Inhibiting Cardiac Mitochondrial Fatty Acid Oxidation Attenuates Myocardial Injury in a Rat Model of Cardiac Arrest

被引:8
作者
Wang, Peng [1 ,2 ]
Zhang, Fan [3 ]
Pan, Liming [3 ]
Tan, Yunke [1 ,2 ]
Song, Fengqing [1 ,2 ]
Ge, Qiulin [1 ,2 ]
Huang, Zitong [1 ,2 ]
Yao, Lan [3 ]
机构
[1] Sun Yat Sen Univ, Sun Yat Sen Mem Hosp, Dept Emergency Med, Guangzhou, Peoples R China
[2] Sun Yat Sen Univ, Inst Cardiopulm Cerebral Resuscitat, Guangzhou, Peoples R China
[3] Sun Yat Sen Univ, Affiliated Hosp 5, Dept Emergency Med, Zhuhai, Peoples R China
基金
中国国家自然科学基金;
关键词
Metabolism - Mitochondria - Fatty acids - Heart - Rats;
D O I
10.1155/2021/6622232
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Mitochondrial fatty acid oxidation (FAO) is involved in myocardial damage after cardiopulmonary resuscitation (CPR). This study is aimed at investigating the effect of inhibiting mitochondrial FAO on myocardial injury and the underlying mechanisms of postresuscitation myocardial dysfunction. Rats were induced, subjected to 8 min of ventricular fibrillation, and underwent 6 min of CPR. Rats with return of spontaneous circulation (ROSC) were randomly divided into the Sham group, CPR group, and CPR + Trimetazidine (TMZ) group. Rats in the CPR + TMZ group were administered TMZ (10 mg/kg) at the onset of ROSC via the right external jugular vein, while rats in the CPR group were injected with equivalent volumes of vehicle. The sham rats were only administered equivalent volumes of vehicle. We found that the activities of enzymes related to cardiac mitochondrial FAO were partly improved after ROSC. TMZ, as a reversible inhibitor of 3-ketoacyl CoA thiolase, inhibited myocardial mitochondrial FAO after ROSC. In the CPR + TMZ group, the levels of mitochondrial injury in cardiac tissue were alleviated following attenuated myocardial damage and oxidative stress after ROSC. In addition, the disorder of cardiac mitochondrial metabolism was ameliorated, and specifically, the superfluous succinate related to mitochondrial reactive oxygen species (ROS) generation was decreased by inhibiting myocardial mitochondrial FAO with TMZ administration after ROSC. In conclusion, in the early period after ROSC, inhibiting cardiac mitochondrial FAO attenuated excessive cardiac ROS generation and preserved myocardial function, probably by alleviating the dysfunction of cardiac mitochondrial metabolism in a rat model of cardiac arrest.
引用
收藏
页数:11
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  • [11] Targeting fatty acid and carbohydrate oxidation - A novel therapeutic intervention in the ischemic and failing heart
    Jaswal, Jagdip S.
    Keung, Wendy
    Wang, Wei
    Ussher, John R.
    Lopaschuk, Gary D.
    [J]. BIOCHIMICA ET BIOPHYSICA ACTA-MOLECULAR CELL RESEARCH, 2011, 1813 (07): : 1333 - 1350
  • [12] Myocardial Dysfunction and Shock after Cardiac Arrest
    Jentzer, Jacob C.
    Chonde, Meshe D.
    Dezfulian, Cameron
    [J]. BIOMED RESEARCH INTERNATIONAL, 2015, 2015
  • [13] Reactive Oxygen Species and Mitochondrial Dynamics: The Yin and Yang of Mitochondrial Dysfunction and Cancer Progression
    Jezek, Jan
    Cooper, Katrina F.
    Strich, Randy
    [J]. ANTIOXIDANTS, 2018, 7 (01)
  • [14] Myocardial Fatty Acid Metabolism in Health and Disease
    Lopaschuk, Gary D.
    Ussher, John R.
