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Biomedical subjects

Angelo Avogaro

Publications and source records attributed to Angelo Avogaro.

At least 37 records · Page 2Linked to original sources

Detection of coronary artery disease in asymptomatic patients with type 2 diabetes mellitus.

UNLABELLED: In type 2 diabetes mellitus (DM2) patients, coronary artery disease (CAD) generally is detected in an advanced stage, whereas an asymptomatic stage is commonly missed. Abnormal myocardial perfusion during stress myocardial contrast echocardiography (MCE) and significant CAD were similar, irrespective of risk factor (RF) profile in our patients, but coronary anatomy differed. An "aggressive" diagnostic approach, requiring coronary angiography in asymptomatic DM2 patients with < or = 1 associated RF for CAD and abnormal MCE, identified silent CAD, characterized by a more favorable angiographic anatomy. The criterion of > or = 2 RFs did not help to identify patients with a higher prevalence of CAD and is only related to a more severe coronary atherosclerosis with unfavorable anatomy. OBJECTIVES: We sought to verify the effectiveness of current American Diabetes Association screening guidelines in identifying asymptomatic patients with coronary artery disease (CAD) in type 2 diabetes mellitus (DM2). BACKGROUND: In DM2 patients, CAD generally is detected in an advanced stage with an extensive atherosclerosis and poor outcome, whereas CAD in an asymptomatic stage is commonly missed. METHODS: This study included 1,899 asymptomatic DM2 patients (age < or = 60 years). Of these, 1,121 had > or = 2 associated risk factors (RFs), group A, and the remaining 778 had < or = 1 RF, group B, for CAD. All patients underwent dipyridamole myocardial contrast echocardiography (MCE), and in those with myocardial perfusion defects, the anatomy of coronary vessels was analyzed by selective coronary angiography. RESULTS: In the two study groups, the prevalence of abnormal MCE (59.4% vs. 60%, p = 0.96) and of a significant CAD (64.6% vs. 65.5%, p = 0.92) was similar, irrespective of RF profile. But coronary anatomy differed: group B had a lower prevalence of three-vessel disease (7.6% vs. 33.3%, p < 0.001), of diffuse disease (18.0% vs. 54.9%, p < 0.001), and of vessel occlusion (3.8% vs. 31.2%, p < 0.001), whereas one-vessel disease was more frequent (70.6% vs. 46.3%, p < 0.001). Coronary anatomy did not allow any revascularization procedure in 45% of group A patients. CONCLUSIONS: An "aggressive" diagnostic approach, requiring coronary angiography in asymptomatic DM2 patients with < or =1 associated RF for CAD and abnormal MCE, identified patients with a subclinical CAD characterized by a more favorable angiographic anatomy. The criterion of > or =2 RFs did not help to identify asymptomatic patients with a higher prevalence of CAD and is only related to a more severe CAD with unfavorable coronary anatomy.

Coronary Angiography↗

Brain oxygen utilization is unchanged by hypoglycemia in normal humans: lactate, alanine, and leucine uptake are not sufficient to offset energy deficit.

During hypoglycemia, substrates other than glucose have been suggested to serve as alternate neural fuels. We evaluated brain uptake of endogenously produced lactate, alanine, and leucine at euglycemia and during insulin-induced hypoglycemia in 17 normal subjects. Cross-brain arteriovenous differences for plasma glucose, lactate, alanine, leucine, and oxygen content were quantitated. Cerebral blood flow (CBF) was measured by Fick methodology using N(2)O as the dilution indicator gas. Substrate uptake was measured as the product of CBF and the arteriovenous concentration difference. As arterial glucose concentration fell, cerebral oxygen utilization and CBF remained unchanged. Brain glucose uptake (BGU) decreased from 36.3+/-2.6 to 26.6+/-2.1 micromol.100 g of brain(-1).min(-1) (P<0.001), equivalent to a drop in ATP of 291 micromol.100 g(-1).min(-1). Arterial lactate rose (P<0.001), whereas arterial alanine and leucine fell (P<0.009 and P<0.001, respectively). Brain lactate uptake (BLU) increased from a net release of -1.8+/- 0.6 to a net uptake of 2.5+/-1.2 micromol.100 g(-1).min(-1) (P<0.001), equivalent to an increase in ATP of 74 micromol.100 g(-1).min(-1). Brain leucine uptake decreased from 7.1+/-1.2 to 2.5 +/- 0.5 micromol.100 g(-1).min(-1) (P<0.001), and brain alanine uptake trended downward (P<0.08). We conclude that the ATP generated from the physiological increase in BLU during hypoglycemia accounts for no more than 25% of the brain glucose energy deficit.

