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The Maastricht Acquisition Platform for Studying Mechanisms of Cell–Matrix Crosstalk (MAPEX): An Interdisciplinary and Systems Approach towards Understanding Thoracic Aortic Disease

Current management guidelines for ascending thoracic aortic aneurysms (aTAA) recommend intervention once ascending or sinus diameter reaches 5–5.5 cm or shows a growth rate of >0.5 cm/year estimated from echo/CT/MRI. However, many aTAA dissections (aTAAD) occur in vessels with diameters below the...

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Autores principales: Ganizada, Berta H., Reesink, Koen D., Parikh, Shaiv, Ramaekers, Mitch J. F. G., Akbulut, Asim C., Saraber, Pepijn J. M. H., Debeij, Gijs P., Jaminon, Armand M., Natour, Ehsan, Lorusso, Roberto, Wildberger, Joachim E., Mees, Barend, Schurink, Geert Willem, Jacobs, Michael J., Cleutjens, Jack, Krapels, Ingrid, Gombert, Alexander, Maessen, Jos G., Accord, Ryan, Delhaas, Tammo, Schalla, Simon, Schurgers, Leon J., Bidar, Elham
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10452257/
https://www.ncbi.nlm.nih.gov/pubmed/37626592
http://dx.doi.org/10.3390/biomedicines11082095
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author Ganizada, Berta H.
Reesink, Koen D.
Parikh, Shaiv
Ramaekers, Mitch J. F. G.
Akbulut, Asim C.
Saraber, Pepijn J. M. H.
Debeij, Gijs P.
Jaminon, Armand M.
Natour, Ehsan
Lorusso, Roberto
Wildberger, Joachim E.
Mees, Barend
Schurink, Geert Willem
Jacobs, Michael J.
Cleutjens, Jack
Krapels, Ingrid
Gombert, Alexander
Maessen, Jos G.
Accord, Ryan
Delhaas, Tammo
Schalla, Simon
Schurgers, Leon J.
Bidar, Elham
author_facet Ganizada, Berta H.
Reesink, Koen D.
Parikh, Shaiv
Ramaekers, Mitch J. F. G.
Akbulut, Asim C.
Saraber, Pepijn J. M. H.
Debeij, Gijs P.
Jaminon, Armand M.
Natour, Ehsan
Lorusso, Roberto
Wildberger, Joachim E.
Mees, Barend
Schurink, Geert Willem
Jacobs, Michael J.
Cleutjens, Jack
Krapels, Ingrid
Gombert, Alexander
Maessen, Jos G.
Accord, Ryan
Delhaas, Tammo
Schalla, Simon
Schurgers, Leon J.
Bidar, Elham
author_sort Ganizada, Berta H.
collection PubMed
description Current management guidelines for ascending thoracic aortic aneurysms (aTAA) recommend intervention once ascending or sinus diameter reaches 5–5.5 cm or shows a growth rate of >0.5 cm/year estimated from echo/CT/MRI. However, many aTAA dissections (aTAAD) occur in vessels with diameters below the surgical intervention threshold of <55 mm. Moreover, during aTAA repair surgeons observe and experience considerable variations in tissue strength, thickness, and stiffness that appear not fully explained by patient risk factors. To improve the understanding of aTAA pathophysiology, we established a multi-disciplinary research infrastructure: The Maastricht acquisition platform for studying mechanisms of tissue–cell crosstalk (MAPEX). The explicit scientific focus of the platform is on the dynamic interactions between vascular smooth muscle cells and extracellular matrix (i.e., cell–matrix crosstalk), which play an essential role in aortic wall mechanical homeostasis. Accordingly, we consider pathophysiological influences of wall shear stress, wall stress, and smooth muscle cell phenotypic diversity and modulation. Co-registrations of hemodynamics and deep phenotyping at the histological and cell biology level are key innovations of our platform and are critical for understanding aneurysm formation and dissection at a fundamental level. The MAPEX platform enables the interpretation of the data in a well-defined clinical context and therefore has real potential for narrowing existing knowledge gaps. A better understanding of aortic mechanical homeostasis and its derangement may ultimately improve diagnostic and prognostic possibilities to identify and treat symptomatic and asymptomatic patients with existing and developing aneurysms.
