Cargando…
Novel Role for the AnxA1-Fpr2/ALX Signaling Axis as a Key Regulator of Platelet Function to Promote Resolution of Inflammation
BACKGROUND: Ischemia reperfusion injury (I/RI) is a common complication of cardiovascular diseases. Resolution of detrimental I/RI-generated prothrombotic and proinflammatory responses is essential to restore homeostasis. Platelets play a crucial part in the integration of thrombosis and inflammatio...
Autores principales: | , , , , , , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Lippincott Williams & Wilkins
2019
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6687438/ https://www.ncbi.nlm.nih.gov/pubmed/31154815 http://dx.doi.org/10.1161/CIRCULATIONAHA.118.039345 |
_version_ | 1783442731875434496 |
---|---|
author | Senchenkova, Elena Y. Ansari, Junaid Becker, Felix Vital, Shantel A. Al-Yafeai, Zaki Sparkenbaugh, Erica M. Pawlinski, Rafal Stokes, Karen Y. Carroll, Jennifer L. Dragoi, Ana-Maria Qin, Cheng Xue Ritchie, Rebecca H. Sun, Hai Cuellar-Saenz, Hugo H. Rubinstein, Mara R. Han, Yiping W. Orr, A. Wayne Perretti, Mauro Granger, D. Neil Gavins, Felicity N.E. |
author_facet | Senchenkova, Elena Y. Ansari, Junaid Becker, Felix Vital, Shantel A. Al-Yafeai, Zaki Sparkenbaugh, Erica M. Pawlinski, Rafal Stokes, Karen Y. Carroll, Jennifer L. Dragoi, Ana-Maria Qin, Cheng Xue Ritchie, Rebecca H. Sun, Hai Cuellar-Saenz, Hugo H. Rubinstein, Mara R. Han, Yiping W. Orr, A. Wayne Perretti, Mauro Granger, D. Neil Gavins, Felicity N.E. |
author_sort | Senchenkova, Elena Y. |
collection | PubMed |
description | BACKGROUND: Ischemia reperfusion injury (I/RI) is a common complication of cardiovascular diseases. Resolution of detrimental I/RI-generated prothrombotic and proinflammatory responses is essential to restore homeostasis. Platelets play a crucial part in the integration of thrombosis and inflammation. Their role as participants in the resolution of thromboinflammation is underappreciated; therefore we used pharmacological and genetic approaches, coupled with murine and clinical samples, to uncover key concepts underlying this role. METHODS: Middle cerebral artery occlusion with reperfusion was performed in wild-type or annexin A1 (AnxA1) knockout (AnxA1(−/−)) mice. Fluorescence intravital microscopy was used to visualize cellular trafficking and to monitor light/dye–induced thrombosis. The mice were treated with vehicle, AnxA1 (3.3 mg/kg), WRW4 (1.8 mg/kg), or all 3, and the effect of AnxA1 was determined in vivo and in vitro. RESULTS: Intravital microscopy revealed heightened platelet adherence and aggregate formation post I/RI, which were further exacerbated in AnxA1(−/−) mice. AnxA1 administration regulated platelet function directly (eg, via reducing thromboxane B(2) and modulating phosphatidylserine expression) to promote cerebral protection post-I/RI and act as an effective preventative strategy for stroke by reducing platelet activation, aggregate formation, and cerebral thrombosis, a prerequisite for ischemic stroke. To translate these findings into a clinical setting, we show that AnxA1 plasma levels are reduced in human and murine stroke and that AnxA1 is able to act on human platelets, suppressing classic thrombin-induced inside-out signaling events (eg, Akt activation, intracellular calcium release, and Ras-associated protein 1 [Rap1] expression) to decrease α(IIb)β(3) activation without altering its surface expression. AnxA1 also selectively modifies cell surface determinants (eg, phosphatidylserine) to promote platelet phagocytosis by neutrophils, thereby driving active resolution. (n=5–13 mice/group or 7–10 humans/group.) CONCLUSIONS: AnxA1 affords protection by altering the platelet phenotype in cerebral I/RI from propathogenic to regulatory and reducing the propensity for platelets to aggregate and cause thrombosis by affecting integrin (α(IIb)β(3)) activation, a previously unknown phenomenon. Thus, our data reveal a novel multifaceted role for AnxA1 to act both as a therapeutic and a prophylactic drug via its ability to promote endogenous proresolving, antithromboinflammatory circuits in cerebral I/RI. Collectively, these results further advance our knowledge and understanding in the field of platelet and resolution biology. |
