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Biomedical subjects

C Binder

Publications and source records attributed to C Binder.

At least 91 records · Page 5Linked to original sources

Plasma zinc concentrations during the first 2 years after diagnosis of insulin-dependent diabetes mellitus: a prospective study.

Studies of zinc status in insulin-dependent diabetes mellitus (IDDM) have shown contradictory results. Zinc is essential for many enzymes involved in the human metabolism and may play a role in the biosynthesis and storage of insulin in the B-cell. We therefore prospectively followed 26 patients (14 males and 12 females) with newly diagnosed IDDM in order to determine the plasma zinc variation at the time of diagnosis and after 1, 3, 6, 12 and 24 months. Seventy-two healthy persons (36 males and 36 females) served as controls. Only minor differences in plasma zinc were demonstrated during the first 2 years of IDDM. A sex difference was found in healthy controls but only after 24 months in the diabetics. Quantitative changes of the B-cell function, development of insulin antibodies, age, body weight and serum albumin did not correlate with the course of plasma zinc.

Adolescent↗

Clinical manifestations of respiratory tract infections due to respiratory syncytial virus and rhinoviruses in hospitalized children.

From September 1984 to May 1986, nasopharyngeal secretions were obtained from 519 children with some form of respiratory tract infection. The nasal secretions were screened for respiratory syncytial virus (RSV), rhinoviruses, adenoviruses, parainfluenza virus types 1, 2, 3, influenza virus types A and B, and enteroviruses by tissue culture virus isolation technique and/or enzyme-linked immunosorbent assay. A uniform questionnaire gave information about age, sex, individual signs and symptoms, findings of the physical examination and clinical diagnosis of the patients. RSV was detected in 119 (23%) specimens and was thus the most frequent causative agent of respiratory infections. After RSV, rhinoviruses were the most frequently recovered pathogens accounting for 60 (12%) cases of acute respiratory disease. A comparison of the individual signs and symptoms, the findings of the physical examination and the clinical diagnosis of RSV and rhinovirus infected children revealed that there was no characteristic clinical pattern associated with either of the two viral respiratory pathogens. According to our results, rhinovirus infections were a major cause of lower respiratory tract infections in hospitalized children less than or equal to 3 years old.

Child, Preschool↗

Elevated proinsulin in healthy siblings of IDDM patients independent of HLA identity.

Based on the recent demonstration of elevated serum proinsulin levels in cystic fibrosis patients with impaired glucose tolerance, it was hypothesized that proinsulin could be an indicator of altered beta-cell function. We therefore analyzed fasting proinsulin levels in 99 siblings of insulin-dependent diabetes mellitus (IDDM) patients, most of them discordant for diabetes for greater than 6 yr. The results from this group were compared with the results from 41 healthy age- and sex-matched control subjects with no family history of diabetes. Median (range) fasting proinsulin in siblings was 8.9 pM (1.7-58 pM) vs. 3.8 pM (less than 1.2-28 pM) in control subjects (P less than .00001). There was no difference between the groups in fasting blood glucose concentrations. Both groups had fasting insulin concentrations within the normal range with a tendency toward lower values in the siblings: 108 pM (60-237 pM) vs. 118 pM (71-175 pM) (P = .07). The 99 siblings were subdivided into groups according to HLA sharing with their diabetic proband. The concentration of proinsulin, insulin, and blood glucose among the groups of 33 HLA-identical, 40 HLA-haploidentical, and 26 nonidentical siblings did not differ significantly. The fasting proinsulin level did not correlate with fasting levels of insulin, blood glucose, age, or body weight. We conclude that fasting proinsulin is elevated in healthy siblings of IDDM patients, whereas fasting insulin is normal or slightly decreased independent of HLA identity with their diabetic sibling. Elevated proinsulin levels could represent a family trait, perhaps mirroring a beta-cell more vulnerable to destruction, or it could reflect previous beta-cell damage that does not lead to IDDM.

Adolescent↗

Hypoglycemia in IDDM.

Hypoglycemia causes substantial morbidity and some mortality in insulin-dependent diabetes mellitus (IDDM). It is often the limiting factor in attempts to achieve euglycemia. The prevention or correction of hypoglycemia normally involves both dissipation of insulin and activation of glucose counterregulatory systems. Among the latter, glucagon plays a primary role initially, whereas epinephrine is not critical, although it becomes critical when glucagon is deficient. Growth hormone and cortisol play demonstrable roles in recovery from prolonged hypoglycemia. Glucose autoregulation may be involved in defense against severe hypoglycemia. With respect to pathophysiology, counterregulatory systems are involved in at least five clinical glucoregulatory syndromes. Defective glucose counterregulation is associated with, and best attributed to, combined deficiencies of the glucagon and epinephrine responses to plasma glucose decrements. Almost assuredly in concert with hypoglycemia unawareness, it results in a markedly increased frequency of severe hypoglycemia, at least during intensive therapy of IDDM. Defined as a night to morning increase in plasma glucose concentration, the dawn phenomenon is thought to result from dissipation of insulin plus the effects of nocturnal growth hormone secretion. Despite a sound rationale, the clinical relevance of the Somogyi phenomenon has been recently questioned. The clinical impression of altered glycemic thresholds for symptoms, i.e., patients with poorly controlled IDDM suffer symptoms of hypoglycemia at relatively high plasma glucose levels, whereas those with very well-controlled IDDM often tolerate subnormal glucose levels, has received experimental support. Clearly, hypoglycemia in IDDM is a problem that needs to be solved. Numerous issues need to be addressed through both basic and clinical research.(ABSTRACT TRUNCATED AT 250 WORDS)

Blood Glucose↗

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↗

Contribution of rhinoviruses to respiratory viral infections in childhood: a prospective study in a mainly hospitalized infant population.