Adult↗

Postprandial myocardial perfusion in healthy subjects and in type 2 diabetic patients.

BACKGROUND: In diabetic patients, postprandial hyperglycemia is a more powerful risk factor for cardiovascular disease than fasting hyperglycemia itself. A negative influence of acute hyperglycemia on systemic endothelial function (brachial artery) has been shown. However, myocardial perfusion during postprandial hyperglycemia has not been investigated. METHODS AND RESULTS: We evaluated the effects of a standardized mixed meal on myocardial perfusion in 20 healthy subjects and 20 consecutive patients with type 2 diabetes mellitus without macrovascular or microvascular complications. Myocardial perfusion was assessed in fasting and postprandial states by myocardial contrast echocardiography. Fasting myocardial flow velocity (beta, 0.65+/-0.27 versus 0.67+/-0.24; P=NS), myocardial blood volume (MBV; 8.3+/-1.2 versus 8.4+/-2; P=NS), and myocardial blood flow (5.4+/-1.5 versus 5.6+/-2; P=NS) did not differ between control subjects and diabetic patients. In the postprandial state, beta (0.67+/-0.24 versus 0.92+/-0.35; P<0.01), MBV (8.4+/-2 versus 10.9+/-2.7; P<0.01), and myocardial blood flow (5.6+/-2 versus 9.9+/-2.8; P<0.01) increased significantly in control subjects. In diabetic patients, beta increased (0.65+/-0.27 versus 0.8+/-0.24; P<0.01) but MBV (8.3+/-1.2 versus 4.3+/-1.3; P<0.01) and myocardial blood flow (5.4+/-1.5 versus 3.4+/-0.9; P<0.01) decreased significantly. Changes in MBV (expressed as [(MBV(postprandial)-MBV(fasting))/MBV(fasting)]x100) were significantly correlated with postprandial glycemia levels in diabetic patients. CONCLUSIONS: Postprandial hyperglycemia determines myocardial perfusion defects in type 2 diabetic patients. They are secondary to deterioration in microvascular function causing a decrease in MBV. In diabetic patients without microvascular or macrovascular complications, postprandial myocardial perfusion defects may represent an early marker of the atherogenic process in the coronary circulation; hence, its reversal constitutes a potential goal of treatment.

Adult↗

Circulating endothelial progenitor cells are reduced in peripheral vascular complications of type 2 diabetes mellitus.

OBJECTIVES: We sought to establish whether a reduction in endothelial progenitor cells (EPCs) has a putative role in peripheral vascular disease (PVD) of type 2 diabetic patients. BACKGROUND: Peripheral vascular disease is a common and severe complication of diabetes mellitus. Impaired collateralization of diabetic vasculopathy has been extensively shown, but causes leading to its pathogenesis are not fully understood. Recently, EPCs have been found to contribute to vascular repair and angiogenesis. Diabetes has been associated with low levels of circulating EPCs, but no data are available in the literature on the relationship between EPCs and PVD in diabetes. METHODS: Flow cytometric analysis was used to quantify circulating progenitor cells (CPCs, CD34+) and EPCs (CD34+KDR+) in 51 patients and 17 control subjects. RESULTS: The CPCs and EPCs from diabetic patients were reduced by 33% and 40%, respectively, compared with healthy subjects (p < 0.001). An inverse correlation was found between the number of EPCs and the values of fasting glucose (r = -0.49, p = 0.006). Peripheral vascular disease was associated with a 47% reduction in EPCs (p < 0.0001) and EPC levels directly correlated with the ankle-brachial index (r = 0.70, p = 0.01). The subgroup of diabetic patients with PVD also had reduced CPCs by 32% (p = 0.037), whereas patients with ischemic foot lesions had the lowest levels of both EPCs and CPCs (p = 0.02). CONCLUSIONS: Our data demonstrate decreased EPC levels in diabetic patients and, for the first time, show that PVD is associated with an extensively low number of EPCs. Depletion of circulating EPCs in diabetic patients may be involved in the pathogenesis of peripheral vascular complications.

