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Biomedical subjects

A Vølund

Publications and source records attributed to A Vølund.

At least 19 recordsLinked to original sources

beta-cell function and glucose and lipid oxidation in Graves' disease.

OBJECTIVE: Abnormal glucose metabolism with impaired glucose tolerance has been documented in patients with thyrotoxicosis but the pathogenesis is not fully understood. Therefore, the aim of the present study was to study the beta-cell function and the meal induced oxidative glucose and lipid metabolism in patients with thyrotoxicosis. DESIGN: After an overnight fast the impact of hyperthyroidism on standard mixed meal induced glucose oxidation, lipid oxidation and beta-cell function was studied. PATIENTS: Nine untreated patients with Graves' disease were compared to 9 age and weight matched healthy controls. MEASUREMENTS: Glucose and lipid oxidation were studied by indirect calorimetry before and after the meal. The insulin secretion rate was calculated by the 'combined model' approach, after which the insulin secretion rates and the ambient glucose levels were cross-correlated. The slope of these regression lines was used as a measure of beta-cell sensitivity to glucose and denotes the insulin secretory capacity. beta-Cell function was further evaluated by measurement of proinsulin and its conversion intermediates. Glucoregulatory hormones were also measured. The findings were correlated to the thyroid hormone levels. RESULTS: Fasting blood glucose and post-prandial glucose response were increased in patients (P < 0.01). The hyperthyroid patients displayed a 'dual' beta-cell defect: (a) inability to increase the insulin response appropriately to hyperglycaemia and (b) increased proinsulin levels both in the fasting state and in response to a meal. Indirect calorimetry showed increased lipid oxidation in the fasting state and at the end of the meal (P < 0.01). No difference in glucose oxidation was demonstrated in the fasting state but the post-prandial glucose oxidation was enhanced in the patients (P < 0.01). The adrenaline response was normal, whereas the noradrenaline response was impaired or absent in the patients. The thyroid hormone levels were significantly correlated to fasting levels of blood glucose, insulin, free fatty acids and lipid oxidation, but not to fasting C-peptide, glucose oxidation or catecholamines. CONCLUSIONS: Untreated Graves' disease was associated with glucose intolerance due to quantitative as well as qualitative beta-cell defects. The lipid oxidation was increased in the fasting state and at the end of the meal; after the meal the increase in glucose oxidation was more pronounced in the patients. Thyroid hormones thus increased the oxidation but not by an increase in catecholamines. Indeed, the post-prandial sympathetic response was blunted.

Adult

Intranasal insulin: the effects of three dose regimens on postprandial glycaemic profiles in type II diabetic subjects.

In both fasting normal and diabetic subjects, nasally administered insulin achieves significant falls in plasma glucose concentrations. Repeated administration before and during a meal has been necessary to lower postprandial glycaemic excursion in subjects with NIDDM. We have studied the use of Novolin Nasal which employs a non-irritant, lecithin-based enhancer as a vehicle for human insulin, on postprandial glucose profiles in NIDDM subjects to determine efficacy, optimal dose frequency, and tolerability. Seventeen NIDDM subjects (15 men, 2 women) participated in a randomized, partially blinded, placebo-controlled, crossover trial of three active treatment regimens (nasal insulin, 120 U at 0 min, 60 U at 0 and +20 min or 120 U at +20 min) in relation to a standardized mixed meal given at 0 min. All active treatments significantly reduced postprandial glucose concentrations compared to placebo. Intranasal insulin given at 0 min at a dose of 60 U or 120 U resulted in a 50% reduction in postprandial incremental glucose compared to placebo over the first 2 h, whereas treatment with 60 U both at 0 and 20 min lead to a 70% reduction over the 240 min postprandial period. Post-prandial intravenous insulin was the least effective. There were no episodes of symptomatic hypoglycaemia. Local tolerability was excellent with only four reports of transient nasal irritation out of a total of 68 doses. The delivery device was accurate with intra-device CV of delivered dose of 4.8%.(ABSTRACT TRUNCATED AT 250 WORDS)

Administration, Intranasal

Sham feeding increases glucose tolerance by a mechanism independent of insulin secretion in normal subjects.

