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Biomedical subjects

G Gambaro

Publications and source records attributed to G Gambaro.

At least 19 recordsLinked to original sources

Family history may be misleading in the diagnosis of Dent's disease.

The rare Dent's disease manifests with medullary nephrocalcinosis, nephrolithiasis, hypercalciuria, low molecular weight proteinuria and other tubular dysfunctions, rickets or osteomalacia, and renal failure, in various combinations. It is a recessive X-linked condition. Clinicians consider family history a fundamental pointer to its diagnosis, but this is not invariably the case as clearly pointed out by the two reported cases.

Adolescent↗

Lithiasis in cystic kidney disease and malformations of the urinary tract.

The prevalence of renal stones in renal cystic and malformative conditions exceeds the prevalence of renal stones in the general population, suggesting that the above-mentioned cystic and malformative disorders favor stone formation. Urinary stasis is generally assumed to play a major part in the pathogenesis of the nephrolithiasis associated with distorted renal anatomy due to a delayed washout of crystals and risk of urinary infections. However metabolic factors are also important in the pathogenesis of stones in these conditions. Indeed, metabolic abnormalities have been observed in the majority of stone-forming patients with conditions such as horseshoe kidney and ureteropelvic junction obstruction. Five different models of stone formation can be identified, depending on stone composition, risk of infection stones, and pathogenesis of renal cystic and malformative conditions. A proper metabolic evaluation should be conducted to diagnose specific, treatable metabolic disorders, thereby reducing the frequency of recurrent stone disease in these conditions as well.

Humans↗

Medullary sponge kidney (Lenarduzzi-Cacchi-Ricci disease): a Padua Medical School discovery in the 1930s.

The introduction of radiological contrast media and intravenous (i.v.) urography in clinical diagnostics in the 1930s enabled the discovery of several diseases, including the medullary sponge kidney (MSK). MSK is a renal malformation characterized by cystic anomalies of precalyceal ducts, which is frequently associated with nephrocalcinosis and renal stones. Although it was first recognized by G Lenarduzzi in 1939, its thorough description was the result of the ante litteram multidisciplinary cooperation between a radiologist (Lenarduzzi), a urologist (Cacchi), and a pathologist (Ricci), all at the Padua University Hospital. These authors 'established' the paradigm for its diagnosis that is still used today. I.v. urography is the gold standard for the diagnosis of MSK, but as the technique is used less and less, there is a concrete possibility of this renal condition being forgotten in the future. Although the pathogenesis of MSK has yet to be elucidated, its association with different malformative conditions supports the idea that it is a developmental disorder. Recent findings suggest that MSK may be the consequence of a disruption of the ureteral-bud/metanephric-blastema interface.

Contrast Media↗

Adverse renal effects of anti-inflammatory agents: evaluation of selective and nonselective cyclooxygenase inhibitors.

Conventional nonsteroidal anti-inflammatory drugs (NSAIDs), i.e. nonselective cyclooxygenase COX inhibitors have well-documented nephrotoxicity. Adverse renal effects occur because of inhibition of the synthesis of cyclooxygenase-derived prostaglandins which act to modulate pathologic processes that would normally impair various renal functions. The introduction of the selective COX-2 inhibitors raised hope that this class of drugs would reduce injury in both the gastrointestinal tract and the kidneys. Animal and human data, however, suggest that COX-2 synthesized prostaglandins are important in the modulation of renal physiology during adverse conditions. Hence, it appears that these drugs are equal in causing nephrotoxicity as the nonselective COX inhibitors.

Acute Kidney Injury↗

Quantitation of TGF-beta1 mRNA in porcine mesangial cells by comparative kinetic RT/PCR: comparison with ribonuclease protection assay and in situ hybridization.

Gene expression can be examined with different techniques including ribonuclease protection assay (RPA), in situ hybridisation (ISH), and quantitative reverse transcription-polymerase chain reaction (RT/PCR). These methods differ considerably in their sensitivity and precision in detecting and quantifying low abundance mRNA. Although there is evidence that RT/PCR can be performed in a quantitative manner, the quantitative capacity of this method is generally underestimated. To demonstrate that the comparative kinetic RT/PCR strategy-which uses a housekeeping gene as internal standard-is a quantitative method to detect significant differences in mRNA levels between different samples, the inhibitory effect of heparin on phorbol 12-myristate 13-acetate (PMA)-induced-TGF-beta1 mRNA expression was evaluated by RT/PCR and RPA, the standard method of mRNA quantification, and the results were compared. The reproducibility of RT/PCR amplification was calculated by comparing the quantity of G3PDH and TGF-beta1 PCR products, generated during the exponential phases, estimated from two different RT/PCR (G3PDH, r = 0.968, P = 0.0000; TGF-beta1, r = 0.966, P = 0.0000). The quantitative capacity of comparative kinetic RT/PCR was demonstrated by comparing the results obtained from RPA and RT/PCR using linear regression analysis. Starting from the same RNA extraction, but using only 1% of the RNA for the RT/PCR compared to RPA, significant correlation was observed (r = 0.984, P = 0.0004). Moreover the morphometric analysis of ISH signal was applied for the semi-quantitative evaluation of the expression and localisation of TGF-beta1 mRNA in the entire cell population. Our results demonstrate the close similarity of the RT/PCR and RPA methods in giving quantitative information on mRNA expression and indicate the possibility to adopt the comparative kinetic RT/PCR as reliable quantitative method of mRNA analysis.

