PRESERVING EFFECT OF FRUCTOSE-1,6-BISPHOSPHATE ON HIGH-ENERGY PHOSPHATE-COMPOUNDS DURING ANOXIA AND REPERFUSION IN ISOLATED LANGENDORFF-PERFUSED RAT HEARTS

被引:46
作者
LAZZARINO, G [1 ]
NUUTINEN, ME [1 ]
TAVAZZI, B [1 ]
CERRONI, L [1 ]
DIPIERRO, D [1 ]
GIARDINA, B [1 ]
机构
[1] UNIV OULU, DEPT MED BIOCHEM, SF-90220 OULU, FINLAND
关键词
ANOXIA; REPERFUSION; HEART METABOLISM; FRUCTOSE-1,6-BISPHOSPHATE;
D O I
10.1016/0022-2828(91)90035-K
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Isolated Langendorff-perfused rat hearts after 10 min pre-perfusion, were subjected to a substrate-free anoxic perfusion (20 min) followed by 20 min reperfusion with a glucose-containing oxygen-balanced medium. A similar experimental protocol was repeated in the presence either of 5 mm fructose or of 5mm fructose-1,6-bisphosphate throughout the different perfusion conditions.High-energy phosphate compounds (adenosine triphosphate, creatine phosphate), adenine nucleotides, nicotinic coenzymes, lactate, pyruvate and glycogen content in the tissue were determined at the end of each perfusion period, while coronary flow, heart rate and lactate and pyruvate output were monitored throughout the whole duration of the experiments. On the whole, the results indicate that exogenous fructose-1,6-bisphosphate preserves high-energy metabolites during anoxia and restores myocardial metabolism and contractility during reperfusion, that a prolonged period of substrate-free anoxic perfusion renders the heart unable to normalize its metabolism during re-oxygenation and that fructose is not utilized by the heart for its energy demand. A possible hypothesis concerning the mechanism of action of fructose-1,6-bisphosphate is presented. © 1991.
引用
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页码:13 / 23
页数:11
相关论文
共 27 条
[1]  
BERNT E, 1970, METHODEN ENZYMATISCH, V2, P1724
[2]  
BEUTLER E, 1971, RED CELL METABOLISM, P59
[3]  
CHAMBERS DE, 1983, FED PROC, V42, P1093
[4]   MICRODETERMINATION OF PHOSPHORUS [J].
CHEN, PS ;
TORIBARA, TY ;
WARNER, H .
ANALYTICAL CHEMISTRY, 1956, 28 (11) :1756-1758
[5]  
EDDY LJ, 1981, AM J PHYSIOL, V241, pH576, DOI 10.1152/ajpheart.1981.241.4.H576
[6]   RELATIONSHIP BETWEEN THE HIGH-ENERGY PHOSPHATE CONTENT AND VARIOUS LEFT-VENTRICULAR FUNCTIONAL PARAMETERS OF THE NORMAL AND HYPERTROPHIED HEART AFTER GLOBAL-ISCHEMIA AND REPERFUSION [J].
FENCHEL, G ;
STORF, R ;
MICHEL, J ;
HOFFMEISTER, HE .
THORACIC AND CARDIOVASCULAR SURGEON, 1988, 36 (02) :75-79
[7]   THE CHANGE OF THE FREE-ENERGY OF ATP HYDROLYSIS DURING GLOBAL-ISCHEMIA AND ANOXIA IN THE RAT-HEART - ITS POSSIBLE ROLE IN THE REGULATION OF TRANSSARCOLEMMAL SODIUM AND POTASSIUM GRADIENTS [J].
FIOLET, JWT ;
BAARTSCHEER, A ;
SCHUMACHER, CA ;
CORONEL, R ;
TERWELLE, HF .
JOURNAL OF MOLECULAR AND CELLULAR CARDIOLOGY, 1984, 16 (11) :1023-1036
[8]  
HEINZ F, 1981, METHOD ENZYMATIC ANA, V8, P507
[9]   MYOCARDIAL ADENINE POOL DEPLETION AND RECOVERY OF MECHANICAL FUNCTION FOLLOWING ISCHEMIA [J].
HUMPHREY, SM ;
HOLLISS, DG ;
SEELYE, RN .
AMERICAN JOURNAL OF PHYSIOLOGY, 1985, 248 (05) :H644-H651
[10]   CRITICAL EARLY METABOLIC CHANGES ASSOCIATED WITH MYOCARDIAL RECOVERY OR FAILURE AFTER TOTAL ISCHEMIA IN THE RAT-HEART [J].
HUMPHREY, SM ;
CARTNER, LA ;
HOLLISS, DG .
BASIC RESEARCH IN CARDIOLOGY, 1987, 82 (03) :304-316