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Biomedical subjects

Ele Ferrannini

Publications and source records attributed to Ele Ferrannini.

At least 73 records · Page 4Linked to original sources

Mode of onset of type 2 diabetes from normal or impaired glucose tolerance.

Fasting plasma glucose concentrations (FPG) predict development of type 2 diabetes. Whether hyperglycemia evolves from normoglycemia gradually over time or as a step increase is not known. We measured plasma glucose and insulin levels during oral glucose testing in 35- to 64-year-old men and nonpregnant women from a population-based survey (Mexico City Diabetes Study) at baseline (n = 2,279) and after 3.25 (n = 1,740) and 7 years (n = 1,711) of follow-up. In subjects with normal glucose tolerance (NGT) on all three occasions (nonconverters; n = 911), FPG increased only slightly (0.23 +/- 0.79 mmol/l, mean +/- SD; P < 0.0001) over 7 years. In contrast, conversion to diabetes among NGT subjects (n = 98) was marked by a large step-up in FPG regardless of time of conversion (3.06 +/- 2.57 and 2.94 +/- 3.11 mmol/l, respectively, at 3.25 and 7 years; P < 0.0001 vs. nonconverters). Likewise, in subjects who converted to diabetes from impaired glucose tolerance (n = 75), FPG rose by 3.14 +/- 3.83 and 3.12 +/- 3.61 mmol/l (P < 0.0001 vs. nonconverters). Three-quarters of converters had increments in FPG above the 90th percentile of the corresponding increments in nonconverters. Converters had higher baseline BMI (30.4 +/- 4.9 vs. 27.3 +/- 4.0 kg/m(2); P < 0.001) and fasting plasma insulin values (120 +/- 78 vs. 84 +/- 84 pmol/l; P < 0.02) than nonconverters; however, no consistent change in either parameter had occurred before conversion. In contrast, changes in 2-h postglucose insulin levels between time of conversion and preceding measurement were significantly (P < 0.0001) related to the corresponding changes in FPG in an inverse manner. We conclude that, within a 3-year time frame, the onset of diabetes is very often rapid rather than gradual and is in part explained by a fall in glucose-stimulated insulin response.

Blood Glucose↗

beta-cell function in obesity: effects of weight loss.

In nondiabetic subjects, obesity is associated with a modest expansion of beta-cell mass, possibly amounting-according to the best available estimates-to 10-30% for each 10 kg of weight excess. Whether age of onset and duration of obesity, recent changes in body weight, and body fat distribution have any effect on beta-cell mass in humans is unknown. Both fasting insulin secretion and the total insulin response to oral glucose have the following characteristics: 1) they increase with BMI in an approximately linear fashion, 2) both fat-free and fat mass are significant positive correlates, and 3) BMI exerts a positive effect separate from that of insulin resistance (i.e., obesity may be a state of primary insulin hypersecretion). The mechanisms are currently unknown, though chronic small increments in plasma glucose may play a role. In contrast, dynamic properties of beta-cell function, such as glucose sensitivity (i.e., dose-response function), rate sensitivity, and potentiation, do not appear to be substantially altered by the presence of obesity, body fat distribution, or insulin resistance as long as glucose tolerance is maintained. Weight loss, by diet or restrictive bariatric surgery, is associated with consensual decrements in insulin resistance and insulin hypersecretion. The latter, however, seems to be more persistent, suggesting that the postobese state may reproduce the primary insulin hypersecretion of the obese state. Malabsorptive bariatric surgery, in contrast, normalizes insulin sensitivity and abolishes insulin hypersecretion even before achievement of ideal body weight. Lipid-triggered messages from the gastrointestinal tract to the insulin target tissues and endocrine pancreas are the subject of intense investigation.

Animals↗

Effect of PPAR-gamma activation and inhibition on glucose-stimulated insulin release in INS-1e cells.

