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Biomedical subjects

A Kautzky-Willer

Publications and source records attributed to A Kautzky-Willer.

At least 19 recordsLinked to original sources

Impaired cardiac autonomic function in women with prior gestational diabetes mellitus.

BACKGROUND: Cardiac autonomic neuropathy is a common dysfunction in manifest diabetes mellitus and is associated with duration of diabetes and/or an inadequate glycaemic control. Heart rate variability (HRV) reflects autonomic heart function. The aim of the present study was to investigate whether in women with prior gestational diabetes (GD; pre-type 2 diabetes) alterations of cardiac autonomic function can be observed after delivery in relation to insulin sensitivity and glycaemic control. MATERIALS AND METHODS: Forty-eight healthy women with prior GD were consecutively admitted to the study. HRV was analysed by both time, as well as frequency, domain methods using 24-h Holter monitoring. In addition, 20 women with normal glucose tolerance during and after pregnancy were investigated as control subjects. All women underwent a frequently sampled intravenous glucose tolerance test (FSIGT) for measurement of insulin sensitivity. RESULTS: Time domain analysis (standard deviation of normal RR intervals; SDNN) showed a reduced HRV in 25 out of the 48 (52%) women with prior GD. Frequency domain analysis revealed that in these 25 subjects both low and high frequency components of power spectral density (reflecting mainly sympathetic respectively parasympathetic activity) were reduced, indicating that sympathetic as well as parasympathetic functional impairment may be assumed. However, a relative predominance of the sympathetic over parasympathetic cardiac function was observed. The impairment of cardiac autonomic function (reduced SDNN) was correlated with HbA1c values and the 2-h blood glucose concentration (oral glucose tolerance test) but not with insulin sensitivity. CONCLUSION: The present results demonstrate that in 52% of the women examined who had prior GD, an impairment of cardiac sympathetic as well as parasympathetic function was present, which related to glycaemic control, but not to insulin sensitivity. This infers that functional autonomic changes could be an early prognostic indicator in pre-type 2 diabetes.

Adult↗

Impaired beta-cell function in lean normotolerant former gestational diabetic women.

BACKGROUND: Former gestational diabetes (fGDM) constitutes a risk condition for the development of Type 2 diabetes. Former gestational diabetes is often characterized by obesity and hyperglycaemia, which may be concomitant and independent risk factors. MATERIALS AND METHODS: To assess insulin sensitivity and beta-cell function in fGDM uncomplicated by obesity and hyperglycaemia, we studied 24 lean fGDM women and 23 control women matched for age (30.7 +/- 0.7 years, whole cohort), body mass index (22.2 +/- 0.3 kg m(-2)), and indistinguishable for plasma glucose both at fasting and at 120 min. Several insulin sensitivity and beta-cell function indices were computed: homeostasis model assessment insulin resistance index (HOMA-R), insulin sensitivity index derived from an oral glucose tolerance test (OGIS), insulinogenic index, other empirical indices of insulin secretion and beta-cell function, and indices obtained using a beta-cell model. RESULTS: Though the majority of indices, and in particular insulin sensitivity (HOMA-R: 1.35 +/- 0.13 vs. 1.65 +/- 0.14; OGIS: 492.7 +/- 6.3 vs. 496.4 +/- 9.4 mL min(-1) m(-2)), were not significantly different in the two groups, the beta-cell glucose sensitivity obtained by modelling analysis was lower in fGDM (108 +/- 14 vs. 165 +/- 22 pmol min(-1) m(-2) mM(-1), P = 0.031). CONCLUSIONS: Impairment of beta-cell glucose sensitivity may be an intrinsic risk factor in fGDM independently of obesity and hyperglycaemia. Furthermore, we have shown that modelling analysis, in contrast to the empirical parameters, may be able to detect early beta-cell alterations in fGDM women.

Adult↗

Fibrinolytic dysfunction in insulin-resistant women with previous gestational diabetes.

