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Can J Physiol Pharmacol ; 97(5): 345-351, 2019 May.
Article in English | MEDLINE | ID: mdl-29894643

ABSTRACT

We aimed to investigate whether the cardioprotection of sevoflurane against ischemia-reperfusion (IR) injury is via inhibiting endoplasmic reticulum stress. The rat in vivo model of myocardial IR injury was induced by ligation of the left anterior descending coronary artery. Sevoflurane significantly ameliorated the reduced cardiac function, increased infarct size, and elevated troponin I level and lactate dehydrogenase activity in plasma induced by IR injury. Sevoflurane suppressed the IR-induced myocardial apoptosis. The increased protein levels of glucose-regulated protein 78 and C/EBP homologous protein (CHOP) after myocardial IR were significantly reduced by sevoflurane. The protein levels of phosphorylated protein kinase RNA-like endoplasmic reticulum kinase (PERK), phosphorylated eukaryotic initiation factor 2 (eIF2α), and activating transcription factor 4 (ATF4) were significantly increased in rats with IR and attenuated by sevoflurane treatment. The phosphorylation of Akt was further activated by sevoflurane. The cardioprotection of sevoflurane could be blocked by wortmannin, a PI3K/Akt inhibitor. Our results suggest that the cardioprotection of sevoflurane against IR injury might be mediated by suppressing PERK/eIF2a/ATF4/CHOP signaling via activating the Akt pathway, which helps in understanding the novel mechanism of the cardioprotection of sevoflurane.


Subject(s)
Cardiotonic Agents/pharmacology , Endoplasmic Reticulum Stress/drug effects , Myocardial Reperfusion Injury/pathology , Myocardial Reperfusion Injury/prevention & control , Sevoflurane/pharmacology , Activating Transcription Factor 4/metabolism , Animals , Apoptosis/drug effects , Coronary Vessels/drug effects , Coronary Vessels/pathology , Eukaryotic Initiation Factor-2/metabolism , Heart/drug effects , Heart/physiopathology , Male , Myocardial Reperfusion Injury/metabolism , Myocardial Reperfusion Injury/physiopathology , Myocardium/metabolism , Myocardium/pathology , Proto-Oncogene Proteins c-akt/metabolism , Rats , Rats, Sprague-Dawley , Signal Transduction/drug effects , eIF-2 Kinase/metabolism
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