Peroxisome proliferator-activated receptor (PPAR)-gamma is expressed in human beta-cells and in the rat beta-cell line INS-1. Previous studies have suggested that PPAR-gamma agonism (e.g., thiazolidinediones) enhances glucose-stimulated insulin secretion (GSIS) from islets or INS-1 cells. We tested the direct effect on insulin release by INS-1e of a PPAR-gamma agonist (Ro4389679-000-001 at 0.2 and 0.4 micromol/l) and a PPAR-gamma antagonist (SR202 at 0.2 and 0.4 mmol/l). Cells were incubated in 11 mmol/l glucose for 96 h and then challenged with 3.3, 7.5, 11.0, and 20.0 mmol/l glucose for 1 h. Under these control conditions, insulin concentrations in the medium rose from 19 +/- 4 ng/ml (mean +/- SE) to 82 +/- 5, 107 +/- 11, and 103 +/- 10 ng/ml (P <0.0001 by ANOVA). Preincubation for 48 h with the PPAR-gamma agonist potentiated GSIS (to 154 +/- 14 and 156 +/- 12 ng/ml at 20 mmol/l glucose, P <0.01). Cell insulin content was not altered by either acute glucose challenge or PPAR-gamma agonist coincubation. Preincubation for 48 h with SR202 at the higher dose caused a 30% inhibition of GSIS, with no change in cell insulin contents. When cells were preincubated with 11 mmol/l glucose plus 1 mmol/l oleate, GSIS was significantly potentiated (by 30%, P <0.0001); adding Ro4389679-000-001 or SR202 to these preincubations reduced GSIS to the respective levels seen in the absence of oleate (P <0.0001 for both effects). In conclusion, INS-1e cells display a PPAR-gamma tone that is symmetrically modulated and competitively stimulated by oleate.

Animals↗

Vascular effects of improving metabolic control with metformin or rosiglitazone in type 2 diabetes.

OBJECTIVE: The aim of this study was to test whether vascular reactivity is modified by improving metabolic control and peripheral insulin resistance in type 2 diabetes. RESEARCH DESIGN AND METHODS: In a randomized, double-blind design, we assigned 74 type 2 diabetic patients to rosiglitazone (8 mg/day), metformin (1,500 mg/day), or placebo treatment for 16 weeks and measured insulin sensitivity (euglycemic insulin clamp), ambulatory blood pressure, and forearm blood flow response to 1) intra-arterial acetylcholine (ACh), 2) intra-arterial nitroprusside, 3) the clamp, and 4) blockade of nitric oxide (NO) synthase. RESULTS: Compared with 25 nondiabetic subjects, patients had reduced insulin sensitivity (30 +/- 1 vs. 41 +/- 3 micromol. min(-1). kg fat-free mass(-1); P < 0.001) and reduced maximal response to ACh (586 +/- 42 vs. 883 +/- 81%; P < 0.001). Relative to placebo, 16 weeks of rosiglitazone and metformin similarly reduced fasting glucose (-2.3 +/- 0.5 and -2.3 +/- 0.5 mmol/l) and HbA(1c) (-1.2 +/- 0.3 and -1.6 +/- 0.3%). Insulin sensitivity increased with rosiglitazone (+6 +/- 3 micromol. min(-1). kg fat-free mass(-1); P < 0.01) but not with metformin or placebo. Ambulatory diastolic blood pressure fell consistently (-2 +/- 1 mmHg; P < 0.05) only in the rosiglitazone group. Nitroprusside dose response, clamp-induced vasodilatation, and NO blockade were not affected by either treatment. In contrast, the slope of the ACh dose response improved with rosiglitazone (+40% versus baseline, P < 0.05, +70% versus placebo, P < 0.005) but did not change with either metformin or placebo. This improvement in endothelium-dependent vasodilatation was accompanied by decrements in circulating levels of free fatty acids and tumor necrosis factor-alpha. CONCLUSIONS: At equivalent glycemic control, rosiglitazone, but not metformin, improves endothelium dependent vasodilatation and insulin sensitivity in type 2 diabetes.

Acetylcholine↗

Effect of training status on regional disposal of circulating free fatty acids in the liver and skeletal muscle during physiological hyperinsulinemia.

