FTY720 prevents ischemia/reperfusion injury-associated arrhythmias in an ex vivo rat heart model via activation of Pak1/Akt signaling.

Recent studies demonstrated a role of sphingosine-1-phosphate (S1P) in the protection against the stress of ischemia/reperfusion (I/R) injury. In experiments reported here, we have investigated the signaling through the S1P cascade by FTY720, a sphingolipid drug candidate displaying structural simil...

Full description

Bibliographic Details
Main Authors: Egom, E, Ke, Y, Musa, H, Mohamed, T, Wang, T, Cartwright, E, Solaro, R, Lei, M
Format: Journal article
Language:English
Published: 2010
_version_ 1797075600301621248
author Egom, E
Ke, Y
Musa, H
Mohamed, T
Wang, T
Cartwright, E
Solaro, R
Lei, M
author_facet Egom, E
Ke, Y
Musa, H
Mohamed, T
Wang, T
Cartwright, E
Solaro, R
Lei, M
author_sort Egom, E
collection OXFORD
description Recent studies demonstrated a role of sphingosine-1-phosphate (S1P) in the protection against the stress of ischemia/reperfusion (I/R) injury. In experiments reported here, we have investigated the signaling through the S1P cascade by FTY720, a sphingolipid drug candidate displaying structural similarity to S1P, underlying the S1P cardioprotective effect. In ex vivo rat heart and isolated sinoatrial node models, FTY720 significantly prevented arrhythmic events associated with I/R injury including premature ventricular beats, VT, and sinus bradycardia as well as A-V conduction block. Real-time PCR and Western blot analysis demonstrated the expression of the S1P receptor transcript pools and corresponding proteins including S1P1, S1P2, and S1P3 in tissues dissected from sinoatrial node, atrium and ventricle. FTY720 (25 nM) significantly blunted the depression of the levels of phospho-Pak1 and phospho-Akt with ischemia and with reperfusion. There was a significant increase in phospho-Pak1 levels by 35%, 199%, and 205% after 5, 10, and 15 min of treatment with 25 nM FTY720 compared with control nontreated myocytes. However, there was no significant difference in the levels of total Pak1 expression between nontreated and FTY720 treated. Phospho-Akt levels were increased by 44%, 63%, and 61% after 5, 10, and 15 min of treatment with 25 nM FTY720, respectively. Our data provide the first evidence that FTY720 prevents I/R injury-associated arrhythmias and indicate its potential significance as an important and new agent protecting against I/R injury. Our data also indicate, for the first time, that the cardioprotective effect of FTY720 is likely to involve activation of signaling through the Pak1.
first_indexed 2024-03-06T23:52:35Z
format Journal article
id oxford-uuid:731e8f33-31ab-4f90-9ed5-d706277e0ac6
institution University of Oxford
language English
last_indexed 2024-03-06T23:52:35Z
publishDate 2010
record_format dspace
spelling oxford-uuid:731e8f33-31ab-4f90-9ed5-d706277e0ac62022-03-26T19:54:24ZFTY720 prevents ischemia/reperfusion injury-associated arrhythmias in an ex vivo rat heart model via activation of Pak1/Akt signaling.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:731e8f33-31ab-4f90-9ed5-d706277e0ac6EnglishSymplectic Elements at Oxford2010Egom, EKe, YMusa, HMohamed, TWang, TCartwright, ESolaro, RLei, MRecent studies demonstrated a role of sphingosine-1-phosphate (S1P) in the protection against the stress of ischemia/reperfusion (I/R) injury. In experiments reported here, we have investigated the signaling through the S1P cascade by FTY720, a sphingolipid drug candidate displaying structural similarity to S1P, underlying the S1P cardioprotective effect. In ex vivo rat heart and isolated sinoatrial node models, FTY720 significantly prevented arrhythmic events associated with I/R injury including premature ventricular beats, VT, and sinus bradycardia as well as A-V conduction block. Real-time PCR and Western blot analysis demonstrated the expression of the S1P receptor transcript pools and corresponding proteins including S1P1, S1P2, and S1P3 in tissues dissected from sinoatrial node, atrium and ventricle. FTY720 (25 nM) significantly blunted the depression of the levels of phospho-Pak1 and phospho-Akt with ischemia and with reperfusion. There was a significant increase in phospho-Pak1 levels by 35%, 199%, and 205% after 5, 10, and 15 min of treatment with 25 nM FTY720 compared with control nontreated myocytes. However, there was no significant difference in the levels of total Pak1 expression between nontreated and FTY720 treated. Phospho-Akt levels were increased by 44%, 63%, and 61% after 5, 10, and 15 min of treatment with 25 nM FTY720, respectively. Our data provide the first evidence that FTY720 prevents I/R injury-associated arrhythmias and indicate its potential significance as an important and new agent protecting against I/R injury. Our data also indicate, for the first time, that the cardioprotective effect of FTY720 is likely to involve activation of signaling through the Pak1.
spellingShingle Egom, E
Ke, Y
Musa, H
Mohamed, T
Wang, T
Cartwright, E
Solaro, R
Lei, M
FTY720 prevents ischemia/reperfusion injury-associated arrhythmias in an ex vivo rat heart model via activation of Pak1/Akt signaling.
title FTY720 prevents ischemia/reperfusion injury-associated arrhythmias in an ex vivo rat heart model via activation of Pak1/Akt signaling.
title_full FTY720 prevents ischemia/reperfusion injury-associated arrhythmias in an ex vivo rat heart model via activation of Pak1/Akt signaling.
title_fullStr FTY720 prevents ischemia/reperfusion injury-associated arrhythmias in an ex vivo rat heart model via activation of Pak1/Akt signaling.
title_full_unstemmed FTY720 prevents ischemia/reperfusion injury-associated arrhythmias in an ex vivo rat heart model via activation of Pak1/Akt signaling.
title_short FTY720 prevents ischemia/reperfusion injury-associated arrhythmias in an ex vivo rat heart model via activation of Pak1/Akt signaling.
title_sort fty720 prevents ischemia reperfusion injury associated arrhythmias in an ex vivo rat heart model via activation of pak1 akt signaling
work_keys_str_mv AT egome fty720preventsischemiareperfusioninjuryassociatedarrhythmiasinanexvivoratheartmodelviaactivationofpak1aktsignaling
AT key fty720preventsischemiareperfusioninjuryassociatedarrhythmiasinanexvivoratheartmodelviaactivationofpak1aktsignaling
AT musah fty720preventsischemiareperfusioninjuryassociatedarrhythmiasinanexvivoratheartmodelviaactivationofpak1aktsignaling
AT mohamedt fty720preventsischemiareperfusioninjuryassociatedarrhythmiasinanexvivoratheartmodelviaactivationofpak1aktsignaling
AT wangt fty720preventsischemiareperfusioninjuryassociatedarrhythmiasinanexvivoratheartmodelviaactivationofpak1aktsignaling
AT cartwrighte fty720preventsischemiareperfusioninjuryassociatedarrhythmiasinanexvivoratheartmodelviaactivationofpak1aktsignaling
AT solaror fty720preventsischemiareperfusioninjuryassociatedarrhythmiasinanexvivoratheartmodelviaactivationofpak1aktsignaling
AT leim fty720preventsischemiareperfusioninjuryassociatedarrhythmiasinanexvivoratheartmodelviaactivationofpak1aktsignaling