The effect of sham feeding on glucose metabolism was studied in eleven normal subjects. At random, one intravenous glucose tolerance test (25 g glucose/4 min) was preceded by 15 minutes of pure sham feeding (the sight and smell of a meal but not the taste) which continued for the first 15 minutes after the intravenous glucose load. Pancreatic polypeptide increased significantly during sham feeding and decreased significantly in response to the glucose injection. The glucose disappearance rate was significantly improved from 1.56 +/- 0.22 to 2.07 +/- 0.33 min-1 when the glucose tolerance test was preceded by sham feeding (p = 0.02). Incremental areas of plasma insulin, plasma C-peptide, and insulin secretion rates were not significantly influenced by sham feeding. We conclude that sham feeding by the sight and smell of food improves glucose tolerance in normal subjects without alteration in insulin secretion.

Adult

The guinea pig maximization test--with a multiple dose design.

The guinea pig maximization test (GPMT) is usually performed with one moderately irritant induction dose of the allergen and gives a qualitative assessment-hazard identification-of the allergenicity of the chemical. We refined the GPMT by applying a multiple dose design and used 30 guinea pigs in a test divided into a control group and 5 test groups of 5 animals. Each group was treated with different induction concentrations of the allergens: formaldehyde, cinnamic aldehyde, propyl paraben, lidocaine, mercaptobenzothiazole or chlormethylisothiazolinone/methylisothiazolinone. The test results were analysed using a logistic multidose response model. The precision of the results depends only on the total number of animals, the dose design and the response pattern. The maximal sensitization rate for a chemical was determined, and the intracutaneous induction concentration that sensitized 50% of the animals (EC50) (or another percentage) was estimated. Further studies are needed to prove the validity of this idea. However, improvements in protocols for the GPMT are needed to reduce interlaboratory variability in results and to reduce the number of animals used for allergenicity tests.

Acrolein

Elevated vibration perception threshold in young patients with type 1 diabetes in comparison to non-diabetic children and adolescents.

The vibration perception threshold (VPT) was investigated by biothesiometry in 61 children (28 boys) with Type 1 diabetes, mean age 15.5 (range 10-21) years, duration of diabetes 6.9 (range 1-19) years, and in 76 healthy children (39 males), mean age 13.8 (range 10-19) years. The measurements were performed in triplicate on the right second finger and on the right first toe. The vibration perception threshold was significantly increased (p < 0.0001) in the young diabetic patients (mean +/- SD, finger 4.1 +/- 1.1 V, toe: 5.7 +/- 1.3 V) compared to healthy children (finger 3.4 +/- 0.9 V, toe: 3.6 +/- 1.3 V). Twenty percent of adolescents with Type 1 diabetes had a VPT above the 95th percentiles (finger: 5 V, toe 6.5 V) for normal control children. In healthy controls a significant correlation (r = 0.27, p < 0.01) was found for VPT in finger versus toe. This relationship was not significant in the diabetic group and may be due to reduced sensitivity of the fingertips caused by frequent blood glucose testing. Age, Tanner stage and height were significantly correlated to VPT (toe) in both diabetic and normal boys, while duration of diabetes, HbA1c, arterial blood-pressure and body mass index were not significantly associated with VPT in any of the groups. The results indicate that changes in VPT appears early in childhood and emphasize a need for further studies of subclinical neuropathy in young patients with Type 1 diabetes.

Adolescent

Perinatal determinants among children who later develop IDDM.

OBJECTIVE: The aim of this study was to investigate whether children who develop insulin-dependent diabetes mellitus (IDDM) differ in some aspects from a matched control group at the time of birth. RESEARCH DESIGN AND METHODS: We studied all children who were born in Denmark during the period 1973-1977 and admitted to a Danish hospital with a diagnosis of IDDM during 1978-1989. The study was conducted by combining two nationwide registries, The National Patient Registry and The Birth Registry. RESULTS: The criteria were fulfilled by 837 children. Data regarding the age of the parents, the number of previous pregnancies of the mother, the month of birth, and the birth weight and length of the children who developed IDDM were compared with the data of an age- and sex-matched control group of 837 children without IDDM. We did not detect any significant differences between the two groups with respect to the parameters studied. CONCLUSIONS: No differences in perinatal determinants could be demonstrated among Danish children who develop IDDM compared with children without diabetes.

