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Biomedical subjects

B Baggio

Publications and source records attributed to B Baggio.

At least 37 records · Page 2Linked to original sources

Von Willebrand factor abnormalities in IgA nephropathy.

BACKGROUND: Plasma concentration of von Willebrand factor (vWF) has been used as an index of endothelial dysfunction. Increased release of vWF from endothelial cells has been reported in several conditions, and there is also evidence that dysfunctioning endothelial cells synthesize defective molecules. In fact, unusually large vWF multimers have been described and related to the pathogenesis of some microangiopathic diseases. Abnormal levels of vWF have been reported in primary glomerulitis, but this was no referred to histological diagnosis. Furthermore, no qualitative vWF analysis was performed in these glomerulopathies. Therefore the aim of our study was to analyse quantitatively and qualitatively vWF in patients with IgA (IgAN) and non-IgA mesangial proliferative glomerulonephritis (PGN). METHODS: Fourteen IgAN patients, eight PGN patients, seven subjects with different glomerulonephritides, and 10 healthy controls formed the basis of this study. On peripheral venous blood collected in the presence of protease inhibitors, vWF parameters were investigated. vWF antigenic activity (vWF:Ag) was measured by electroimmunodiffusion. vWF subunits mobility was studied by crossed immunoelectrophoresis (CIE) and in some patients vWF multimeric analysis was performed by SDS-agarose gel electrophoresis. RESULTS: Mean vWF:Ag was significantly higher in PGN patients as compared to controls, while there was no significant difference between PGN and IgAN patients and between IgAN and controls. CIE revealed a pre-peak in 12 of 14 IgAN patients and a migration index which did not differ between controls, IgAN, and PGN subjects. No pre-peak was observed in PGN and in other glomerulonephritides. Analysis of plasma vWF multimeric pattern by SDS-agarose gel electrophoresis disclosed in four IgAN patients abnormally large vWF multimers that were not documented in PGN subjects. CONCLUSIONS: This study, by showing the presence of a pre-peak and of large vWF multimers in IgAN patients, suggests an altered postsecretory handling of the vWF in IgAN and possibly a different role of the vWF in IgAN in respect to PGN.

Adult↗

Renal structure and function in non-insulin dependent diabetic patients with microalbuminuria.

We have recently described heterogeneity in renal structure in non-insulin-dependent diabetic patients (NIDDM) with microalbuminuria (MA; defined as albumin excretion rate from 20 to 200 micrograms/min). Thus, at variance with IDDM patients, "typical" diabetic glomerulopathy by light microscopy is observed only in a third of NIDDM with MA (Category II, CII). Further, despite persistent MA, 30% of NIDDM have normal or near normal renal structure (Category I, CI). Another one-third shows "atypical" patterns of renal injury with absent or mild diabetic glomerular changes, associated with disproportionately severe tubulointerstitial lesions and/or arteriolar hyalinosis and global glomerular sclerosis (Category III, CIII). The aims of this study were to evaluate whether similar patterns of renal lesions could be confirmed in a larger group of NIDDM with MA and to investigate tubular function in order to understand the mechanisms underlying MA in NIDDM patients. Renal biopsies were performed in 53 NIDDM with MA. Categories I, II and III were found in 41%, 26% and 33% of NIDDM with MA, respectively. All 8 patients with proliferative diabetic retinopathy were in CII. We also studied the urinary daily excretion rate of alpha 1-microglobulin (alpha 1 m), a low molecular weight protein, which is a useful indicator of tubular function. alpha 1 m was markedly increased only in CII patients (CI vs. CII vs. CIII: 6.2 +/- 1.2 vs. 13.7 +/- 2.1 vs. 7.3 +/- 0.9 mg/day, ANOVA, P < 0.01). In conclusion, we confirm that there is heterogeneity in renal structure in NIDDM patients with MA. This heterogeneity is not due to renal diseases other than diabetes. Increased alpha 1 m and proliferative retinopathy are useful indicators of the subgroup of MA NIDDM patients with typical diabetic glomerulopathy. It is suggested that diabetic microangiopathy explains the simultaneous occurrence of typical diabetic glomerulopathy, proliferative retinopathy and tubular dysfunction in a subgroup of NIDDM patients with MA.