OBJECTIVE: Fat metabolism is increasingly implicated in the pathogenesis of type 2 diabetes. Endurance training has been shown to prevent hepatic steatosis and to alter skeletal muscle fat metabolism, and regional free fatty acid (FFA) uptake adaptations were suggested as a mechanism. Thus, we tested whether endurance training modifies the uptake of plasma FFAs occurring in the liver and in skeletal muscle during anabolic, i.e., hyperinsulinemic, conditions. RESEARCH DESIGN AND METHODS: Trained and untrained healthy male subjects underwent positron emission tomography scanning of the liver and thigh regions, with the FFA analog 14(R,S)-[(18)F]fluoro-6-thia-heptadecanoic acid, during euglycemic hyperinsulinemia. Tracer influx rate constants in skeletal muscle (MK(i)) and liver (LK(i)) were multiplied by plasma FFA levels to obtain FFA uptake for skeletal muscle (MFU) and liver (LFU), respectively. RESULTS: Athletes showed increased Vo(2max) (P < 0.0001), insulin-mediated glucose disposal (M value, 61 +/- 4 vs. 46 +/- 3 micromol. min(-1). kg(-1), P = 0.01), and plasma lactate levels during the clamp and lower percentage of body fat mass (P = 0.002). MK(i) was 25% higher in athletes than in sedentary men (P = 0.03). In all subjects, MK(i) and MFU were positively correlated with the M value (r = 0.56, P = 0.02, and r = 0.51, P = 0.03, respectively) and with plasma lactate levels (r = 0.63, P = 0.006, and r = 0.63, P = 0.005, respectively). LK(i) was significantly reduced by 20% in the athletes (P = 0.04). By multiple regression, LFU was inversely correlated with the two fitness categories (P = 0.008), and it was lower in athletes. Linear fitting of liver data showed time consistency, indicating no release of FFAs as a mechanism for the reduced liver retention in athletes. CONCLUSIONS: We conclude that endurance training promotes insulin-mediated glucose and FFA disposal in skeletal muscle, while lowering hepatic FFA uptake. Such changes may result in a divergent pattern of fat accumulation in the two organs.

Adipose Tissue↗

Relation between left ventricular midwall function and coronary vasodilator capacity in arterial hypertension.

In systemic hypertension, depressed left ventricular midwall shortening predicts an adverse outcome and is associated with increased left ventricular relative wall thickness, which has been proposed as an independent predictor of cardiovascular risk and reduced coronary reserve. This study was designed to investigate whether depressed midwall shortening is associated with more critical impairment of coronary function and with exercise-induced myocardial ischemia. Sixty untreated hypertensive patients without coronary artery stenosis and 20 normotensive volunteers underwent exercise ECG testing, standard and transesophageal echocardiography to assess the occurrence of exercise-induced myocardial ischemia, left ventricular mass, geometry, and midwall shortening, and coronary vasodilator capacity. Compared with hypertensive patients with normal midwall shortening, those with depressed function (n=15) had higher minimum coronary resistance (1.19+/-0.27 versus 1.39+/-0.20 mm Hg/cm per second, P<0.01) and prevalence of exercise-induced myocardial ischemia (36 versus 67%, P<0.05). Within the hypertensive group, midwall shortening was inversely related to minimum coronary resistance (r=-0.42, P<0.01). Compared with patients with an exercise ECG test negative for myocardial ischemia, those with a positive test result (n=26) had higher minimum coronary resistance (1.13+/-0.21 versus 1.38+/-0.27 mm Hg/cm per second, P<0.01) and lower midwall shortening (104+/-16 versus 93+/-14%, P<0.01). We conclude that hypertensive patients with depressed midwall shortening have more severe impairment of coronary function and a higher prevalence of exercise-induced myocardial ischemia as compared with hypertensive patients with normal midwall shortening. These findings suggest that a decrease in myocardial performance may be related, at least in part, to chronic intermittent myocardial ischemia caused by a critical impairment of coronary vasodilator capacity.

Adenosine↗

Liver uptake of free fatty acids in vivo in humans as determined with 14( R, S)-[18F]fluoro-6-thia-heptadecanoic acid and PET.