BACKGROUND: Women with a history of gestational diabetes (p-GDM) are at increased risk of developing type 2 diabetes mellitus (DM2) later in life, and therefore at increased risk for future cardiovascular disease. MATERIALS AND METHODS: Three months after delivery we investigated the plasma levels of plasminogen activator inhibitor type 1 (PAI-1), tissue plasminogen activator (t-PA), fibrinogen and von Willebrand factor (vWF) in 74 women with p-GDM and 20 healthy females with normal glucose tolerance during and after pregnancy, as well as the relation of fibrinolytic parameters to insulin resistance and glycaemic control. All women underwent an oral (OGTT) as well as an intravenous glucose tolerance test (FSIGT). Mathematical model analysis disclosed that 50% (n=37 each) of the p-GDM subjects had normal (NIS) or impaired (IIS) insulin sensitivity. Parameters of interest were determined using commercially available test systems. RESULTS: Women with p-GDM and IIS had significantly increased body fat mass (BFM) (P<or=0.001) compared with women with p-GDM and NIS and controls, whereas the waist to hip ratio (WHR) was similar in both p-GDM groups but was higher compared with the controls (P<or=0.001). Mean PAI-1 and t-PA as well as fasting and stimulated plasma concentrations of proinsulin, C-peptide and insulin were elevated, whereas the disposition index was lower in women with p-GDM and IIS compared with women with p-GDM and NIS and the controls (P<0.001). Plasma levels of fibrinogen and vWF did not differ between the groups. Obese women with IIS had higher PAI-1 levels than lean women with IIS (P<or=0.001). PAI-1 inversely correlated with the insulin sensitivity index (SI) but only in women with IIS (P<0.0001). On regression analysis, only fasting proinsulin and WHR remained significant independent predictors of PAI-1 elevation in IIS (P<or=0.0001 and P<or=0.001). The PAI-1/SI ratio was elevated in women with IIS independently of their glucose tolerance status (P<0.001 vs. NIS and controls). CONCLUSIONS: Plasminogen activator inhibitor type 1 is elevated in p-GDM women with IIS and depends on plasma proinsulin and abdominal obesity. An increase of the PAI-1/SI ratio further characterizes obese insulin-resistant p-GDM women who may be at risk for diabetes and angiopathy.

Adult↗

Insulin sensitivity during oral glucose tolerance test and its relations to parameters of glucose metabolism and endothelial function in type 2 diabetic subjects under metformin and thiazolidinedione.

AIM: This study was designed to assess the usefulness of a model-based index of insulin sensitivity during an oral glucose tolerance test (OGTT) in the identification of possible changes in this metabolic parameter produced by pharmacological agents known to be potent insulin sensitizers, that is metformin (M) and thiazolidinedione (T). The association of these agents with several other factors related to glucose metabolism was also investigated, as well as the relation of insulin sensitivity and secretion with markers of endothelial function such as different adhesion molecules (cAMs), that is vascular cell adhesion molecule-1, intercellular adhesion molecule-1 and E-Selectin. METHODS: Twenty type 2 diabetic patients treated with diet only underwent a 3-h OGTT for measurement of plasma glucose, insulin, proinsulin, C-peptide and cAMs before and after administration of randomly given M (n = 9; 1700 mg/day) or T (n = 11; 600 mg/day). After 16 weeks of treatment, a second OGTT was performed. Insulin sensitivity was calculated with homeostasis model assessment and with oral glucose insulin sensitivity (OGIS), which quantifies dynamic glucose clearance per unit change of insulin. Insulin secretion was assessed by modelling technique. Differences in these parameters before and after treatment, as well as possible relationships with cAMs, were assessed. RESULTS: Basal and stimulated plasma glucose decreased after therapy in both the groups by approximately 20%. Basal insulin resistance also decreased. Insulin sensitivity in dynamic conditions (OGIS: ml/min/m(2)) increased with M (289.3 +/- 18.8 vs. 234.7 +/- 18.1, p < 0.02) and tended to improve with T (323.5 +/- 18.1 vs. 286.8 +/- 22.1, p = 0.09). Total insulin secretion over the OGTT [TIS: nmol/l(3 h)] tended to decrease with M (17.1 +/- 2.5 vs. 27.3 +/- 0.3, p = 0.08) but not with T (23.6 +/- 3.5 vs. 22.5 +/- 2.7). Plasma concentrations of E-Selectin decreased in T (38.0 +/- 2.3 vs. 51.2 +/- 6.1 ng/ml, p < 0.05). No correlation was found between insulin sensitivity and cAMs. CONCLUSIONS: Model-based indices of insulin sensitivity and secretion during an OGTT can be able to detect changes observed in patients under treatment with pharmacological agents such as M or T. Both the drugs improved glucose control similarly. Decreased plasma E-Selectin concentrations were seen in patients on T therapy only.

Blood Glucose↗

Gestational diabetes mellitus is associated with increased C-reactive protein concentrations in the third but not second trimester.