Aged↗

Abnormal myocardial perfusion and contractile recruitment during exercise in type 1 diabetic patients.

BACKGROUND: No data are available on the relationship between myocardial perfusion and left ventricular (LV) function in type 1 diabetes mellitus (T1DM), which may constitute a factor explaining the progressive contractile dysfunction to the overt phase of diabetic cardiomyopathy. HYPOTHESIS: This study was undertaken to test whether myocardial perfusion abnormalities are present at rest and during exercise and whether they are related to contractile dysfunction in T1DM. METHODS: Twenty-two patients with T1DM, aged 32 +/- 8.3 years, without macro- or microvascular complications, and 10 controls, aged 31 +/- 3 years, were studied. Left ventricular function and myocardial perfusion were assessed by two-dimensional and myocardial contrast echocardiography at rest and during handgrip (HG). RESULTS: Fourteen patients with T1DM showed a decline in LV ejection fraction (LVEF) during HG (Group 1) while 8 had a normal response (Group 2). Both basal myocardial blood volume (MBV) and velocity (beta) were normal in T1DM. During exercise, MBV and beta increased and were associated with an increase in myocardial blood flow (MBF) in controls. In T1DM, beta did not change and MBV increased only in Group 2, while this increase was not observed in Group 1 (controls: 14.9 +/- 2.3 vs. Group 1: 7.6 +/- 1.6, p < 0.001; and vs. Group 2: 10.2 +/- 2.8, p < 0.001), beta (0.86 +/- 0.12 vs. 0.68 +/- 0.14, p < 0.001; and vs. 0.67 +/- 0.15, p < 0.001). A correlation between the ratio exercise MBF/resting MBF and LVEF at peak exercise in T1DM was observed (r = 0.805, p < 0.001). CONCLUSIONS: A large proportion of patients with T1DM exhibit abnormalities in myocardial adaptable capacity to match an acute overload, which are related to a defective increase in myocardial perfusion.

Adult↗

Arterio-venous gradient of endothelial progenitor cells across renal artery stenosis.

A role for circulating progenitor cells have been recently demonstrated in many pathological conditions. Endothelial progenitor cells (EPCs) localize at sites of ischemia and stimulate neovasculogenesis. This small study was carried out to assess whether selective blood sampling during renal angiography could demonstrate an arterio-venous gradient of EPCs in 5 patients with renal artery stenosis. Surprisingly, we found that EPCs were more abundant in venous than in arterial blood, suggesting that the kidney subjected to chronic ischemia may become a source rather than a target of EPCs.

Endothelium, Vascular↗

Mechanisms of endothelial dysfunction in obesity.

Obesity is a chronic disease, whose incidence is alarmingly growing, affecting not only adults but also children and adolescents. It is associated with severe metabolic abnormalities and increased cardiovascular morbidity and mortality. Adipose tissue secretes a great number of hormones and cytokines that not only regulate substrate metabolism but may deeply and negatively influence endothelial physiology, a condition which may lead to the formation of the atherosclerotic plaque. In this review, the physiology of the endothelium is summarised and the mechanisms by which obesity, through the secretory products of adipose tissue, influences endothelial function are explained. A short description of methodological approaches to diagnose endothelial dysfunction is presented. The possible pathogenetic links between obesity and cardiovascular disease, mediated by oxidative stress, inflammation and endothelial dysfunction are described as well.

Adipose Tissue↗

Metformin prevents glucose-induced protein kinase C-beta2 activation in human umbilical vein endothelial cells through an antioxidant mechanism.

