Hepatitis C virus infection and membranous glomerulonephritis.
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Biomedical subjects
Publications and source records attributed to G Piccoli.
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An impaired function of splenic macrophages, measured as the clearance rate of erythrocytes coated with IgG (E-IgG), was observed in 7 out of 8 cryoglobulinemic patients with severe urinary abnormalities and systemic symptoms, and in 0 out of 6 patients without urinary symptoms and only mild systemic signs of disease. The E-IgG clearance rate was not related to HLA or Rh phenotype, patients' age or disease duration. Moreover, longitudinal studies showed this parameter to be strictly related to disease activity. To investigate the nature of the defect, five series of analyses were planned using peripheral blood phagocytes (PBP) from 8 patients: a) detection of cell-bound immune material by using the antibody CE59 directed to the Fc fragment of IgG modified by the antibody-antigen reaction; b) cytofluorometric and/or radiometric analyses of the cell surface expression of HLA II, CR1 and FcR structures by means of specific monoclonal antibodies (MoAbs); c) electron microscopy (EM) examination of diverse combinations of cryoglobulins incubated with PBP from patients and normals; d) analysis of cryoglobulin-induced inhibition of E-IgG phagocytosis; e) measurement of the generation of chemiluminescence (CL) in response to Zymosan, Phorbol Myristate Acetate and n-Formyl-Methyonine-Leucine-Phenilalanine (n-FMLP). Patients' PBP were found to have a higher amount of cell-bound immune material as compared to normals (p less than 0.01). CR1 and FcR expression was not different from controls, whereas a slight increase in percentage of monocytes bearing HLA II structures was found in patients (p less than 0.05). Upon EM examination no obvious differences were found in the internalization capacity of cryoglobulins between patients and controls. The CL production was lower than normal (p less than 0.02), whatever stimulus used, with a maximal impairment for n-FLMP (p less than 0.005), the most specific test probe for cytoskeleton integrity. Finally, a remarkable cryoglobulin-induced inhibition of E-IgG phagocytosis was shown. A combination of saturation mechanisms and intracellular abnormalities could underlie the apparent discrepancy between E-IgG clearance defect and preserved potential of cryoglobulin internalization in cryoglobulinemia.
We report a case with IgG-kappa monoclonal gammopathy of unidentified significance (MGUS) and glomerulonephritis (GN) with organized microtubular deposits on electron microscopy (EM). Light microscopy (LM) examination showed exudative features and moderate extracapillary proliferation. An acute nephritic syndrome with a rapidly progressive renal failure was clinically manifest at the onset and during each relapse. The patient was treated with methylprednisolone pulses followed by oral prednisone, cyclophosphamide, plasmapheresis, and maintenance courses of chemotherapy. The response to treatment was good, with a temporary improvement of renal function and control of the downhill course over a 3-year follow-up.
Twelve cases of glomerulonephritis in patients without systemic diseases, displaying organized glomerular deposits, were reported. Microfibrils (11-30 nm diameter) were found in 9 patients and microtubules (20-35 nm diameter) in the other 3. Histochemical stainings for amyloid were always negative. By light microscopy, mesangial proliferative, membranous and membranoproliferative patterns were seen in 5, 3 and 4 patients, respectively. By immunofluorescence, granular deposits, mainly of IgG and C3, were found in all cases, either in the mesangium or in the mesangium and in the capillary walls. A second biopsy was performed in 2 patients. The number of hyaline glomeruli was increased, but the general pattern of glomerular changes remained unchanged. The commonest clinical findings were hypertension, microhematuria and proteinuria, often of nephrotic range. At variance to what is reported in the literature, 2 pediatric cases were found as well, and the overall prognosis (mean follow-up 54.3 months) was mostly favorable. The diagnostic relevance of these findings is pointed out, but further investigations are needed, before suggesting a new clinicopathological entity.
The effects of gliadin and glyc-gli on leukocyte chemiluminescence response, cytotoxic activity and locomotion were assessed in vitro. A dose-dependent increase in chemiluminescence response of neutrophils stimulated by Zymosan was observed by using gliadin at concentrations ranging between 1 and 20 micrograms. By increasing glyc-gli concentrations, a bimodal response was observed with an enhancement up to 50 micrograms/ml, followed by dose-dependent suppressive effects. The cytotoxic activity of a suspension of peripheral blood mononuclear cells on the human myeloid line K562 was assessed in a Chromium release assay. By pretreating effector cells with optimal doses of gliadin (5 micrograms/ml) or glyc-gli (50 micrograms/ml), an enhancement of cytotoxic activity, similar to that of the gamma-Interferon, could be achieved. Finally glyc-gli was found to elicit neutrophil chemokinesis. The possible implications of these findings in diseases characterized by gluten intolerance are discussed.