OBJECTIVE: Serum C-reactive protein (CRP) concentrations were measured longitudinally throughout pregnancy to test the hypothesis that CRP could relate more closely to glucose tolerance than to adiposity. METHODS: The CRP concentrations in pregnant women with normal glucose tolerance (NGT) and those with gestational diabetes mellitus (GDM) were measured at the same time as the oral glucose tolerance test (OGTT), at the 24th and 28th weeks of gestation and between the 37th and 38th weeks of gestation. RESULTS: At the end of the third trimester, women with GDM had significantly higher CRP levels than women with NGT [median (interquartile range), 9.7 mg L(-1) (5.4-16.0) and 5.7 mg L(-1) (5.1-7.2); P < 0.001, respectively], but at the time of the diagnostic OGTT no significant difference between the two groups was observed. This was owing to a significant increase of CRP in women with GDM between the time of the OGTT and the 37th-38th gestational weeks [median (interquartile range), 1.9 mg L(-1) (-2.2, 6.7); P = 0.01]; whereas, no change in CRP was found in women with NGT [median (interquartile range), -0.1 mg L(-1) (-2.4, 3.1); P = 0.76]. Multiple linear regression analysis showed only a significant independent influence of GDM (P < 0.001) on maternal CRP concentrations in the 37th-38th gestational weeks and a significant influence of body mass index (P < 0.007), but no influence of GDM at the time of the OGTT. CONCLUSION: These data suggest that in women with gestational diabetes the CRP concentration is primarily related to the degree of adiposity until the second trimester and that thereafter impaired glucose metabolism appears to be the predominant predictor of changes in CRP.

Adult↗

Circulating concentrations of asymmetrical dimethyl-L-arginine are increased in women with previous gestational diabetes.

AIMS/HYPOTHESIS: The concentration of asymmetrical dimethyl- L-arginine (ADMA), an endogenous inhibitor of the nitric oxide synthase, is increased in patients at risk or with cardiovascular disease. We have investigated ADMA concentrations in women with a history of gestational diabetes (GDM), who could develop endothelial dysfunction and Type II (non-insulin-dependent) diabetes mellitus after delivery, and in healthy control subjects. METHODS: Previous GDM patients were grouped according to their BMI as obese (> or =25 kg/m(2), n=46) or non-adipose (<25 kg/m(2), n=31). Serum samples were taken 14 to 16 weeks after delivery and after 1 year. The control group comprised 17 healthy women (BMI<25 kg/m(2)). ADMA concentrations were analysed by high performance liquid chromatography. RESULTS: ADMA concentrations were comparable between obese and non-adipose GDM patients (0.58+/-0.02 and 0.57+/-0.02 micro mol/l, respectively), and higher than in the control group (0.47+/-0.03 micro mol/l; p<0.006). Insulin resistance as estimated by the insulin sensitivity index was more frequent among the obese than the non-adipose GDM women (p<0.05) and control subjects (p<0.05, both). No change in ADMA concentrations was found after 1 year in women with GDM. There was only a slight correlation between ADMA and BMI (r=0.26, p<0.02), triglycerides (r=0.29, p<0.004), or fasting plasma glucose (r=0.21, p<0.05), and not with the insulin sensitivity index or other parameters. In a multiple regression analysis ADMA serum concentrations were only associated with triglycerides. CONCLUSION/INTERPRETATION: Circulating ADMA concentrations are increased in normoglycaemic women with previous GDM. This increase is independent from other risk factors or surrogate markers for diabetes or cardiovascular events.

Adult↗

Ocular hyperperfusion following onset of intensified insulin therapy is inversely correlated with plasma endothelin-1 in Type I diabetes.

AIMS/HYPOTHESIS: It has been reported that improvement of metabolic control by intensified insulin therapy in patients with Type I (insulin-dependent) diabetes mellitus is associated with alterations in ocular blood flow. We hypothesized that these changes in ocular blood flow could be associated with alterations of plasma insulin, glucose or endothelin concentration. METHODS: In 16 patients with Type I diabetes ocular haemodynamic parameters were assessed daily during the first 5 days of institution of intensified insulin therapy and plasma concentrations of glucose, insulin, and endothelin-1 plasma were measured. Retinal white blood cell flux was estimated with the blue field entoptic technique. Pulsatile choroidal blood flow was assessed by laser interferometric measurement of fundus pulsation amplitude. RESULTS: Retinal white blood cell flux ( p=0.0015) and ocular fundus pulsation amplitude ( p<0.001) increased during institution of strict metabolic control. Changes in ocular haemodynamic variables were inversely correlated with concentrations of plasma ET-1, but not with that of insulin or glucose. CONCLUSIONS/INTERPRETATION: These data indicate that institution of improved metabolic status is paralleled by rapid changes in the production of ET-1, which could in turn affect ocular perfusion.