Animals↗

Low-molecular-weight heparin prevents high glucose- and phorbol ester-induced TGF-beta 1 gene activation.

BACKGROUND: Hyperglycemia-induced overexpression of prosclerotic transforming growth factor-beta 1 (TGF-beta 1) has been implicated in the pathogenesis of diabetic nephropathy. Since previous in vivo studies demonstrated a renoprotective effect of low-molecular-weight (LMW) heparin in experimental animals, and recent in vitro data showed an interaction of this drug with the overactivated TGF-beta 1 cascade in high glucose- and phorbol ester-stimulated mesangial cells, we studied the molecular mechanism of these effects on TGF-beta 1 gene expression. METHODS: Mesangial cells were stimulated with 30 mmol/L glucose or with 0.5 micromol/L phorbol ester [phorbol myristate acetate (PMA)] in the absence or presence of LMW heparin. TGF-beta 1 promoter activity was determined in promoter-reporter luciferase assays. The effect of LMW heparin on the binding of nuclear proteins to a regulatory activator protein-1 (AP-1) site, which mediates the high glucose and PMA responsiveness of the TGF-beta 1 promoter, was studied by electrophoretic mobility shift assays. RESULTS: The presence of LMW heparin completely prevented TGF-beta 1 gene activation in both high glucose- and PMA-stimulated cells. Preincubation of the cells with LMW heparin and subsequent stimulation of the cells with both stimuli yielded the same result. Furthermore, treatment with LMW heparin prevented the enhanced binding of nuclear proteins to the regulatory AP-1 site, while binding to a Sp1 site was unaffected. Basal promoter activity and basal AP-1 binding also was reduced by LMW heparin. The LMW heparin effect on basal promoter activity was abolished by mutation of the regulatory AP-1 box B and by deletion of this AP-1 binding site. CONCLUSIONS: LMW heparin prevents high glucose- and PMA-mediated TGF-beta 1 expression by inhibiting the activation of the TGF-beta 1 promoter and by preventing the enhanced binding of nuclear proteins to the regulatory AP-1 site.

Animals↗

Risk for renal failure in nephrolithiasis.

Evaluation of the risk for developing renal insufficiency is generally not considered during the clinical metabolic workup of the stone-forming patient. This review approaches the problem of the severity of nephrolithiasis by addressing the renal risk. Although renal stones are an infrequent cause of renal failure, some lithiasic forms present a greater risk, such as in hereditary stone diseases (eg, cystinuria, primary hyperoxaluria, Dent's disease), primary struvite stones, and infection-related urolithiasis associated with anatomic and functional urinary tract anomalies and spinal cord injury. Recurrent bouts of obstruction and/or crystal-specific biological effects on tubular epithelial cells and interstitial renal cells may activate the fibrogenic cascade responsible for the loss of renal parenchyma. In clinical terms, frequent stone relapses, episodes of urinary tract infection and obstruction, number of urological interventions, and size of the gravel are all significantly associated with the risk for renal failure. Percutaneous and extracorporeal urological methods for the treatment of renal stones may also lead to some chronic deterioration of renal function, particularly in recurrent stone formers treated with multiple therapeutic sessions. Although still speculative, concerns exist about the effect of extracorporeal shock wave lithotripsy on small or pathological kidneys. Without doubt, the medical prevention of stones would be more sensible.

Humans↗

Monocyte/mesangial cell interactions in high-glucose co-cultures.

