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Biomedical subjects

B Thorsteinsson

Publications and source records attributed to B Thorsteinsson.

At least 37 records · Page 2Linked to original sources

Pancreas and gut hormone responses to oral glucose and intravenous glucagon in cystic fibrosis patients with normal, impaired, and diabetic glucose tolerance.

Pancreatic and gut hormone responses to oral glucose, and insulin sensitivity were studied in cystic fibrosis patients with normal (N = 14), impaired (N = 4), and diabetic (N = 12) glucose tolerance, and in 10 control subjects, and beta cell responses to oral glucose and intravenous glucagon were compared. Compared to control subjects, initial insulin and C-peptide responses to oral glucose were lower in all patient groups, and decreased with decreasing glucose tolerance. Insulin sensitivity in patients with impaired and diabetic glucose tolerance was lower than in control subjects. The 6 min post-glucagon C-peptide concentration was positively correlated with the initial insulin response to oral glucose. Fasting levels of pancreatic polypeptide, pancreatic glucagon, total glucagon, glucagon-like peptide-1 7-36 amide, and gastric inhibitory polypeptide were normal in all patient groups. Following oral glucose, pancreatic polypeptide responses were absent in all patients, suppressibility of pancreatic glucagon secretion was increasingly impaired with decreasing glucose tolerance, and gut hormone levels were normal. In conclusion, at cystic fibrosis (a) insulin secretion is impaired even when glucose tolerance and insulin sensitivity are within the normal range, (b) the glucagon test gives valid estimates of residual beta cell function, (c) pancreatic polypeptide response to oral glucose is absent, (d) glucagon suppressibility decreases with decreasing glucose tolerance, and (e) the enteroinsular axis is intact.

Administration, Oral↗

Influence of the development of diabetes mellitus on clinical status in patients with cystic fibrosis.

The impact of pre-diabetes on clinical status was retrospectively studied in 38 cystic fibrosis (CF) patients with diabetes mellitus (DM) and 38 non-diabetic CF patients (control patients), matched in pairs for age, sex, and chronic Pseudomonas aeruginosa lung infection. Quarterly parameters of CF clinical status were collected for 6 years prior to the diagnosis of DM in the index case. Compared to the control patients, decreases in body weight, body mass index (BMI), forced expiratory volume in 1s (FEV1), and forced vital capacity (FVC) and an increase in the daily intake of pancreatic enzyme capsules were found in the pre-diabetic patients. Statistically significant differences in body weight, BMI, FEV1, FVC, and intake of pancreatic enzyme capsules between pre-diabetic and control patients emerged 4, 4, 1.25, 3 and 4.5 years prior to the diagnosis of DM, respectively. The number of lung infections did not differ between the two groups of patients. Thus, when DM develops in CF patients, an insidious decline in overall clinical status is observed for years prior to its diagnosis. Whether clinical deterioration in CF leads to DM, or pre-diabetes results in declining CF clinical status is presently unknown. Accumulating evidence suggests that the latter may be the case since insulin therapy seems to improve lung function in CF.

Adolescent↗

Effects of insulin on renal haemodynamics and sodium handling in normal subjects.