Albuminuria↗

Patterns of renal injury in NIDDM patients with microalbuminuria.

Microalbuminuria predicts overt nephropathy in non-insulin-dependent diabetic (NIDDM) patients; however, the structural basis for this functional abnormality is unknown. In this study we evaluated renal structure and function in a cohort of 34 unselected microalbuminuric NIDDM patients (26 male/8 female, age: 58 +/- 7 years, known diabetes duration: 11 +/- 6 years, HbA1c: 8.5 +/- 1.6%). Systemic hypertension was present in all but 3. Glomerular filtration rate (GFR) was 101 +/- 27 ml.min-1.1.73 m-2 and albumin excretion rate (AER) 44 (20-199) micrograms/ min. Light microscopic slides were categorized as: C I) normal or near normal renal structure; C II) changes "typical" of diabetic nephropathology in insulin-dependent diabetes (IDDM) (glomerular, tubulo-interstitial and arteriolar changes occurring in parallel); C III) "atypical" patterns of injury, with absent or only mild diabetic glomerular changes associated with disproportionately severe renal structural changes including: important tubulo-interstitial with or without arteriolar hyalinosis with or without global glomerular sclerosis. Ten patients (29.4%) were classified as C I, 10 as C II (29.4%) and 14 as C III (41.2%); none of these patients had any definable non-diabetic renal disease. GFR, AER and blood pressure were similar in the three groups, while HbA1c was higher in C II and C III than in C I patients. Diabetic retinopathy was present in all C II patients (background in 50% and proliferative in 50%). None of the patients in C I and C III had proliferative retinopathy, while background retinopathy was observed in 50% of C I and 57% of C III patients. In summary, microalbuminuric NIDDM patients are structurally heterogeneous with less than one third having "typical" diabetic nephropathology. The presence of both "typical" and "atypical" patterns of renal pathology was associated with worse metabolic control, suggesting that hyperglycaemia may cause different patterns of renal injury in older NIDDM compared to younger IDDM patients.

Aged↗

The abnormal red-cell oxalate transport is a risk factor for idiopathic calcium nephrolithiasis: a prospective study.

An abnormal erythrocyte transmembrane oxalate flux was described in recurrent idiopathic calcium nephrolithiasis. To verify whether it might represent a risk marker of renal stone disease, two prospective studies were carried out. One hundred ninety patients with idiopathic calcium nephrolithiasis who were enrolled at their first episode of lithiasis during the period 1984 to 1986, form the basis of the first prospective study. The impact of erythrocyte oxalate transport anomaly, gender, familial occurrence of nephrolithiasis, hypercalciuria, hyperoxaluria, and hyperuricosuria on stone recurrence by both bivariate and multivariate analysis of frequencies was assessed. The predictive value of the erythrocyte anomaly for a patient's becoming a stone former was also assessed in five nephrolithiasis families. Recurrence occurred in 57.9% of patients; this was significantly associated with the erythrocyte anomaly, hyperoxaluria, and male gender. However, when using multivariate analysis, only gender and the erythrocyte anomaly were statistically significant and were independent predictors of recurrency. The probability of stone recurrency predicted by the logistic model ranged from 30.1% for women with normal erythrocyte oxalate transport, to 73.4% for men with the erythrocyte anomaly. The family follow-up showed that only subjects with the erythrocyte abnormality become renal stone-formers in the 8-yr survey. By showing the predictive value of the erythrocyte oxalate anomaly for recurrent calcium nephrolithiasis, our findings support the notion that this anomaly is a risk factor in renal stone disease.

Adolescent↗

Anomalous phospholipid n-6 polyunsaturated fatty acid composition in idiopathic calcium nephrolithiasis.

