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Biomedical subjects

Massimo Boemi

Publications and source records attributed to Massimo Boemi.

12 recordsLinked to original sources

Deterioration of insulin sensitivity and glucose effectiveness with age and hypertension.

BACKGROUND: This study examined the relative role of age and hypertension in deterioration of insulin-dependent (insulin sensitivity, S(I)) and insulin-independent (glucose effectiveness, S(G)) actions on glucose tolerance. METHODS: We applied the minimal model of glucose kinetics to estimate S(I) and S(G) indexes from insulinemia and glycemia data detected during a frequently sampled intravenous glucose tolerance test performed in 21 normoglycemic subjects who were not affected by the metabolic syndrome (MS): seven young normotensive subjects (YN; mean age 29.3 +/- 1.5 years), six elderly normotensive subjects (EN; mean age 57.0 +/- 3.4 years) and eight elderly hypertensive patients (EH; mean age 62.1 +/- 2.1 years). RESULTS: Both normotensive subject groups (YN and EN) showed no significant difference in S(I) estimates despite significantly different age, whereas a significant reduction was evident in the EH patients compared with these groups. Mean estimates of S(G) showed no significant difference in elderly subject groups (EN and EH), irrespective of hypertension, whereas a significant increase was evident in the YN (analysis of variance followed by Scheffé test, P < .05). CONCLUSIONS: Our study demonstrates that, in the absence of MS: 1) insulin sensitivity in normotensive subjects is independent of age; b) hypertension is associated with insulin resistance in elderly subjects; and c) age is a primary predictor of deterioration in glucose effectiveness, independent of hypertension.

Adult↗

Insulin resistance in hypertension quantified by oral glucose tolerance test: comparison of methods.

Four methods reported in the literature for evaluation of insulin sensitivity indexes from oral glucose tolerance tests (OGTTs) were analyzed and compared in order to test their ability to discriminate the insulin-resistant state in hypertension. To this aim, 15 normoglycemic subjects, not affected by metabolic syndrome, underwent a 22-sample, 300-minute OGTT. Eight subjects were normotensive (mean age, 47.0 +/- 4.2 years) and 7 were hypertensive (mean age, 53.6 +/- 1.6 years). The following insulin sensitivity indexes were computed and compared: (a) 2 indexes, ISIE22/300 and ISIE8/180, provided by an integral equation (IE) method applied to the full OGTT and to a reduced 8-sample, 180-minute data subset, respectively; (b) 2 indexes, ISOGIS180 and ISOGIS120, computed by the oral glucose, insulin sensitivity (OGIS) method, which only requires 3 blood samples taken within 180 and 120 minutes, respectively; (c) an index, ISISI, which considers fasting and mean insulinemia and glycemia measured during a 5-sample, 120-minute OGTT; and (d) an index, ISMCR, which considers body mass index and requires 2 blood samples taken within 120 minutes. Except the ISOGIS180, all other indexes were able to detect a significant reduction (unpaired Student t test, P < .05) of insulin sensitivity in our hypertensive group compared with the normotensive group. Failure of ISOGIS180 was explained by the fact that this index did not capture the information portrayed by the peak of insulinemia in hypertensive patients, which occurred around the 90th minute. Intraclass correlation coefficients higher than 0.89 demonstrated a substantial agreement between ISIE22/300 and ISIE8/180 indexes. These are the only indexes characterized by units of measure consistent with the definition of insulin sensitivity as the ability of insulin to enhance glucose effectiveness.

Area Under Curve↗

Paraoxonase activity and genotype predispose to successful aging.

The paraoxonase 1 codon 192 R allele has been previously reported to have a role in successful aging. The relationship between PON1 genotypes, enzymatic activity, and mass concentration was evaluated in a group of 229 participants from 22 to 104 years of age, focusing our attention on nonagenarian/centenarian participants. We found a genetic control for paraoxonase activity that is maintained throughout life, also in the nonagenarians/centenarians. This activity decreases significantly during aging and shows different mean values among R and M carriers, where R+ and M- carriers have the significant highest paraoxonase activity. Results from the multinomial regression logistic model show that paraoxonase activity as well as R+ and M- carriers contribute significantly to the explanation of the longevity phenotype. In conclusion, we show that genetic variability at the PON1 locus is related to paraoxonase activity throughout life, and suggest that both parameters affect survival at extreme advanced age.

Adult↗

The PON1192RR genotype is associated with a higher prevalence of arterial hypertension.