Adult↗

Increased plasma leptin in gestational diabetes.

AIMS/HYPOTHESIS: Insulin resistance as well as marked changes in body weight and energy metabolism are associated with pregnancy. Its impact on plasma leptin is not known and was determined in this longitudinal study in both diabetic and normal pregnancy. METHODS: At 28 gestational weeks plasma concentrations of leptin and B-cell hormones were measured at fasting and after an oral glucose load (OGTT:75 g) in women with gestational diabetes and pregnant women with normal glucose tolerance and compared with women who were not pregnant (C). RESULTS: Plasma leptin (ng/ml) was higher (p < 0.001) in women with gestational diabetes (24.9 +/- 1.6) than in women with normal glucose tolerance (18.2 +/- 1.5) and increased in both groups when compared with the non-pregnant women (8.2 +/- 1.3; p < 0.0005). No change in plasma leptin concentrations was induced by OGTT in any group. Basal insulin release was higher (p < 0.05) in women with gestational diabetes compared with the pregnant women with normal glucose tolerance. Marked insulin resistance was confirmed by a 20 % lower (p < 0.05) insulin sensitivity in subgroup analysis and a decrease of almost 40% in fasting glucose/insulin ratio (p < 0.005) in women with gestational diabetes. Leptin correlated in women with gestational diabetes with basal plasma concentrations of glucose (p < 0.02), insulin (p < 0.004) and proinsulin (p < 0.01) as well as with BMI (p < 0.001) and overall pregnancy induced maternal weight gain (p < 0.009). With normalisation of blood glucose 8 weeks after delivery in women with gestational diabetes their plasma leptin decreased (p < 0.0005) to 17.3 +/- 1.9 ng/ml but did not completely normalize (p < 0.05 vs non-pregnant women). CONCLUSION/INTERPRETATION: Our data show that women with gestational diabetes without any change in plasma leptin upon oral glucose loading have increased plasma leptin concentrations during and after pregnancy, a clear association of plasma leptin with the respective concentration of glucose and insulin resistance as well as with changes in body weight, and a failure to normalize spontaneously BMI to the same extent as pregnant women with normal glucose tolerance when compared with matched control subjects.

Adult↗

The increased insulin sensitivity in growth hormone-deficient adults is reduced by growth hormone replacement therapy.

BACKGROUND: Growth hormone deficiency is associated with increased morbidity and mortality from cardiovascular diseases, which might be related to changes in glucose and lipid metabolism. DESIGN: To assess the influence of long-term growth hormone replacement therapy (GHRT) on glucose metabolism we examined eight growth hormone-deficient (GHD) adults (seven female/one male; age, 46 +/- 3 years; body mass index, 31 +/- 2 kg m-2) over a period of 18 months in comparison to an adequate control group consisting of eight obese subjects matched for age, sex, and body mass index. We performed frequently sampled intravenous glucose tolerance tests (FSIGT) with minimal model analysis before the study, and after 12 and 18 months. RESULTS: Following GHRT, insulin-like growth factor-1 (IGF-1) increased significantly from a basal level of 75.9 +/- 18.9 to 200.8 +/- 31.0 microg L-1 after 12 months of therapy and remained stable, thereafter. GHRT did not affect fasting blood glucose, basal insulin, cholesterol, blood pressure and body weight. However, at 12 months, HbA1c (6.0 +/- 0.1 vs. 5.6 +/- 0.1% at basal, P < 0.05) and triglyceride (2.3 +/- 0.4 vs. 1.4 +/- 0.3 mmol L-1) significantly increased but returned to pretreatment values at 18 months. Insulin sensitivity was higher in GHD (8.2 +/- 3.1) compared to controls (3. 6 +/- 0.53 x 10-4 min-1/(microU mL-1), P = 0.06) and decreased significantly after 18 months of GHRT to 5.1 +/- 2.6, P < 0.05. Basal insulin secretion was similar to that in the control group and increased significantly after 12 and 18 months, total insulin secretion only after 12 months. SG (glucose effectiveness)was lower in GHD patients (0.0095 +/- 0.001 min-1) compared to controls (0.020 +/- 0.003 min-1, P < 0.05) and increased significantly after 12 and 18 months of GHRT (0.016 +/- 0.002, and 0.015 +/- 0.001 min-1, P < 0. 05), respectively. Hepatic insulin extraction rate was similar in both groups and remained unchanged following GHRT. CONCLUSION: We conclude that long-term GHRT induces a significant decrease of the increased insulin sensitivity in GHD patients to levels observed in body mass index-matched control subjects. This is accompanied by an increase in basal and total insulin secretion as well as in glucose effectiveness as a possible compensatory mechanism.