A derangement of magnesium homeostasis with hypermagnesemia and increased intraerythrocyte Mg content [Mgi] has been described in uremic patients, and could play a pathogenetic role in both alterations of bone metabolism and vascular reactivity, observed in these patients. Recently Féray and Garay described in human erythrocytes a transport system which catalyzes outward Mg movements in the presence of external Na. These fluxes may be responsible for maintaining and regulating a low [Mgi]. The aim of this study was to evaluate in 16 normal subjects and 14 uremic patients undergoing CAPD: [Mgi] and rate of Na-dependent and Na-independent Mg efflux in Mg-loaded erythrocytes, in order to maximally stimulate Mg efflux. Mean plasma and intraerythrocyte Mg concentrations were significantly higher in CAPD than in normal subjects (1.09 +/- 0.20 vs 0.86 +/- 0.004 mmol/l, p less than 0.001 and 2.57 +/- 0.38 vs 1.96 +/- 0.18 mmol/l RBC, p less than 0.001). After an in-vitro Mg load, the intraerythrocyte Mg concentration and Na-independent Mg efflux were similar in both groups (17.5 +/- 1.4 vs 18.2 +/- 4.1 mmol/l RBC and 152 +/- 20 vs 126 +/- 19 mumol/l RBC/h). However, the Vmax of erythrocyte Na-stimulated Mg efflux was significantly higher in CAPD patients than in normal subjects (357 +/- 48 vs 229 +/- 88 mumol/l RBC/h, p less than 0.02). [Mgi] and the rate of Na-dependent Mg efflux were inversely related in CAPD patients (r = -0.76; p less than 0.002). These results indicate that uremic CAPD patients have a [Mgi] and Vmax of erythrocyte Na-dependent Mg efflux higher than normal subjects; this could reflect a compensatory, although insufficient, mechanism against high levels of intraerythrocyte Mg concentration, as suggested by the correlation between [Mgi] and the rate of Na-dependent Mg efflux.
We report the case of a 75 year-old woman affected by cerebral thromboembolism associated with echocardiographic detection of sessile mass in the right atrium, which presented atrial septal discontinuity. The polypous and frayed aspect of the mass and its echogenic features were consistent with floating thromboembolus and enabled it to be distinguished from other masses. Moreover, the pattern of dynamical connection with atrial septal drop-out supported the diagnosis of paradoxical embolism.
Aim of this study is to evaluate whether among type I diabetic adolescents (IDDM) the erythrocyte Na-Li countertransport (CNT Na-Li) is correlated with arterial pressure and tubular sodium reabsorption. We have studied 16 IDDM adolescents (age 15 +/- 0.5 year) et 15 normal subjects (age 14.5 +/- 1 year). CNT Na-Li, creatinine and lithium clearances (as markers of glomerular filtration rate and proximal tubular sodium reabsorption) have been measured in all subjects and nocturnal urinary albumin excretion rate (UAER) was measured in IDDM adolescents. CNT Na-Li was 308 +/- 26 mumol Li/l RBC/h in IDDM adolescents and 211 +/- 74 mumol Li/l RBC/h in controls (p less than 0.01). The fractional excretion of lithium (FELi) was significantly reduced in IDDM adolescents compared to normal subjects (12 +/- 2 vs 19 +/- 2%; p less than 0.01). Among the IDDM adolescents, 5 had the CNT Na-Li higher than the 95th percentile of controls (greater than 360 mumol Li/l GR/h); their systolic arterial pressure was significantly higher than in diabetics with normal CNT Na-Li (126 +/- 2 vs 116 +/- 2; p = 0.03), while there were no differences for diabetes duration, glycemic control, serum potassium, creatinine clearance, FELi and UAER. The relationship between CNT Na-Li and arterial pressure in IDDM adolescents deserves further studies.