Diabetic patients treated with insulin injected subcutaneously are characterized by peripheral hyperinsulinaemia and an increased mass of total body exchangeable sodium. We hypothesized that this may cause, at least in part, the glomerular hyperfiltration seen in the diabetic state. Six normal subjects were studied on 2 days in random order. Day A: Basal state for 40 min, hyperinsulinaemic euglycaemic clamp for 1 h (insulin infusion rate 2 mU kg-1 min-1 and 50% glucose infusion) and hyperinsulinaemic euglycaemic clamp combined with volume expansion (2 1 isotonic sodium chloride) for 2 h. Day B: as day A, but without insulin and glucose infusion. During combined volume expansion and hyperinsulinaemia an increase in glomerular filtration rate (GFR) (128 +/- 6 vs 117 +/- 8 ml min-1 1.73 m-2, p less than 0.01) and lithium clearance (CLi) (50 +/- 4 vs 33 +/- 5 ml min-1 1.73 m-2, p less than 0.01) was observed compared with basal conditions. GFR and CLi were unchanged during day B. Insulin infusion reduced renal sodium excretion. Absolute proximal tubular reabsorption was unchanged on both days. Insulin infusion without volume expansion caused a decrease of 24% in the fractional distal sodium excretion. Superimposed volume expansion and the concomitant increase in GFR and CLi was accompanied by a subsequent enhanced fractional distal sodium excretion of 27%. The changes in plasma concentrations of aldosterone, renin, angiotensin II, atrial natriuretic peptide and catecholamines did not explain the differences in GFR. An increase in GFR of 10%, comparable with that observed in diabetic patients, was induced by combined hyperinsulinaemia and volume expansion in euglycaemic normal subjects. The enhanced GFR is probably a compensatory response to the sodium retention induced by the action of insulin on the distal tubules.

Adult↗

Endocrine and exocrine pancreatic function and the delta F508 mutation in cystic fibrosis.

The relationship between the cystic fibrosis (CF) genotype and endocrine and exocrine pancreatic function was studied in 215 CF patients. In the 211 patients with the delta F508 mutation, endocrine pancreatic function (oral glucose tolerance; WHO criteria) was normal in 72.5%, impaired in 12.3%, and diabetic in 15.2% of the patients, with no difference between CF patients homozygous (N = 163, median age 15 years, range 2-40) or heterozygous (N = 48, 18 years, 3-40; age difference not significant) for the delta F508 mutation. Exocrine pancreatic sufficiency (no need for pancreatic enzyme substitution) was found in 0.6% of the patients homozygous for the delta F508 mutation and in 10.4% of the heterozygotes (p less than 0.01). Homozygous patients with pancreatic insufficiency took more pancreatic enzyme capsules (median 42 per day, range 0-192) than the heterozygotes (29 per day, 0-300; p less than 0.001). The four patients (1.9%) without the delta F508 mutation had normal glucose tolerance but exocrine pancreatic insufficiency. In conclusion, the major mutation genotype in CF (delta F508) affects the severity of the exocrine pancreatic insufficiency, whereas endocrine pancreatic function is unrelated to this genotype.

Adolescent↗

Symptomatic hypoglycaemia in 411 type 1 diabetic patients.

The frequency of symptomatic hypoglycaemic episodes was studied in 411 randomly selected conventionally treated Type 1 diabetic out-patients. Between two consecutive visits to the out-patient clinic each patient filled in a questionnaire at home. The number of hypoglycaemic episodes was then recorded prospectively in a diary for 1 week. From the questionnaires, the (retrospective) frequencies of mild and severe symptomatic hypoglycaemia were 1.6 and 0.029 episodes patient-1 week-1. From the diaries, the (prospective) frequencies of mild and severe hypoglycaemic episodes were 1.8 and 0.027 patient-1 week-1. Symptomatic hypoglycaemia was more frequent on working days than during weekends (1.8:1) and more frequent in the morning than during the afternoon, evening, and night (4.5:2.2:1.4:1). The symptoms of hypoglycaemia were non-specific, heterogeneous, and weakened with increasing duration of diabetes. During their diabetic life, 36% of the patients had experienced hypoglycaemic coma. The frequency of hypoglycaemia was positively, but only weakly, correlated with insulin dose, number of injections, percentage unmodified insulin of the total dose, and HbA1c (mild hypoglycaemia only). The frequency was also negatively, but weakly, correlated with age and HbA1c (episodes with coma only), but not correlated with sex, duration of diabetes, or patients' ratings of worries about mild and severe hypoglycaemia.

Adult↗

Glucose tolerance in cystic fibrosis.