Anomalies in the erythrocyte transport of anions and cations have been described in idiopathic calcium oxalate nephrolithiasis and seem to play a pathogenetic role in this disease. In consideration of the hypothesis that the complex array of ion flux cell abnormalities is an epiphenomenon of an anomaly in the composition of cell membranes, this study investigated cell-membrane lipid composition. In idiopathic calcium oxalate renal stone formers, in which ion transport abnormalities were present, and in healthy control subjects, plasma and erythrocyte membrane lipid composition, the erythrocyte oxalate exchange, and Na/K/2Cl cotransport activity were evaluated. Furthermore, in stone formers, the effect of a 30-day fish-oil diet supplementation on plasma lipids, erythrocyte oxalate exchange, oxaluria, and calciuria was investigated. The effect of archidonic acid released by phospholipase A2 on anion-carrier phosphorylation and activity in erythrocytes was evaluated as well. Patients had a lower content of linoleic and higher concentration of archidonic acids in both plasma and erythrocyte membrane phospholipids, and an increased archidonic/linoleic acid ratio. The archidonic acid level correlated with the erythrocyte oxalate exchange and sodium cotransport activity. Fish-oil supplementation lowered calcium and oxalate urine excretion, and normalized the erythrocyte oxalate exchange. Phospholipase A2 increased the erythrocyte anion-carrier protein phosphorylation and the oxalate exchange. This study shows that idiopathic calcium nephrolithiasis in the patient group reported here is characterized by a systemic defect in phospholipid archidonic acid levels that might provide an answer to the link between genetic background, dietary habits, and renal lithiasis.

Adult↗

Increased glomerular alpha 1 (IV) collagen expression and deposition in long-term diabetic rats is prevented by chronic glycosaminoglycan treatment.

Diabetic nephropathy is associated with thickening of the glomerular basement membrane and, in particular, with mesangial matrix expansion. Previous studies have indicated that administration of chemically modified, low-anticoagulant heparins prevents some of the morphologic and physiologic alterations occurring in experimental diabetic nephropathy. The effect of prolonged heparin treatment on the glomerular expression and deposition of alpha 1 (IV) collagen, which is a major component of the mesangial matrix, has not been reported previously. Four groups of rats were studied for 12 months: two control groups and two groups of streptozotocin-diabetic rats. One group in each branch received modified heparin continuously from the induction of diabetes. After 12 months synthesis and deposition of alpha 1 (IV) collagglomerula and adjacent tubuli were determined by nonradioactive in situ hybridization and immunohistochemistry. Mesangial cells were localized by Thy 1.1 staining. Long-term diabetes caused a significant increase in alpha 1 (IV) collagen deposition in the mesangial matrix and a more than 2-fold enhancement of glomerular cell alpha 1 (IV) collagen transcript levels, mainly in mesangial cells. The alpha 1 (IV) collagen mRNA levels of proximal tubular cells and visceral epithelial cells were similarly increased. Chronic treatment of diabetic rats with modified heparin completely prevented the increased alpha 1 (IV) collagen deposition and expression. The increased glomerular deposition of alpha 1 (IV) collagen observed in long-term streptozotocin diabetic rats appears to depend on an increased alpha 1 (IV) collagen synthesis. Because chronic application of low-anticoagulant heparin completely prevents the increased alpha 1 (IV) collagen synthesis by mesangial cells, this result suggests a new therapeutic option for the prevention of diabetic nephropathy in humans.

Animals↗

Use of glycosaminoglycans to increase efficiency of long-term continuous peritoneal dialysis.