In an uncontrolled study a gluten-free diet was given to 29 patients affected by primary IgA nephropathy (IgAGN). All of them followed the diet for 6 months, 23 patients for 1 year and 9 for 2 to 4 years. Mean levels of IgA containing circulating immune complexes (IgAIC), detected by a specific conglutinin assay and by measuring IgA content in 2.5% polyethylene glycol precipitates, on an unrestricted diet, significantly decreased after 6 months of gluten-free diet (p less than 0.01) and remained reduced during the follow-up. A decrease in IgAIC levels was evident in 85.7% of the cases with basal positive data, with complete normalization in 64.3% of them. IgA to gluten antigens (ethanol- or saline-soluble gliadin, glutenin and the lectin fraction termed glyc-gli) as well as to heterologous bovine and egg albumins were found to be significantly increased on an unrestricted diet in the group of 14 IgAGN patients with basal positive IgAIC. The mean levels of IgA to most dietary antigens significantly decreased after 6 months to 1 year of a gluten-free diet. A decrease in IgA to ethanol-soluble gliadin was evident in 81.8% of the cases with basal positive data, with complete normalization in 63.6%. A subgroup of 27.5% of IgAGN patients showed positive IgAIC values associated with increased IgA values to a variety of dietary antigens. A gluten-free diet induced in 75% of the cases a parallel improvement in these abnormal immunological data. Mean proteinuria values were found to be significantly decreased after 6 months of the diet and a reduction was also observed in microscopic hematuria. However, mean blood creatinine levels showed a significant increase after the gluten-free diet. The data of this study indicate that a gluten-free diet can modify some immunological abnormalities in a group of IgAGN patients, reducing levels of IgAIC and IgA to dietary antigens. The clinical course does not seem to be favorably influenced, since a relentless progression towards renal failure was observed.
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A simple and fast reversed-phase high-performance liquid chromatographic method has been developed for the complete separation of 35 dimethylaminoazobenzene sulfonyl (DABS)-amino acids and by-products. This method allows simultaneous determination of primary and secondary amino acids which can be present in protein and peptide hydrolysates and also detects the presence of cysteic acid, S-sulfocysteine, hydroxyproline, taurine, norleucine, cystine, and delta-hydroxylysine. The precolumn derivatization of amino acids with dimethylaminoazobenzene sulfonyl chloride (DABS-Cl) is simple and quick (10 min at 70 degrees C) and allows the complete reaction of primary and secondary amino acids. The separation of the compounds under investigation is achieved in 25 min using a reversed-phase 3-microns Supelcosil LC-18 column at room temperature. The versatility of the proposed method is documented by amino acid determination on protein samples obtained using different hydrolysis techniques (HCl, methane-sulfonic acid, and NaOH), with attention given to the detection of tryptophan in protein samples with high sugar concentration. Furthermore, we have reported the experimental conditions necessary to apply this method to the amino acid analysis of very low amount of proteins (1 to 5 micrograms) electroeluted from a stained band after sodium dodecyl sulfate-polyacrylamide gel electrophoresis. The stability of DABS-derivatives, the short time of analysis, the high reproducibility and sensitivity of the system, and the complete resolution of all compounds of interest make this method suitable for routine analysis. Furthermore, we have also developed a fast reversed-phase high-performance liquid chromatographic method for the complete separation of dimethylaminoazobenzene thiohydantoin (DABTH)-amino acids. The separation of the compounds under investigation is obtained, at room temperature, in less than 18 min using a reversed-phase Supelcosil LC-18 DB column, 3-micron particles, and also allows the complete separation of DABTH-Ile, DABTH-Leu, and DABTH-Norleu. The short time of analysis, together with the high reproducibility of the system and its sensitivity at picomole levels, make this method very suitable for the identification of DABTH-amino acids released during microsequencing studies of proteins and peptides with the dimethylaminoazobenzene isothiocyanate reagent. In addition, we have shown that it is possible to obtain complete separation of DABTH-amino acids also under isocratic conditions.(ABSTRACT TRUNCATED AT 400 WORDS)
The effects of a 2-litre isotonic saline infusion, with and without prior oral canrenone (150 mg) administration, on erythrocyte Na+, K+ pump, urinary sodium excretion and arterial pressure were evaluated in nine patients with essential hypertension. Ouabain-sensitive Na+ efflux in fresh erythrocytes was used as an index of Na+, K+ pump activity, and the inhibitory effect on this ion efflux of preincubation of erythrocytes in plasma was used to test the presence of a circulating ouabain-like substance. Erythrocyte Na+, K+ pump activity decreased significantly (P less than 0.01) after saline infusion; canrenone administration was able to prevent this inhibition. Plasma from hypertensive patients obtained before saline infusion significantly (P less than 0.01) inhibited the Na+, K+ pump of erythrocytes from normal subjects, while plasma taken after the saline infusion plus canrenone was unable to produce any significant inhibition. Both systolic and diastolic arterial pressure fell significantly (P less than 0.05) only at the end of saline infusion with prior canrenone administration. This study supports the hypothesis that protection of Na+, K+ pump against endogenous inhibitors, other than exogenous, seems to be a pharmacological effect of canrenone, and may partly explain its antihypertensive activity.