A prospective study was carried out to investigate the contribution of rhinoviruses to respiratory viral infections in children and to investigate the influence of age, passive smoking, and educational level of the head of the family on the clinical course of viral respiratory disease. Nasopharyngeal aspirates from 519 infants (90.8% inpatients, 9.2% outpatients) were screened for the presence of rhinoviruses, respiratory syncytial virus (RSV), adenoviruses, parainfluenza virus types 1, 2, 3, influenza virus types A and B, and enteroviruses by tissue culture isolation procedure, enzyme-linked immunosorbent assay, and/or indirect immunofluorescence method. The total detection rate was 42.4%. The rate decreased with increasing age. Higher detection rates were observed in specimens from children suffering from a more severe respiratory disease, and the highest rate of virus-positive specimens was found in those aged 0-6 months. Second to RSV (23.1%), rhinoviruses were the most frequently recovered pathogens found in 11.8% of children with acute respiratory tract infections (RTI). In the age group 0-6 months the majority of severe respiratory illnesses was due to RSV. In infants aged 6 months to 1 year a decrease in the number of severe illnesses caused by RSV and an increase in the number of children suffering from a more severe RTI caused by rhinoviruses was found. With the possible exception of one group of children infected with rhinoviruses, a negative effect of passive smoking on the incidence and severity of viral RTI could not be established. A beneficial effect of breast feeding on the severity of viral RTI could not be definitely demonstrated.

Austria↗

Insulin autoantibodies are associated with islet cell antibodies; their relation to insulin antibodies and B-cell function in diabetic children.

Blood was drawn from 74 children, 3-16 years old, at diagnosis of Type 1 (insulin-dependent) diabetes and before the first insulin injection. Insulin autoantibodies were detected with a polyethylen-glycol-method in 27/74 (36.4%) and with an immuno-electrophoretic method in 6/74 (8.1%). Islet cell cytoplasmic antibodies detected by indirect immuno-fluorescence were found in 49/74 patients (66.2%), who included as many as 23 of the 27 patients with insulin autoantibodies determined with the polyethylen-glycol-method (p less than 0.01). The proportion of insulin autoantibody-positive patients who developed insulin antibodies during the first 9 months of insulin treatment was not significantly greater (51.8%) than that of insulin autoantibody-negative patients (44.6%), but patients with both islet cell antibodies and insulin autoantibodies at diagnosis produced more insulin antibodies during the first 9 months (p less than 0.05). There was no difference in fasting or meal stimulated serum C-peptide after 3, 9 or 18 months as related to occurrence of insulin autoantibodies and/or islet cell antibodies. The correlation between insulin autoantibodies and islet cell antibodies indicates that both types of autoantibodies reflect the same immunological process, although the lack of correlation to C-peptide may indicate that they play a minor causal role. In addition, the results show that patients with an active autoimmune process evidently tend to produce more insulin antibodies during the first months of insulin treatment, but the islet cell antibodies and insulin autoantibodies-positive patients had at least as good residual B-cell function as patients without autoantibodies at diagnosis.(ABSTRACT TRUNCATED AT 250 WORDS)

Autoantibodies↗

Incidence of nocturnal hypoglycaemia in insulin-dependent diabetic patients on intensive therapy.

The frequency of nocturnal hypoglycaemia, i.e. blood glucose concentration (BG) less than 3.0 mmol/l, was evaluated in consecutively selected insulin-dependent patients on multiple insulin injections (MII), n = 23, or continuous subcutaneous insulin infusions (CSII), n = 25. Blood was sampled hourly from 23.00 to 07.00. Seven patients (30%) on MII had at least one BG less than 3.0 mmol/l during the night. Eleven patients (44%) on CSII had hypoglycaemia (NS). The total number of BGs less than 3.0 mmol/l was higher on CSII, 42 of 225, versus 16 of 207 on MII (p less than 0.025). The duration of hypoglycaemia was 2 hours (range 1-6) on MII and 4 hours (range 1-7) on CSII with a maximal prevalence at 4 hours and between 5 and 7 hours, respectively (p = less than 0.05). The frequency of nocturnal hypoglycaemia is high in patients on intensified insulin regimens. Nocturnal hypoglycaemia occurs later in the night and is of longer duration on CSII than on MII. HbA1c, BG before bedtime and in the morning might be useful in the evaluation of nocturnal hypoglycaemia.