Long-term continuous ambulatory peritoneal dialysis (CAPD) frequently induces progressive structural changes in the peritoneal membrane, leading to dialysis failure. Because heparin and glycosaminoglycans favourably remodel anatomical barriers exposed to injury, we studied the effect of intraperitoneal administration of glycosaminoglycans on peritoneal dialysis efficiency. 16 CAPD patients received glycosaminoglycans for 30 days followed by a 30-day wash-out. Glycosaminoglycans in urea and creatinine dialysate-to-plasma ratios significantly increased (means 0.86 and 0.78 at baseline, 0.92 and 0.82 at 30 days, respectively). Peritoneal protein loss was reduced, and serum albumin concentration increased. We now need to assess whether glycosaminoglycans can postpone dialysis failure in the long term.

Adult↗

Erythrocyte transmembrane flux and renal clearance of oxalate in idiopathic calcium nephrolithiasis.

An anomaly in erythrocyte oxalate transport has been reported in patients with idiopathic calcium oxalate nephrolithiasis. Even if clinical and experimental evidence suggests a causal role of this cellular anomaly in calcium nephrolithiasis, a definitive answer to this fundamental question is still lacking. We approached this problem by searching for a possible relationship between the erythrocyte oxalate self-exchange anomaly and the renal clearance of this anion in stone formers. In 10 idiopathic calcium-oxalate renal stone formers, and 10 healthy subjects we evaluated the erythrocyte oxalate flux rate, and the renal fractional clearance of oxalate by a recently described enzymathic procedures for plasma oxalate determination. With respect to controls, stone formers had higher oxalate flux rate in erythrocytes, and higher oxalate renal fractional clearance with a significant direct correlation between the two parameters. These data are compatible with a membrane transport abnormality within the kidney of these stone formers, and the existence of a common defect of the oxalate transport shared by both erythrocytes and tubular renal cells. The latter may be crucial in the pathogenesis of calcium oxalate nephrolithiasis, by modifying the renal handling of oxalate.

Adult↗

Heparin modulates proliferation and proteoglycan biosynthesis in murine mesangial cells: molecular clues for its activity in nephropathy.

Glycosaminoglycan administration has favourable effects on morphological and functional renal abnormalities in different models. The possibility that exogenous glycosaminoglycans modulate glomerular matrix synthesis was explored in both primary and SV40-MES13 murine mesangial cell cultures. On both cell types, both low-molecular-weight heparin and different glycosaminoglycans showed dose-dependent inhibition of proliferation and increase of 35SO4(2)-uptake. After 36 h the cell compartment contained a spectrum of 35S-molecules of less than 200 kDa; under heparin treatment, the two main 35SO4(2)-components (high and medium MW) increased by 16 and 37% respectively. Susceptibility to glycosidases revealed that heparin promotes the expression of heparan sulphate and increases that of chondroitin sulphate. Moreover, heparin modifies the expression of decorin and biglycan, involved in adhesion and fibrillogenesis, while not affecting perlecan. The extracellular matrix modulation in renal cells, for which the sulphation type and ratio of heparin are crucial, may thus explain the beneficial renal effects of heparin.

Animals↗

Relationship between membrane protein phosphorylation and intracellular translocation of casein kinase in human erythrocytes.

The present paper shows that an increased phosphorylation of the membrane proteins, promoted by the okadaic acid (strong inhibitor of P-Ser/Thr-protein phosphatase(s)), is accompanied by a release of casein kinase from the membrane into cytosol. Such an intracellular translocation might provide a feedback mechanism for the regulation of the casein kinase catalyzed phosphorylation of membrane proteins in the human erythrocytes.

Adenosine Triphosphate↗

Effect of alkaline citrate therapy on clearance of residual renal stone fragments after extracorporeal shock wave lithotripsy in sterile calcium and infection nephrolithiasis patients.