Hyperglycemia determines the vascular complications of diabetes through different mechanisms: one of these is excessive activation of the isoform beta2 of protein kinase C (PKC-beta2). Metformin, a widely used antidiabetic agent, is associated with decreased cardiovascular mortality in obese type 2 diabetic patients. Therefore, we assessed the role of metformin in glucose-induced activation of PKC-beta2 and determined the mechanism of its effect in human umbilical venous endothelial cells grown to either normo- (5 mmol/l) or hyperglycemia (10 mmol/l) and moderately and acutely exposed to 25 mmol/l glucose. We studied PKC-beta2 activation by developing adenovirally expressed chimeras encoding fusion protein between green fluorescent protein (GFP) and conventional beta2 isoform (PKC-beta2-GFP). Glucose (25 mmol/l) induced the translocation of PKC-beta2-GFP from the cytosol to the membrane in cells grown to hyperglycemia but not in those grown in normal glucose medium. Metformin (20 micromol/l) prevented hyperglycemia-induced PKC-beta2-GFP translocation. We also assessed oxidative stress under the same conditions with a 4-((9-acridine-carbonyl)amino)-2,2,6,6-tetramethylpiperidin-oxyl,free radical (TEMPO-9-AC) fluorescent probe. We observed significantly increased radical oxygen species production in cells grown in hyperglycemia medium, and this effect was abolished by metformin. We show that in endothelial cells, metformin inhibits hyperglycemia-induced PKC-beta2 translocation because of a direct antioxidant effect. Our data substantiate the findings of previous large intervention studies on the beneficial effect of this drug in type 2 diabetic patients.

Cells, Cultured↗

Diabetes induces p66shc gene expression in human peripheral blood mononuclear cells: relationship to oxidative stress.

Oxidative stress plays a role in cardiovascular dysfunction. This is of interest in diabetes, a clinical condition characterized by oxidative stress and increased prevalence of cardiovascular disease. The role of p66(shc) in oxidative stress-related response has been demonstrated by resistance to and reduction of oxidative stress and prolonged lifespan in p66(shc-/-) mice. In this study we assess p66(shc) gene expression in peripheral blood mononuclear cells (PBM) from type 2 diabetic patients and healthy subjects. The p66(shc) mRNA level was assessed using RT-PCR with two sets of primers mapping for different p66(shc) regions. p66(shc) is expressed in both monocytes and lymphocytes. The level of p66(shc) mRNA was significantly higher in type 2 diabetic patients compared with controls (0.38 +/- 0.07 densitometric units vs. 0.13 +/- 0.08; P < 0.0001). In addition, total plasma 8-isoprostane levels, a marker of oxidative stress, were higher in type 2 diabetics (0.72 +/- 0.04 ng/ml) than in normal subjects (0.43 +/- 0.04, P < 0.001) and were significantly correlated to the p66(shc) mRNA level in PBM from type 2 diabetics (r(2) = 0.47; P = 0.0284). In conclusion, diabetes induces p66(shc) gene expression in circulating PBM; this up-regulation in expression is significantly associated with markers of oxidative stress. p66(shc) gene expression in PBM may represent a useful tool to investigate the oxidative stress involved in the pathogenesis of long-term diabetic complications.

Adaptor Proteins, Signal Transducing↗

A common haplotype at the CD36 locus is associated with high free fatty acid levels and increased cardiovascular risk in Caucasians.

CD36 is a class B scavenger receptor recognizing a variety of ligands including long-chain fatty acids and modified LDL. We investigated whether genetic variability at this locus is a determinant of free fatty acid (FFA) plasma levels and risk of coronary artery disease (CAD) in Caucasians. Typing of 21 polymorphic markers, evenly spanning the CD36 gene, revealed two linkage disequilibrium (LD) blocks that could be tagged by five polymorphisms (-33137A>G, -31118G>A, 25444G>A, 27645del>ins and 30294G>C). In 585 non-diabetic individuals of Caucasian origin, the 30294G>C polymorphism was significantly associated with FFA levels (P = 0.02)--an effect that was especially visible among men (P = 0.009). A similar association was observed in this gender at -33137 (P = 0.008) and -31118 (P = 0.028). When the five tag polymorphisms were considered together, men carrying the AGGIG haplotype had 31% higher FFA (P = 0.0002) and 20% higher triglycerides (P = 0.025) than non-carriers. The same haplotype was associated with increased risk of CAD in 197 type 2 diabetic individuals from the US (OR = 2.3, 95% CI 1.2-4.2). A similar tendency was observed in a group of 321 type 2 diabetic individuals from Italy (OR = 1.4, 0.9-2.3), resulting in an overall relative risk of 1.6 (1.1-2.3, P = 0.015) in the two populations considered together. By targeted resequencing, we identified a common variant in the CD36 promoter that is in strong LD with the AGGIG haplotype and could be partly responsible for these findings. In conclusion, this comprehensive study of CD36 variability indicates that the common polymorphisms at this locus modulate lipid metabolism and cardiovascular risk in Caucasians.