Adult↗

Dexamethasone lowers circulating E-selectin and ICAM-1 in healthy men.

Plasma levels of circulating adhesion molecules (AMs) are increased in a number of inflammatory and cardiovascular disorders. Yet the mechanisms regulating the physiologic levels of soluble AMs are largely unknown. It has recently been postulated that glucocorticoids may exert their anti-inflammatory actions partially through the inhibition of cytokine-stimulated expression of E-selectin and intercellular adhesion molecule (ICAM-1). However, it remains controversial whether glucocorticoids affect the basal expression of AMs on resting cells. We have thus evaluated the effects of glucocorticoids by infusing therapeutic doses of dexamethasone (0.04 mg/kg and 1.0 mg/kg twice a day for 2 days) or placebo on plasma levels of circulating E-selectin (cE-selectin), soluble thrombomodulin (sTM), circulating ICAM-1 (cICAM-1), and circulating vascular cell adhesion molecule (cVCAM-1) in 9 healthy men. Plasma was obtained before infusion at 24 and 48 hours. Compared with baseline, levels of cE-selectin decreased by 16% and 22% with the lower and the higher doses, respectively, at 48 hours (P = .007), whereas sTM was unchanged. Both doses of dexamethasone reduced cICAM-1 by about 15% at 48 hours (P = .007), but there were no changes in cVCAM. Dexamethasone time-dependently decreases plasma levels of cE-selectin and cICAM-1 in healthy men. This demonstrates that a glucocorticoid-sensitive mechanism specifically down-regulates normal plasma levels of cE-selectin and cICAM-1 in healthy subjects, which could thus reflect minor baseline inflammation.

Adult↗

Elevation of plasma leptin concentrations in obese hyperinsulinaemic hypothyroidism before and after treatment.

BACKGROUND: Plasma leptin is considered to play a role in maintenance of energy balance and body weight by neuroendocrine mechanisms. Thyroid hormones are permissive for adrenergic activation, which in turn has been shown to decrease leptin expression. This study was therefore designed to test the hypothesis that hyperthyroidism results in lower leptin concentrations, whereas hypothyroidism leads to higher plasma leptin concentrations. In addition, the effects of normalization of thyroid function on plasma leptin were investigated. MATERIALS AND METHODS: Fasting plasma leptin concentrations and body fat mass (total body electrical conductivity) were measured in patients with overt hypothyroidism and hyperthyroidism before and after successful treatment. Plasma leptin, glucose, insulin and free fatty acid concentrations were monitored during an oral glucose tolerance test (OGTT 75 g). RESULTS: Fasting plasma leptin concentrations were similar in lean patients, independently of their thyroid function (hyperthyroid 12.5 +/- 2 ng mL-1, hypothyroid 10.2 +/- ng mL-1, euthyroid 12.7 +/- 3 ng mL-1). In obese hypothyroid patients, plasma leptin was threefold higher (P < 0.0005) than in lean hypothyroid patients, twofold higher (P < 0.005) than in obese hyperthyroid patients matched for fat mass and 30% increased (P < 0.01) compared with obese euthyroid subjects. There were no differences between fasting and post-prandial (OGTT) leptin concentrations in any group. Normalization of thyroid function did not affect plasma leptin, which remained elevated (P < 0.005) in formerly obese hypothyroid patients. Plasma leptin was not associated with serum thyroid hormones but highly correlated with body mass index and body fat mass in all patients (r = 0.85, P < 0.001). Plasma leptin correlated with plasma insulin concentration only in hyperthyroid patients (P < 0.01, r = 0.64), who presented with blunted stimulation of insulin release and higher plasma glucose (P < 0.05) than hypothyroid subjects. CONCLUSION: The results indicate that (a) the correlation of leptin with body fat mass is preserved in thyroid dysfunction, (b) plasma leptin is markedly increased in obese hypothyroid hyperinsulinaemic patients and (c) plasma leptin is not affected by oral glucose loading.

Adult↗

Insulin resistance and hyperinsulinemia are already present in patients with incipient renal disease.

