Abstract
1. The effects of starvation and diabetes on brain fuel metabolism were examined by measuring arteriovenous differences for glucose, lactate, acetoacetate and 3-hydroxybutyrate across the brains of anaesthetized fed, starved and diabetic rats. 2. In fed animals glucose represented the sole oxidative fuel of the brain. 3. After 48h of starvation, ketone-body concentrations were about 2mm and ketone-body uptake accounted for 25% of the calculated O(2) consumption: the arteriovenous difference for glucose was not diminished, but lactate release was increased, suggesting inhibition of pyruvate oxidation. 4. In severe diabetic ketosis, induced by either streptozotocin or phlorrhizin (total blood ketone bodies >7mm), the uptake of ketone bodies was further increased and accounted for 45% of the brain's oxidative metabolism, and the arteriovenous difference for glucose was decreased by one-third. The arteriovenous difference for lactate was increased significantly in the phlorrhizin-treated rats. 5. Infusion of 3-hydroxybutyrate into starved rats caused marked increases in the arteriovenous differences for lactate and both ketone bodies. 6. To study the mechanisms of these changes, steady-state concentrations of intermediates and co-factors of the glycolytic pathway were determined in freeze-blown brain. 7. Starved rats had increased concentrations of acetyl-CoA. 8. Rats with diabetic ketosis had increased concentrations of fructose 6-phosphate and decreased concentrations of fructose 1,6-diphosphate, indicating an inhibition of phosphofructokinase. 9. The concentrations of acetyl-CoA, glycogen and citrate, a potent inhibitor of phosphofructokinase, were increased in the streptozotocin-treated rats. 10. The data suggest that cerebral glucose uptake is decreased in diabetic ketoacidosis owing to inhibition of phosphofructokinase as a result of the increase in brain citrate. 11. The inhibition of brain pyruvate oxidation in starvation and diabetes can be related to the accelerated rate of ketone-body metabolism; however, we found no correlation between the decrease in glucose uptake in the diabetic state and the arteriovenous difference for ketone bodies. 12. The data also suggest that the rates of acetoacetate and 3-hydroxybutyrate utilization by brain are governed by their concentrations in plasma. 13. The finding of very low concentrations of acetoacetate and 3-hydroxybutyrate in brain compared with plasma suggests that diffusion across the blood-brain barrier may be the rate-limiting step in their metabolism.
MeSH Terms
Acetoacetates/metabolism
Acetyl Coenzyme A/metabolism
Adenine Nucleotides/metabolism
Animals
Biological Transport
Blood Glucose/metabolism
Blood-Brain Barrier
Brain/drug effects,metabolism
Citrates/metabolism
Diabetes Mellitus/chemically induced,metabolism
Female
Glucose/metabolism
Glycogen/metabolism
Hydroxybutyrates/metabolism,pharmacology
Ketone Bodies/metabolism
Lactates/metabolism
Pentobarbital/pharmacology
Phlorhizin
Phosphocreatine/metabolism
Rats
Spectrometry, Fluorescence
Starvation
Streptozocin
Time Factors
Chemicals
Acetoacetates
Adenine Nucleotides
Blood Glucose
Citrates
Hydroxybutyrates
Ketone Bodies
Lactates
Phosphocreatine
Streptozocin
Acetyl Coenzyme A
Glycogen
Phlorhizin
Pentobarbital
Glucose
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Ruderman N B
Ross P S
Berger M
Goodman M N
References (30)
30 references, click to expand
-
The properties of glycogen synthetase and regulation of glycogen biosynthesis in rat brain.
J Biol Chem. 1969 Jun 10;244(11):3053-61
PMID: 4306291
-
Interconversion and kinetic properties of pyruvate dehydrogenase from brain.
Hoppe Seylers Z Physiol Chem. 1971 Mar;352(3):447-52
PMID: 5550962
-
THE RELATIONSHIPS BETWEEN SUBSTRATES AND ENZYMES OF GLYCOLYSIS IN BRAIN.
J Biol Chem. 1964 Jan;239:31-42
PMID: 14114860
-
The effects of altered endocrine states and of ether anaesthesia on mouse brain.