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spelling pubmed-104522572023-08-26 The Maastricht Acquisition Platform for Studying Mechanisms of Cell–Matrix Crosstalk (MAPEX): An Interdisciplinary and Systems Approach towards Understanding Thoracic Aortic Disease Ganizada, Berta H. Reesink, Koen D. Parikh, Shaiv Ramaekers, Mitch J. F. G. Akbulut, Asim C. Saraber, Pepijn J. M. H. Debeij, Gijs P. Jaminon, Armand M. Natour, Ehsan Lorusso, Roberto Wildberger, Joachim E. Mees, Barend Schurink, Geert Willem Jacobs, Michael J. Cleutjens, Jack Krapels, Ingrid Gombert, Alexander Maessen, Jos G. Accord, Ryan Delhaas, Tammo Schalla, Simon Schurgers, Leon J. Bidar, Elham Biomedicines Study Protocol Current management guidelines for ascending thoracic aortic aneurysms (aTAA) recommend intervention once ascending or sinus diameter reaches 5–5.5 cm or shows a growth rate of >0.5 cm/year estimated from echo/CT/MRI. However, many aTAA dissections (aTAAD) occur in vessels with diameters below the surgical intervention threshold of <55 mm. Moreover, during aTAA repair surgeons observe and experience considerable variations in tissue strength, thickness, and stiffness that appear not fully explained by patient risk factors. To improve the understanding of aTAA pathophysiology, we established a multi-disciplinary research infrastructure: The Maastricht acquisition platform for studying mechanisms of tissue–cell crosstalk (MAPEX). The explicit scientific focus of the platform is on the dynamic interactions between vascular smooth muscle cells and extracellular matrix (i.e., cell–matrix crosstalk), which play an essential role in aortic wall mechanical homeostasis. Accordingly, we consider pathophysiological influences of wall shear stress, wall stress, and smooth muscle cell phenotypic diversity and modulation. Co-registrations of hemodynamics and deep phenotyping at the histological and cell biology level are key innovations of our platform and are critical for understanding aneurysm formation and dissection at a fundamental level. The MAPEX platform enables the interpretation of the data in a well-defined clinical context and therefore has real potential for narrowing existing knowledge gaps. A better understanding of aortic mechanical homeostasis and its derangement may ultimately improve diagnostic and prognostic possibilities to identify and treat symptomatic and asymptomatic patients with existing and developing aneurysms. MDPI 2023-07-25 /pmc/articles/PMC10452257/ /pubmed/37626592 http://dx.doi.org/10.3390/biomedicines11082095 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Study Protocol
Ganizada, Berta H.
Reesink, Koen D.
Parikh, Shaiv
Ramaekers, Mitch J. F. G.
Akbulut, Asim C.
Saraber, Pepijn J. M. H.
Debeij, Gijs P.
Jaminon, Armand M.
Natour, Ehsan
Lorusso, Roberto
Wildberger, Joachim E.
Mees, Barend
Schurink, Geert Willem
Jacobs, Michael J.
Cleutjens, Jack
Krapels, Ingrid
Gombert, Alexander
Maessen, Jos G.
Accord, Ryan
Delhaas, Tammo
Schalla, Simon
Schurgers, Leon J.
Bidar, Elham
The Maastricht Acquisition Platform for Studying Mechanisms of Cell–Matrix Crosstalk (MAPEX): An Interdisciplinary and Systems Approach towards Understanding Thoracic Aortic Disease
title The Maastricht Acquisition Platform for Studying Mechanisms of Cell–Matrix Crosstalk (MAPEX): An Interdisciplinary and Systems Approach towards Understanding Thoracic Aortic Disease
title_full The Maastricht Acquisition Platform for Studying Mechanisms of Cell–Matrix Crosstalk (MAPEX): An Interdisciplinary and Systems Approach towards Understanding Thoracic Aortic Disease
title_fullStr The Maastricht Acquisition Platform for Studying Mechanisms of Cell–Matrix Crosstalk (MAPEX): An Interdisciplinary and Systems Approach towards Understanding Thoracic Aortic Disease
title_full_unstemmed The Maastricht Acquisition Platform for Studying Mechanisms of Cell–Matrix Crosstalk (MAPEX): An Interdisciplinary and Systems Approach towards Understanding Thoracic Aortic Disease
title_short The Maastricht Acquisition Platform for Studying Mechanisms of Cell–Matrix Crosstalk (MAPEX): An Interdisciplinary and Systems Approach towards Understanding Thoracic Aortic Disease
title_sort maastricht acquisition platform for studying mechanisms of cell–matrix crosstalk (mapex): an interdisciplinary and systems approach towards understanding thoracic aortic disease
topic Study Protocol
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10452257/
https://www.ncbi.nlm.nih.gov/pubmed/37626592
http://dx.doi.org/10.3390/biomedicines11082095
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