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Biomedical subjects

R Gusmano

Publications and source records attributed to R Gusmano.

At least 55 records · Page 3Linked to original sources

Outgrowth of interleukin-2-dependent T cell lines with cytotoxic activity against mesothelial cells from cultures of peritoneal effluent cells of children on CPD.

Previous studies on the peritoneal immune system described the presence of activated T lymphocytes in peritoneal effluents (PE) from patients on chronic peritoneal dialysis (CPD), and showed that mesothelial cells (MC) can present antigens to T cells. In order to better define phenotypic and functional characteristics of T cells and their interactions with MC, we isolated PE cells from 15 children. At the immunophenotypic analysis, high percentages of activated T cells were identified (mean value: 15% double staining for CD3/DR; 12% CD25+). T cells with gamma/delta T cell receptor (mean 5%) and natural killer cells (mean 17%) were also present in elevated numbers. MC lines (n = 7) and interleukin-2-dependent T cell lines (9 CD4+; 1 CD8+) were also obtained by incubating PE cells under different conditions. Two cell lines showed a major histocompatibility complex (MHC) restricted cytotoxic activity against autologous MC; two lines killed allogeneic MC; one line killed both autologous and allogeneic MC. Although the hypothesis that activated T cells could kill MC after recognition of surface structures modified by dialysis fluid, or during antigen presentation, needs to be further investigated, our data suggest that the subsets of lymphocytes we identified could play an important role in the mechanisms of peritoneal membrane defense.

Adolescent↗

Protein and calorie intake, nitrogen losses, and nitrogen balance in children undergoing chronic peritoneal dialysis.

We performed 22 nitrogen balance (NB) studies of three days' duration in 19 children (8.7 +/- 3.8 years) on chronic peritoneal dialysis (CPD) for 19.4 +/- 16.4 months. The dietary intakes were assessed by the double weighing method. Total nitrogen, protein, urea, and creatinine were analyzed in the dialysate and urine collected daily. Total nitrogen was also determined in the feces collected over the whole NB study period, using vegetable charcoal as a marker. The protein intake was 1.64 +/- 0.50 g/kg/day, corresponding to 126 +/- 40% of the recommended daily allowance (RDA) for normal children of the same age, and the calorie intake (diet+glucose from dialysate) reached 75 +/- 26% of RDA. Nitrogen losses were: 0.177 +/- 0.052 g/kg/day with peritoneal fluid and urine, and 0.028 +/- 0.018 g/kg/day with feces. The NB, positive in 17 out of 22 studies, ranged from -116 to +167 mg/kg/day (mean 44.0 +/- 66.2 mg/kg/day). A direct and significant correlation between NB and nitrogen intake (g/kg/day) (r = 0.562, p < 0.05) and total calorie intake (cal/kg/day) (r = 0.483, p < 0.05) has been observed. These data confirm the need to ensure in children on CPD an adequate nutritional intake, and further support the efforts to improve calorie intake.

Blood Proteins↗

Children on continuous ambulatorial peritoneal dialysis: muscle and plasma proteins, amino acids and nutritional status.

The aim of the study was to investigate plasma and muscle amino acid (AA) levels in children on continuous ambulatory peritoneal dialysis (CAPD) and their relationship to various indices of nutritional status. Ten children with a mean age of 6.4 +/- 5.6 yrs were evaluated. Muscle biopsies and venous blood samples were taken after an overnight fast. Muscle samples were obtained from rectus abdominis. Data were compared with those of a control group of 22 children who were undergoing elective surgery. Informed consent was obtained from the parents. The plasma concentration of most of the essential AA (valine, leucine, isoleucine, lysine, methionine and tyrosine) were significantly reduced and the levels of some non essential AA (aspartic acid, glycine, citrulline, 1-3 methihystidine, taurine + alanine) were significantly higher than in the controls. Muscle intracellular free essential AA concentrations, except the low levels of valine and leucine did not differ significantly from values in the controls. Among non essential AA, aspartic acid, glutamic acid and ornitine showed significantly increased intracellular concentrations. No significant correlations were found between plasma and muscle AA concentration and ASP (alkali-soluble protein)/DNA ratio, serum albumin, transferrin, bicarbonate levels and duration of CAPD. Instead, a significant correlation was noted between the muscle ASP/DNA ratio, an indicator of the amount of cell proteins per cell unit, and age (r = 0.714, p < 0.05). Muscle Branched chain AA levels were significantly correlated to body mass index (BMI) (r = 0.648, p < 0.05).