format | Online Article Text |
id | pubmed-6687438 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2019 |
publisher | Lippincott Williams & Wilkins |
record_format | MEDLINE/PubMed |
spelling | pubmed-66874382019-09-16 Novel Role for the AnxA1-Fpr2/ALX Signaling Axis as a Key Regulator of Platelet Function to Promote Resolution of Inflammation Senchenkova, Elena Y. Ansari, Junaid Becker, Felix Vital, Shantel A. Al-Yafeai, Zaki Sparkenbaugh, Erica M. Pawlinski, Rafal Stokes, Karen Y. Carroll, Jennifer L. Dragoi, Ana-Maria Qin, Cheng Xue Ritchie, Rebecca H. Sun, Hai Cuellar-Saenz, Hugo H. Rubinstein, Mara R. Han, Yiping W. Orr, A. Wayne Perretti, Mauro Granger, D. Neil Gavins, Felicity N.E. Circulation Original Research Articles BACKGROUND: Ischemia reperfusion injury (I/RI) is a common complication of cardiovascular diseases. Resolution of detrimental I/RI-generated prothrombotic and proinflammatory responses is essential to restore homeostasis. Platelets play a crucial part in the integration of thrombosis and inflammation. Their role as participants in the resolution of thromboinflammation is underappreciated; therefore we used pharmacological and genetic approaches, coupled with murine and clinical samples, to uncover key concepts underlying this role. METHODS: Middle cerebral artery occlusion with reperfusion was performed in wild-type or annexin A1 (AnxA1) knockout (AnxA1(−/−)) mice. Fluorescence intravital microscopy was used to visualize cellular trafficking and to monitor light/dye–induced thrombosis. The mice were treated with vehicle, AnxA1 (3.3 mg/kg), WRW4 (1.8 mg/kg), or all 3, and the effect of AnxA1 was determined in vivo and in vitro. RESULTS: Intravital microscopy revealed heightened platelet adherence and aggregate formation post I/RI, which were further exacerbated in AnxA1(−/−) mice. AnxA1 administration regulated platelet function directly (eg, via reducing thromboxane B(2) and modulating phosphatidylserine expression) to promote cerebral protection post-I/RI and act as an effective preventative strategy for stroke by reducing platelet activation, aggregate formation, and cerebral thrombosis, a prerequisite for ischemic stroke. To translate these findings into a clinical setting, we show that AnxA1 plasma levels are reduced in human and murine stroke and that AnxA1 is able to act on human platelets, suppressing classic thrombin-induced inside-out signaling events (eg, Akt activation, intracellular calcium release, and Ras-associated protein 1 [Rap1] expression) to decrease α(IIb)β(3) activation without altering its surface expression. AnxA1 also selectively modifies cell surface determinants (eg, phosphatidylserine) to promote platelet phagocytosis by neutrophils, thereby driving active resolution. (n=5–13 mice/group or 7–10 humans/group.) CONCLUSIONS: AnxA1 affords protection by altering the platelet phenotype in cerebral I/RI from propathogenic to regulatory and reducing the propensity for platelets to aggregate and cause thrombosis by affecting integrin (α(IIb)β(3)) activation, a previously unknown phenomenon. Thus, our data reveal a novel multifaceted role for AnxA1 to act both as a therapeutic and a prophylactic drug via its ability to promote endogenous proresolving, antithromboinflammatory circuits in cerebral I/RI. Collectively, these results further advance our knowledge and understanding in the field of platelet and resolution biology. Lippincott Williams & Wilkins 2019-07-23 2019-06-03 /pmc/articles/PMC6687438/ /pubmed/31154815 http://dx.doi.org/10.1161/CIRCULATIONAHA.118.039345 Text en © 2019 The Authors. Circulation is published on behalf of the American Heart Association, Inc., by Wolters Kluwer Health, Inc. This is an open access article under the terms of the Creative Commons Attribution (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution, and reproduction in any medium, provided that the original work is properly cited. |