Adolescent

Dose-response testing with nickel sulphate using the TRUE test in nickel-sensitive individuals. Multiple nickel sulphate patch-test reactions do not cause an 'angry back'.

The aim of this study was to employ the TRUE test assay to confirm the presence or absence of the 'angry back' phenomenon, i.e. that a strong positive patch-test reaction heightens adjacent patch-test response. In addition, we wished to establish the dose-response relationship for nickel sulphate patch tests among nickel-sensitive patients. Seventy-two nickel-sensitive patients, 36 in Odense and 36 in Stockholm, were tested with a 10-step nickel sulphate dilution series (TRUE test) and two placebo patches. The position of the patches was rotated, to provide a balanced spatial distribution of the different concentrations. Readings were performed blind. The results were analysed by means of polynomial multiple-regression methods and a logistic dose-response model. Half the patients (38/72) had a threshold patch-test concentration for nickel sulphate in the range of 3-0.3 microgram/cm2. The 'angry back' phenomenon was not apparent in this study, as the spill-over effect was not statistically significant. Strong reactions to high concentrations of nickel sulphate did not enhance the response to adjacent lower concentrations of nickel sulphate.

Dermatitis, Allergic Contact

Pancreatic beta-cell function and glucose metabolism in human segmental pancreas and kidney transplantation.

beta-Cell function and glucose metabolism were studied in eight insulin-dependent diabetic recipients of combined segmental pancreas and kidney transplant with peripheral insulin delivery (Px), in eight nondiabetic kidney-transplant individuals (Kx), and in eight normal subjects (Ns) after three consecutive mixed meals. All subjects had normal fasting plasma glucose, but increased basal levels of C-peptide were demonstrated in the transplant groups (P < 0.05 relative to Ns). Postprandial hyperglycemia was increased 14% in Kx and 32% in Px (P < 0.05), whereas compared with Ns postprandial C-peptide levels were increased three- and twofold, respectively, in Kx and Px (P < 0.05). Compared with Ns basal insulin secretion rate (combined model) was increased 2-fold in Kx and 1.4-fold in Px (P < 0.05). Maximal insulin secretion rate was reduced 25% in Px compared with Kx (P < 0.05) but not different from that of Ns (P NS). Also, maximal insulin secretion rate occurred later in Px than in controls (Tmax: Px 50 min, Kx 30 min, and Ns 32 min; P < 0.05). The total integrated insulin secretion was increased 1.4-fold in Px compared with Ns (P < 0.05) but decreased 1.4-fold compared with Kx (P < 0.05). Fasting and postprandial proinsulin-to-C-peptide molar ratios were inappropriately increased in Px compared with Kx and Ns. Basal hepatic glucose production was increased 43% in Px and 33% in Kx compared with Ns (P < 0.05). Postprandial total systemic glucose appearance was similar in all three groups, whereas peripheral glucose disposal was 15% reduced in Px (P < 0.05).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Chemical stability of insulin. 1. Hydrolytic degradation during storage of pharmaceutical preparations.

Hydrolysis of insulin has been studied during storage of various preparations at different temperatures. Insulin deteriorates rapidly in acid solutions due to extensive deamidation at residue AsnA21. In neutral formulations deamidation takes place at residue AsnB3 at a substantially reduced rate under formation of a mixture of isoAsp and Asp derivatives. The rate of hydrolysis at B3 is independent of the strength of the preparation, and in most cases the species of insulin, but varies with storage temperature and formulation. Total transformation at B3 is considerably reduced when insulin is in the crystalline as compared to the amorphous or soluble state, indicating that formation of the rate-limiting cyclic imide decreases when the flexibility of the tertiary structure is reduced. Neutral solutions containing phenol showed reduced deamidation probably because of a stabilizing effect of phenol on the tertiary structure (alpha-helix formation) around the deamidating residue, resulting in a reduced probability for formation of the intermediate imide. The ratio of isoAsp/Asp derivative was independent of time and temperature, suggesting a pathway involving only intermediate imide formation, without any direct side-chain hydrolysis. However, increasing formation of Asp relative to isoAsp derivative was observed with decreasing flexibility of the insulin three-dimensional structure in the formulation. In certain crystalline suspensions a cleavage of the peptide bond A8-A9 was observed. Formation of this split product is species dependent: bovine greater than porcine greater than human insulin. The hydrolytic cleavage of the peptide backbone takes place only in preparations containing rhombohedral crystals in addition to free zinc ions.