The natural history of post-extracorporeal shock wave lithotripsy residual stone fragments (clearance, growth and aggregation) is incompletely known, even though they are believed to constitute a risk in terms of new stone formation and persistent infection of the urinary tract. We addressed this issue and the hypothesis that alkaline citrate therapy improves residual stone fragment clearance in a 12-month followup study. There were 40 sterile calcium and 30 struvite stone patients with residual fragments after extracorporeal shock wave lithotripsy (diameter less than 5 mm.) consecutively enrolled and randomly assigned to a citrate therapy (6 to 8 gm. per day) or control (hygienic measures only) group. Infection stone patients also received adequate antibiotic therapy throughout the study. Among the patients in the untreated sterile group 21% and 32% were stone-free at 6 and 12 months, respectively. In the infection group these figures were 27% and 40%, respectively. Among the untreated sterile calcium stone patients in whom clearance was not achieved a high percentage experienced residual fragment growth or reaggregation. Citrate therapy significantly improved the stone clearance rate in the sterile (at 6 and 12 months 65% and 74% were stone-free, respectively) and infection (71% and 86%, respectively) stone patients, and prevented residual fragment growth or reaggregation in subjects in whom clearance was not achieved. The data show that growth and persistence are common in the natural history of residual stone fragments. Citrate ameliorated the outcome of these residual fragments by reducing the growth or agglomeration, and by increasing the clearance rate in calcium oxalate and in infection stone patients.

Adolescent↗

Abnormal erythrocyte and renal frusemide-sensitive sodium transport in idiopathic calcium nephrolithiasis.

1. Anomalous transmembrane anion transport has been observed in erythrocytes of patients with idiopathic calcium nephrolithiasis. 2. To verify whether cation transport is also abnormal, we investigated the frusemide-sensitive Na+ efflux from Na(+)-loaded erythrocytes and the natriuretic response to acute intravenous frusemide administration in calcium oxalate renal stone formers. 3. Frusemide administration induced a statistically significant smaller increase in the fractional excretion of Na+ in patients than in control subjects. Abnormal kinetic properties of erythrocyte Na(+)-K(+)-2Cl- cotransport were observed in approximately 60% of stone formers. The Km for Na+ of Na(+)-K(+)-2Cl- co-transport correlated with urinary Ca2+ excretion. 4. The abnormal kinetic properties of Na(+)-K(+)-2Cl- co-transport may be relevant for stone formation, hampering renal Ca2+ reabsorption in the distal nephron and determining critical physicochemical conditions for calcium/oxalate crystallization.

Adult↗

Functional correlation between the Ser/Thr-phosphorylation of band-3 and band-3-mediated transmembrane anion transport in human erythrocytes.

In human erythrocytes, okadaic acid, a potent inhibitor of certain protein phosphatases, promotes a marked increase of Ser/Thr-phosphorylation of membrane proteins, including band-3 protein. Moreover, okadaic acid also increases the band-3-mediated oxalate transport across the membranes, thus suggesting that this process is regulated by Ser/Thr-phosphorylation of transporter band-3 protein.

Anion Exchange Protein 1, Erythrocyte↗

Abnormal urate transport in erythrocytes of patients with idiopathic calcium nephrolithiasis: a possible link with hyperuricosuria.

1. The demonstration of an inheritable anomaly of erythrocyte oxalate transport in 'primary' calcium nephrolithiasis suggested that this disease might be a generalized metabolic disorder characterized by a defect in cellular anion transport. 2. To determine whether this anomaly is restricted to oxalate alone, we studied erythrocyte transmembrane urate self-exchange in calcium-oxalate renal stone formers in whom urinary excretion of uric acid is frequently increased. 3. Abnormal urate self-exchange was found in 30% of the patients. The urate self-exchange rate constant was correlated with 24 h urinary excretion of uric acid; the erythrocyte anomaly was also associated with the frequency of hyperuricosuria and a more intense disease activity. Transmembrane urate self-exchange was inhibited by stilbene and heparan sulphate. Morphazinamide administration did not reduce urinary urate excretion in patients with abnormal urate erythrocyte self-exchange. 4. These findings suggest that hyperuricosuria during calcium-oxalate renal stone disease might be due to a cellular defect in urate transport, and further support the hypothesis that idiopathic nephrolithiasis is a metabolic disorder characterized by a defect in cellular anion transport.

Biological Transport↗