Abstract
1. With reference to the post-operative dysfunction of the liver observed after halothane anaesthesia, the effects of the anaesthetic on some metabolic functions were studied in the isolated perfused rat liver. Oxygen uptake, glycolysis, gluconeogenesis and urea synthesis were affected by halothane at a concentration (2.5% of the gas phase) within the range used in clinical anaesthesia. 2. At this concentration of halothane uptake of oxygen was inhibited in livers from both fed and starved rats. 3. In livers from fed rats there was a 16-fold increase in lactate production. This was accompanied by a fivefold decrease in the tissue content of 2-oxoglutarate and a more than twofold decrease in citrate. The calculated [free NAD(+)]/[free NADH] ratio in both cytoplasm and mitochondria was lower in the halothane-exposed livers than in controls. 4. In livers of starved rats the rate of gluconeogenesis from lactate was decreased by halothane to 30% of the control rate. 5. Halothane inhibited gluconeogenesis from alanine and propionate to the same extent as from lactate, whereas glucose formation from dihydroxyacetone, glycerol, fructose and sorbitol was relatively unaffected. 6. During gluconeogenesis from 10mm-lactate the tissue content of ATP was decreased by 50%, glutamate by 50% and 2-oxoglutarate was decreased eightfold in the halothane-exposed livers. 7. Halothane decreased urea synthesis in the presence of 10mm-NH(4)Cl and 2mm-ornithine to 15% of the control rate. 8. The inhibitions of gluconeogenesis and urea synthesis were completely abolished within 15min of withdrawal of the anaesthetic. 9. The stimulation of uptake of oxygen brought about by the addition of lactate or precursors of urea was abolished by halothane. 10. Effects on gluconeogenesis similar to those of halothane occurred in livers exposed to the anaesthetic methoxyflurane, although normal rates were not restored on withdrawal of the drug. Other anaesthetic agents tested (ketamine-HCl and trichloroethylene) decreased gluconeogenesis to 66% of the control rate. 11. The inhibitory effects of halothane are consistent with an interference at the stage of the NADH dehydrogenase of the electron-transport chain.
MeSH Terms
Acetone/metabolism
Adenosine Triphosphate/metabolism
Alanine/metabolism
Animals
Citrates/metabolism
Cytoplasm/metabolism
Female
Fructose/metabolism
Gluconeogenesis/drug effects
Glutarates/metabolism
Glycerol/metabolism
Glycolysis/drug effects
Halothane/pharmacology
In Vitro Techniques
Lactates/metabolism
Liver/drug effects,metabolism
Mitochondria, Liver/metabolism
NAD/metabolism
Oxygen Consumption/drug effects
Propionates/metabolism
Rats
Sorbitol/metabolism
Trioses/metabolism
Urea/biosynthesis
Chemicals
Citrates
Glutarates
Lactates
Propionates
Trioses
NAD
Acetone
Fructose
Sorbitol
Adenosine Triphosphate
Urea
Alanine
Glycerol
Halothane
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Biebuyck J F
Lund P
Krebs H A
References (24)
24 references, click to expand
-
Fluothane: a non-explosive volatile anesthetic agent.
Br Med J. 1956 Oct 27;2(4999):969-72
PMID: 13364364
-
Action of halothane upon mitochondrial respiration.
Arch Biochem Biophys. 1971 Feb;142(2):435-44
PMID: 4396285
-
[Measurement of glucose oxidation in the isolated, perfused rat liver with glucose-(6-3H)].
Z Klin Chem Klin Biochem. 1969 Nov;7(6):590-1
PMID: 5365464
-
Effect of halothane on oxygen consumption of rat brain, liver and heart and anaerobic glycolysis of rat brain.
Anesthesiology. 1966 Nov-Dec;27(6):770-7
PMID: 5924549
-
Concentrations of free glucogenic amino acids in livers of rats subjected to various metabolic stresses.
Biochem J. 1967 Aug;104(2):497-502
PMID: 6048791
-
The action of fluothane; a new volatile anaesthetic.
Br J Pharmacol Chemother. 1956 Dec;11(4):394-410
PMID: 13383118
-
Hepatic circulation and hepatic function during anaesthesia and surgery. IV. Halothane anaesthesia.
Can Anaesth Soc J. 1966 Jul;13(4):328-41
PMID: 5966400
-
Arterial oxygen tensions preceding surgery in patients with cardiovascular or pulmonary disease.
Acta Anaesthesiol Scand. 1968 Apr;12(1):5-14
PMID: 5704596
-
The redox state of free nicotinamide-adenine dinucleotide in the cytoplasm and mitochondria of rat liver.
Biochem J. 1967 May;103(2):514-27
PMID: 4291787
-
Gluconeogenesis in the perfused rat liver.
Biochem J. 1966 Nov;101(2):284-92
PMID: 5966267
-
Lactate production in the perfused rat liver.
Biochem J. 1971 Nov;125(1):129-39
PMID: 5158899
-
The effect of halothane on electron transport, oxidative phosphorylation, and swelling in rat liver mitochondria.
Mol Pharmacol. 1970 Jan;6(1):67-77
PMID: 5527524
-
Effects of ischaemia on metabolite concentrations in rat liver.
Biochem J. 1970 Mar;117(1):91-6
PMID: 4316090
-
PURIFICATION AND CHEMICAL CHARACTERIZATION OF ALANINE DEHYDROGENASE OF BACILLUS SUBTILIS.
Biochim Biophys Acta. 1964 Oct 23;92:33-43
PMID: 14243786
-
Influence of halothane anaesthesia on the normal liver and the liver subjected to partial hepatectomy or stimulated drug metabolism. A comparative study of the influence of halothane, gaseous carbon tetrachloride, chloroform and nitrous oxide in the rat.
Acta Chir Scand Suppl. 1971;416:1-83
PMID: 5291510
-
The effects of narcotics on tissue oxidations.
Biochem J. 1937 Apr;31(4):565-78
PMID: 16746374
-
The effect of succinate and amytal on the reduction of acetoacetate in animal tissues.
Biochem J. 1961 Jun;79:537-49
PMID: 13754172
-
[A simple technic for extremely rapid freezing of large pieces of tissue].
Pflugers Arch Gesamte Physiol Menschen Tiere. 1960;270:399-412
PMID: 13845757
-
A modified approach to the polarographic measurement of blood O2 content.
J Appl Physiol. 1971 Feb;30(2):272-5
PMID: 5539895
-
Serum ornithine carbamoyl transferase activity in man after halothane anaesthesia and spinal anaesthesia with and without systolic blood pressure fall.
Acta Chir Scand. 1969;135(2):113-20
PMID: 5807618
-
REGULATION OF PHOSPHOFRUCTOKINASE ACTIVITY BY CITRATE IN NORMAL AND DIABETIC MUSCLE.
Biochem Biophys Res Commun. 1963 Aug 1;12:268-73
PMID: 14070328
-
Effects of ischaemia on content of metabolites in rat liver and kidney in vivo.
Biochem J. 1970 Nov;120(1):105-11
PMID: 4321927
-
Metabolism of volatile anesthetics. 3. Induction of microsomal dechlorinating and ether-cleaving enzymes.
J Pharmacol Exp Ther. 1966 Nov;154(2):364-9
PMID: 5922997
-
Metabolism of the volatile anesthetics.
Anesthesiology. 1971 Aug;35(2):193-202
PMID: 4398375