Glucose tolerance was evaluated in 356 living and dead patients with cystic fibrosis who were recorded at the Danish Cystic Fibrosis Centre. Twenty two patients (6%) were treated elsewhere, 25 (7%) were unable, unwilling or too young (age less than 2 years) to participate; 309 patients (87%) were therefore eligible for the study of whom 99 (32%) were dead and 210 (68%) were alive. Of the dead patients, 13 also had diabetes mellitus (13%). Of the living patients (median age 14 years, range 2-40), nine (4%) were known to have diabetes and all were being treated with insulin. In the remaining 201 patients an oral glucose tolerance test (1.75 g/kg body weight, maximum 75 g) was carried out. A total of 155 patients (74%) had normal glucose tolerance, 31 (15%) had impaired glucose tolerance, and 15 (7%) had diabetes mellitus according to the WHO criteria. The percentage of glycated haemoglobin (HbA1c) (reference range 4.1-6.4%) increased significantly as glucose tolerance decreased: when glucose tolerance was normal the median was 5.2%; when it was impaired the figure was 5.5%; in patients whose diabetes was diagnosed by the oral glucose tolerance test it was 5.9%; and in patients already known to have diabetes mellitus it was 8.6%. The incidence and prevalence of impaired glucose tolerance and diabetes mellitus increased with age. From the age of 15 to 30 years the decrease in the prevalence of normal glucose tolerance was almost linear. Within this age span the proportion of patients with cystic fibrosis with normal glucose tolerance was reduced by roughly 5%/year. Only 35% (95% confidence interval (CI) 22 to 48%) of the patients with cystic fibrosis who were alive at the age of 25 years had normal glucose tolerance; 32% (95% CI 14 to 49%) were diabetic. The prevalence of glucose intolerance in cystic fibrosis is rapidly increasing with age; its potentially harmful effect on the prognosis of cystic fibrosis is of increasing importance as the length of survival of these patients increases.

Adolescent↗

The relationship between symptomatic and biochemical hypoglycaemia in insulin-dependent diabetic patients.

The relationship between symptomatic (subjective feelings) and biochemical (blood glucose concentration less than 3 mmol l-1) hypoglycaemia was studied in 66 randomly selected insulin-dependent diabetic out-patients under normal conditions of daily life with conventional insulin injection regimens. The patients (a) collected 7-point diurnal blood glucose profiles at home on three consecutive days and then once weekly for 3 weeks, (b) indicated whether they felt hypoglycaemic at sampling times, and (c) collected extra samples if they felt hypoglycaemic at any time during the study period. The weekly frequencies of symptomatic and biochemical hypoglycaemia were 0.99 and 1.75 per patient, respectively. Biochemical hypoglycaemia was present in 29% of the symptomatic episodes, and symptomatic hypoglycaemia accompanied 16% of the biochemical episodes. Symptomatic hypoglycaemia was experienced at a median blood glucose concentration of 3.4 mmol l-1 (range 1.4-14.9 mmol l-1). Fifty per cent of both symptomatic and biochemical episodes occurred before lunch, while the remainder were evenly distributed throughout the day. The occurrence of biochemical hypoglycaemia, but not of symptomatic hypoglycaemia, was inversely correlated with HbA1c and median blood glucose concentration. Thus symptomatic hypoglycaemia is an unreliable indicator of biochemical hypoglycaemia and of the degree of glycaemic control. Blood glucose measurements are a prerequisite for the diagnosis of hypoglycaemia.

Adult↗

Kinetic models for insulin disappearance from plasma in man.