In uremic patients resistance to the action of insulin has been documented, but it is not known at what stage of renal disease it appears. We therefore examined 29 patients with IgA glomerulonephritis (IgAGN) and 21 patients with adult polycystic kidney disease (ADPKD) in different stages of renal failure, and in addition, healthy age-matched subjects. Insulin sensitivity and other variables of glucose metabolism were assessed using a frequent sampling intravenous glucose tolerance test (minimal-model technique). Glomerular filtration rate (GFR) was assessed in renal patients using the inulin-clearance technique. Mean insulin sensitivity index (SI), that is, insulin sensitivity, was significantly lower (P < 0.001) in all patients combined than in matched healthy subjects (N = 16; 14 males, mean age 42 +/- 3 years; mean SI 8.6 +/- 0.8 min-1 uU/ml). The mean SI was not significantly different in patients with renal disease of immune (IgAGN) or non-immune (ADPKD) origin, and it was not correlated with GFR (r = 0.01, P < 0.52), intact PTH (r = -0.23, P < 0.11) or calcitriol concentration (r = -0.03, P < 0.82). Consequently, the mean SI was similar in renal patients with GFR within the normal range (N = 19; 17 males, mean age 41 +/- 2 years; mean GFR 119 +/- 5 ml/min/1.73 m2; 5.1 +/- 0.7 min-1 uU/ml), in patients with mild to moderate renal failure (N = 16; 15 males, 46 +/- 3 years; 67 +/- 4 ml/min/1.73 m2; 5.1 +/- 0.7 min-1 microU/ml) and in patients with advanced renal failure (N = 15; 13 males, 46 +/- 3 years; 25 +/- 2 ml/min/1.73 m2; 4.7 +/- 0.6 min-1 uU/ml). Mean fasted plasma insulin concentration, the area under the curve for plasma insulin concentration (AUC) and total insulin delivery (TID) during the glucose tolerance test were significantly higher in patients than in healthy subjects, reflecting hyperinsulinemia in renal patients. Further, fasted plasma insulin concentration (r = -0.32, P < 0.009), AUC (r = -0.62, P < 0.0001) and TID (r = -0.34, P < 0.004) in patients were significantly correlated with insulin sensitivity (SI). The present data document that insulin resistance and concomitant hyperinsulinemia are present early in the course of renal disease, that is, even in patients with GFR within the normal range, irrespective of the type of renal disease. This observation may have potential implications with respect to the high cardiovascular morbidity and mortality in patients with renal disease.

Adult↗

Distribution and kinetics of amylin in humans.

The aim of the study was to determine the apparent volume of distribution (VTOT), total body clearance (CL), fractional clearance, and mean residence time (MRT) of the beta-cell hormone amylin. We therefore performed an intravenous injection of 50 micrograms of human synthetic amylin (amlintide) in nine healthy male subjects during suppression of endogenous amylin release by intravenous somatostatin (0.06 microgram.kg-1.min-1). The plasma levels of amylin concentrations over time were analyzed using three-exponential curves. VTOT was 173 +/- 16 ml/kg and was not different from that of insulin reported in the literature (157 ml/kg). MRT was 27.7 +/- 2.1 min and thus two times the reported value for insulin (14.1 min) and C-peptide (16.4 min). CL and fractional CL were 6.2 +/- 0.2 ml.kg-1.min-1 and 0.038 +/- 0.003 min-1, respectively. Fractional CL is therefore definitely lower than that reported for insulin (0.12-0.2 min-1) but is, however, in the range of that of C-peptide (0.05 min-1). In conclusion, clearance of amylin is similar to that reported for C-peptide and much slower than insulin, indicating that the commonly used molar insulin-to-amylin ratio does not reflect the correct relationship of the two peptides.

Adult↗

Amylin: history and overview.

The presence of amyloid deposits in the pancreas was first described at the beginning of the 20th century. However, it was not until 1987 that the structure of the amylin molecule was identified. Amylin is a 37-amino-acid peptide hormone that is co-secreted with insulin by the pancreatic beta-cells in response to a nutrient stimulus. It is deficient in patients with Type 1 diabetes and elevated in patients in the early stages of Type 2 diabetes, a condition which is characterized by hyperinsulinaemia. Elevation of plasma amylin levels has also been described in patients with impaired glucose tolerance, obese subjects and in pregnant women with both normal glucose tolerance and gestational diabetes mellitus. However, it appears that deficiencies of amylin secretion appear before those of insulin in patients in the later stages of Type 2 diabetes. Early experimental studies suggested that amylin inhibits basal insulin secretion, and induces insulin resistance in skeletal muscle, leading to the hypothesis that it has a role in the aetiology of Type 2 diabetes. However, a number of more recent experimental studies have indicated that amylin is a third active pancreatic islet hormone that works with insulin and glucagon to maintain glucose homeostasis. Amylin appears to regulate glucose inflow to the circulation by influencing the rate of gastric emptying, and thus the rate at which meal-derived glucose enters the system, and also by inhibiting glucose release and hepatic glucose production in the postprandial period.

