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Biomedical subjects

M Manco

Publications and source records attributed to M Manco.

14 recordsLinked to original sources

Protection from inflammatory disease in insulin resistance: the role of mannan-binding lectin.

AIMS/HYPOTHESIS: Decreased sensing of the innate immune system may lead to chronic activation of the inflammatory cascade. We hypothesised that mannan-binding lectin (MBL) deficiency may confer risk of obesity and insulin resistance. MATERIALS AND METHODS: We performed a cross-sectional study of MBL protein concentration (n=434) and MBL2 gene mutations (exon 1) (n=759) in association with obesity, markers of inflammation and insulin action (euglycaemic clamp, n=113), and a longitudinal study of MBL protein before and after weight loss in obese patients (n=10). We also studied the effects of MBL in vitro in muscle cells and circulating MBL-A (mouse equivalent of human MBL) in a mouse model. RESULTS: Among 434 consecutive non-diabetic men, the age-adjusted serum MBL concentration was lower in obese subjects than in lean subjects (median: 959 microg/ml [interquartile range: 116.8-2,044 microg/ml] vs 1,365 [467-2,513] microg/ml; p=0.01) and was accompanied by increased serum inflammatory markers. Insulin action correlated significantly with serum MBL (r=0.49, p<0.0001). Serum MBL concentration increased by a median of 110.2% after weight loss. The change in serum concentration of MBL was positively associated with the increase in insulin sensitivity (r=0.713, p=0.021). At least one MBL2 gene mutation was present in 48.2% of obese vs 39.3% of non-obese subjects (p=0.037). The plasma concentration of MBL-A was lower in insulin-resistant obese ob/ob mice, as was the glucose/insulin ratio. Incubation of rat soleus muscle with human MBL markedly increased fatty acid oxidation. CONCLUSIONS/INTERPRETATION: These findings suggest that MBL, previously thought only to be involved in inflammation and immune system function, affects metabolic pathways.

Adult↗

Restoration of normal glucose tolerance in severely obese patients after bilio-pancreatic diversion: role of insulin sensitivity and beta cell function.

AIMS/HYPOTHESIS: The aim of this study was to analyse the mechanisms underlying the improvement in glucose tolerance seen in morbidly obese patients undergoing bilio-pancreatic diversion (BPD). SUBJECTS AND METHODS: We evaluated glucose tolerance (by OGTT), insulin sensitivity (euglycaemic-hyperinsulinaemic clamp and the OGTT index OGIS) and beta cell function (OGTT modelling analysis) in 32 morbidly obese (BMI=52+/-7 kg/m(2), mean+/-SD) patients (12 with NGT, 9 with IGT and 11 with type 2 diabetes), before and after BPD, and in 22 lean control subjects. Patients were studied before and from 7 days to 60 months after surgery. RESULTS: BPD improved glucose tolerance in all subjects, who after surgery all had normal glucose tolerance. Insulin sensitivity was restored to normal levels in all subjects (pre-BPD 341+/-79 ml min(-1) m(-2), post-BPD 511+/-57 ml min(-1) m(-2), lean 478+/-49 ml min(-1) m(-2)). The insulin sensitivity change was detectable within 10 days of BPD. At baseline, beta cell sensitivity to glucose was impaired in diabetic subjects (25 [18] pmol min(-1) m(-2) l mmol(-1), median [interquartile range]) compared with lean subjects (82 [98]; p</=0.05). After BPD, beta cell glucose sensitivity showed a tendency towards improvement but remained impaired in diabetic subjects (30 [62]; p<0.01 vs lean). Total insulin output decreased in parallel with the insulin sensitivity increase in all groups. In the whole patient group, mean OGTT glucose levels were inversely related to both insulin sensitivity and beta cell glucose sensitivity (r (2)=0.67, partial r=-0.76 and -0.41, respectively). NEFAs, leptin and adiponectin were related to insulin sensitivity but could not explain the early improvement. CONCLUSIONS/INTERPRETATION: Following BPD, glucose tolerance was restored mainly as a result of a rapid and large improvement in insulin sensitivity.