The general use of first order kinetics to describe the disappearance of insulin from plasma in man contrasts the available evidence of saturation kinetics for insulin. In order to bridge this gap, we have put forward three alternative models of insulin kinetics. Model 1 considers the combined existence of first order and saturation (Michaëlis-Menten) kinetics. Model 2 considers saturation kinetics alone. Model 3 considers first order kinetics alone. The validity of the models was studied in normal and type I (insulin-dependent) diabetic subjects. Sequential constant intravenous infusions of insulin at different rates were used to achieve different levels of steady state plasma insulin concentrations, while the glycaemic level (usually normoglycaemia) was maintained by a glucose clamp. Appropriate validation procedures demonstrated that the model of saturation kinetics alone (model 2) was superior to the other models in normal subjects at physiological and supraphysiological plasma insulin concentrations, and in diabetic patients at supraphysiological concentrations. The minimal model at physiological insulin concentrations in type I diabetic patients was that of first order kinetics (model 3). The kinetics of insulin was independent of the species of insulin (human or porcine) in both study groups. The actual glycaemic clamp level (normoglycaemia and moderate hyperglycaemia) did not influence the insulin disappearance rate. Binding of insulin to its receptor is considered to be the initial step in insulin degradation. Saturation kinetics of insulin may therefore be influenced by the saturation of binding of insulin molecules to their receptors. We found values of Km (i.e. the concentration of plasma insulin at which the insulin disappearance rate is half maximal) in normal subjects comparable to values of Kd (i.e. the dissociation constant for insulin-receptor binding) from receptor studies in isolated cells. Changes in regional (hepatic and/or renal) blood flow at hyperinsulinaemia represent an alternative explanation to a model of saturation kinetics. Increases in Vmax (i.e. the maximal insulin disappearance rate) and Km with increasing insulin dose were observed in normal subjects. This finding suggests that insulin may disappear from plasma by more than one saturable pathway. Additional studies are needed to confirm this observation. The clearance rate of insulin at infinitesimal plasma insulin concentrations (Vmax/Km) was 28 +/- 8 ml.kg-1.min-1 in normal subjects. This value is higher than most clearance rates previously reported in studies using first order kinetics. The clearance rate of insulin in type I diabetic patients was 20 +/- 4 ml.kg-1.min-1, corresponding to a reduction in clearance of 30% compared to normal subjects.(ABSTRACT TRUNCATED AT 400 WORDS)

Humans↗

Modeling absorption kinetics of subcutaneous injected soluble insulin.

Absorption of subcutaneously injected soluble insulin deviates markedly from simple first-order kinetics and depends both on the volume and concentration of the injected solution. This paper presents a model of the absorption process in which insulin is presumed to be present in subcutis in a low molecular weight form, a high molecular weight form, and an immobile form where the molecules are bound to the tissue. The model describes how diffusion and absorption gradually reduce the insulin concentrations in the subcutaneous depot and thereby shift the balance between the three forms in accordance with usual laws of chemical kinetics. By presuming that primarily low molecular weight insulin penetrates the capillary walls, the model can account for experimentally observed variations in the absorption rate over a wide range of volumes and of concentrations. The model is used to determine the effective diffusion constant D for insulin in subcutis, the absorption rate constant B for low molecular weight insulin, the equilibrium constant Q between high and low molecular weight insulin, the binding capacity C for insulin in the tissue, and the average life time T for insulin in its bound state. Typical values for a bolus injection in the thigh of fasting type I diabetic patients are D = 0.9 x 10(-4) cm2/min, B = 1.3 X 10(-2)/min, and Q = 0.13 (ml/IU)2. Binding of insulin in the tissue is significant only at small concentrations. The binding capacity is of the order of C = 0.05 IU/cm3 with a typical average life time in the bound state of T = 80.0 min. Combined with a simplified model for distribution and degradation of insulin in the body, the absorption model is used to simulate variations in plasma free insulin concentrations with different delivery schedules, i.e., bolus injection and dosage by means of an infusion pump. The simulations show that a pump repetition frequency of 1-2 per hr is sufficient to secure an almost constant plasma insulin concentration.

Absorption↗

Glycaemic threshold for changes in electroencephalograms during hypoglycaemia in patients with insulin dependent diabetes.

