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Biomedical subjects

O K Faber

Publications and source records attributed to O K Faber.

At least 19 recordsLinked to original sources

Renal threshold for glucose in non-insulin-dependent diabetic patients.

Measurement of glycosuria is still widely used for home monitoring of glycaemia control in non-insulin-dependent diabetes (NIDDM). This method has been criticized because the renal threshold for glucose (RTglu) varies between subjects. In order to evaluate the validity of RTglu by measuring corresponding measurements of blood and urine glucose in NIDDM patients, we studied the blood/urine glucose relationship in 24 NIDDM patients. RTglu estimated from 75 contemporary blood and urine glucose concentrations measured at home by each patient (h-RTglu) was compared with RTglu measured by a hyperglycaemic glucose clamp (c-RTglu). H-RTglu and c-RTglu, being 7.6 mmol/1 (range 5.5-12.4) and 10.3 mmol/1 (6.2-12.3) respectively (P < 0.005), were weakly correlated (R(S) = 0.35, P = 0.15). In conclusion, c-RTglu varies two-fold between NIDDM patients. RTglu detected by home monitored urine and blood glucose determinations underestimates the true RTglu, probably due to the splay phenomenon. However, the method for detection of RTglu used by us seems of clinical relevance, since it reflects the individual blood glucose level at which glucose is detectable in the urine.

Aged↗

The effect of acute hyperglycemia on the plasma C-peptide response to intravenous glucagon or to a mixed meal in insulin-dependent diabetes mellitus.

The dose-response relationships between prestimulatory blood glucose concentration and the plasma C-peptide responses to stimulation with 1 mg of glucagon iv or a standard mixed meal were studied in 8 C-peptide positive patients with insulin-dependent diabetes mellitus. Hyperglycemia was maintained for 90 min before stimulation using a hyperglycemic clamp technique. Each test was performed at the steady state blood glucose levels approximately 5, approximately 12, and approximately 20 mmol/l. The glucose potentiation of the incremental plasma C-peptide area under the curve at the two levels of hyperglycemia in percent of the area at normoglycemia (median and range) was 343% (53-1053) (p less than 0.05) and 341% (267-1027) (p less than 0.05) after glucagon and 140% (76-227) (NS) and 251% (95-1700) (p less than 0.05) after the meal. The corresponding relative glucose potentiation of plasma C-peptide 6 min after stimulation with glucagon was 124% (100-427) (p less than 0.02) and 144% (100-209) (p less than 0.05). There was no significant difference in the degree of glucose potentiation at approximately 12 or approximately 20 mmol/l. Furthermore, there was no significant difference in the degree of glucose potentiation of the different estimated values of B-cell function. In conclusion, the plasma C-peptide responses to iv glucagon or to a standard test meal were markedly potentiated by acute hyperglycemia in insulin-dependent diabetes mellitus. No further potentiation was, however, obtained when the prestimulatory blood glucose concentration was raised above 12 mmol/l.(ABSTRACT TRUNCATED AT 250 WORDS)

Acute Disease↗

Sulfonylureas. Why, which, and how?

Although controversies remain as to the usefulness of sulfonylureas, most evidence is in favor of their use in many if not patients with non-insulin-dependent diabetes mellitus. When used properly, sulfonylureas improve insulin secretion and action, and these effects may be maintained for years. If combined with hypocaloric dietary regulation, rapid- and short-acting sulfonylureas may help patients reach and maintain euglycemia without provoking chronic hyperinsulinemia or weight increase. There is no evidence that sulfonylurea treatment causes beta-cell exhaustion; instead, the antihyperglycemic effect helps improve beta-cell function. Sulfonylurea "failures" are often dietary failures or may be due to late introduction of these drugs, i.e., when beta-cell function is already attenuated. Desensitization of the insulinotropic effect of sulfonylureas may occur but might be avoided by discontinuous (less than 24 h/day) sulfonylurea exposure, i.e., once-daily administration of a short-acting sulfonylurea in a moderate dose. The most important adverse effect of sulfonylureas is long-lasting hypoglycemia, which may lead to permanent neurological damage and even death. This is mainly seen in elderly subjects who are exposed to some intercurrent event, e.g., acute energy deprivation or a drug interaction, i.e., aspirin. Long-acting sulfonylureas may be more likely to promote long-lasting hypoglycemia. The dose-response relationships of sulfonylureas have been poorly investigated, and sulfonylurea therapy should always be initiated and maintained at the lowest possible dose.

Diabetes Mellitus, Type 2↗

Acute actions of sulfonylurea drugs during long-term treatment of NIDDM.