Drug Stability

Placebo-controlled comparison of captopril, metoprolol, and hydrochlorothiazide therapy in non-insulin-dependent diabetic patients with primary hypertension.

The antihypertensive effect of captopril, metoprolol, and hydrochlorothiazide was compared in 23 non-insulin-dependent (NIDDM) diabetic patients less than or equal to 75 years of age, with borderline to moderate primary hypertension. In a double blind, placebo-controlled cross-over trial the patients were treated with 25 to 50 mg captopril, 50 to 100 mg metoprolol, 12.5 to 25 mg hydrochlorothiazide, and placebo, each given twice daily for 8 weeks. Antidiabetic treatment remained unchanged during the study. After receiving placebo for a 4 week run-in period, arterial blood pressure was 168/101 +/- 93/10 (mean +/- SEM) mm Hg. Diastolic blood pressure was lowered significantly during all active treatment periods compared to the placebo value of 97 +/- 2 mm Hg: captopril, 92 +/- 1 mm Hg; metoprolol, 90 +/- 1 mm Hg; hydrochlorothiazide, 91 +/- 1 mm Hg. Metabolic variables were not significantly altered by captopril and metoprolol, while hydrochlorothiazide treatment increased hemoglobin A1c from 7.5 +/- 0.3 to 8.2 +/- 0.4% (P less than .001), decreased high-density lipoprotein-cholesterol from 1.19 +/- 0.08 to 1.10 +/- 0.06 mmol/L (P less than .05). Glomerular filtration rate, urinary albumin excretion, orthostatic blood pressure response, and digital systolic blood pressure in the lower limb remained unchanged during the active treatment periods. The frequency of subjective adverse effects was acceptable during active treatment and not significantly different compared to placebo. We conclude that antihypertensive treatment for 8 weeks with captopril or metoprolol in NIDDM patients is well-tolerated and causes no deterioration in metabolic control and kidney function, while hydrochlorothiazide causes a slight deterioration in glycemic control and lipid profile.

Aged

Relationship between insulin injection regimen and metabolic control in young Danish type 1 diabetic patients. The Danish Study Group of Diabetes in Childhood.

In 1987 and 1989 nationwide screening for HbA1c was carried out in Denmark. Twenty-one paediatric departments treating children with diabetes participated in the first study and twenty-two in the second. During this 2-year period metabolic control deteriorated despite the fact that the use of multiple injection regimens increased from 39% to 54%. The possible reasons for the deterioration in metabolic control were examined in the 429 children (> or = 9 years, 1987) and adolescents (< 18.8 years, 1989) who participated in both studies. All had diabetes duration of greater than one year (1987) and all were treated by the same departments during the study period. The children were divided into three subgroups according to injection regimen. Group A (n = 128) received twice-daily insulin injections; group B (n = 171) were on multiple injections (three or more) while group C (n = 130) shifted from twice-daily insulin to multiple injections during the 2-year period. A deterioration of blood glucose control as assessed by HbA1c was observed in all three treatment groups. For group C the 2-year increase in daily insulin dose was more pronounced for males (19%) than for females (6%). Body mass index increased significantly in all treatment groups during the study period. The 1989 mean levels were higher in group B (males 20.6 kg m-2, females 22.0 kg m-2) than group A (males 19.3 kg m-2, p = 0.002; females 20.7 kg m-2, p = 0.000003) and group C (males 19.4 kg m-2, p = 0.0005; females 20.7 kg m-2, p = 0.008).(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent

Influence of portal delivery of insulin on intracellular glucose and lipid metabolism.

