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Glucose and free fatty acid turnover in normal subjects and in diabetic patients before and after insulin treatment
Authors:Susan E. H. Hall  J. Saunders  P. H. Sönksen
Affiliation:(1) Department of Medicine, St. Thomas's Hospital Medical School, London, England;(2) Present address: Division of Metabolism and Endocrinology, Ottawa Civic Hospital, Ottawa, Ontario, Canada
Abstract:Summary Turnover rates of glucose and free fatty acids were measured, using3H-glucose and14C-1-palmitic acid as tracers, in insulin-requiring diabetic patients at presentation and after insulin treatment. Correlations were sought with rates of substrate oxidation, determined independently from respiratory exchange, and with plasma hormone concentrations. The rates of appearance of glucose and of free fatty acids were increased in the diabetics to 17.6 and 10.2 mgrmol min–1 kg–1 respectively. Both rates fell to normal (13.3 and 7.1 mgrmol min–1 kg–1) after insulin. In the untreated state there was an inverse relationship between the rates of utilisation of glucose and free fatty acids (r=0.61; p<0.05). It is suggested that this relationship represents the impairment of peripheral glucose utilisation by free fatty acids and by ketone bodies in vivo, so far only demonstrated in vitro. The tracer calculated rates of glucose utilisation correlated well over a wide range with the respiratory quotient in untreated diabetics, while respiratory quotient was inversely related to free fatty acid turnover rates. In untreated diabetics plasma cortisol and 3,3prime, 5prime-triiodothyronine (rT3) were increased whereas thyroxine and 3,5,3prime-triiodothyronine (T3) were decreased. 3,5,3prime-Triiodothyronine concentration was closely related to the metabolic clearance rate of glucose (p<0.05), while cortisol concentrations correlated with glucose production (p<0.02) and blood ketone body concentration (p<0.02).It is concluded that glucose overproduction is the major contributor to the hyperglycaemia of untreated diabetes.
Keywords:Glucose  free fatty acids  oxygen consumption  respiratory quotient  insulin  cortisol  triiodothyronine  thyroxine  ketone bodies  energy  balance  insulin-dependent diabetes
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