Adiponectin↗

Effect of vitamin E on aminotransferase levels and insulin resistance in children with non-alcoholic fatty liver disease.

BACKGROUND: Few data are available on the effect of antioxidants in paediatric non-alcoholic fatty liver disease (NAFLD). AIM: To compare the effect of a nutritional programme alone or combined with alpha-tocopherol and ascorbic acid on alanine aminotransferase (ALT) levels, and insulin resistance (IR) in biopsy-proven NAFLD children. METHODS: IN a 12-month double-blind placebo study, 90 patients were prescribed a balanced calorie diet (25-30 cal/kg/d), physical exercise, and placebo (group A) or alpha-tocopherol 600 IU/day plus ascorbic acid 500 mg/day (group B). IR was estimated by the homeostasis model assessment (HOMA-IR). RESULTS: At month 12, ALT (32.67 +/- 8.09 vs. 32.18 +/- 11.39 IU/L; P = NS), HOMA-IR (1.52 +/- 0.66 vs. 1.84 +/- 0.95 IU/L; P = NS), and weight loss (32% vs. 35% of excessive body weight; P = NS) did not differ between the two arms. Among subjects who lost >or=20% of their excessive weight, ALT and body weight percentage changes were significantly related (r(o) = 0.260; P = 0.03). In subjects, who lost more than 1.0 kg, HOMA-IR significantly decreased (2.20 +/- 0.21 to 1.57 +/- 0.13 in group A (P <or= 0.01; -8%); 2.91 +/- 0.24 to 1.88 +/- 0.16 in group B (-32%; P <or= 0.0001)). ALT decreased by 36% (59.13 +/- 4.11 vs. 30.27 +/- 1.46 IU/L; P <or= 0.001), and 42% (68.19 +/- 5.68 vs. 31.92 +/- 1.92 IU/L; P <or= 0.0001). In a multivariate analysis, fasting insulin changes in group A (P = 0.012; F = 7.150). CONCLUSIONS: Diet and physical exercise in NAFLD children seem to lead to a significant improvement of liver function and glucose metabolism beyond any antioxidant therapy.

Adolescent↗

Could the low level of expression of the gene encoding skeletal muscle mitofusin-2 account for the metabolic inflexibility of obesity?

AIMS/HYPOTHESIS: In obesity the cellular capacity to switch from using lipid to carbohydrate and vice versa as the energy substrate, known as 'metabolic flexibility', is impaired. Mitofusin 2 (MFN2), a mitochondrial membrane protein, seems to contribute to the maintenance and operation of the mitochondrial network, and its expression is reduced in obesity. The aim of this study was to verify whether MFN2 might be implicated in the metabolic inflexibility of obesity. MATERIALS AND METHODS: Insulin sensitivity was measured in six morbidly obese women before and 2 years after malabsorptive bariatric surgery (BMI 53.3+/-10.5 vs 30.3+/-4.0 kg/m2). Skeletal muscle MFN2, SLC2A4 (formerly known as GLUT4), COX3 (encoding cytochrome c oxidase subunit III) and CS (encoding citrate synthase) mRNA levels were measured by real-time PCR. RESULTS: Following bilio-pancreatic surgery, significant increases in MFN2 mRNA (from 0.4+/-0.2 to 1.7+/-1.1 arbitrary units [AU], p=0.019) and SLC2A4 mRNA (0.38+/-0.12 to 0.76+/-0.24 AU, p=0.04) were observed, while increases in COX3 mRNA (from 14.2+/-6.4 to 20.2+/-12.5 AU) and CS mRNA (from 0.4+/-0.1 to 0.7+/-0.3 AU) failed to reach statistical significance. Insulin-mediated whole-body glucose uptake significantly (p<0.0001) increased from 21.2+/-4.1 to 52.8+/-5.9 micromol kg fat-free mass(-1) min(-1) and glucose oxidation rose from 11.1+/-2.1 to 37.7+/-4.7 micromol kg fat-free mass(-1) min(-1) (p<0.0001). Levels of MFN2 mRNA were strongly correlated with the absolute values for the glucose oxidation rate, both during fasting (glucose oxidation =3.55 MFN2 mRNA + 3.93; R2=0.92, p<0.0001) and during the clamp (glucose oxidation=18.8 MFN2 mRNA+34.7; R2=0.80, p<0.0001). The percentage changes in MFN2 mRNA were positively correlated with the percentage change in glucose oxidation during the clamp (glucose oxidation percent (%) change=0.3 MFN2 mRNA percent (%) change+153.2; R2=0.61, p<0.001). CONCLUSIONS/INTERPRETATION: We propose that the significant increase in MFN2 mRNA levels may explain the increase in glucose oxidation observed in morbid obesity following bariatric surgery.