Amyloid↗

Amylin release during oral glucose tolerance test.

The role of amylin in the beta-cell dysfunction that occurs in patients with diabetes mellitus may be important. Amyloid deposits are found in the pancreata of subjects with Type 2 diabetes and may contribute to beta-cell death. It is therefore necessary to study amylin secretion and kinetics to determine whether elevated levels of the peptide are due to elevated secretion, reduced clearance or both. The aim of this study was to measure amylin dynamics during an oral glucose tolerance test (OGTT). We also used a mathematical model of beta-cell activity to assess the secretion and kinetics of C-peptide, insulin and amylin in humans during an OGTT. In particular, we were interested in characterizing the physiological meaning of one of the terms in the model, the amylin/C-peptide co-secretion factor (sigma). The model has been used in several pathophysiological conditions and results indicate an elevated secretion and clearance of amylin in glucose-intolerant states. Amylin clearance has been found to be similar to that of C-peptide, and much slower than that of insulin. In this study, direct measurements of insulin and amylin secretion in five obese subjects yielded an estimate of the amylin/insulin co-secretion factor of 0.004 with a standard deviation (SD) of 0.002. The point estimate of hepatic clearance was 80 ml min(-1), which was much lower than that of insulin (507 +/- 94 ml min[-1]). In addition, the estimated hepatic clearance was not significantly different from zero given its high SD of 213 ml min(-1). The absence of hepatic extraction of amylin is therefore a plausible hypothesis, which is also supported by the similarity between amylin and C-peptide clearances. This observation characterizes the physiological meaning of sigma and suggests that this parameter is associated mainly with beta-cell secretion.

Amyloid↗

Persistent elevation and metabolic dependence of circulating E-selectin after delivery in women with gestational diabetes mellitus.

The increased risk of premature atherosclerosis in noninsulin-dependent diabetes mellitus (NIDDM) might be related in part to augmented expression of endothelial adhesion molecules (AMs). So far it is, however, unknown whether increased circulating (c) AMs in NIDDM are only a consequence of this disease or also involved in its sequelae. To determine the presence of cAMs in a population at increased risk for subsequent development of NIDDM, we analyzed fasting and postprandial [oral glucose tolerance test (OGTT): 100 g] serum concentrations of circulating E-selectin, vascular cell adhesion molecule-1 (cVCAM-1), and intercellular adhesion molecule-1 (cICAM-1) in pregnant women with either gestational diabetes (GDM) or normal glucose tolerance (NT) before and after delivery vs. nonpregnant healthy women (C). During pregnancy cE-selectin and cVCAM-1 were elevated in both GDM and NT vs. nonpregnant females (P < 0.01 vs. C). Following delivery, all GDM females regained normal glucose tolerance according to OGTT criteria, but showed slightly higher postprandial [area under the curve (AUC)180 min] glycemia and HbA1c values than nonpregnant healthy women (P < 0.05), indicating persisting subtle abnormalities in carbohydrate metabolism. cE-selectin and cVCAM-1 remained increased in GDM (P < 0.01 vs.C) after delivery, but fell to normal in NT (P < 0.05 before vs. after delivery). Furthermore, a correlation was seen in GDM females between cE-selectin and HbA1c (P < 0.005), fasting glucose (P < 0.01), and insulin (P < 0.05) as well as postprandial (AUC180 min) glucose and insulin concentrations (P < 0.05) during OGTTs, both before and after delivery. ICAM-1, however, did not differ significantly between groups. In summary, GDM is characterized by persistently raised levels of cE-selectin and cVCAM-1 12 weeks after delivery. Whether these persistent elevations of cE-selectin and cVCAM-1 reflect early vascular injury or represent a risk factor for atherosclerosis in women at increased risk for NIDDM remains to be determined.

Adult↗

Elevated islet amyloid pancreatic polypeptide and proinsulin in lean gestational diabetes.

