ATP synthesis during low-flow ischemia - Influence of increased glycolytic substrate

被引:108
作者
Cave, AC
Ingwall, JS
Friedrich, J
Liao, RL
Saupe, KW
Apstein, CS
Eberli, FR
机构
[1] Boston Univ, Sch Med, Whitaker Cardiovasc Inst, Cardiac Muscle Res Lab, Boston, MA 02118 USA
[2] Brigham & Womens Hosp, Dept Med, Div Cardiovasc, NMR Lab Physiol Chem, Boston, MA 02115 USA
关键词
creatine kinase; glucose; insulin; ischemia; metabolism;
D O I
10.1161/01.CIR.101.17.2090
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Background-Our goals were to (1) simulate the degree of low-flow ischemia and mixed anaerobic and aerobic metabolism of an acutely infarcting region; (2) define changes in anaerobic glycolysis, oxidative phosphorylation, and the creatine kinase (CK) reaction velocity; and (3) determine whether and how increased glycolytic substrate alters the energetic profile, function, and recovery of the ischemic myocardium in the isolated blood-perfused rat heart. Methods and Results-Hearts had 60 minutes of low-flow ischemia (10% of baseline coronary flow) and 30 minutes of reperfusion with either control or high glucose and insulin (G+I) as substrate. In controls, during ischemia, rate-pressure product and oxygen consumption decreased by 84%. CK velocity decreased by 64%; ATP and phosphocreatine (PCr) concentrations decreased by 51% and 63%, respectively; inorganic phosphate (P-i) concentration increased by 300%; and free [ADP] did not increase. During ischemia, relative to controls, the G+I group had similar CK velocity, oxygen consumption, and tissue acidosis but increased glycolysis, higher [ATP] and [PCr], and lower [P-i] and therefore had a greater free energy yield from ATP hydrolysis. Ischemic systolic and diastolic function and postischemic recovery were better. Conclusions-During low-flow ischemia simulating an acute myocardial infarction region, oxidative phosphorylation accounted for 90% of ATP synthesis. The CK velocity fell by 66%, and CK did not completely use available PCr to slow ATP depletion. G+I, by increasing glycolysis, slowed ATP depletion, maintained lower [P-i], and maintained a higher free energy from ATP hydrolysis. This improved energetic profile resulted in better systolic and diastolic function during ischemia and reperfusion. These results support the clinical use of G+I in acute MI.
引用
收藏
页码:2090 / 2096
页数:7
相关论文
共 22 条
[1]   Glucose-insulin-potassium in acute myocardial infarction - The time has come for a large, prospective trial [J].
Apstein, CS ;
Taegtmeyer, H .
CIRCULATION, 1997, 96 (04) :1074-1077
[2]   Glucose-insulin-potassium for acute myocardial infarction - Remarkable results from a new prospective, randomized trial [J].
Apstein, CS .
CIRCULATION, 1998, 98 (21) :2223-2226
[3]   DETERMINANTS OF A PROTECTIVE EFFECT OF GLUCOSE AND INSULIN ON THE ISCHEMIC MYOCARDIUM - EFFECTS ON CONTRACTILE FUNCTION, DIASTOLIC COMPLIANCE, METABOLISM, AND ULTRASTRUCTURE DURING ISCHEMIA AND REPERFUSION [J].
APSTEIN, CS ;
GRAVINO, FN ;
HAUDENSCHILD, CC .
CIRCULATION RESEARCH, 1983, 52 (05) :515-526
[4]   ACIDOSIS DURING ISCHEMIA PROMOTES ADENOSINE-TRIPHOSPHATE RESYNTHESIS IN POSTISCHEMIC RAT-HEART - IN-VIVO REGULATION OF 5'-NUCLEOTIDASE [J].
BAK, MI ;
INGWALL, JS .
JOURNAL OF CLINICAL INVESTIGATION, 1994, 93 (01) :40-49
[5]   CONTRACTILE FAILURE AND HIGH-ENERGY PHOSPHATE TURNOVER DURING HYPOXIA - P-31-NMR SURFACE COIL STUDIES IN LIVING RAT [J].
BITTL, JA ;
BALSCHI, JA ;
INGWALL, JS .
CIRCULATION RESEARCH, 1987, 60 (06) :871-878
[6]   The beta/alpha peak height ratio of ATP - A measure of free [Mg2+] using P-31 NMR [J].
Clarke, K ;
Kashiwaya, Y ;
King, MT ;
Gates, D ;
Keon, CA ;
Cross, HR ;
Radda, GK ;
Veech, RL .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1996, 271 (35) :21142-21150
[7]   PROTONS IN ISCHEMIA - WHERE DO THEY COME FROM - WHERE DO THEY GO TO [J].
DENNIS, SC ;
GEVERS, W ;
OPIE, LH .
JOURNAL OF MOLECULAR AND CELLULAR CARDIOLOGY, 1991, 23 (09) :1077-1086
[8]   Metabolic modulation of acute myocardial infarction -: The ECLA glucose-insulin-potassium pilot trial [J].
Díaz, R ;
Paolasso, A ;
Piegas, LS ;
Tajer, CD ;
Moreno, MG ;
Corvalán, R ;
Isea, JE ;
Romero, G .
CIRCULATION, 1998, 98 (21) :2227-2234
[9]   PROTECTIVE EFFECT OF INCREASED GLYCOLYTIC SUBSTRATE AGAINST SYSTOLIC AND DIASTOLIC DYSFUNCTION AND INCREASED CORONARY RESISTANCE FROM PROLONGED GLOBAL UNDERPERFUSION AND REPERFUSION IN ISOLATED RABBIT HEARTS PERFUSED WITH ERYTHROCYTE SUSPENSIONS [J].
EBERLI, FR ;
WEINBERG, EO ;
GRICE, WN ;
HOROWITZ, GL ;
APSTEIN, CS .
CIRCULATION RESEARCH, 1991, 68 (02) :466-481
[10]   Glucose-insulin-potassium therapy for treatment of acute myocardial infarction - An overview of randomized placebo-controlled [J].
FathOrdoubadi, F ;
Beatt, KJ .
CIRCULATION, 1997, 96 (04) :1152-1156