Adult↗

Further lowering of muscle lipid oxidative capacity in obese subjects after biliopancreatic diversion.

A reduced lipid oxidative capacity is considered a risk factor for the development of obesity, but a further impairment of lipid oxidative capacity is observed after weight loss. We aimed to define the mechanisms underlying this phenomenon in skeletal muscle and in particular to study the mitochondrial and peroxisomal lipid oxidative pathways. Thus we measured intramyocellular triglyceride content (IMTG) and the expression of genes of lipid oxidation [peroxisome proliferator-activated receptor-alpha, carnitine palmitoyltransferase 1B, and acyl-coenzyme A (acyl-CoA) oxidase 1] and synthesis (acetyl-CoA carboxylase B) using RT-PCR analysis in muscle biopsies of morbidly obese patients before and after biliopancreatic diversion. Weight reduction significantly decreased IMTG while increasing insulin sensitivity, measured by euglycemic hyperinsulinemic clamp. Moreover, an increase in glucose and a decline in lipid oxidation, as assessed by respiratory chamber, were observed. Weight loss reduced the expression of peroxisome proliferator-activated receptor-alpha (-46.7%), carnitine palmitoyltransferase 1B (-43.1%), acyl-CoA oxidase 1 (-37.8%), and acetyl-CoA carboxylase B (-48.7%). Our results indicate that a defect of both peroxisomal and mitochondrial oxidative pathways at the muscular level may contribute to the reduced fat oxidation in obese subjects after biliopancreatic diversion. They also suggest that a depression of the de novo lipogenesis may account for IMTG depletion.

Biliopancreatic Diversion↗

Changes in muscle myostatin expression in obese subjects after weight loss.

Myostatin is a member of transforming growth factor-beta superfamily that plays an important inhibitory role during muscle development; in fact mutations of myostatin gene result in a hypermuscular phenotype. Moreover myostatin-deficient mice have a significant reduction in fat depots and a depression of adipogenesis. Little is known about myostatin function in muscle growth regulation in humans and in particular during caloric restriction. In the present work we quantified by real-time RT-PCR myostatin expression in muscle biopsies of a group of morbidly obese patients before and after weight loss obtained by biliopancreatic diversion (BPD). The patients reduced body weight by 38.9%, mostly due to fat-mass loss, showing also a significant reduction in the 24-hour EE as assessed by the respiratory chamber. Myostatin mRNA levels result clearly decreased after weight loss, suggesting a role in counteracting the progressive decline of muscle mass after BPD. Myostatin may provide therefore another mechanistic explanation for the control of energy partitioning between protein and fat, working against muscle wasting. Our data suggest that myostatin might represent an important regulator of skeletal muscle size also in conditions of food restriction in obese subjects.

Body Composition↗

Intramyocitic lipid accumulation and SREBP-1c expression are related to insulin resistance and cardiovascular risk in morbid obesity.

