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J Cardiovasc Pharmacol ; 73(3): 186-194, 2019 03.
Article in English | MEDLINE | ID: mdl-30839512

ABSTRACT

OBJECTIVE: To investigate whether phenylephrine (PE) inhibits sepsis-induced cardiac dysfunction, cardiac inflammation, and mitochondrial injury through the PI3K/Akt signaling pathway. METHODS: A rat model of sepsis was established by cecal ligation and puncture. PE and/or wortmannin (a PI3K inhibitor) were administered to investigate the role of PI3K/Akt signaling in mediating the effects of PE on inhibiting sepsis-induced cardiac dysfunction, cardiac inflammation, and mitochondrial injury. Hematoxylin-eosin staining, echocardiography, and Langendorff system were used to examine the myocardial injury and function. The concentrations of TNF-α and IL-6 were analyzed by enzyme-linked immunosorbent assay. Intercellular cell adhesion molecule-1 (ICAM-1), vascular cell adhesion molecule-1 (VCAM-1), myeloperoxidase, mitochondria-related fusion/fission proteins, and PI3K/Akt signaling pathway-associated proteins were analyzed by Western blotting. RESULTS: PE improved the cardiac function and survival in septic rats. PE decreased TNF-α, IL-6, ICAM-1, VCAM-1, and myeloperoxidase contents in the myocardium of septic rats. Meanwhile, PE increased the fusion-related proteins and decreased the fission-related proteins in the myocardial mitochondria of septic rats. On the other hand, PE activated the PI3K/Akt signaling pathway in the cecal ligation and puncture-treated rats, and all the protective effects of PE were abolished by wortmannin. CONCLUSIONS: PE attenuated sepsis-induced cardiac dysfunction, cardiac inflammation, and mitochondrial injury through the PI3K/Akt signaling pathway.


Subject(s)
Mitochondria, Heart/drug effects , Mitochondrial Dynamics/drug effects , Myocarditis/prevention & control , Myocytes, Cardiac/drug effects , Phenylephrine/pharmacology , Phosphatidylinositol 3-Kinase/metabolism , Proto-Oncogene Proteins c-akt/metabolism , Sepsis/drug therapy , Animals , Disease Models, Animal , Inflammation Mediators/metabolism , Isolated Heart Preparation , Male , Mitochondria, Heart/enzymology , Mitochondria, Heart/pathology , Mitochondrial Proteins/metabolism , Myocarditis/enzymology , Myocarditis/etiology , Myocarditis/pathology , Myocytes, Cardiac/enzymology , Myocytes, Cardiac/pathology , Peroxidase/metabolism , Rats, Sprague-Dawley , Sepsis/complications , Signal Transduction , Stroke Volume/drug effects , Ventricular Function, Left
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