Base Sequence↗

Diabetic cardiomyopathy: a metabolic perspective.

Patients with diabetes mellitus have a >3-fold increased risk of coronary ischemic events and congestive heart failure. Several hypotheses have been provided to explain the increased cardiac vulnerability in individuals with diabetes; among these are the metabolic abnormalities. Diabetes is associated with profound changes in cardiac metabolism, characterized by diminished glucose utilization, diminished rates of lactate oxidation, and increased use of fatty acids. Very few investigations have focused on amino acid disturbances at the level of the heart. This area of research is potentially relevant because cardiac amino acid alterations may not only result in a reduced energy reserve but could also lead to quantitative and qualitative abnormalities of contractile protein present in the diabetic heart.

Cardiomyopathies↗

Early myocardial dysfunction in the diabetic heart: current research and clinical applications.

Patients with diabetes mellitus have a high incidence of heart failure, which contributes significantly to their increased cardiovascular morbidity and mortality. One of the major complications of diabetes is the development of cardiomyopathy, a condition characterized by defects of contractile function in the absence of significant coronary artery disease or systemic hypertension. Experimental data in animal models show that contractile depression begins as early as 1 week after induction of diabetes, and the dysfunction is related to an isomyosin distribution shift from V(1) with high adenosine triphosphatase (ATPase) to V(3) with low ATPase activity. Moreover, diabetes is associated with an increased or poorly regulated rate of amino acid catabolism at the cardiac level. Abnormal responses to acute left ventricular (LV) overload induced by exercise (isometric or isotonic) have been demonstrated in patients with diabetes. Impaired augmentation of LV ejection fraction occurs in up to 40% of patients with diabetes. Analysis of the LV afterload-pump function (LV circumferential wall stress-ejection fraction) relationship shows that defective contractile recruitment is the main cause of this anomaly. Exercise-induced LV dysfunction may be the first manifestation of cardiac involvement in patients with diabetes. Increasing the supply of amino acids in addition to conventional therapy significantly attenuates this phenomenon. Although the precise underlying pathophysiologic mechanism is not completely known, these observations may eventually be important in designing an optimal dietary or supplemental approach for patients with diabetes in order to prevent progressive myocardial dysfunction.

Amino Acids, Essential↗

The effects of oral amino acid intake on ambulatory capacity in elderly subjects.

BACKGROUND AND AIMS: The combination of high prevalence of inactivity in the older population, and high risk of ill-health and disability associated with inactivity, suggests that interventions that are successful in increasing levels of activity may have a great impact on population health in later life. With advancing age, the risk of developing serious nutritional deficiencies also increases. This study was designed to assess the effects of dietary amino acid supplementation on effort tolerance in healthy elderly subjects with reduced physical activity. METHODS: Forty-four subjects (age > 65 years) with sedentary life-style and lower health-related quality of life were studied. Subjects, in an open-label fashion, received an oral amino acid mixture (AAM, 12 g/day) containing essential and non-essential amino acids for a 3-month period. Ambulatory dysfunction resulting in sedentary life-style was assessed by a 6-min walk test. A walking impairment questionnaire (WIQ) was used to evaluate self-perceived ambulatory dysfunction. Maximal isometric muscular strength of the right hand was measured during isometric exercise by a handgrip dynamometer. RESULTS: The 6-min walk distance increased from 214.5 +/- 32 to 262.8 +/- 34.8 m (p < 0.001) after AAM treatment. The baseline scores on the three subscales of WIQ changed significantly during treatment: WIQ distance increased from 56.2 +/- 12.9 to 66.3 +/- 12.8% (p < 0.001); WIQ speed from 52 +/- 12.6 to 69.2 +/- 14.8% (p < 0.001) and WIQ stairs from 74.4 +/- 22.6 to 94.2 +/- 25% (p < 0.001), as did maximal isometric muscular strength (16.6 +/- 2.4 vs 19.2 +/- 2.2 kg, p < 0.001). Changes in plasma glucose (+11 +/- 11 mg/dL), total cholesterol (0 +/- 39 mg/dL), HDL cholesterol (0 +/- 17 mg/dL), and triglycerides (-11 +/- 58 mg/dL) were not significant between baseline and AAM. CONCLUSIONS: An oral amino acid supplement, as used in this pilot study, improves ambulatory capacity and maximal isometric muscle strength in elderly subjects without affecting the main metabolic parameters. Amino acid supplementation may thus represent useful non-pharmacological intervention to maintain physical fitness in these subjects.

