The glucose fatty-acid cycle. Its role in insulin sensitivity and the metabolic disturbances of diabetes mellitus.
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- Type
- article
- Published
- 1963-04-13
- Cited by
- 5,305
- References
- 33
- OpenAlex
- https://openalex.org/W2012898950
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:369346
Keywords
Diabetes mellitus, Insulin sensitivity, Internal medicine, Medicine, Endocrinology
References
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- Regulation of glucose uptake by muscle. 5. Effects of anoxia, insulin, adrenaline and prolonged starving on concentrations of hexose phosphates in isolated rat diaphragm and perfused isolated rat heart.
- THE EFFECTS OF ADMINISTRATION OF GLUCOSE AND INSULIN ON BLOOD PYRUVATE AND LACTATE IN DIABETES MELLITUS
- Acetoacetate as fuel of respiration in the perfused rat heart.
- Regulation of glucose uptake by muscle. 3. The effects of insulin, anoxia, salicylate and 2:4-dinitrophenol on membrane transport and intracellular phosphorylation of glucose in the isolated rat heart.
- Effects of low-carbohydrate diet and diabetes mellitus on plasma concentrations of glucose, non-esterified fatty acid, and insulin during oral glucose-tolerance tests.
- A Rapid Enzymatic Assay for Glycerol
- Phosphofructokinase and the Pasteur effect.
- Effects of hypoglycin on certain aspects of glucose and fatty acid metabolism in the rat
- The Croonian Lecture - On insulin and its action
- Progress in the Understanding and Treatment of Diabetes Mellitus*
- Fatty Acid and Glucose Metabolism in the Perfused Heart
- The pattern of intermediary carbohydrate metabolism in Cushing's syndrome.
- REGULATION OF GLUCOSE UPTAKE IN HEART MUSCLE FROM NORMAL AND ALLOXAN‐DIABETIC RATS: THE EFFECTS OF INSULIN, GROWTH HORMONE, CORTISONE, AND ANOXIA *
- Effect of Fatty Acids, Ketone Bodies, Diabetes and Starvation on Pyruvate Metabolism in Rat Heart and Diaphragm Muscle
- The glycostatic action of purified growth hormone.
- A relation between non-esterified fatty acids in plasma and the metabolism of glucose.
- On the production and utilisation of glycogen in normal and diabetic animals
- Unesterified fatty acid in human blood plasma.
- Pituitary growth hormone and the glucose utilization of rat diaphragm.
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- Adrenergic mechanisms contribute to the late phase of hypoglycemic glucose counterregulation in humans by stimulating lipolysis.
- Insulin resistance and action in hypertriglyceridemia.
- How valid are isotopic measurements of fatty acid oxidation?
- Etomoxir, a Carnitine Palmitoyltransferase I Inhibitor, Protects Hearts From Fatty Acid‐Induced Ischemic Injury Independent of Changes in Long Chain Acylcarnitine
- Effects of Weight Loss on Mechanisms of Hyperglycemia in Obese Non-Insulin-Dependent Diabetes Mellitus
- Effects of a 36-hour fast on human endurance and substrate utilization.
- Influence of age on glucose tolerance in normal subjects
- Plasma triglycerides in Belgian postmen.
- Effekte einer kurzfristigen kohlenhydratreichen Ernährung auf die Insulinsensitivität und den intramyozellulären Lipidgehalt bei gesunden Nachkommen von Typ 2 Diabetikern
- Metabolic interactions of glucose, lactate, and beta-hydroxybutyrate in rat brain slices.
- Assay of Insulin Antagonism by Serial Incubation of Paired Rat Hemidiaphragms
- The effect of methyl-2-tetradecylglycidate (McNeil 3716) on heart mitochondrial metabolism in rats.
- Clinical investigation on abnormal glucose tolerance in liver cirrhosis
- Athletes With IDDM Exhibit Impaired Metabolic Control and Increased Lipid utilization With No Increase in Insulin Sensitivity
- Beta-cell GLUT-2 loss and non-insulin-dependent diabetes mellitus: current status of the hypothesis.
- Marked effects of sustained low growth hormone (GH) levels on day-to-day fuel metabolism: studies in GH-deficient patients and healthy untreated subjects.
- Effects of fatty acid oxidation on glucose utilization by isolated hepatocytes
- L-glutamine supplementation of a high fat diet reduces body weight and attenuates hyperglycemia and hyperinsulinemia in C57BL/6J mice.
- The effect of plasma free fatty acids and long-chain triglycerides on glucose metabolism in uncomplicated falciparum malaria.
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