Increased delivery of circulating free fatty acids (FFA) to the liver has been implicated in the pathogenesis and progression of diabetes. The liver is inaccessible for direct measurement in humans in vivo. We measured liver FFA uptake with positron emission tomography (PET) and 14( R, S)-[(18)F]fluoro-6-thia-heptadecanoic acid ([(18)F]FTHA) in healthy men. We evaluated the use of graphical analysis and linear fit to describe uptake data over time, and compared the use of metabolite-corrected vs uncorrected input functions. Rapid accumulation of tracer in the liver was observed with time, leading to progressively higher tissue to blood radioactivity ratios. Using metabolite-corrected input function curves, linear fit to the data ( r value) exceeded 0.99 in all subjects, during each fitting time frame. Values of liver FFA influx rate constant and uptake were 0.34+/-0.01 ml min(-1) ml(-1) and 0.20+/-0.02 micro mol min(-1) ml(-1), respectively, and were minimally affected by the choice of the fitting interval. Expressed per unit mass, liver FFA uptake was ~50 times higher than that reported in skeletal muscle; in the whole organ, FFA uptake was twice as high as in skeletal muscles. The use of metabolite-uncorrected input functions significantly worsened the spread of data around the fitted line and led to a remarkable underestimation of liver FFA uptake at all time intervals. In conclusion, our data provide non-invasive quantification of hepatic FFA uptake in humans, showing the liver to handle a high FFA flux. [(18)F]FTHA-PET appears a valuable tool for the investigation of hepatic FFA turnover in humans.

Algorithms↗

A comparative study of the in vitro antioxidant activity of statins.

BACKGROUND: Treatment of hypercholesterolemia with statins is remarkably effective in cardiovascular prevention. This has led to the hypothesis that these drugs may act on the atherosclerotic plaque by mechanism(s) independent of the reduction of serum cholesterol levels. The aim of this study was to assess the total antioxidant activity of the most prescribed statins: fluvastatin, atorvastatin, pravastatin and simvastatin. METHODS: We measured the in vitro antioxidant activity of statins as their ability to antagonize the oxidation of alpha-keto-gamma-methiolbutyric acid by both hydroxyl and peroxyl radicals. The results are expressed as Total Oxyradical Scavenging Capacity (TOSC) units. Uric acid and Trolox were used as the reference antioxidants. RESULTS: The scavenging capacity towards hydroxyl radicals was highest for simvastatin (3375+/-112 U/mg), a value 270.2% higher (P<0.0001) compared to uric acid (reference antioxidant vs. hydroxyl radicals, 1249+/-71 U/mg). Among the tested statins, fluvastatin exhibited the highest anti-peroxyl radical antioxidant capacity (8755+/-187 U/mg) which appeared 50% lower (P<0.0001) compared to Trolox (reference antioxidant vs. peroxyl radicals, 17460+/-379 U/mg). CONCLUSIONS: All the statins tested have intrinsic antioxidant activity with both anti-hydroxyl and peroxyl radical activity. Simvastatin was the most effective as an anti-hydroxyl radical antioxidant and fluvastatin as an anti-peroxyl radical antioxidant.

Analysis of Variance↗

Erythrocyte sedimentation rate, coronary atherosclerosis, and cardiac mortality.

AIMS: To test whether the erythrocyte sedimentation rate (ESR) is related to the extension of coronary atherosclerosis (ATS) and predicts cardiac mortality. METHODS AND RESULTS: Hospital-based, retrospective observational (median follow up: 92 months) cohort study. In 1726 consecutive patients undergoing angiography, coronary ATS and subsequent mortality were related to ESR and to classical risk factors. Patients (n=269) undergoing angiography for reasons different from ischemic heart disease (IHD), served as control. ESR was progressively higher in the presence of 1, 2, or 3-vessel disease. Age-and sex-adjusted ESR was positively related to ATS both in univariate analysis (r=0.17, p<0.0001) and in a multivariate model including principal risk factors (partial r=0.11, p<0.0001). Similar associations were observed in the control group. Over the follow-up period, 170 patients died of a cardiac cause. When male and female patients in their upper ESR quartile (>18 and >23mm/h, respectively) were compared with the remainder of the cohort, their age-and gender-adjusted odds ratio for cardiac mortality was 1.72 (CI=1.25-2.38, p=0.0008). This result held true, in men, also when using a full set of risk factors in a Cox model. CONCLUSIONS: ESR is an independent correlate of coronary ATS and, in male patients with probable IHD, a predictor of cardiac death.