OBJECTIVE: To investigate whether genetic polymorphism of paraoxonase (PON1192), an enzyme which protects low density lipoprotein from oxidation, is related to the prevalence of arterial hypertension. METHODS: Two groups of carefully selected subjects of both sexes were enrolled and compared. The first group comprised 219 healthy controls (mean age 46.5 +/- 14.7 years) whereas the second comprised 119 hypertensive patients (mean age 47.9 +/- 10.5 years) with untreated essential arterial hypertension. Anthropometric and biochemical parameters were within the normal range in both groups. The PON1192 polymorphism was determined by a polymerase chain reaction-restriction fragment length polymorphism approach. RESULTS: In hypertensive patients, a significant increase of the frequency of PON1192RR genotype with respect to healthy controls (14.3 versus 5.0%, P = 0.003) was found. Logistic regression analyses also showed that the PON1192RR genotype was independently associated with a four-fold increase in susceptibility to arterial hypertension (odds ratio = 4.31; 95% confidence interval = 1.63-11.43, P = 0.003). CONCLUSIONS: The finding that PON1192RR genotype is associated with a higher prevalence of arterial hypertension may contribute to improving the stratification of cardiovascular risk within a population aged 30-60 years. Determination of the PON1192 polymorphism may help to identify those individuals who are prone to developing cardiovascular diseases at an early stage, suggesting the need for close monitoring of cardiovascular risk factors before the onset of cardiovascular disease.

Adult↗

Neuronal semaphorins regulate a primary immune response.

Semaphorins are involved in a wide range of biological processes, including axon guidance, neuronal migration, angiogenesis, cardio- and osteo-genesis. Recently they have also been found to be important for immune response. Sema3A reduces the activation of T cells through its cell-surface receptors, including members of the neuropilin and plexin families. By contrast, Sema4D (CD100), which is expressed on the surface of T, B and dendritic cells, increases B cell and dendritic cell function using either plexin B1 or CD72 as receptors. The transmembrane protein Sema4A is involved in the activation of immune cells through interactions with Tim-2. Emerging evidence also indicates that additional semaphorins and related molecules seem to function in the reciprocal stimulation of T cells and antigen-presenting cells (APCs). This paper discusses the functions of these semaphorins in the immune system, focusing on their roles in T cell-APC interactions.

Animals↗

The interleukin-6 -174 G>C promoter polymorphism is associated with a higher risk of death after an acute coronary syndrome in male elderly patients.

BACKGROUND: Interleukin-6 (IL-6) and tumor necrosis factor-alpha (TNF-alpha) are key mediators of inflammation and their increased plasma levels are associated with acute coronary syndrome (ACS). Polymorphisms in the promoter region of IL-6 (-174 G>C) and TNF-alpha (-308 G>A) demonstrated to affect gene expression were analyzed to test their predictive power for cardiovascular death over one year follow-up in elderly male ACS patients. METHODS: We assessed the IL-6 -174 G>C polymorphism and TNF-alpha -308 G>A polymorphism in 139 consecutive elderly male patients affected by an ACS, such as ST-Elevation (STEMI), No ST-Elevation (NSTEMI) Myocardial Infarction and Unstable Angina. The presence of well known risk factors for Coronary Heart Diseases (CHD) were also assessed in all ACS patients. Survival rate was assessed after one year follow-up. RESULTS: We found that IL-6 -174 G>C polymorphism is an independent predictor of cardiovascular death after an ACS in male patients. In particular ACS patients carrying the IL-6 -174 C- (GG) genotypes showed a marked increase in one year follow-up mortality rate (HR=3.89, 95% CI 1.71-8.86, p=0.001). Moreover CRP serum levels > or = 5.5 mg/dl (HR= 3.79, 95% CI 1.71-8.42, p=0.001), a history of CHD (HR=2.96, 95% CI 1.22-7.20, p=0.016) and the absence of statins treatment (HR=3.27, 95% CI 1.17-9.18, p=0.021), significantly increased one year risk of death in male ACS patients. CONCLUSIONS: These data suggest that IL-6 -174 G>C polymorphism can be added to other clinical markers in order to identify a subgroup of elderly ACS male patients at higher risk of death.

Acute Disease↗

Asymptomatic Helicobacter pylori infection increases asymmetric dimethylarginine levels in healthy subjects.