The aim of this study was to investigate the sterol regulatory element-binding protein 1c (SREBP1c) mRNA muscle expression in morbid obese subjects before and after massive lipid malabsorption due to bariatric surgery (bilio-pancreatic diversion, BPD). We studied 11 obese subjects (BMI 49+/-2 kg/m2) before and 24 months after BPD. Skeletal muscle SREBP1c mRNA expression was determined using RT-competitive PCR. Intramyocytic triglycerides were quantified by HPLC. Insulin sensitivity (M/I) was assessed by euglycemic-hyperinsulinemic clamp. Energy expenditure and respiratory quotient (RQ) were measured over 24 h in a calorimetric chamber. Total cardiovascular risk dropped from 2 before to -2.5 after BPD (P<0.0001). The M/I value was normalized after surgery (0.036+/-0.0148 to 0.095+/-0.0147 micromol kgFFM(-1) min(-1) pmoles(-1) P<0.001). SREBP-1c mRNA levels were decreased (from 4.12+/-2.43 to 2.69+/-1.83% of cyclophilin mRNA, P=0.02) after BPD. In a multiple regression analysis, M/I values (P<0.0001) as well as the intramyocytic triglyceride levels (P=0.039) were the most powerful independent variables for predicting cardiovascular risk. Our results show that the reduction of cardiovascular risk after bariatric massive weight loss is strongly related to the reversion of insulin resistance and to the lowering of intramyocytic triglyceride depots. These two parameters are associated with a significant reduction in SREBP-1c mRNA expression in skeletal muscle, suggesting that this transcription factor might be involved in the accumulation of triglycerides in muscle cells of morbidly obese subjects.

Adipose Tissue↗

Computing DIT from energy expenditure measures in a respiratory chamber: a direct modeling method.

The possibility of computing Diet Induced Thermogenesis (DIT) is an important feature of metabolic investigations. However, methodological problems have affected the determination of DIT in the indirect calorimetric chamber. DIT has been commonly estimated by regressing energy expenditure on a measure of physical activity. Although used for many years as the only feasible approach to calculate DIT in a respiratory chamber, this traditional method has been criticized because of an apparent underestimation of the DIT, but no alternative method has been suggested so far. The present work proposes to estimate DIT directly by means of a mathematical model. This approach also allows to simultaneously estimate other parameters, namely resting energy expenditure (REE), physical activity (PA) and physical exercise (PE).

Adult↗

Skeletal muscle triglycerides lowering is associated with net improvement of insulin sensitivity, TNF-alpha reduction and GLUT4 expression enhancement.

AIMS/HYPOTHESIS: The aim of the present study was to investigate the relationship between intramyocytic triglycerides levels, muscle TNF-alpha and GLUT4 expression and insulin resistance. METHODS: Insulin sensitivity was studied in 14 severely obese women (BMI>40 kg/m(2)), before and 6 months after low-dietary intake or bariatric malabsorptive surgery (bilio-pancreatic diversion, BPD), by the euglycaemic hyperinsulinaemic clamp technique, while the amount of intramyocytic triglycerides was chemically measured in needle muscle biopsies. Using reverse transcriptase-polymerase chain reaction analysis, the muscle mRNA expression of TNF-alpha and GLUT4 was also investigated. RESULTS: The weight loss after surgery was 25.98+/-5.81 kg (P<0.001), while that obtained with the diet was 5.07+/-5.99 kg (P=NS). Marked decrease in TNF-alpha mRNA levels (76.67+/-12.59 to 14.01+/-5.21 AU, P<0.001) were observed in comparison with pre-treatment, whereas GLUT4 was significantly increased (62.25+/-11.77-124.25+/-21.01 AU, P<0.001) only in BPD patients. Increased glucose uptake (M) was accompanied by a significant decrease of TNF-alpha mRNA (76.67+/-12.59-14.01+/-5.21 AU, P<0.01) and an increase of GLUT4. The amounts of TNF-alpha mRNAs in skeletal muscle correlated inversely with GLUT4 mRNAs and directly with intramyocytic triglycerides levels. In a step-down regression analysis (r(2)=0.95) TNFalpha mRNA (P=0.0014), muscular TG levels (P=0.018), and GLUT4 mRNA (P=0.028) resulted to be the most powerful independent variables for predicting M values. CONCLUSION/INTERPRETATION: These findings suggest that insulin resistance in morbidly obese patients is positively associated to the intramyocytic triglycerides content and to TNF-alpha gene expression and inversely correlated to GLUT4 expression.