Adolescent↗

Role of neck ultrasonography in the follow-up of children operated on for thyroid papillary cancer.

The aim of this study was to evaluate the role of neck ultrasonography compared to (131)I whole-body scan (WBS) and circulating thyroglobulin (Tg) measurement after thyroid hormone withdrawal in the follow-up of children with thyroid papillary cancer, who had previously undergone total thyroidectomy for the diagnosis of neck lymph node metastases (LNM). Forty-five children were examined. Neck ultrasonography and diagnostic WBS were conclusive about the presence or absence of LNM in 35 patients. Diagnostic WBS revealed the presence of LNM in 6 cases not detected by neck ultrasonography; neck ultrasonography was positive in 3 cases that were negative at diagnostic WBS but confirmed by post-(131)I therapy WBS. One patient with suspicious neck lymphnodes at neck ultrasonography not confirmed by WBS was considered as a false-positive result of neck ultrasonography. Neck ultrasonography and thyroglobulin (Tg) were conclusive about the presence or absence of LNM in 29 patients. Tg was elevated in 10 subjects with negative neck ultrasonography (7 had also lung and/or mediastinic LNM). Tg was undetectable in 5 patients in whom the presence of LNM was confirmed by neck ultrasonography and WBS. In conclusion, our study in children demonstrates that neck ultrasonography can detect LNM that are not suspected by palpation, diagnostic WBS, or serum Tg determination. Furthermore, neck ultrasonography can pinpoint the anatomic site of the LNM.

Adolescent↗

Coronary vasodilator capacity and exercise-induced myocardial ischemia are related to the pulsatile component of blood pressure in patients with essential hypertension.

OBJECTIVES: High pulsatile load is associated with structural alterations of the heart and arteries, which may cause changes in the coronary circulation and predispose to myocardial ischemia. This study was designed to investigate the relationships of coronary vasodilator capacity and exercise-induced myocardial ischemia to pulsatile and steady components of office blood pressure. METHODS: Eighty-two untreated, middle-aged hypertensive patients without coronary artery stenosis and 23 normotensive volunteers, underwent exercise electrocardiogram test and standard and transesophageal echocardiography to assess the occurrence of myocardial ischemia, left ventricular (LV) mass and geometry, total arterial compliance and coronary vasodilator capacity. RESULTS: In the hypertensive population, minimum coronary resistance (MCR) was significantly higher (P < 0.01) in the top as compared to all three lower pulse pressure (PP) quartiles (1.10 +/- 0.19, 1.21 +/- 0.23, 1.20 +/- 0.26 and 1.43 +/- 0.26 mmHg s/cm). An additional increase in MCR also occurred in the top quartile of systolic blood pressure (SBP), but not across quartiles of mean blood pressure. In regression analysis, MCR increased with PP, SBP and LV wall thickness and decreased with total arterial compliance. As compared to hypertensive patients with a negative exercise test for myocardial ischemia (n = 30), those with a positive test (n = 20) had higher MCR (1.12 +/- 0.22 versus 1.39 +/- 0.29 mmHg s/cm, P < 0.01) and lower total arterial compliance (96 +/- 22 versus 81 +/- 16%, P < 0.01). CONCLUSIONS: In untreated middle-aged hypertensive patients, coronary vasodilator capacity declines with increasing office PP and SBP. A decreased arterial compliance and increased LV wall thickness appear to be major alterations underlying this relationship. Exercise-induced myocardial ischemia is associated with higher MCR and lower arterial compliance.