We have investigated whether portal delivery of insulin as a result of intrahepatic islet cell autografts would prevent the development of metabolic alterations. Seven pancreatectomized dogs received islet autografts transplanted into the liver through the portal vein (PD). One year after transplantation, their intravenous glucose tolerance and insulin responses were similar to age-matched control (C) dogs (n = 5). Also, normal triglyceride content in arterial smooth muscle and striated muscle was observed in the dogs with portal insulin delivery in contrast to the substantial increases we observed in pancreatectomized dogs (n = 7) with pancreatic autografts that drained into the systemic circulation (SD). In these dogs, the tissue samples were taken at the age of 3 to 4 years. Triglyceride content (mean +/- SEM) in the aorta was 4.9 +/- 1.2 versus 2.6 +/- 0.6 versus 20.7 +/- 8.0 mumol/g (P less than .01) in C, PD, and SD models, respectively. The corresponding values for triglyceride content in striated muscles were 29.1 +/- 1.2, 25.9 +/- 1.5, and 171.4 +/- 46.6 mumol/g (P less than .01). Glucose-6-phosphate dehydrogenase (G-6-PDH) and malic enzyme, key enzymes for lipid synthesis, were also normal in the PD model, in contrast to the fivefold increased activity of these enzymes in the SD model (P less than .01). The glycolytic enzymes, hexokinase (HK) and phosphofructokinase (PFK), were normal compared with the decreased values in the SD. These data indicate that it is possible to normalize glucose and lipid metabolism in arterial walls by portal delivery of insulin, following intrahepatic islet cell transplantation.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

In vitro and in vivo potency of insulin analogues designed for clinical use.

Analogues of human insulin designed to have improved absorption properties after subcutaneous injection have been prepared by recombinant DNA technology. Five rapidly absorbed analogues, being predominantly in mono- or di-meric states in the pharmaceutical preparation, and a hexameric analogue with very low solubility at neutral pH and slow absorption, were studied. Receptor binding assays with HEP-G2 cells showed overall agreement with mouse free adipocyte assays. Two analogues, B28Asp and A21Gly + B27Arg + B30Thr-NH2, had nearly the same molar in vitro potency as human insulin. Another two showed increased adipocyte potency and receptor binding, B10Asp 194% and 333% and A8His + B4His + B10Glu + B27His 575% and 511%, while B9Asp + B27Glu showed 29% and 18% and the B25Asp analogue only 0.12% and 0.05% potency. Bioassays in mice or rabbits of the analogues except B25Asp showed that they had the same in vivo potency as human insulin 1.00 IU = 6.00 nmol. Thus the variation had the same in vivo potency as human insulin 1.00 IU = 6.00 nmol. Thus the variation in in vivo potency reflects the differences in receptor binding affinity. Relative to human insulin a low concentration is sufficient for a high affinity analogue to produce a given receptor complex formation and metabolic response. In conclusion, human insulin and analogues with markedly different in vitro potencies were equipotent in terms of hypoglycaemic effect. This is in agreement with the concept that elimination of insulin from blood and its subsequent degradation is mediated by insulin receptors.

Adipose Tissue

Intravenous insulin infusion to simulate subcutaneous absorption. Bioavailability and metabolic sequelae.

OBJECTIVE: To determine the bioavailability and bioactivity of subcutaneously injected insulin. RESEARCH DESIGN AND METHODS: A randomized block design with six male mongrel dogs as subjects. In protocol 1, purified pork insulin was infused intravenously to simulate the pattern of appearance in the blood that would have been expected from subcutaneous injection. Three intravenous doses (0.05, 0.10, and 0.15 U/kg) were infused on separate days in a pattern (0-300 min) designed to approximately simulate the absorption rate of subcutaneously injected insulin. In protocol 2, interscapular subcutaneous injections of pork insulin at 0.10 U/kg were made. RESULTS: Integrated insulin, decrement in plasma glucose, and maximal glucose clearance for subcutaneous injection experiments were similar to intravenous infusion of equal dose (P greater than 0.10) but significantly different from low-dose infusions (P less than 0.025). Similar results were observed for hepatic glucose output and glucose uptake. Hypoglycemia elicited counterregulatory responses that appeared to be under a threshold differentiated at a plasma glucose of approximately 3 mM. Integrated insulin was plotted against insulin dose to create dose-response curves for intravenous data. The curve was then used to predict the actual appearance rate of insulin in plasma for subcutaneous injection. The estimated bioavailability of subcutaneous insulin was 103.0 +/- 10.5% of the injected dose. CONCLUSIONS: We concluded that, in dogs, insulin delivered subcutaneously in the interscapular area is not significantly degraded before absorption, resulting in metabolic effects equal to intravenous insulin infusion of equivalent dose.

Animals