BACKGROUND: Chronic infections have been demonstrated to be early factors of atherosclerosis and cardiovascular diseases, and their relevance increases when they are caused by agents with extremely broad spectrum of disease outcome such as Helicobacter pylori. The consequent endothelial impairment leads to a reduced bioavailability of nitric oxide. Increasing evidences have pointed out that the endogenous inhibitor of nitric oxide synthase, asymmetric dimethylarginine, defined as a risk factor for cardiovascular disease, may increase in infections and plays an important role impairing the vascular functions of the endothelium. Starting from these findings, we aim to investigate whether H. pylori may affect asymmetric dimethylarginine levels. MATERIALS AND METHODS: The study was carried out on a group of 186 subjects (age 46.2 +/- 14.9 years). We evaluated asymmetric dimethylarginine, symmetric dimethylarginine, L-arginine, presence of H. pylori by 13C-urea breath test, and the main parameters of glyco and lipo metabolic balance. RESULTS: Increased levels of asymmetric dimethylarginine were found in H. pylori-positive subjects with respect to H. pylori-negative subjects (0.46 x/ / 1.13 versus 0.42 x/ / 1.23 mol/l, p < .001, respectively). No differences were detected in L-arginine levels between the two groups. Multiple regression analysis performed in H. pylori-positive subjects and H. pylori-negative subjects showed profound differences in the variables related to asymmetric dimethylarginine (R2 = 66.9%, p < .01 versus 34.3%, p < .01, respectively) and symmetric dimethylarginine (R2 = 39.2%, p < .01 versus 20.6%, p = .09, respectively) levels. CONCLUSIONS: Our data clearly demonstrate that H. pylori infection increases asymmetric dimethylarginine levels. Moreover, this infection causes a profound metabolic modification that alters the role of the known determinants of asymmetric dimethylarginine levels. We conclude that H. pylori infection must be taken into account as a cause of increased asymmetric dimethylarginine levels and that the eradication of H. pylori may therefore lead to a decrease in asymmetric dimethylarginine levels, which is a further reason for the reduction of the risk for cardiovascular disease in this large portion of population.

Adult↗

A novel mitochondrial DNA-like sequence insertion polymorphism in Intron I of the FOXO1A gene.

The human forkhead box O1A (FOXO1A) gene belongs to the human forkhead gene family and acts downstream of the human insulin signalling pathway. In this study, polymorphisms of the Intron I of FOXO1A gene were studied in Italian healthy people and insulin resistant subjects. No significant association between the germ-line variability in the Intron I of FOXO1A and insulin resistance was observed. Interestingly, during the study, a new 39-bp sequence insertion polymorphism in Intron I of FOXO1A gene was described. The polymorphism was found to co-segregate in a co-dominant Mendelian fashion and to be present in an ethnically distinct population (Greeks). A BLAST search showed that the sequence shares 100% identity with a mtDNA (mitochondrial DNA) sequence coding for the ATP synthase 8 (ATPase8) and ATP synthase 6 (ATPase6) genes. Hence, FOXO1A Intron I is a polymorphic nuclear region involved in the exchange of DNA material between mitochondrial and genomic DNA, which is a well-established mechanism of evolutionary change in eukaryotes.

Adenosine Triphosphatases↗

Effects of S 21403 on hormone secretion from isolated rat pancreas at different glucose concentrations.

We investigated the in vitro effects of therapeutical concentrations of S 21403 (a succinic acid derivative also known as KAD 1229 and mitiglinide) on insulin and glucagon secretion during a metabolic stimulus (glucose rising from 5 to 8.33 mM) or at a stable 2.22 mM glucose using the isolated perfused rat pancreas model, and we compared them with the patterns of repaglinide and glibenclamide. Control perfusions were also performed. During 8.33 mM glucose, insulin release peaked to 339.12+/-22.87 microU/ml in controls. S 21403 enhanced insulin release (first peak 413.02+/-14.90 microU/ml; P<0.03 vs. controls, P=ns vs. repaglinide, P<0.005 vs. glibenclamide). Repaglinide increased glucose-induced first peak secretion to 409.33+/-20.05 microU/ml within the eighth minute (P<0.05 vs. controls, P<0.01 vs. glibenclamide). Glibenclamide did not affect the first phase of glucose-induced insulin release (peak of 338.41+/-29.79 microU/ml) but potentiated and delayed the second phase. No drug affected glucagon release. In conclusion, S 21403 induces a faster, more physiological pattern of insulin release than the other drugs we tested.

Animals↗

Interaction between glucose metabolism and endogenous insulin release in hypertension.

The minimal model approach was applied to examine the dynamic interaction between glucose metabolism and endogenous insulin release during an intravenous glucose tolerance test (IVGTT) in a group of hypertensive patients (H group) compared with a group of normotensive subjects (N group). A modified version of the classical minimal model of C-peptide kinetics and secretion was used to evaluate the total amount of insulin secretion per unit of distribution volume (TIS) together with 3 indexes of beta-cell function (the basal, Phi(b), first, Phi1, and second phase, Phi2, beta-cell sensitivity to glucose). These indexes were associated with estimates of glucose effectiveness (S(G)) and insulin sensitivity (S(I)) provided by the classical minimal model of glucose kinetics. No significant differences were found in Phi(b), Phi1, and Phi2 estimates between the H group and the N group. In the H group, the average TIS was 54% higher (P <.05) than in the N group, while S(G) and S(I) estimates showed a 44% decrease (P <.05) and a 51% decrease (P <.05), respectively. These results suggest that hyperglycemia observed in our H group during IVGTT is a compensatory response to insulin resistance (low S(I)) and to the reduced ability of glucose to promote its own metabolism (low S(G)). This hyperglycemic state causes a larger than normal stimulation of beta cell, which explains insulin hypersecretion (higher TIS) even in the presence of normal beta-cell sensitivity values of Phi(b), Phi1, and Phi2.

Adult↗