Adult↗

Insulin-mediated hepatic glucose uptake is impaired in type 2 diabetes: evidence for a relationship with glycemic control.

Impaired hepatic glucose uptake (HGU) has been implicated in the development of hyperglycemia in type 2 diabetes; the relative impact of plasma glucose and insulin levels on this process remains controversial. We compared the effects of euglycemic hyperinsulinemia on HGU, skeletal muscle glucose uptake, and hepatic influx rate-constant (H-Ki) in 38 diet-treated diabetic patients and 22 nondiabetic controls, using positron emission tomography with (18)F-fluorodeoxyglucose and the insulin clamp technique. Control subjects were divided into two subgroups: one including older, heavier, insulin-resistant controls (whole-body glucose uptake, M = 21.4 +/- 5.4 micromol x min(-1) x kg(-1)) to match characteristics of diabetic patients (M = 20.4 +/- 9.9); the other including younger, leaner, insulin-sensitive controls (M = 48.2 +/- 9.9, P < 0.01). Skeletal muscle glucose uptake showed a similar group distribution as the M value. Insulin clearance rates were lower, whereas glycosylated hemoglobin and clamp plasma insulin levels were higher in diabetic patients than in controls. HGU and H-Ki were similar in the two nondiabetic subgroups and lower in diabetic patients than in controls (1.9 +/- 0.5 vs. 2.3 +/- 0.7 micromol x min(-1) x 100 ml(-1), and 0.37 +/- 0.09 vs. 0.44 +/- 0.14 ml x min(-1) x 100 ml(-1), P < or = 0.01). In the whole dataset, H-Ki was inversely related to fasting plasma glucose (correlation coefficient = -0.40, P = 0.0018). In diabetic subjects, H-Ki was reciprocally related to glycosylated hemoglobin (correlation coefficient = -0.36, P = 0.029). We conclude that insulin-mediated HGU is impaired, in type 2 diabetes, in some proportion to the degree of glycemic control.

Aged↗

Influence of ethnicity and familial diabetes on glucose tolerance and insulin action: a physiological analysis.

Both ethnicity and familial diabetes (FHD) confer risk for type 2 diabetes [diabetes mellitus (DM)], but their relative influence has not been established. To analyze the separate impact of ethnicity, Mexican-American vs. Caucasian, and FHD on the physiological determinants of glucose tolerance, we measured insulin sensitivity of glucose uptake (IS(GU)) (by the clamp technique), endogenous glucose production (by 3-[(3)H]glucose infusion), and insulin secretory response (to oral glucose) in 172 Mexican-Americans and 60 Caucasians with normal glucose tolerance (NGT) or DM. IS(GU) was markedly reduced in diabetics vs. NGT (3.9 +/- 0.2 vs. 8.4 +/- 0.5 ml.min(-1).kg(ffm)(-1), P < 0.0001), and lower in Mexican-Americans than in Caucasians (5.3 +/- 0.3 vs. 7.3 +/- 0.7 ml.min(-1).kg(ffm)(-1), P < 0.003; ffm, fat-free mass). In a multivariate analysis including both ethnicity and FHD (and adjusting for body mass index, age, and diabetes), ethnicity was still a significant (P = 0.02) independent correlate of IS(GU). Insulin resistance of glucose production was increased in diabetics (14 +/- 1 mmol.min(-1).[ micro U/ml], P < 0.0001 vs. 9 +/- 1 of NGT), whereas the 30' insulin/glucose ratio was decreased (16 +/- 1 micro U/mg, P < 0.0001 vs. 60 +/- 5). In multivariate models, neither ethnicity nor FHD were significant independent correlates of glucose production and early insulin response. We conclude that the primary physiological target of the propensity to diabetes of Mexican-Americans is insulin resistance of glucose uptake.

Adult↗

Impaired endothelium-dependent vasodilatation in subclinical hypothyroidism: beneficial effect of levothyroxine therapy.