Adolescent↗

Effects of peritoneal effluents on mesothelial cells in culture: cell proliferation and extracellular matrix regulation.

Peritoneal fibrosis in patients on peritoneal dialysis is the result of interstitial collagen accumulation within the peritoneal membrane and in mural spaces. Hypothetically, collagen expression by target cells may be regulated by specific endoperitoneal factors, though the existence of such factors has not yet been demonstrated. We evaluated the effects of cell-free peritoneal effluents obtained from six children undergoing peritoneal dialysis on several mesothelial cell functions in vitro. Human peritoneal mesothelial cells (MC) were obtained from the omental tissue of six uraemic children who were undergoing surgery for insertion of a peritoneal catheter. Cells at confluence were utilized to determine cytotoxicity (LDH release), viability (trypan blue), proliferation (3H-thymidine incorporation), collagen expression (3H-proline incorporation, SDS-Page) and mRNA (dot-blot). A preliminary series of experiments, was undertaken to define which of the successive fluid collections during a dialytic procedures induces the greatest changes; this revealed maximal effects of the effluent from the long stasis period. Exposure to peritoneal effluents obtained from four patients with acute peritonitis induced marked changes in cell morphology, stimulated by (3H)-thymidine incorporation into DNA by 300% and upregulated the expression and transcription of type III collagen (6-fold increment in COL3A1 mRNA). Qualitatively but not quantitatively comparable changes in cell proliferation (+100%) and collagen expression were induced by peritoneal effluents from patients without peritonitis. In an effort to reproduce the effect of peritoneal effluents in vitro, we exposed mesothelial cells to various cytokines putatively present in infected peritoneal effluents, namely IL-2, TGF beta and TNF alpha; in no case did we find stimulation of cell proliferation. Finally TGF beta but not TNF alpha or IL2 upregulated collagen synthesis by these cells. These findings demonstrate a direct influence of cell-free peritoneal effluents on mesothelial cell functions, including stimulation of interstitial collagen expression. All these changes were more evident upon exposure to effluents collected during acute peritonitis, which suggests a link between recurrent peritoneal infection and collagen deposition, the most typical precursor of peritoneal fibrosis.

Adolescent↗

Is the response to rhGH in peritoneal dialysis patients less effective than in patients with chronic renal insufficiency.

Data on the effects of rhGH treatment in children on peritoneal dialysis are limited. In general rhGH therapy seems to be less effective compared with results on patients with chronic renal failure on conservative treatment. Our experience suggests that rhGH can stimulate growth in children on CPD, and that the efficacy of such therapy is reduced after the first year of treatment, although the rhGH is still active.

Child↗

Antigen-presenting function of human peritoneum mesothelial cells.

Mesothelial cells (MC) from human peritoneal omentum fragments obtained during surgical insertion of peritoneal catheters for continuous peritoneal dialysis in end stage renal failure (ESRF) patients were cultured in vitro. MC exhibited a phenotype different from macrophages, but MHC class II molecules were well expressed. Therefore MC lines were tested for antigen-presenting capacity by pulsing with soluble antigens (tetanus toxoid and purified protein derivative (PPD)) or with a corpusculate antigen (Candida albicans bodies). Autologous peripheral blood mononuclear cells (PBMC) depleted of adherent monocytes and cloned T cells generated from an individual matched for the MHC class II antigen DR2 were used to test antigen-presenting function. MC effectively presented the soluble and corpusculate antigens to autologous and MHC-compatible allogeneic lymphocytes, indicating that they are endowed with both endocytic/phagocytic activity and with processing/presenting capacity. Preincubation of MC with human recombinant interferon-gamma (IFN-gamma) up-regulated MHC class II and intercellular adhesion molecule-1 (ICAM-1) expression, but the effect on antigen-presenting function was not consistent. Since MC are an important component of the peritoneal environment, they may participate, along with macrophages, in activation of specific T cells and in the generation of local cell-mediated immunity to various pathogens.