J Neurochem. 1971 Dec;18(12):2317-28
PMID: 5135896
-
Oxidation of glucose, acetoacetate, and palmitate in brain mince of normal and ketotic rats.
Diabetes. 1968 Feb;17(2):90-5
PMID: 5635729
-
Metabolic interactions of glucose, lactate, and beta-hydroxybutyrate in rat brain slices.
Am J Physiol. 1969 Sep;217(3):784-92
PMID: 5807702
-
Phosphofructokinase.
Curr Top Cell Regul. 1972;5:1-46
PMID: 4271851
-
The effects of starvation and alloxan-diabetes on the contents of citrate and other metabolic intermediates in rat liver.
Biochem J. 1968 Apr;107(3):411-5
PMID: 5650365
-
Freeze-blowing: a new technique for the study of brain in vivo.
J Neurochem. 1973 Jan;20(1):183-8
PMID: 4405707
-
The effect of ammonia on the energy metabolism of the rat brain.
Life Sci II. 1970 Sep 22;9(18):1021-8
PMID: 4320179
-
Acetoacetate metabolism in infant and adult rat brain in vitro.
Biochem J. 1970 Feb;116(4):641-55
PMID: 5435493
-
The control of glycogen metabolism in the liver.
FEBS Lett. 1970 Dec 28;12(2):73-82
PMID: 11945547
-
Metabolism of acetoacetate in animal tissues. 1.
Biochem J. 1945;39(5):408-19
PMID: 16747930
-
[Utilization of non-esterified fatty acids and ketone nbodies in human brain].
Klin Wochenschr. 1971 Apr 1;49(7):406-11
PMID: 5550636
-
CoA transferase in the brain and other mammalian tissues.
Arch Biochem Biophys. 1972 Feb;148(2):382-90
PMID: 5019866
-
Use of glucose oxidase, peroxidase, and O-dianisidine in determination of blood and urinary glucose.
Lancet. 1957 Aug 24;273(6991):368-70
PMID: 13464070
-
Enzymic determination of D(-)-beta-hydroxybutyric acid and acetoacetic acid in blood.
Biochem J. 1962 Jan;82:90-6
PMID: 14007241
-
Control of glycolysis in cerebral cortex slices.
Biochem J. 1967 Aug;104(2):524-33
PMID: 4227784
-
Regulation of ketone body metabolism in skeletal muscle.
Am J Physiol. 1973 Jun;224(6):1391-7
PMID: 4712152
-
Hormone-fuel interrelationships during fasting.
J Clin Invest. 1966 Nov;45(11):1751-69
PMID: 5926444
-
The effect of hypercapnia upon intracellular pH in the brain, evaluated by the bicarbonate-carbonic acid method and from the creatine phosphokinase equilibrium.
J Neurochem. 1972 Nov;19(11):2483-95
PMID: 5086239
-
Ketone-body utilization by adult and suckling rat brain in vivo.
Biochem J. 1971 Mar;122(1):13-8
PMID: 5124783
-
Carbohydrate synthesis from lactate in pigeon-liver homogenate.
Biochem J. 1964 Oct;93(1):112-21
PMID: 4953791
-
Effect of pH on the kinetics of frog muscle phosphofructokinase.
J Biol Chem. 1966 Sep 10;241(17):4110-2
PMID: 4224144
-
Evaluation of the isolated perfused rat hindquarter for the study of muscle metabolism.
Biochem J. 1971 Sep;124(3):639-51
PMID: 5135248
-
Brain metabolism during fasting.
J Clin Invest. 1967 Oct;46(10):1589-95
PMID: 6061736
-
Factors influencing utilisation of ketone-bodies by brain in normal rats and rats with ketoacidosis.
Lancet. 1971 Sep 18;2(7725):637-8
PMID: 4105949
-
Activities of enzymes involved in acetoacetate utilization in adult mammalian tissues.
Biochem J. 1971 Jan;121(1):41-7
PMID: 5165621
-
Glucose and lactic acid content of the rat brain.
J Neurochem. 1968 Feb;15(2):141-3
PMID: 5637722
-
Interactions of metabolism and the physiological role of insulin.
Recent Prog Horm Res. 1966;22:1-48
PMID: 5334625