The acute effect of sulfonylurea drugs during long-term treatment was evaluated in two separate studies. In the first study, the levels of plasma glucose, insulin, and C-peptide were measured after intake of 10 mg glyburide alone or together with a standardized mixed meal in 10 non-insulin-dependent diabetes mellitus (NIDDM) patients treated with 10-20 mg glyburide/day for greater than 2 yr. There was no acute effect of glyburide on the insulin and C-peptide responses to the meal or during continued fasting, indicating the absence of an acute insulinotropic action of glyburide during chronic treatment. The glucose increase after the meal was also unchanged, but a significant glucose reduction was found after glyburide intake during continued fasting, suggesting a sustained acute extrapancreatic (hepatic) effect. In the second study, the diurnal glycemic excursions in 8 NIDDM patients chronically and continuously (24 h/day) exposed to glipizide (2.5-7.5 mg 3 times/day) were similar when the drug was taken 30 min before each of the three main meals and when taken immediately before the meals. It is concluded that there is no acute insulinotropic action of sulfonylurea drugs during chronic continuous exposure, whereas an acute extrapancreatic action may prevail. During such exposure, there seems to be no clinical benefit in taking a sulfonylurea 30 min before rather than at the start of a meal.

Aged↗

Fasting plasma C-peptide, glucagon stimulated plasma C-peptide, and urinary C-peptide in relation to clinical type of diabetes.

Many patients with Type 2 (non-insulin-dependent) diabetes mellitus are treated with insulin in order to control hyperglycaemia. We studied fasting plasma C-peptide, glucagon stimulated plasma C-peptide, and 24 h urinary C-peptide in relation to clinical type of diabetes in 132 insulin treated diabetic subjects. Patients were classified clinically as Type 1 (insulin-dependent) diabetic subjects in the presence of at least two of the following criteria: 1) significant ketonuria, 2) insulin treatment started within one year after diagnosis, 3) age of diagnosis less than or equal to 40 years, and 4) weight below 110% of ideal weight of the same age and sex. Eighty patients were classified as Type 1 and 52 as Type 2 diabetic subjects. A second classification of patients into 6 C-peptide classes was then performed. Class I consisted of patients without islet B-cell function. Class II-VI had preserved islet B-cell function and were separated according to the 20%, 40%, 60% and 80% C-peptide percentiles. The two classifications of patients were compared by calculating the prevalence of clinical Type 1 and Type 2 diabetes in each of the C-peptide classes. This analysis showed that patients with a fasting plasma C-peptide value less than 0.20 nmol/l, a glucagon stimulated plasma C-peptide value less than 0.32 nmol/l, and a urinary C-peptide value less than 3.1 nmol/l, or less than 0.54 nmol/mmol creatinine/24 h, or less than 5.4 nmol/24 h mainly were Type 1 diabetic patients; while patients with C-peptide levels above these values mainly were Type 2.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Metabolic effect of islet B-cell function in insulin-treated diabetes.

We studied the relationship between endogenous insulin secretion and fasting levels of plasma free fatty acids (FFA), plasma acetoacetate plus plasma 3-hydroxybutyrate (total ketone bodies), blood glucose, and HbA1 in 132 diabetic outpatients treated with conventional insulin regimens. Patients were divided into four groups according to plasma C-peptide concentration after intravenous stimulation with glucagon: one group with C-peptide stimulation less than 0.06 nmol/l, one group with C-peptide stimulation 0.06- less than 0.32 nmol/l, one group with C-peptide stimulation 0.32- less than 0.60 nmol/l, and one group with C-peptide stimulation greater than 0.60 nmol/l. According to clinical criteria the prevalence of insulin-dependent diabetes mellitus was approximately 90% in patients with C-peptide stimulation less than 0.32 nmol/l, approximately 25% in patients with C-peptide stimulation from 0.32- less than 0.60 nmol/l, and approximately 10% in patients with C-peptide stimulation greater than 0.60 nmol/l. All metabolic variables were significantly higher in patients without detectable C-peptide in plasma when compared to values found in patients with C-peptide stimulation from 0.06- less than 0.32 nmol/l. These two patient groups also had similar peripheral plasma free insulin levels and were comparable according to age, sex, and body mass index.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

The beta-cell response to glucagon and mixed meal stimulation in non-insulin dependent diabetes.