BACKGROUND: Monocytes bind to human mesangial cells (HMC) in a co-culture model of leukocyte/ glomerular cell interactions. Since monocytic infiltration has been demonstrated in the early stages of diabetic glomerulopathy, we examined whether co-culture with myelomonocytes of the U937 cell line in media mimicking the diabetic microenvironment modulated phenotype, growth, and extracellular matrix production patterns of HMC. METHODS: HMC monolayers grown for 5 days in 5.5 mmol/l (NG) or 30 mmol/l (HG) glucose media were examined 3, 24 and 48 h after addition of U937 cells by computer-assisted image analysis/fluorescence microscopy following fixation, staining for cell adhesion, and TUNEL/propidium iodide labelling for apoptosis. As matrix components may be relevant to both phenotype of cultured HMC and monocyte adhesion, reverse transcription-polymerase chain reaction, zymography, and ELISA were used to detect urokinase-plasminogen activator (uPa), collagen type IV (COL IV), transforming growth factor beta1 (TGF-beta1), matrix metalloproteinases (MMP), and relative inhibitors (tissue inhibitor of MMP (TIMP)) expression in co-cultures in NG/HG. RESULTS: U937 adhesion at 1-3 h was increased in HG (from 54.9+/-6.6 to 87.1+/-5.8% U937/HMC). Control HMC proliferating in NG supplemented with 10% fetal bovine serum had an average cross-sectional area of 9993+/-505 micro(2) with 1.2+/-0.1 hillocks/high-power field, which increased to 13 651+/- 1114 micro(2) with 0.5+/-0.2 hillocks/high-power field in HG (P<0.05). TUNEL+HMC were nearly identical (4.9+/-1.7 vs 4.2+/-0.4% in HG, P=NS). Enhanced transcription and secretion of urokinase (uPA, +656%), COL IV (+137%), TGF-beta1 (+590%) were observed in co-cultures in HG. COL IV and TGF-beta1, but not uPA, were also increased in HMC alone, exposed to HG for 5 days. MMP-2/TIMP-2 ratio was decreased while MMP-1/TIMP-1 was increased in HG co-cultures. In both NG and HG, U937 adhesion reduced HMC number and hillocks at 24 h, with constant apoptosis. The effects of U937 were no longer detectable at 48 h, when apoptosis was 2.1+/-0.6 vs 4.0+/-0.4% in HG, and cell counts returned above basal, possibly due to a delayed proliferative response. CONCLUSIONS: High glucose medium increases U937 cell adhesion to HMC. In turn, monocytes modulate number and spatial distribution of HMC, which are also markedly affected by ambient glucose levels. These interactions may be relevant to leukocyte infiltration, mesangial expansion, and glomerulosclerosis in diabetes.

Cell Adhesion↗

Cigarette smoking is a risk factor for nephropathy and its progression in type 2 diabetes mellitus.

Cigarette smoking is a risk factor for diabetic nephropathy in Type 1 diabetes (T1DM); a few reports support this possibility in Type 2 diabetes (T2DM) as well. Since heterogeneity among populations could exist, we investigated the association of cigarette smoking and nephropathy, and progression of nephropathy in Italian T2DM patients. A retrospective study was conducted in 273 long-duration T2DM subjects with a 3-year follow-up in the out-patient clinic, and at least one access per year. Albumin excretion rate, serum creatinine, and a number of other parameters implicated in the development of diabetic renal disease were evaluated. Progression of nephropathy was defined as the passage from different stages of renal involvement (no renal derangement, microalbuminuria, proteinuric disease or severe nephropathy). At baseline, 13.2% of the subjects had microalbuminuria, and 3.7% proteinuric disease. Microalbuminuria and proteinuric disease were more frequent in actual smokers than in non- and former smokers (chi2=8.35; p=0.015). Progression of nephropathy was less common in non- and former smokers than in smokers (31 of 134, 23%, and 15 of 67, 22%, and 30 of 72, 42%, respectively; chi2=9.32;p=0.009). From logistic regression analysis, smoking (p=0.0012) emerged as the most important factor associated with progression of nephropathy, followed by packyears (p=0.011), HbA1c mean value at follow-up (p=0.024), and total cholesterol (p=0.038). In conclusion, cigarette smoking is a risk factor for progression of nephropathy also in Italian T2DM patients; reducing or quitting smoking should be part of the therapy or of the preventive measures in these patients and their relatives.

Aged↗

Dietary manipulation of delta-6-desaturase modifies phospholipid arachidonic acid levels and the urinary excretion of calcium and oxalate in the rat: insight in calcium lithogenesis.

An anomalous n-6 polyunsaturated fatty acid composition in plasma and erythrocyte membrane phospholipids, namely increased levels of arachidonic acid (AA), has been reported in calcium nephrolithiasis and has been proposed to play an important role in its pathogenesis. To confirm this, in rats we modified phospholipid AA levels by dietary manipulation of the delta-6-desaturase, the rate-limiting enzyme of the fatty acid biosynthetic pathway, and evaluated the effect on cellular and renal functions predisposing to lithogenesis. Increased AA levels led to conditions at risk for nephrolithiasis: higher oxalate flux and lower sodium cotransport in erythrocytes and a rise in urinary prostaglandin E2, calcium, sodium, and oxalate levels; reduced AA levels reversed these changes. In vitro, in human erythrocytes the incorporation of exogenous AA into membranes increased band 3 protein phosphorylation directly activating the Ser/Thr protein kinase CK1 and induced a parallel raise in band 3-mediated oxalate transport. These findings demonstrate the pivotal role of phospholipid AA in modulating erythrocyte and renal transport of calcium and oxalate.

Animals↗