Adolescent↗

Deposition of kappa and lambda light chains in amyloid filaments of dialysis-related amyloidosis.

beta 2-Microglobulin (beta 2m) is considered to be the amyloidogenic precursor in dialysis-related amyloidosis, although the implication of other relevant cofactors in the pathogenesis of this disease has also been hypothesized. It is conceivable that substances found in amyloid deposits might represent something more than simple codeposition, possibly playing a pathogenic role in amyloidogenesis. Along these lines, a detailed analysis of the protein composition of amyloid fibrils purified from synovial material surgically obtained from nine patients on long-term dialysis was carried out. By the use of sodium dodecyl sulfate-polyacrylamide gel electrophoresis, several other protein components, in addition to beta 2m, were found. These were characterized by NH2 amino-terminal sequencing and immunoblotting. In fibrils obtained by water extraction, which fulfill the electron microscopy criteria of highly pure amyloid material, polyclonal kappa and lambda light chains were detected with a concentration of 15 micrograms/mL in the water extraction material; the beta 2m concentration was 200 micrograms/mL. Light microscopy immunohistochemistry was performed on samples from five patients. Amyloid deposits reacted with anti-beta 2m, and anti-light (kappa, lambda), chain antibodies. The immunoreaction of amyloid filaments to anti-beta 2m, anti-lambda, and anti-kappa light chain antibodies was also tested by electron microscopy by use of the immunogold staining procedure. Amyloid filaments were labeled by the three antibodies and showed a different intensity of immunostaining apparently related to their different aggregation pattern. These observations demonstrate that polyclonal immunoglobulin light chains (kappa and lambda) are not contaminants but, together with beta 2m, represent a major constituent of amyloid deposits in dialysis-related osteoarticular amyloidosis, thus indicating their possible role in amyloidogenesis.

Adult↗

Macromolecular IgA and abnormal IgA reactivity in sera from children with IgA nephropathy. Italian Collaborative Paediatric IgA Nephropathy Study.

This multicenter study investigated the characteristics of circulating IgA molecules in 77 children: 42 had primary IgA nephropathy (IgAN), 20 were non-IgA glomerulonephritides (CGN) and 15 had urological problems (U). Fifteen assays were employed including the detection of macromolecular IgA [IgA immune complexes (IgAIC) by the conglutinin (K) assay, heavy molecular weight IgA in 2.5% polyethylene glycol (PEG), mixed IgA/IgGIC (Jacalin assay), IgA-Fibronectin (IgA-F) aggregates]IgA antibodies to alimentary antigens (gliadin, glycgli, glutein, ovalbumin, bovine serum albumin) and IgA binding to mesangial antigens (fibronectin, laminin, type IV collagen) or polycations (poly-L-lysine). Total IgA and IgA reacting with jacalin, supposed to bear an altered galactosylation, were measured as well. Mean levels of each kind of macromolecular IgA were significantly increased in children with IgAN in comparison to U disease (K-IgAIC p < 0.05, PEG-IgAIC p < 0.01, IgA/IgGIC p < 0.004, IgA-F aggregates p < 0.0003). However, IgA-F were the only macromolecular IgA significantly higher in IgAN than in CGN (p < 0.0005). IgA-F aggregates did not correlate with any urinary sign of activity, while K-IgAIC data were significantly related with microscopic hematuria (p < 0.05) and past history of gross hematuria (p < 0.02). Children with IgAN had mean levels of IgA reacting with the lectinic fractions of gliadin significantly higher than CGN (p < 0.01) and U groups (p < 0.003). IgAN displayed an enhanced production of IgA reacting with mesangial matrix components vs CGN (p < 0.03) and U (p < 0.0003) groups and showed altered interactions with positively charged molecules (poly-L-Lysine, p < 0.01) and carbohydrate residues (jacalin p < 0.05). In IgAN there is an increased circulation of altered IgA favouring the formation of macromolecular IgA, including true IgAIC or IgA aggregated by carbohydrate interactions. The affinity for the mesangial matrix glycoproteins and for the mesangial area electrical charge might further enhance the trapping and deposition of the immune material containing IgA. IgA-F aggregates seem to be a marker of this event, while complement binding molecules in IgAIC correspond to the hematuric manifestation of the nephritogenic process.

Adolescent↗

Cyclosporine enhances the synthesis of selected extracellular matrix proteins by renal cells "in culture". Different cell responses and phenotype characterization.

