMC5915953/ /pubmed/29211854 http://dx.doi.org/10.1093/eurheartj/ehx684 Text en © The Author 2017. Published by Oxford University Press on behalf of the European Society of Cardiology. http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Basic Science
Angelini, Giulia
Flego, Davide
Vinci, Ramona
Pedicino, Daniela
Trotta, Francesco
Ruggio, Aureliano
Piemontese, Giuseppe P
Galante, Domenico
Ponzo, Myriana
Biasucci, Luigi M
Liuzzo, Giovanna
Crea, Filippo
Matrix metalloproteinase-9 might affect adaptive immunity in non-ST segment elevation acute coronary syndromes by increasing CD31 cleavage on CD4+ T-cells
title Matrix metalloproteinase-9 might affect adaptive immunity in non-ST segment elevation acute coronary syndromes by increasing CD31 cleavage on CD4+ T-cells
title_full Matrix metalloproteinase-9 might affect adaptive immunity in non-ST segment elevation acute coronary syndromes by increasing CD31 cleavage on CD4+ T-cells
title_fullStr Matrix metalloproteinase-9 might affect adaptive immunity in non-ST segment elevation acute coronary syndromes by increasing CD31 cleavage on CD4+ T-cells
title_full_unstemmed Matrix metalloproteinase-9 might affect adaptive immunity in non-ST segment elevation acute coronary syndromes by increasing CD31 cleavage on CD4+ T-cells
title_short Matrix metalloproteinase-9 might affect adaptive immunity in non-ST segment elevation acute coronary syndromes by increasing CD31 cleavage on CD4+ T-cells
title_sort matrix metalloproteinase-9 might affect adaptive immunity in non-st segment elevation acute coronary syndromes by increasing cd31 cleavage on cd4+ t-cells
topic Basic Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5915953/
https://www.ncbi.nlm.nih.gov/pubmed/29211854
http://dx.doi.org/10.1093/eurheartj/ehx684
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