    Folmes, Clifford D. L.
    Jaswal, Jagdip S.
    Stanley, William C.
    [J]. PHYSIOLOGICAL REVIEWS, 2010, 90 (01) : 207 - 258
  • [15] Functional analysis of molecular and pharmacological modulators of mitochondrial fatty acid oxidation
    Ma, Yibao
    Wang, Wei
    Devarakonda, Teja
    Zhou, Huiping
    Wang, Xiang-Yang
    Salloum, Fadi N.
    Spiegel, Sarah
    Fang, Xianjun
    [J]. SCIENTIFIC REPORTS, 2020, 10 (01)
  • [16] Early Effects of Prolonged Cardiac Arrest and Ischemic Postconditioning during Cardiopulmonary Resuscitation on Cardiac and Brain Mitochondrial Function in Pigs
    Matsuura, Timothy R.
    Bartos, Jason A.
    Tsangaris, Adamantios
    Shekar, Kadambari Chandra
    Olson, Matthew D.
    Riess, Matthias L.
    Bienengraeber, Martin
    Aufderheide, Tom P.
    Neumar, Robert W.
    Rees, Jennifer N.
    McKnite, Scott H.
    Dikalova, Anna E.
    Dikalov, Sergey I.
    Douglas, Hunter F.
    Yannopoulos, Demetris
    [J]. RESUSCITATION, 2017, 116 : 8 - 15
  • [17] Reactive oxygen species are generated by the respiratory complex II - evidence for lack of contribution of the reverse electron flow in complex I
    Moreno-Sanchez, Rafael
    Hernandez-Esquivel, Luz
    Rivero-Segura, Nadia A.
    Marin-Hernandez, Alvaro
    Neuzil, Jiri
    Ralph, Stephen J.
    Rodriguez-Enriquez, Sara
    [J]. FEBS JOURNAL, 2013, 280 (03) : 927 - 938
  • [18] Mechanisms underlying acute protection from cardiac ischemia-reperfusion injury
    Murphy, Elizabeth
    Steenbergen, Charles
    [J]. PHYSIOLOGICAL REVIEWS, 2008, 88 (02) : 581 - 609
  • [19] Post-Cardiac Arrest Syndrome Epidemiology, Pathophysiology, Treatment, and Prognostication A Consensus Statement From the International Liaison Committee on Resuscitation (American Heart Association, Australian and New Zealand Council on Resuscitation, European Resuscitation Council, Heart and Stroke Foundation of Canada, InterAmerican Heart Foundation, Resuscitation Council of Asia, and the Resuscitation Council of Southern Africa); the American Heart Association Emergency Cardiovascular Care Committee; the Council on Cardiovascular Surgery and Anesthesia; the Council on Cardiopulmonary, Perioperative, and Critical Care; the Council on Clinical Cardiology; and the Stroke Council
    Neumar, Robert W.
    Nolan, Jerry P.
    Adrie, Christophe
    Aibiki, Mayuki
    Berg, Robert A.
    Boettiger, Bernd W.
    Callaway, Clifton
    Clark, Robert S. B.
    Geocadin, Romergryko G.
    Jauch, Edward C.
    Kern, Karl B.
    Laurent, Ivan
    Longstreth, W. T., Jr.
    Merchant, Raina M.
    Morley, Peter
    Morrison, Laurie J.
    Nadkarni, Vinay
    Peberdy, Mary Ann
    Rivers, Emanuel P.
    Rodriguez-Nunez, Antonio
    Sellke, Frank W.
    Spaulding, Christian
    Sunde, Kjetil
    Hoek, Terry Vanden
    [J]. CIRCULATION, 2008, 118 (23) : 2452 - 2483
  • [20] Combined defects in oxidative phosphorylation and fatty acid β-oxidation in mitochondrial disease
    Nsiah-Sefaa, Abena
    McKenzie, Matthew
    [J]. BIOSCIENCE REPORTS, 2016, 36