Subclinical hypothyroidism (sHT) is associated with enhanced cardiovascular risk. To test the hypothesis that patients with sHT are characterized by endothelial dysfunction and impaired nitric oxide (NO) availability, in 14 patients [serum cholesterol, 218 +/- 41 mg/dl (5.6 +/- 0.9 mM)] and 28 euthyroid subjects, subdivided into groups A and B [serum cholesterol, 170 +/- 19 mg/dl (4.4 +/- 0.5 mM) and 217 +/- 21 mg/dl (5.6 +/- 0.5 mM), respectively], we studied the forearm blood flow (strain-gauge plethysmography) response to intrabrachial acetylcholine, an endothelium-dependent vasodilator, at baseline and during infusion of N(G)-monomethyl-L-arginine (L-NMMA), a NO synthase inhibitor. Response to sodium nitroprusside and minimal forearm vascular resistances were also evaluated. In sHT patients, vasodilation to acetylcholine was reduced, compared with group B (+358 +/- 29% vs. +503 +/- 19%, P = 0.0003) and group A (663 +/- 65%, P = 0.02 vs. group B and P = 0.0002 vs. sHT). L-NMMA blunted the vasodilation to acetylcholine in groups A and B (49.1 +/- 6.3% and 42.7 +/- 5.5% maximal forearm blood flow reduction, respectively, P < 0.0001 vs. acetylcholine), whereas it was ineffective in sHT patients (12.8 +/- 2.5%). Response to sodium nitroprusside and minimal vascular resistances were similar. In sHT (n = 9) patients, 6 months of euthyroidism by levothyroxine replacement increased acetylcholine-vasodilation and restored L-NMMA inhibition. Patients with sHT are characterized by endothelial dysfunction resulting from a reduction in NO availability, an alteration partially independent of dyslipidemia and reversed by levothyroxine supplementation.

Acetylcholine↗

Effects of metformin and rosiglitazone monotherapy on insulin-mediated hepatic glucose uptake and their relation to visceral fat in type 2 diabetes.

OBJECTIVE: Impaired insulin-mediated hepatic glucose uptake (HGU) has been implicated in the hyperglycemia of type 2 diabetes. We examined the effects of metformin (2 g/day) and rosiglitazone (8 mg/day) monotherapy on HGU and its relation to subcutaneous fat, visceral fat (VF), and whole-body insulin-mediated glucose metabolism in type 2 diabetic patients. RESEARCH DESIGN AND METHODS: Glucose uptake was measured before and after 26 weeks of treatment using positron emission tomography with [(18)F]2-fluoro-2-deoxyglucose during euglycemic hyperinsulinemia; fat depots were quantified by magnetic resonance imaging. RESULTS: Fasting plasma glucose levels were significantly decreased after either rosiglitazone (-0.9 +/- 0.5 mmol/l) or metformin treatment (-1.1 +/- 0.5 mmol/l) in comparison with placebo; only metformin was associated with weight loss (P < 0.02 vs. placebo). When controlling for the latter, the placebo-subtracted change in whole-body glucose uptake averaged -1 +/- 4 micromol x min(-1) x kg(-1) in metformin-treated patients (NS) and +9 +/- 3 micromol x min(-1) x kg(-1) in rosiglitazone-treated patients (P = 0.01). Both rosiglitazone and metformin treatment were associated with an increase in HGU; versus placebo, the change reached statistical significance when controlling for sex (placebo-subtracted values = +0.008 +/- 0.004 micromol x min(-1) x kg(-1) x pmol/l(-1), P < 0.03, for metformin; and +0.007 +/- 0.004, P < 0.07, for rosiglitazone). After treatment with either drug, insulin-mediated VF glucose uptake (VFGU) was higher than with placebo. In the whole dataset, changes in HGU were negatively related to changes in HbA(1c) (r = 0.43, P = 0.01) and positively associated with changes in VFGU (r = 0.48, P < 0.01). CONCLUSIONS: We conclude that both metformin and rosiglitazone monotherapy increase HGU in type 2 diabetes; direct drug actions, better glycemic control, and enhanced VF insulin sensitivity are likely determinants of this phenomenon.

Adipose Tissue↗