The relation between blood glucose concentration, the symptoms and signs of hypoglycaemia, and electroencephalographic changes in diabetic patients is not known. The effect of hypoglycaemia on brain function was studied in 13 patients with insulin dependent diabetes. During a gradual fall in blood glucose concentration induced by a bolus injection of insulin followed by an intravenous infusion of insulin, during 60 minutes of biochemical hypoglycaemia, and after restoration of normoglycaemia with intravenous glucose electroencephalograms were evaluated continuously by period-amplitude analysis; blood samples were taken every 10 minutes throughout. No changes were seen in electroencephalograms when the blood glucose concentration was above 3 mmol/l. At a median blood glucose concentration of 2.0 (95% confidence interval 1.7 to 2.3) mmol/l alpha activity decreased abruptly in the electroencephalograms concomitant with an increase in theta activity, reflecting neuronal dysfunction in the cortex. When the blood glucose concentration was further lowered changes were observed in the electroencephalograms indicating that deeper brain structures were affected. A normal electroencephalogram was re-established at a blood glucose concentration of 2.0 (1.8 to 2.1) mmol/l. There was no significant correlation between the blood glucose concentration at the onset of changes in the electroencephalograms and age, duration of diabetes, insulin dose, haemoglobin A1c concentration, initial blood glucose concentration, rate of fall in blood glucose concentration, and appearance of symptoms and signs of hypoglycaemia. Changes in electroencephalograms during hypoglycaemia appear and disappear at such a narrow range of blood glucose concentrations that the term threshold blood glucose concentration for the onset of such changes seems justified.

Adult↗

Insulin clearance from plasma in type I (insulin-dependent) diabetic patients: influence of glycaemic level.

The influence of the actual glycaemic level on the kinetics of insulin disappearance from plasma was studied in 16 type I diabetic patients. Constant intravenous infusion of insulin (1-5 mU.kg-1.min.-1) was used to achieve different levels of steady state plasma free insulin concentrations, while the blood glucose level was clamped at normoglycaemia, 4.1 +/- 0.1 mmol/l (mean +/- S.E.M.), and mild hyperglycaemia, 8.2 +/- 0.1 mmol/l. The experimentally determined data were compared using a previously validated model of first order kinetics for insulin disappearance from plasma in diabetic patients. At the physiological insulin concentration range the median clearance rate of insulin was 23 ml.kg-1.min-1 (range 16-26) at normoglycaemia and 23 ml.kg-1.min-1 (19-35) at hyperglycaemia (P = 0.45). At supraphysiological levels, insulin was cleared at a lower rate at normoglycaemia than at hyperglycaemia. No correlation was observed between the insulin clearance rate and the duration of diabetes or the haemoglobin A1C level (both Spearman's rho = 0.08). In conclusion, the insulin clearance rate from plasma is independent of the actual glycaemic level and hardly influenced by the long-term glycaemic level in type I diabetic patients.

Adult↗

Insulin/C-peptide response to intravenous glucagon. A dose-response study in normal and non-insulin-dependent diabetic subjects.

The C-peptide and insulin secretory responses to increasing doses of iv glucagon (1, 2, 5, 10 micrograms/kg body weight and 1 mg (only diabetics] were investigated in six lean non-insulin-dependent diabetic patients and six normal subjects, matched for body weight and fasting blood glucose concentrations. A well defined relationship between glucagon dose and the C-peptide/insulin response was observed in both groups. The course of the dose-response curves was significantly different in diabetics. The maximal obtainable C-peptide response (E-max) was reduced to 53% of the response in normal subjects (P = 0.037), and the insulin response was reduced to 52% (P = 0.014). E-max was reached in diabetics with only 10 micrograms/kg of glucagon, whereas higher doses seem to be needed in the control group. However, the glucagon dose causing 50% of E-max (ED50) was not significantly higher. Thus, the widely accepted use of 1 mg of glucagon to test residual beta cell function secures a maximal response of both insulin and C-peptide in non-insulin-dependent diabetic subjects. In addition, our data support the theory that beta cell deficiency is a basic feature of non-insulin-dependent diabetes.

Blood Glucose↗

Kinetics of human and porcine insulins in normal and type I diabetic subjects.

