Ghrelin Pre-treatment Attenuates Local Oxidative Stress and End Organ Damage During Cardiopulmonary Bypass in Anesthetized Rats

Cardiopulmonary bypass (CPB) induced systemic inflammation significantly contributes to the development of postoperative complications, including respiratory failure, myocardial, renal and neurological dysfunction and ultimately can lead to failure of multiple organs. Ghrelin is a small endogenous p...

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Main Authors: Vijayakumar Sukumaran, Hirotsugu Tsuchimochi, Yutaka Fujii, Hiroshi Hosoda, Kenji Kangawa, Tsuyoshi Akiyama, Mikiyasu Shirai, Eisuke Tatsumi, James T. Pearson
Format: Article
Language:English
Published: Frontiers Media S.A. 2018-03-01
Series:Frontiers in Physiology
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Online Access:http://journal.frontiersin.org/article/10.3389/fphys.2018.00196/full
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spelling doaj-74b030406fcd428a9b3022e016bed60d2020-11-24T22:19:00ZengFrontiers Media S.A.Frontiers in Physiology1664-042X2018-03-01910.3389/fphys.2018.00196305336Ghrelin Pre-treatment Attenuates Local Oxidative Stress and End Organ Damage During Cardiopulmonary Bypass in Anesthetized RatsVijayakumar Sukumaran0Vijayakumar Sukumaran1Hirotsugu Tsuchimochi2Yutaka Fujii3Hiroshi Hosoda4Kenji Kangawa5Tsuyoshi Akiyama6Mikiyasu Shirai7Eisuke Tatsumi8James T. Pearson9James T. Pearson10Department of Artificial Organs, National Cerebral and Cardiovascular Centre Research Institute, Suita, JapanCardiac Physiology, National Cerebral and Cardiovascular Centre Research Institute, Suita, JapanCardiac Physiology, National Cerebral and Cardiovascular Centre Research Institute, Suita, JapanDepartment of Clinical Engineering and Medical Technology, Niigata University of Health and Welfare, Niigata, JapanRegenerative Medicine and Tissue Engineering, National Cerebral and Cardiovascular Centre Research Institute, Suita, JapanBiochemistry, National Cerebral and Cardiovascular Centre Research Institute, Suita, JapanCardiac Physiology, National Cerebral and Cardiovascular Centre Research Institute, Suita, JapanAdvanced Medical Research for Pulmonary Hypertension, National Cerebral and Cardiovascular Centre Research Institute, Suita, JapanDepartment of Artificial Organs, National Cerebral and Cardiovascular Centre Research Institute, Suita, JapanCardiac Physiology, National Cerebral and Cardiovascular Centre Research Institute, Suita, JapanDepartment of Physiology, Monash Biomedicine Discovery Institute, Monash University, Clayton, VIC, AustraliaCardiopulmonary bypass (CPB) induced systemic inflammation significantly contributes to the development of postoperative complications, including respiratory failure, myocardial, renal and neurological dysfunction and ultimately can lead to failure of multiple organs. Ghrelin is a small endogenous peptide with wide ranging physiological effects on metabolism and cardiovascular regulation. Herein, we investigated the protective effects of ghrelin against CPB-induced inflammatory reactions, oxidative stress and acute organ damage. Adult male Sprague Dawley rats randomly received vehicle (n = 5) or a bolus of ghrelin (150 μg/kg, sc, n = 5) and were subjected to CPB for 4 h (protocol 1). In separate rats, ghrelin pre-treatment (protocol 2) was compared to two doses of ghrelin (protocol 3) before and after CPB for 2 h followed by recovery for 2 h. Blood samples were taken prior to CPB, and following CPB at 2 h and 4 h. Organ nitrosative stress (3-nitrotyrosine) was measured by Western blotting. CPB induced leukocytosis with increased plasma levels of tumor necrosis factor-α and interleukin-6 indicating a potent inflammatory response. Ghrelin treatment significantly reduced plasma organ damage markers (lactate dehydrogenase, aspartate aminotransferase, alanine aminotransferase) and protein levels of 3-nitrotyrosine, particularly in the brain, lung and liver, but only partly suppressed inflammatory cell invasion and did not reduce proinflammatory cytokine production. Ghrelin partially attenuated the CPB-induced elevation of epinephrine and to a lesser extent norepinephrine when compared to the CPB saline group, while dopamine levels were completely suppressed. Ghrelin treatment sustained plasma levels of reduced glutathione and decreased glutathione disulphide when compared to CPB saline rats. These results suggest that even though ghrelin only partially inhibited the large CPB induced increase in catecholamines and organ macrophage infiltration, it reduced oxidative stress and subsequent cell damage. Pre-treatment with ghrelin might provide an effective adjunct therapy for preventing widespread CPB induced organ injury.http://journal.frontiersin.org/article/10.3389/fphys.2018.00196/fullghrelininflammationorgan damageoxidative stresscardiopulmonary bypass