The aim of this study was to evaluate the correlations of the C-peptide and insulin responses after stimulation with glucagon intravenously as well as the 24-h urinary excretion of C-peptide to the C-peptide response to a standard mixed meal in 30 patients with non-insulin dependent diabetes mellitus (NIDDM). Fasting plasma C-peptide as well as the C-peptide and insulin responses to glucagon, showed similar but only modest correlations with the C-peptide response to the meal. Urinary C-peptide showed no correlation with the C-peptide response to the meal, but correlated modestly with fasting plasma C-peptide (r = 0.55, p less than 0.01). The C-peptide and insulin responses after meal stimulation correlated modestly inversely with HbA1. In conclusion, measurement of C-peptide in fasting state, as well as measurements of C-peptide and insulin after glucagon stimulation, only modestly predict the C-peptide response to physiologic stimulation in NIDDM. Twenty-four-hour urinary C-peptide excretion does not predict this response. Patients with NIDDM seem to show a better metabolic control if they have a more pronounced beta-cell response to physiologic stimulation.

Aged↗

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↗

C-peptide: an index of insulin secretion.

Insight into the natural history of beta cell function in IDDM patients obtained by C-peptide measurements is reviewed. It is argued that residual insulin secretion of metabolic importance is present in all IDDM patients during the initial course of the disease. After some months, beta cell function reaches its maximum; thereafter it declines at different rates dependent on the age at onset of diabetes and, possibly, on the presence of ICA and HLA-antigens. As many as 15% of IDDM patients retain life-long beta cell function that persists at approximately 10% of that observed in nondiabetic individuals. The residual endogenous insulin secretion is characterized by reduced capacity, as well as abnormal insulin secretory kinetics; these defects in residual insulin secretion can be modulated by changes in metabolic regulation as well as by immunosuppression during the initial course of the disease.

Age Factors↗

The effect of residual beta-cell function on the development of diabetic retinopathy.

The effect of residual B-cell function on retinopathy was evaluated in a cross-sectional study of 533 insulin-dependent diabetic patients (disease duration 0 to 45 years). One hundred and fifty-three patients with residual B-cell function, as evaluated by stimulated plasma C-peptide concentration, had lower prevalence of retinopathy than patients without B-cell function. The patients with B-cell function had a shorter duration of diabetes and were older at onset, but there was no difference in age at the time of the study. When patients with similar duration of diabetes were compared, no differences in the degrees of retinopathy could be demonstrated between patients with and without B-cell function. These results indicate that residual B-cell function does not protect against or delay the development of diabetic microvascular lesions.

Adolescent↗

Beta-cell function and diabetic control in insulin dependent diabetes melletus.

Beta-cell function, as evaluated from plasma C-peptide measurements, is found in all insulin dependent diabetic patients the first months of disease and in about 15% of patients with more than 15 years of treatment. The beta-cells are capable of modulating their secretory activity in response to changes in blood glucose. Even a minimal residual insulin secretion is of metabolic significance.

Blood Glucose↗

The effect of insulin deprivation on fasting levels of 5000 dalton gastric inhibitory polypeptide in type 1 (insulin-dependent) diabetics.

To investigate whether metabolic decompensation has an effect on gastric inhibitory polypeptide (GIP), 8 fasting male type 1 diabetics were deprived of insulin for 12 h. An overnight insulin infusion aiming at normoglycaemia was stopped at 08.00 h. During the following 12 h blood glucose increased from 7.0 +/- 0.4 to 14.9 +/- 1.0 mmol/l, P less than 0.01, 3-hydroxy-butyrate from 0.18 +/- 0.07 to 4.00 +/- 0.74 nmol/1, P less than 0.01, and immunoreactive GIP (IR-GIP) from 16.7 +/- 2.6 to 21.9 +/- 2.9 pmol/1, P less than 0.05. The antiserum employed, R65, only measures 5000 dalton IR-GIP. The final IR-GIP concentrations were not significantly different from fasting IR-GIP concentrations in 13 normal male subjects (17.4 +/- 1.5 pmol/1). Short term insulin deprivation therefore is associated with a slight increase in fasting IR-GIP concentrations. Whether this modest increase in IR-GIP significantly enhances insulin secretion is unknown.

3-Hydroxybutyric Acid↗

Relation of immunoreactive gastric inhibitory polypeptide to changes in glycaemic control and B cell function in type 1 (insulin-dependent) diabetes mellitus.