Human and porcine insulin were infused intravenously at various rates into 4 normal and 6 Type I diabetic subjects, using a double-blind cross-over design and a euglycaemic glucose clamp, to study the relationship between the steady state plasma free insulin concentration and its plasma disappearance rate. By mathematical model validation procedures both human and porcine insulin were found to obey saturation kinetics in normal subjects and first order kinetics in diabetic subjects in the insulin concentration range studied (0-2 nmol/l). No differences in parameters were observed between the two types of insulin in the study groups. The median clearance rate of insulin in normal subjects was 31 ml.kg-1.min-1 at infinitesinal plasma insulin concentrations versus 21 ml.kg-1.min-1 in the diabetic subjects. Thus, at physiological plasma concentrations both human and porcine insulin disappear faster via the saturable mechanism(s) found in normal subjects than via the apparently linear mechanism(s) found in diabetic subjects.

Adult↗

Kinetics of insulin disappearance from plasma in cortisone-treated normal subjects.

The effect of glucocorticoid excess on insulin disappearance from plasma was examined in eight normal men during cortisone treatment (50 mg orally twice daily for 4 d) and in the absence of any medication (control) in random order. Constant infusion of insulin (1-5 mU/kg/min) was used to achieve different levels of steady state plasma insulin concentrations; normoglycaemia was preserved by a glucose clamp technique. The experimentally determined data were compared using a previously validated model of saturation kinetics. The amount of glucose required to maintain normoglycaemia during the insulin infusions was significantly less in the cortisone study than in the control study, while the parameter estimates for the kinetics of insulin disappearance from plasma were unaffected by cortisone. Thus, insulin action and insulin kinetics in the steady state are dissociated in normal subjects rendered insulin resistant by short-term cortisone treatment.

Adult↗

Kinetic models for insulin disappearance from plasma in type I diabetic patients.

We have tested whether our previous finding in normal subjects that the disappearance of insulin from plasma obeys saturation kinetics alone also applies to type I diabetic patients. In six long-term diabetic patients steady state plasma insulin concentrations resulting from constant insulin infusion at different rates were compared with the predictions of three models for the kinetics of insulin in plasma. The models allowed the existence of non-saturable (first order equation) or saturable (Michaëlis-Menten equation) mechanisms, or both. The minimal acceptable model included saturation kinetics alone in four subjects and first order kinetics alone in two subjects. The clearance of insulin in diabetic patients, calculated from the best fitting model, was 18.0 (median, range 10.0-23.7) ml X kg-1 X min.-1 versus 25.0 (18.6-47.1) ml X kg-1 X min.-1 in six normal subjects (2p = 0.008). Insulin thus disappears from plasma at a lower rate in diabetic patients than in normal subjects at physiological plasma concentrations.

Adult↗

Cognitive function during hypoglycaemia in type I diabetes mellitus.

Neuropsychological testing was carried out in 16 insulin dependent (type I) diabetic men during four periods when mean blood glucose concentrations were (A) 6.3 (SEM 0.13) mmol/l (113.5 (SEM 2.3) mg/100 ml), (B) 2.9 (0.05) mmol/l (52.3 (0.9) mg/100 ml), and (C) 1.8 (0.03) mmol/l (32.4 (0.05) mg/100 ml), all measured during intravenous insulin infusion, and (D) 6.1 (0.13) mmol/l (109.9 (2.3) mg/100 ml), measured after intravenous glucose. The total neuropsychological test score decreased between periods A and B, A and C, and B and C, whereas improvement occurred between periods C and D (all p less than 0.02). These results were not due to changes in individual subjects alone but were consistent for the whole group. During hypoglycaemia there were changes in the patients' estimates of elapsed time, which were underestimated at period C as compared with the estimates at periods A, B, and D (all p less than 0.05). None of the 16 patients noticed symptoms of hypoglycaemia at period A or B, 12 reported symptoms at C, and one at D. Patients with type I diabetes may show a deterioration in neuropsychological skills during periods of asymptomatic subnormal or hypoglycaemic blood glucose concentrations.

Blood Glucose↗