Administration, Oral↗

Effects of oral amino acid supplementation on myocardial function in patients with type 2 diabetes mellitus.

BACKGROUND: Diabetes mellitus is associated with an increased rate of cardiac amino acid catabolism that could interfere with cardiac function. METHODS: We assessed the effects of an oral amino acids mixture (AAM) on myocardial function in patients with type 2 diabetes mellitus (DM2). We studied 65 consecutive patients with DM2 who had normal resting left ventricular ejection fraction (LVEF) and did not have obstructive coronary artery disease (CAD). After baseline evaluations, patients were randomized to receive, in a single-blinded fashion, AAM (12 grams/day) or placebo for 12 weeks, after which, treatment was crossed over for another similar period. At baseline and at the end of each treatment, 2-dimensional ecocardiography at rest and during isometric exercise (handgrip) was performed, as were biochemical assays. Twenty adults, matched for age, sex, and body mass index served as control subjects. RESULTS: At baseline and during AAM or placebo treatment, resting left ventricular dimensions and LVEF in patients with DM2 did not differ from those of control subjects. In patients with DM2, at baseline and during placebo treatment, peak handgrip LVEF decreased significantly in comparison with the resting value (63% +/- 9% vs 56% +/- 9%, P <.001; and 62% +/- 6% vs 55% +/- 8%, P <.001). During AAM treatment, peak handgrip LVEF did not differ from resting value (66% +/- 11% vs 64% +/- 9%, P = not significant). Thus, exercise LVEF was higher during AAM treatment than both baseline and placebo treatment (66% +/- 11% vs 56% +/- 9% and vs 55% +/- 8%, P <.001). In contrast to placebo treatment, after the AAM supply, a decreased glycated hemoglobin level was observed (7.0% +/- 1.3% vs 7.6% +/- 1.8%, P <.05). CONCLUSIONS: Myocardial dysfunction is easily inducible with isometric exercise in patients with DM2 who have normal resting LV function and do not have CAD. An increased amino acid supply prevents this phenomenon and improves metabolic control.

Administration, Oral↗

Metabolic and cardiovascular parameters in type 1 diabetes at extreme altitude.

PURPOSE: The American Diabetes Association states that physical activity can be performed by individuals with Type 1 diabetes. Nevertheless, extreme altitude mountaineering represents a demanding challenge. We present the metabolic and cardiovascular parameters found in individuals with Type 1 diabetes during the ascent to Cho Oyu located at a height of 8201 m. METHODS: Six individuals with Type 1 diabetes and 10 matched controls participated in the expedition. Both groups were evaluated before and after 4 h of trekking for vital indices, blood gases, acute mountain sickness, and metabolic control at 0, 3700, and 5800 m. RESULTS: No difference between the groups was observed in acute mountain sickness scores. There was a progressive elevation in basal heart rates in both groups at increasing altitude while no changes were observed in mean blood pressures. After the 3 h of trekking, a significant increase in heart rate was observed in the controls at 0 m whereas a significant decrease in blood pressure was observed at higher altitude only in controls. HbA1c levels were worse after the expedition in both groups. A progressive increase in insulin requirement was observed in subjects with Type 1 diabetes (38 +/- 6 U x d(-1) at 0 m to 51 +/- 6 at 4200 m, P < 0.001). At an altitude of 5800 m, there was a significant increase in blood lactate concentration, independently of the activity level in the two groups. CONCLUSIONS: At extreme altitude, highly motivated trekkers with Type 1 diabetes but free from long-term complications present metabolic and cardiovascular parameters comparable with those of control subjects despite a worsening in metabolic control. This type of physical activity must be accompanied by careful glucose monitoring.

Adult↗