Recent research indicates that islet amyloid pancreatic polypeptide (IAPP) might have a regulatory effect on beta-cell insulin processing and secretion. To study such interaction in more detail, IAPP secretion and kinetics and the serum concentrations of proinsulin were assessed both before and after delivery in lean pregnant women with gestational diabetes mellitus (GDM patients) in comparison to those with normal glucose tolerance (NGT) and to nonpregnant healthy lean (control) and obese insulin-resistant women during oral glucose tolerance tests. Kinetic analysis of IAPP was performed with mathematical modeling, providing indirect estimates of its secretion and fractional clearance. Total insulin secretion per 180 min was elevated by 30% in GDM patients (35 +/- 3 pmol/l) versus control subjects (27 +/- 1 pmol/l) (P < 0.05), but increased even more (190-250%) in obese insulin-resistant women, compared with all other groups (68 +/- 7 pmol/l, P < 0.0005). Pregnancy induced a more marked fourfold increase in apparent total IAPP secretion rate (TIR) (GDM patients, 172 +/- 31 pmol x 1(-1) x 3 h(-1); NGT subjects, 166 +/- 31 pmol x 1(-1) x 3 h(-1); control subjects, 40 +/- 1 pmol 1(-1) x 3 h(-1)) and a twofold rise in its fractional clearance versus control subjects (P < 0.01), whereas in GDM patients a 30% increase of IAPP secretion and a decreased clearance was found, compared with obese insulin-resistant women (TIR, 112 +/- 14 pmol x 1(-1) x 3 h(-1)). The increase in IAPP secretion in both pregnant groups was much higher than that of the insulin groups, resulting in a marked change of the IAPP-insulin cosecretion factor when compared with lean or obese nonpregnant women (P < 0.0005). Associated serum proinsulin and the postprandial (total divided by 180 min) proinsulin-to-insulin ratio were greater in GDM patients versus NGT and control subjects (0.11 +/- 0.01 vs. 0.07 +/- 0.01 and 0.08 +/- 0.01 pmol/l, P < 0.05), while the fasting proinsulin-to-insulin ratio was only increased in GDM patients versus control subjects (0.22 +/- 0.03 vs. 0.13 +/- 0.01 pmol/l, P < 0.05). After delivery, total IAPP secretion (52.4 +/- 1.5 pmol/l) was completely normalized in the GDM group, as were the clearance rate and the IAPP-insulin cosecretion factor. Similarly, serum proinsulin concentrations returned to normal, whereas proinsulin-to-insulin ratios remained elevated. In conclusion, IAPP hypersecretion is characteristic for pregnancy and might partially decrease hyperinsulinemia in pregnancy by inhibiting insulin secretion. Increased proinsulin concentrations and a raised proinsulin-to-insulin ratio, which did not abate following delivery, are specific to GDM and might thus serve as its marker and potentially even identify subjects at high risk for the development of NIDDM.

Adult↗

Pronounced insulin resistance and inadequate beta-cell secretion characterize lean gestational diabetes during and after pregnancy.

OBJECTIVE: To evaluate beta-cell secretion and glucose metabolism in lean subjects with gestational diabetes mellitus (GDM) compared with that in subjects with normal pregnancy and obesity. RESEARCH DESIGN AND METHODS: Insulin secretion, insulin sensitivity (S1), and hepatic insulin extraction were assessed in pregnant women with GDM before and after delivery and in those with normal glucose tolerance (NGT) in comparison to healthy nonpregnant lean and obese women. Kinetic analysis of glucose, insulin, and C-peptide plasma concentrations during oral and intravenous glucose tolerance tests was performed by mathematical modeling. RESULTS: S1 was blunted in pregnant women with GDM by 84% and in those with NGT by 66% compared with lean nonpregnant women (P < 0.005 vs. healthy nonpregnant lean control subjects; P < 0.05, GDM vs. pregnant women with NGT), whereas glucose effectiveness was decreased by 33% in both pregnant groups (P < 0.05 vs. healthy nonpregnant lean control subjects). Insulin secretion was 30% higher (P < 0.05) in subjects with GDM than in pregnant women with NGT or in nonpregnant lean women, but decreased (P < 0.005) when compared with obese women with a comparable degree of insulin resistance. Fractional hepatic insulin extraction was similar in both pregnant groups, being lower (P < 0.0001) by 30% versus nonpregnant females. beta-cell sensitivity to glucose for insulin release was decreased in subjects with GDM versus pregnant women with NGT as well as nonpregnant women by 40-50% (P < 0.01). Twelve weeks after delivery, GDM returned to normal glucose tolerance, but S1 remained 50% lower than that in lean nonpregnant women, while beta-cell sensitivity to glucose did not change (P < 0.01 vs. healthy nonpregnant lean control subjects). CONCLUSIONS: Pregnancy is characterized by insulin resistance, diminished hepatic insulin extraction, and glucose effectiveness. Lean subjects with GDM are additionally characterized by having more pronounced insulin resistance and inadequate insulin secretion, which persist after delivery. Compared with other insulin-resistant prediabetic states like impaired glucose tolerance (IGT), defective insulin secretion seems to be a predominant defect in lean GDM subjects, indicating that it might represent a specific prediabetic condition.

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