Adult↗

Mechanisms of hyperinsulinaemia in Child's disease grade B liver cirrhosis investigated in free living conditions.

AIMS: Human liver cirrhosis is commonly associated with increased fasting and glucose induced insulin concentrations. However, whether the hyperinsulinaemia is a consequence of increased pancreatic insulin secretion, decreased hepatic insulin removal, or impaired feedback regulation of insulin secretion is still doubtful. To investigate these issues, insulin secretion-during 24 hours of standardised living conditions-insulin sensitivity, and hepatic insulin extraction were assessed in cirrhotic patients compared with matched healthy subjects. PATIENTS: Nine Child's disease grade B cirrhotic patients and seven healthy volunteers, participated in the study. The subjects were studied on two separate days, one for the assessment of insulin secretion during a standardised 24 hour life period (calorimetric chamber), and one for the determination of insulin sensitivity. METHODS: Insulin secretion rates were reconstructed from plasma C peptide concentrations by deconvolution, and indices of beta cell function were derived using a mathematical model describing the functional dependence of insulin secretion on plasma glucose concentrations. Insulin sensitivity was determined using the euglycaemic hyperinsulinaemic clamp technique. RESULTS: Cirrhotic patients showed a marked hypersecretory response, both in absolute terms (mean (SEM) 295 (53) versus 138 (11) nmol/m(2), p<0.02), and in relation to glucose (175 (26) versus 57 (5) pmol/min/m(2), p<0.02). In particular, the beta cell dose-response function was shifted upward compared with controls. The sensitivity of insulin secretion to the rate of glucose change was also increased. Insulin sensitivity, markedly reduced in cirrhosis (157 (10) versus 296 (30) ml/min/m(2), p<0.002), was strongly inversely correlated (r=0.89, p<0.002) in these patients with insulin secretion at 5 mM glucose. Insulin clearance and hepatic insulin extraction were not reduced. A frank hypermetabolism with increased lipid oxidation was found in this series. CONCLUSIONS: This study suggests that hyperinsulinaemia, at least in Child's disease grade B cirrhotic patients, is the consequence of increased beta cell sensitivity to glucose, while hepatic insulin extraction does not seem to play a significant part.

Biomarkers↗

Unreliable use of standard muscle hydration value in obesity.

Intramuscular water content is assumed to be constant in humans independent of their anthropometric characteristics. To verify whether this assumption is correct, intramuscular water, proteins, glycogen, and both total and intramyocytic triglycerides were measured in 51 samples of rectus abdominis muscle obtained from 16 lean and 35 overweight and obese subjects (body mass index cutoff 24.9 kg/m2). Data (referred to as wet tissue) were analyzed by means of a composition model at the cellular level of the skeletal muscle (SM). The average SM water content was 76.3 +/- 3.3% in normal-weight individuals and 65.7 +/- 5.8% in obese subjects (P < 0.0001). Total triglycerides were 5.5 +/- 2.3% in controls and 19.0 +/- 7.0% in obese subjects (P < 0.0001). The intramyocytic triglyceride fraction was also increased in obese subjects. The composition model provides an explanation for the negative correlation between total triglycerides and intramuscular water, and some of the model parameters were determined from the experimental data. In conclusion, although the hydration of fat-free SM mass may be unchanged in obese subjects, the hydration of in toto muscle mass decreases as its lipid content increases.

Adult↗

Glucose disposal in morbidly obese patients in the early post-operative period.