The effect of strict glycaemic control on plasma immunoreactive gastric inhibitory polypeptide (IR-GIP) concentrations and pancreatic B cell function as estimated by plasma C-peptide was evaluated in 14 Type 1 (insulin-dependent) diabetics. The effect was estimated by giving a test meal before (test 1) and after (test 2) 1 week with near normal blood glucose control (mean blood glucose 6.7 +/- 0.2 mmol/l) and again 3 weeks later (test 3) in the outpatient clinic. The glycaemic control was significantly improved at test 2 and test 3 compared with that of test 1. The IR-GIP concentrations before and after the meals were similar at all three tests and not different from those found in 21 normal controls. In 8 patients with a significant B cell response at test 1, B cell function was significantly improved both at test 2 and test 3 but no change in fasting or post-prandial IR-GIP concentrations was found and no correlation between B cell function and IR-GIP existed. We conclude that strict glycaemic control improves B cell function but does not modulate plasma IR-GIP concentrations. Factors other than GIP seem to be of greater importance in determining the magnitude of B cell function in Type 1 diabetes.

Adolescent↗

Glucose tolerance and B cell function in chronic alcoholism: its relation to hepatic histology and exocrine pancreatic function.

Glucose tolerance and B cell function were assessed in 30 consecutive chronic alcoholic patients without overt diabetes mellitus. Plasma glucose, insulin, and C peptide concentrations were measured during an oral glucose tolerance test. All patients underwent a liver biopsy and an exocrine pancreatic function test (Lundh test). Compared with the controls, the three groups of alcoholic patients (those with histologically normal livers, n = 12; those with steatosis, n = 10; and those with cirrhosis, n = 8) all had a two-fold increase in plasma concentrations of insulin as well as C peptide in the fasting state, despite normal fasting levels of glucose. After oral glucose all groups of patients had elevated plasma levels of glucose, insulin, and C peptide compared with the controls. The C peptide/insulin ratio was similar to that in the controls in all groups of alcoholics. Patients with decreased exocrine pancreatic function (n = 7) had a significantly lower insulin and C peptide response to glucose than the patients with normal exocrine pancreatic function. It is concluded that (1) chronic alcoholics even with histologically normal livers have endogenous insulin resistance, and (2) associated damage to the exocrine pancreas is more common than previously recognized and decompensation of B cell function could be demonstrated in patients with decreased exocrine pancreatic secretion.

Adolescent↗

Splanchnic and renal metabolism of insulin in human subjects: a dose-response study.

Kinetic analyses of insulin metabolism were performed in 32 healthy subjects with hepatic-venous or renal-venous catheters, in whom steady-state conditions of hyperinsulinemia or hyperglycemia were achieved with the use of the glucose-insulin clamp technique. In the basal state, the splanchnic bed removed 42 +/- 2% of the insulin influx. After graded insulin infusions with maintenance of euglycemia, stable arterial insulin levels of 35-1,430 microU/ml were attained. Splanchnic insulin extraction was constant (approximately 60%) at physiological insulin levels but fell (to 29 +/- 1%, P less than 0.02) at supraphysiological (greater than 500 microU/ml) concentrations. The metabolic clearance rate of infused insulin was essentially constant within the physiological concentration range. Hyperglycemia (+125 mg/100 ml) did not alter splanchnic insulin extraction. Basally, the kidneys extracted 0.04 +/- 0.01 mU X min-1 X kg-1 or 25 +/- 5% of arterial insulin. Renal insulin clearance (3.9 +/- 0.4 ml X min-1 X kg-1) represented over 80% of the extrasplanchnic insulin clearance. Hyperglycemia (+125 mg/100 ml) had no effect on renal insulin extraction. In conclusion, a) both splanchnic and renal insulin removal are independent of glycemia and increase in proportion to plasma insulin concentration within the physiological range; b) splanchnic uptake is the dominant mechanism of removal of insulin from the circulation whether the route of delivery is portal or peripheral; and c) the kidneys account for the greater part of extrasplanchnic insulin metabolism.

Adult↗

Diminished immunoreactive gastric inhibitory polypeptide response to a meal in newly diagnosed type I (insulin-dependent) diabetics.

The release of immunoreactive gastric inhibitory polypeptide (IR-GIP) in response to a standard meal was examined in 10 normal subjects and 15 type I (insulin-dependent) diabetics 7 days (test I), 14 days (test II), and 3 months (test III) after time of diagnosis. During all three tests, the diabetics had significantly lower plasma IR-GIP concentrations than the controls from 15-90 min after the standard meal. The IR-GIP response in the diabetics measured as the integrated area under the response curve corresponded to 70% of that of normal subjects. beta-cell function evaluated from the C-peptide response to the meal increased significantly from test I to test III whereas the IR-GIP response was similar during all three tests. As GIP is known to potentiate glucose-induced insulin secretion and possibly the biosynthesis of insulin, the low IR-GIP responses in subjects with type I diabetes may significantly influence insulin levels and hyperglycemia.

Adolescent↗