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Platelet olfactory receptor activation limits platelet reactivity and growth of aortic aneurysms

As blood transitions from steady laminar flow (S-flow) in healthy arteries to disturbed flow (D-flow) in aneurysmal arteries, platelets are subjected to external forces. Biomechanical platelet activation is incompletely understood and is a potential mechanism behind antiplatelet medication resistanc...

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Autores principales: Morrell, Craig N., Mix, Doran, Aggarwal, Anu, Bhandari, Rohan, Godwin, Matthew, Owens, Phillip, Lyden, Sean P., Doyle, Adam, Krauel, Krystin, Rondina, Matthew T., Mohan, Amy, Lowenstein, Charles J., Shim, Sharon, Stauffer, Shaun, Josyula, Vara Prasad, Ture, Sara K., Yule, David I., Wagner, Larry E., Ashton, John M., Elbadawi, Ayman, Cameron, Scott J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Clinical Investigation 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9057618/
https://www.ncbi.nlm.nih.gov/pubmed/35324479
http://dx.doi.org/10.1172/JCI152373
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author Morrell, Craig N.
Mix, Doran
Aggarwal, Anu
Bhandari, Rohan
Godwin, Matthew
Owens, Phillip
Lyden, Sean P.
Doyle, Adam
Krauel, Krystin
Rondina, Matthew T.
Mohan, Amy
Lowenstein, Charles J.
Shim, Sharon
Stauffer, Shaun
Josyula, Vara Prasad
Ture, Sara K.
Yule, David I.
Wagner, Larry E.
Ashton, John M.
Elbadawi, Ayman
Cameron, Scott J.
author_facet Morrell, Craig N.
Mix, Doran
Aggarwal, Anu
Bhandari, Rohan
Godwin, Matthew
Owens, Phillip
Lyden, Sean P.
Doyle, Adam
Krauel, Krystin
Rondina, Matthew T.
Mohan, Amy
Lowenstein, Charles J.
Shim, Sharon
Stauffer, Shaun
Josyula, Vara Prasad
Ture, Sara K.
Yule, David I.
Wagner, Larry E.
Ashton, John M.
Elbadawi, Ayman
Cameron, Scott J.
author_sort Morrell, Craig N.
collection PubMed
description As blood transitions from steady laminar flow (S-flow) in healthy arteries to disturbed flow (D-flow) in aneurysmal arteries, platelets are subjected to external forces. Biomechanical platelet activation is incompletely understood and is a potential mechanism behind antiplatelet medication resistance. Although it has been demonstrated that antiplatelet drugs suppress the growth of abdominal aortic aneurysms (AAA) in patients, we found that a certain degree of platelet reactivity persisted in spite of aspirin therapy, urging us to consider additional antiplatelet therapeutic targets. Transcriptomic profiling of platelets from patients with AAA revealed upregulation of a signal transduction pathway common to olfactory receptors, and this was explored as a mediator of AAA progression. Healthy platelets subjected to D-flow ex vivo, platelets from patients with AAA, and platelets in murine models of AAA demonstrated increased membrane olfactory receptor 2L13 (OR2L13) expression. A drug screen identified a molecule activating platelet OR2L13, which limited both biochemical and biomechanical platelet activation as well as AAA growth. This observation was further supported by selective deletion of the OR2L13 ortholog in a murine model of AAA that accelerated aortic aneurysm growth and rupture. These studies revealed that olfactory receptors regulate platelet activation in AAA and aneurysmal progression through platelet-derived mediators of aortic remodeling.
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spelling pubmed-90576182022-05-04 Platelet olfactory receptor activation limits platelet reactivity and growth of aortic aneurysms Morrell, Craig N. Mix, Doran Aggarwal, Anu Bhandari, Rohan Godwin, Matthew Owens, Phillip Lyden, Sean P. Doyle, Adam Krauel, Krystin Rondina, Matthew T. Mohan, Amy Lowenstein, Charles J. Shim, Sharon Stauffer, Shaun Josyula, Vara Prasad Ture, Sara K. Yule, David I. Wagner, Larry E. Ashton, John M. Elbadawi, Ayman Cameron, Scott J. J Clin Invest Research Article As blood transitions from steady laminar flow (S-flow) in healthy arteries to disturbed flow (D-flow) in aneurysmal arteries, platelets are subjected to external forces. Biomechanical platelet activation is incompletely understood and is a potential mechanism behind antiplatelet medication resistance. Although it has been demonstrated that antiplatelet drugs suppress the growth of abdominal aortic aneurysms (AAA) in patients, we found that a certain degree of platelet reactivity persisted in spite of aspirin therapy, urging us to consider additional antiplatelet therapeutic targets. Transcriptomic profiling of platelets from patients with AAA revealed upregulation of a signal transduction pathway common to olfactory receptors, and this was explored as a mediator of AAA progression. Healthy platelets subjected to D-flow ex vivo, platelets from patients with AAA, and platelets in murine models of AAA demonstrated increased membrane olfactory receptor 2L13 (OR2L13) expression. A drug screen identified a molecule activating platelet OR2L13, which limited both biochemical and biomechanical platelet activation as well as AAA growth. This observation was further supported by selective deletion of the OR2L13 ortholog in a murine model of AAA that accelerated aortic aneurysm growth and rupture. These studies revealed that olfactory receptors regulate platelet activation in AAA and aneurysmal progression through platelet-derived mediators of aortic remodeling. American Society for Clinical Investigation 2022-05-02 2022-05-02 /pmc/articles/PMC9057618/ /pubmed/35324479 http://dx.doi.org/10.1172/JCI152373 Text en © 2022 Morrell et al. https://creativecommons.org/licenses/by/4.0/This work is licensed under the Creative Commons Attribution 4.0 International License. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Morrell, Craig N.
Mix, Doran
Aggarwal, Anu
Bhandari, Rohan
Godwin, Matthew
Owens, Phillip
Lyden, Sean P.
Doyle, Adam
Krauel, Krystin
Rondina, Matthew T.
Mohan, Amy
Lowenstein, Charles J.
Shim, Sharon
Stauffer, Shaun
Josyula, Vara Prasad
Ture, Sara K.
Yule, David I.
Wagner, Larry E.
Ashton, John M.
Elbadawi, Ayman
Cameron, Scott J.
Platelet olfactory receptor activation limits platelet reactivity and growth of aortic aneurysms
title Platelet olfactory receptor activation limits platelet reactivity and growth of aortic aneurysms
title_full Platelet olfactory receptor activation limits platelet reactivity and growth of aortic aneurysms
title_fullStr Platelet olfactory receptor activation limits platelet reactivity and growth of aortic aneurysms
title_full_unstemmed Platelet olfactory receptor activation limits platelet reactivity and growth of aortic aneurysms
title_short Platelet olfactory receptor activation limits platelet reactivity and growth of aortic aneurysms
title_sort platelet olfactory receptor activation limits platelet reactivity and growth of aortic aneurysms
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9057618/
https://www.ncbi.nlm.nih.gov/pubmed/35324479
http://dx.doi.org/10.1172/JCI152373
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