Clearance of aggregated human secretory immunoglobulin A (AHS-IgA) was studied in nine patients affected by primary IgA nephropathy (IgAGN) and six normal volunteers from the medical staff. Samples of whole blood, erythrocytes, and serum were taken from 3 to 120 minutes after injection of 0.5 mg of 131iodine-labeled AHS-IgA. No significant radioactivity was recorded on erythrocytes. The clearance curve of AHS-IgA from the circulation, calculated by measuring trichloroacetic acid precipitable radioactivity in serum, was found to be biexponential with an initial fast component significantly prolonged in patients (mean half-time, 19.4 minutes, range, 14 to 26 minutes) compared with controls (mean, 12.2 minutes, range, 7.6 to 16.8 minutes; P less than 0.01). These data indicate that clearance of aggregated polymeric IgA does not involve the erythrocyte transport system and seems to be defective in IgAGN patients.
The functional effects directly induced by dialysis membranes on peripheral monocytes were analyzed in a plasma-free model of simulated dialysis using Cuprophan, cuprammonium rayon, polyacrylonitrile, polymethylmetacrilate and polysulphone membranes. A severe reduction of monocyte phagocytosis of IgG-coated erythrocytes was found by using Cuprophan and cuproammonium rayon. The cytofluorimetric analysis of several cell surface receptors, involved in the immune phagocytosis and recognizable by five quoted monoclonal antibodies, did not reveal any significant change. The defective phagocytosis of the IgG-coated erythrocytes by monocytes, due to the exposure to cellulose-derived membranes, was paralleled by an impaired interiorization of heat-aggregated human immunoglobulins, as analyzed by electron microscopy. The cell membrane binding of aggregated immunoglobulins was found to be unaffected. The defect was associated to a remarkably depressed generation of reactive oxygen species after Zymosan stimulation. Therefore, the defective immune phagocytosis induced by exposure of monocytes to cellulosic membranes was not due to a receptor rearrangement or an impaired binding of ingestible particles, but to a reduced internalization capacity probably related to an energy source exhaustion (as shown by the lack of response to stimuli able to induce oxidizing species production). These features are similar to those described in monocytes from acute systemic lupus erythematosus patients.
This study reports the quantitative analysis of complement receptor (CR1) molecules on erythrocyte surface, the amount of immunoglobulin-containing material (IgG-IC and IgA1-IM) on the erythrocyte surface, and the concentrations of circulating immune complexes (IgG-CIC and IgA-CIC); also reported are the HLA phenotypes of 44 patients affected by various forms of glomerulonephritis (including 20 primary IgA nephropathy, 11 membranous glomerulonephritis, 9 lupus nephritis and 4 renal vasculitis). Erythrocyte CR1 molecules were found to be decreased (P less than 0.02) and erythrocyte IgG-IC were less than in controls (P less than 0.025) in lupus nephritis patients, whereas IgG-CIC were significantly greater (P less than 0.02). In patients affected by primary IgA nephropathy, mean erythrocyte CR1 concentrations were significantly decreased (P less than 0.02). Patients with impaired renal function had mean erythrocyte CR1 values significantly greater than those with normal renal function (P less than 0.002). Immunoglobulin-containing material on the erythrocyte surface was not significantly increased, whereas the serum concentrations of both IgA-CIC and IgG-CIC were significantly increased (P less than 0.02). In membranous nephropathy erythrocyte CR1 molecules were quantitatively similar to control data and no increase in CIC was observed. Conversely, erythrocyte IgG-IC were significantly increased (P less than 0.01). No significant relationship among erythrocyte CR1 molecules, erythrocyte surface-associated immunoglobulins, CIC, and HLA phenotype was observed in any patient group.