BACKGROUND: In surgical patients, operative stress causes protein catabolism, muscle mass loss, and impaired glucose tolerance. We investigated fuel metabolism and glucose and protein turnover in 15 obese subjects who underwent biliopancreatic diversion (BPD) by using stable labelled isotopes. METHODS: 6 males and 9 females (age 45.11 +/- 8.9 years, BMI of 48.85 +/- 4.43 kg/m2) who underwent BPD were studied, and the APACHE II score was calculated. Patients were studied 3 times (before BPD, 1st and 3rd postoperative day). Glycemia was stable--maintained by continuously infusing Rapid insulin. Each day of the study, the patients received a primed, constant infusion of [15N2] urea, and, 180 min after, a [6.6-2H] glucose infusion started and continued for 3 hours. Indirect calorimetry was performed during the study, under TPN (30 kcal/kg). RESULTS: The APACHE score was lower on the 3rd postoperative day than on the 1st postoperative day (7.4 +/- 2.7 vs 6.3 +/- 2.6, p < 0.05). The npRQ was different throughout the post-operative period (0.82 +/- 0.03 vs 0.9 +/- 0.06, p < 0.05), while urinary nitrogen excretion, energy expenditure and glycemia did not change. The insulin amount infused was lower during the 3rd post-operative day (44.25 +/- 12.3 vs 64.12 +/- 11 UI on the 1st one, p < 0.05). Insulinemia was lower during the 3rd than during the 1st postoperative day (66.4 +/- 9.49 vs 117.44 +/- 8.49 microU/ml, p < 0.05). Non-essential fatty acid levels were higher on the 3rd post-operative day than on the 1st one (0.98 +/- 0.6 vs 0.45 +/- 0.34 mmol/L, p < 0.01). No differences were observed in glucose and urea turn-over. CONCLUSION: The metabolic pattern of morbidly obese patients operated by BPD was similar to that of other critically ill patients previously studied in the literature. Furthermore, the increased glucose oxidation rate observed on the 3rd post-operative day was coupled with an improved clinical condition.

APACHE↗

Insulin resistance directly correlates with increased saturated fatty acids in skeletal muscle triglycerides.

A close relationship between elevated plasma free fatty acid (FFA) levels and insulin resistance is commonly reported in obese subjects. The aim of the present study was to evaluate the role of intramuscular triglyceride (mTG) and FFA levels in insulin sensitivity in 30 nondiabetic normal-weight or obese subjects (18 with body mass index [BMI] = 21.8 +/- 3.3 kg/m2 and 12 with BMI = 34.6 +/- 2.7 kg/m2) who underwent minor abdominal surgery. Body composition was estimated by isotopic dilution, substrate oxidation by indirect calorimetry, and whole-body glucose uptake by euglycemic-hyperinsulinemic clamp (EHC). Glucose uptake (M) value negatively correlated with the MTG level (R2 = -.56, P < .0001), which was increased in obese patients (11.6 +/- 2.2 v 6.2 +/- 1.4 micromol/g wet weight muscle tissue, P < .0001). The TG fatty acid profile was significantly different in the 2 groups: an increased concentration of saturated fat was present in obese patients (unsaturated to saturated ratio, 1.89 +/- 0.40 v2.19 +/- 0.07, P < .0001). Stepwise linear regression analysis of total mTGs and palmitic and oleic fractions on the M value showed that only TGs and palmitic acid were significantly related to glucose uptake (R2 = .66, P < .0001). Furthermore, among the other anthropometric variables, only the BMI was significantly correlated with MTGs (R2 = .71, P < .0001). In conclusion, not only the MTG concentration but also the FFA pattern seems to affect insulin-mediated glucose uptake. A pivotal role might be played by a high saturated fatty acid content in the TGs.

Adult↗

Splenic hemangiosarcoma. A case report.

Splenic hemangiosarcoma is a rare and aggressive tumor. Up to now, less than 150 cases have been reported. We describe a patient with a rapide course. The diagnosis of hemangiosarcoma was based on immunohistochemical tests (factor-VIII-associated antigen, CD31, CD34). Despite the improvement of diagnostic techniques, pathological examination and immunohistochemistry remain the only methods available for the diagnosis.

Antigens, CD34↗