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↗

Improved beta-cell function after intensive insulin treatment in severe non-insulin-dependent diabetes.

In Type II, non-insulin-dependent diabetes, insulin secretion is often reduced to the point where oral hypoglycaemic agents fail to control the plasma glucose level. We studied 12 patients (age 41-66 years; 4 lean, 8 obese) with Type II diabetes mellitus for 1-25 years who were uncontrolled despite maximal dose glibenclamide and metformin. After withdrawal of medication, blood glucose control was determined by measuring glucose before and 2 h after each meal for 48 h, and beta-cell function by insulin or C-peptide response to glucagon and to iv glucose. Following these tests, intensive insulin treatment (CSII) was initiated, and near-euglycaemia (mean of 7 daily glucose determinations less than 7.7 mmol/l) was maintained for 16.6 +/- 1.5 days, at which time the tests were repeated. Mean daily insulin requirement was 61 +/- 9 IU (0.81 +/- 0.09 IU/kg). Glucose control was improved after cessation of CSII (mean glucose 12.7 +/- 0.6 mmol/l after vs 20 +/- 1.5 mmol/l before, P less than 0.005). Maximum incremental C-peptide response improved both to glucagon (214 +/- 32 after vs 134 +/- 48 pmol/l before, P = 0.05) and to glucose iv bolus injection (284 +/- 53 vs 113 +/- 32 pmol/l, P less than 0.05). Peak insulin response, measured after iv glucose infusion, also tended to be higher in the post-CSII test (42 +/- 18 vs 22 +/- 5.6 mU/l). Basal and stimulated proinsulin concentrations were high relative to C-peptide levels during the pre-treatment period, but returned to normal after CSII.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Proinsulin, insulin, and C-peptide in cystic fibrosis after an oral glucose tolerance test.

The beta-cell response to an oral glucose load was studied in 22 patients with cystic fibrosis (CF) by means of insulin, C-peptide and proinsulin, and the results compared with those from 20 healthy sex and age matched controls. According to WHO criteria two had diabetes mellitus, eight had impaired glucose tolerance and twelve had normal glucose tolerance. All patients showed lower insulin and C-peptide levels than the controls at 30 minutes. However the insulin and C-peptide responses were sustained so that the areas under the curves were comparable between controls, CF patients with normal glucose tolerance, and CF patients with impaired glucose tolerance. By contrast, the area under the proinsulin curve was significantly higher in the CF patients with impaired glucose tolerance compared with both controls (p less than 0.05) and with the CF normal glucose tolerance group (p less than 0.02). In the CF patients with impaired glucose tolerance the proinsulin level was significantly elevated at 120 minutes (median 50 pmol/l) and at 180 minutes (29 pmol/l) as compared with the controls (24 and 19 pmol/l p less than 0.01) and with the CF patients with normal glucose tolerance (21 and 16 pmol/l p less than 0.01). These data confirm that impaired glucose tolerance and diabetes is frequent in cystic fibrosis. The elevated proinsulin immunoreactive material in CF patients with impaired glucose tolerance may partly compensate for the relative insufficient insulin response found in these patients.

Adolescent↗

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↗

Lens autofluorescence in diabetes compared with the level of glycosylated hemoglobin A1c.

The autofluorescence of the crystalline lens has been measured by an ocular fluorophotometer in two comparable groups of patients with insulin-dependent diabetes mellitus. One group has had a high level of HbA1c since the onset of diabetes (mean 10.1 per cent) and the other group a very low level (mean 6.5 per cent). The group with low HbA1c during the disease period showed a significantly lower lens fluorescence than the group with high HbA1c.

Diabetes Mellitus, Type 1↗

ELISA for human proinsulin.

A micro enzyme-linked-immunosorbent-assay (ELISA) for monitoring circulating human proinsulin (hPI) was developed. A micro test plate was coated with guinea pig anti-insulin antibody. As labelling system peroxidase-labelled F(ab1)2-fragments of a guinea pig anti-human-C-peptide was used. The detection limit in buffer (95% level) was 0.6 pmol/l corresponding to 0.06 fmol/incubation well and to 1.2 pmol/l in serum, since samples were diluted 50%. Standard operating range was from 0-160 pmol/l. Interassay variation was 9% estimated from two human control materials (assayed within the range 6-9 pmol/l and 9-14 pmol/l, respectively). Insulin in samples did not interfere in concentrations below 400 pmol/l. Human C-peptide, porcine, and bovine proinsulins did not cross-react even at 10 000 pmol/l. In 38 healthy fasting subjects a reference range less than 1.2-13 pmol/l with a median of 4.1 pmol/l was found. Serum from total pancreatectomised patients showed values below the detection limit. The value from a patient with an insulinoma was 263 pmol/l. When stored at -20 degrees C human proinsulin appeared stable in serum or plasma for at least 9 mth. This ELISA, although among the most sensitive immunoassays for human proinsulin, is still not sensitive enough to measure the concentrations expected in samples from IDDM patients in the fasting state. In spite of this the method is useful in characterising beta-cell function in stimulated situations, as well as in the diagnosis of insulinoma.

Animals↗