collection DOAJ
language English
format Article
sources DOAJ
author Vijayakumar Sukumaran
Vijayakumar Sukumaran
Hirotsugu Tsuchimochi
Yutaka Fujii
Hiroshi Hosoda
Kenji Kangawa
Tsuyoshi Akiyama
Mikiyasu Shirai
Eisuke Tatsumi
James T. Pearson
James T. Pearson
spellingShingle Vijayakumar Sukumaran
Vijayakumar Sukumaran
Hirotsugu Tsuchimochi
Yutaka Fujii
Hiroshi Hosoda
Kenji Kangawa
Tsuyoshi Akiyama
Mikiyasu Shirai
Eisuke Tatsumi
James T. Pearson
James T. Pearson
Ghrelin Pre-treatment Attenuates Local Oxidative Stress and End Organ Damage During Cardiopulmonary Bypass in Anesthetized Rats
Frontiers in Physiology
ghrelin
inflammation
organ damage
oxidative stress
cardiopulmonary bypass
author_facet Vijayakumar Sukumaran
Vijayakumar Sukumaran
Hirotsugu Tsuchimochi
Yutaka Fujii
Hiroshi Hosoda
Kenji Kangawa
Tsuyoshi Akiyama
Mikiyasu Shirai
Eisuke Tatsumi
James T. Pearson
James T. Pearson
author_sort Vijayakumar Sukumaran
title Ghrelin Pre-treatment Attenuates Local Oxidative Stress and End Organ Damage During Cardiopulmonary Bypass in Anesthetized Rats
title_short Ghrelin Pre-treatment Attenuates Local Oxidative Stress and End Organ Damage During Cardiopulmonary Bypass in Anesthetized Rats
title_full Ghrelin Pre-treatment Attenuates Local Oxidative Stress and End Organ Damage During Cardiopulmonary Bypass in Anesthetized Rats
title_fullStr Ghrelin Pre-treatment Attenuates Local Oxidative Stress and End Organ Damage During Cardiopulmonary Bypass in Anesthetized Rats
title_full_unstemmed Ghrelin Pre-treatment Attenuates Local Oxidative Stress and End Organ Damage During Cardiopulmonary Bypass in Anesthetized Rats
title_sort ghrelin pre-treatment attenuates local oxidative stress and end organ damage during cardiopulmonary bypass in anesthetized rats
publisher Frontiers Media S.A.
series Frontiers in Physiology
issn 1664-042X
publishDate 2018-03-01
description Cardiopulmonary bypass (CPB) induced systemic inflammation significantly contributes to the development of postoperative complications, including respiratory failure, myocardial, renal and neurological dysfunction and ultimately can lead to failure of multiple organs. Ghrelin is a small endogenous peptide with wide ranging physiological effects on metabolism and cardiovascular regulation. Herein, we investigated the protective effects of ghrelin against CPB-induced inflammatory reactions, oxidative stress and acute organ damage. Adult male Sprague Dawley rats randomly received vehicle (n = 5) or a bolus of ghrelin (150 μg/kg, sc, n = 5) and were subjected to CPB for 4 h (protocol 1). In separate rats, ghrelin pre-treatment (protocol 2) was compared to two doses of ghrelin (protocol 3) before and after CPB for 2 h followed by recovery for 2 h. Blood samples were taken prior to CPB, and following CPB at 2 h and 4 h. Organ nitrosative stress (3-nitrotyrosine) was measured by Western blotting. CPB induced leukocytosis with increased plasma levels of tumor necrosis factor-α and interleukin-6 indicating a potent inflammatory response. Ghrelin treatment significantly reduced plasma organ damage markers (lactate dehydrogenase, aspartate aminotransferase, alanine aminotransferase) and protein levels of 3-nitrotyrosine, particularly in the brain, lung and liver, but only partly suppressed inflammatory cell invasion and did not reduce proinflammatory cytokine production. Ghrelin partially attenuated the CPB-induced elevation of epinephrine and to a lesser extent norepinephrine when compared to the CPB saline group, while dopamine levels were completely suppressed. Ghrelin treatment sustained plasma levels of reduced glutathione and decreased glutathione disulphide when compared to CPB saline rats. These results suggest that even though ghrelin only partially inhibited the large CPB induced increase in catecholamines and organ macrophage infiltration, it reduced oxidative stress and subsequent cell damage. Pre-treatment with ghrelin might provide an effective adjunct therapy for preventing widespread CPB induced organ injury.
topic ghrelin
inflammation
organ damage
oxidative stress
cardiopulmonary bypass
url http://journal.frontiersin.org/article/10.3389/fphys.2018.00196/full
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