Effects of Fructose-1,6-Diphosphate, Glucose, and Saline on Cardiac Resuscitation
Open Access
- 1 December 1986
- journal article
- research article
- Published by Wolters Kluwer Health in Anesthesiology
- Vol. 65 (6) , 595-601
- https://doi.org/10.1097/00000542-198612000-00006
Abstract
Severe hypoxemia causes respiratory and cardiac arrest, in part, because severe hypoxemia decreases glycolysis and adenosine triphosphate (ATP) production by a lactic acid-induced decrease in the activity of phosphofructokinase and glyceraldehyde-3-P dehydrogenase. Fructose-1,6-diphosphate (FDP) administration increases the ATP concentration of blood. The authors hypothesized that FDP might increase the number of rabbits that could be resuscitated from hypoxemic cardiac arrest. To test this hypothesis, heart rate, arterial pressure, left ventricular end-diastolic pressure, and blood gases and pH were measured during normoxemia (FIo2 = 0.21) and again during hypoxemia (FIo2 = 0.04) in 28 adult, whilt, New Zealand rabbits anesthetized with pentobarbital. With the onset of hypoxemia, we gave either 40 mg/kg of 5% FDP (n = 10), 5% glucose (n = 11), or an equal volume (2.5 ml) of normal saline (n = 7) intravenously and began a continuous infusion of 2.0 mg .cntdot. kg-1 .cntdot. min-1 of the same sugar or 0.12 ml/min of saline. FDP-treated rabbits breathed for 20.9 .+-. 4.9 (mean .+-. SEM) min after initiation of hypoxemia; glucose-treated rabbits breathed for 1.4 .+-. 0.2 min, and saline-treated rabbits breathed 10.3 7U 4 min. Cardiac arrest occurred 2.5 .+-. 0.5 min after the onset of respiratory arrest in FDP-treated rabbits, 4.1 .+-. 0.2 min in glucose-treated rabbits, and 2.9 .+-. 0.4 min in saline-treated rabbits. We could resuscitate all ten FDP-treated rabbits; two of 11 glucose-treated (FDP vs. glucose, P < 0.001); and one of seven saline-treated rabbits (FDP vs. saline, P < 0.001) from cardiac arrest. It is concluded that FDP prolongs the time to respiratory arrest and increases immediate salvage from cardiac arrest in severely hypoxemic, adult rabbits.This publication has 22 references indexed in Scilit:
- Comparative study of the effects of fructose-1,6-diphosphate, fructose and physiological saline on the blood levels of glucose and adenosine-triphosphate after an oral glucose loadPharmacological Research Communications, 1980
- Effects of substrates on tissue metabolic changes in the isolated rat heart during underperfusion and on release of lactate dehydrogenase and arrhythmias during reperfusion.Circulation Research, 1978
- Nervous System Effects of Cardiac Arrest in MonkeysArchives of Neurology, 1977
- Fructose-1,6-bisphosphate, a regulator of metabolismMolecular and Cellular Biochemistry, 1977
- Control of phosphofructokinase from rat skeletal muscle. Effects of fructose diphosphate, AMP, ATP, and citrate.Journal of Biological Chemistry, 1976
- Mechanisms of glycolytic inhibition in ischemic rat hearts.Circulation Research, 1975
- Comparison of the Effects of Anoxia and Whole Heart Ischemia on Carbohydrate Utilization in Isolated Working Rat HeartsCirculation Research, 1973
- The lipolytic action of fructose-1-6-diphosphateMetabolism, 1968
- Activation of Liver Pyruvate Kinase by Fructose 1,6-DiphosphateBiochemical Journal, 1967
- GLYCOLYTIC CONTROL MECHANISMS .2. KINETICS OF INTERMEDIATE CHANGES DURING AEROBIC-ANOXIC TRANSITION IN PERFUSED RAT HEART1966