spellingShingle | Original Research Articles Senchenkova, Elena Y. Ansari, Junaid Becker, Felix Vital, Shantel A. Al-Yafeai, Zaki Sparkenbaugh, Erica M. Pawlinski, Rafal Stokes, Karen Y. Carroll, Jennifer L. Dragoi, Ana-Maria Qin, Cheng Xue Ritchie, Rebecca H. Sun, Hai Cuellar-Saenz, Hugo H. Rubinstein, Mara R. Han, Yiping W. Orr, A. Wayne Perretti, Mauro Granger, D. Neil Gavins, Felicity N.E. Novel Role for the AnxA1-Fpr2/ALX Signaling Axis as a Key Regulator of Platelet Function to Promote Resolution of Inflammation |
title | Novel Role for the AnxA1-Fpr2/ALX Signaling Axis as a Key Regulator of Platelet Function to Promote Resolution of Inflammation |
title_full | Novel Role for the AnxA1-Fpr2/ALX Signaling Axis as a Key Regulator of Platelet Function to Promote Resolution of Inflammation |
title_fullStr | Novel Role for the AnxA1-Fpr2/ALX Signaling Axis as a Key Regulator of Platelet Function to Promote Resolution of Inflammation |
title_full_unstemmed | Novel Role for the AnxA1-Fpr2/ALX Signaling Axis as a Key Regulator of Platelet Function to Promote Resolution of Inflammation |
title_short | Novel Role for the AnxA1-Fpr2/ALX Signaling Axis as a Key Regulator of Platelet Function to Promote Resolution of Inflammation |
title_sort | novel role for the anxa1-fpr2/alx signaling axis as a key regulator of platelet function to promote resolution of inflammation |
topic | Original Research Articles |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6687438/ https://www.ncbi.nlm.nih.gov/pubmed/31154815 http://dx.doi.org/10.1161/CIRCULATIONAHA.118.039345 |
work_keys_str_mv | AT senchenkovaelenay novelrolefortheanxa1fpr2alxsignalingaxisasakeyregulatorofplateletfunctiontopromoteresolutionofinflammation AT ansarijunaid novelrolefortheanxa1fpr2alxsignalingaxisasakeyregulatorofplateletfunctiontopromoteresolutionofinflammation AT beckerfelix novelrolefortheanxa1fpr2alxsignalingaxisasakeyregulatorofplateletfunctiontopromoteresolutionofinflammation AT vitalshantela novelrolefortheanxa1fpr2alxsignalingaxisasakeyregulatorofplateletfunctiontopromoteresolutionofinflammation AT alyafeaizaki novelrolefortheanxa1fpr2alxsignalingaxisasakeyregulatorofplateletfunctiontopromoteresolutionofinflammation AT sparkenbaughericam novelrolefortheanxa1fpr2alxsignalingaxisasakeyregulatorofplateletfunctiontopromoteresolutionofinflammation AT pawlinskirafal novelrolefortheanxa1fpr2alxsignalingaxisasakeyregulatorofplateletfunctiontopromoteresolutionofinflammation AT stokeskareny novelrolefortheanxa1fpr2alxsignalingaxisasakeyregulatorofplateletfunctiontopromoteresolutionofinflammation AT carrolljenniferl novelrolefortheanxa1fpr2alxsignalingaxisasakeyregulatorofplateletfunctiontopromoteresolutionofinflammation AT dragoianamaria novelrolefortheanxa1fpr2alxsignalingaxisasakeyregulatorofplateletfunctiontopromoteresolutionofinflammation AT qinchengxue novelrolefortheanxa1fpr2alxsignalingaxisasakeyregulatorofplateletfunctiontopromoteresolutionofinflammation AT ritchierebeccah novelrolefortheanxa1fpr2alxsignalingaxisasakeyregulatorofplateletfunctiontopromoteresolutionofinflammation AT sunhai novelrolefortheanxa1fpr2alxsignalingaxisasakeyregulatorofplateletfunctiontopromoteresolutionofinflammation AT cuellarsaenzhugoh novelrolefortheanxa1fpr2alxsignalingaxisasakeyregulatorofplateletfunctiontopromoteresolutionofinflammation AT rubinsteinmarar novelrolefortheanxa1fpr2alxsignalingaxisasakeyregulatorofplateletfunctiontopromoteresolutionofinflammation AT hanyipingw novelrolefortheanxa1fpr2alxsignalingaxisasakeyregulatorofplateletfunctiontopromoteresolutionofinflammation AT orrawayne novelrolefortheanxa1fpr2alxsignalingaxisasakeyregulatorofplateletfunctiontopromoteresolutionofinflammation AT perrettimauro novelrolefortheanxa1fpr2alxsignalingaxisasakeyregulatorofplateletfunctiontopromoteresolutionofinflammation AT grangerdneil novelrolefortheanxa1fpr2alxsignalingaxisasakeyregulatorofplateletfunctiontopromoteresolutionofinflammation AT gavinsfelicityne novelrolefortheanxa1fpr2alxsignalingaxisasakeyregulatorofplateletfunctiontopromoteresolutionofinflammation |