Glomerulosclerosis and interstitial fibrosis are 2 major side effects of protracted therapy with CsA in heart transplant patients and in nonrenal immunologic diseases. To investigate whether there is any cause-effect correlation between CsA and the synthesis of extracellular matrix in the kidney, we determined the amount and composition of collagens produced by various renal cells "in culture" upon exposure to increasing levels of CsA. The cellular models we used included primary cultures of both human and rat mesangial cells (hMC, rMC), human and rat renal fibroblasts (hFib, rFib), and human tubular epithelia as well as cell lines of rat renal fibroblasts (NRK49F) and of tubular epithelia (NRK52E). In the case of primary cell cultures, CsA induced a marked increment of total collagen synthesis. This was highest for renal fibroblasts (+330% hFib, +110% rFib), followed by rMC (+170%), hMC (+100%), and human tubular epithelia (+130%). At the highest dosage of CsA (5 ng/ml), this corresponded to a net increment in collagen III synthesis by both hMC and hFib (+150% and +300%), while collagen I and collagen IV were unaffected. On hMC, CsA also induced a maximal increase in a component with 70 kDa molecular mass, which was produced only in a negligible amount by these cells in standard conditions. This low molecular mass collagen was tentatively characterized by cyanogen-bromide digestion and fingerprint analysis as a novel molecule showing a peptide composition without comparable features for any reported collagen map. NRK49F and NRK52E cell lines were not affected by CsA. Taken together, these observations demonstrate that CsA is able to induce the synthesis of specific collagens, mainly of collagen III and of a 70-kDa component, by various renal cells in cultures. Since the same cells are the renal site of production of extracellular matrix in pathological conditions, we hypothesize that this effect is a relevant one in the pathogenesis of glomerulosclerosis/interstitial fibrosis during protracted therapies with CsA.

Animals↗

Selective enhancement by cyclosporin A of collagen expression by mesangial cells 'in culture'.

Extracellular matrix deposition in mesangial areas leading to glomerulosclerosis is the major side effect of protracted therapies with cyclosporin A. In order to define any direct correlation between a chronic therapy with the drug and glomerulosclerosis we studied the effects of cyclosporin A on extracellular matrix production by human mesangial cells in culture. By immunoprecipitation and sodium dodecyl sulfate polyacrylamide electrophoresis (SDS-PAGE) of [3H]proline-labeled mesangial cells it was found that cyclosporin A induced a dose-dependent increase in total collagen synthesis (+80%), corresponding to a net increment in collagen III (+120%) and in a component with 70 kDa molecular weight which was produced only in negligible amount by mesangial cells under standard conditions. This collagen was characterized by cyanogen bromide digestion and finger print analysis as a novel molecule, not sharing any peptide composition similarities with the already characterized collagens. These data indicate that cyclosporin A stimulates the synthesis by mesangial cells of selected collagens, mainly collagen III and a new low molecular weight component. This mechanism may be relevant in cyclosporin A induced glomerulosclerosis occurring during protracted therapies with the drug.

Antibody Specificity↗

Purification of alpha-1-antitrypsin monomer by preparative electrophoresis.

Alfa-1-antitrypsin (alpha 1AT) was purified by pseudoligand chromatography and preparative electrophoresis from the serum of a patient with alpha 1AT deficiency. The combination of the two techniques yielded a high grade batch of alpha 1AT monomer and this was successfully used to purify the protein from the serum of PiMIM1, PiMIM2, and PiZZ phenotype subjects. This procedure should facilitate structural studies of alpha 1AT variants susceptible to intracellular accumulation.

Chromatography↗

Intact renal albumin downregulates the extracellular matrix expression by mesangial cells and renal fibroblasts in vitro.

Chronic Adriamycin (ADR) nephropathy is invariably associated with glomerulosclerosis and tubulointerstitial fibrosis. To investigate the hypothesis that severe albuminuria plays a role in the pathogenesis of both processes, we purified the protein from conditioned media of rats with advanced ADR nephropathy and tested the fibrogenic effect on renal fibroblasts and mesangial cells in vitro. Albumin was purified by pseudoligand chromatography and was identified on the basis of the NH2 amino terminus. Furthermore, it was differentiated from the urinary homologue, being more anionic and more fatted while maintaining a conserved peptide composition. The exposure of renal cells to renal albumin induced a dose-dependent reduction in collagen synthesis with a half-maximal decrease with 0.2 microgram/ml of albumin. With renal albumin levels of 0.4 microgram/ml the collagen incorporation of 3H-proline by mesangial cells and renal fibroblasts (primary cultures and cell lines) was reduced by 76, 81 and 45% respectively. A qualitative analysis by SDS-polyacrylamide electrophoresis and immunoprecipitation of radiolabelled collagens demonstrated a drastic and unselective decrease in all major collagens synthesized by mesangial cells and fibroblasts, including type I, III and V. Previous immunoprecipitation of the protein with anti-rat albumin antibodies completely reversed this phenomenon. Finally, albumin purified from urines of rats with ADR nephropathy downregulated the synthesis by renal cells of the same collagens but this effect was less evident compared to renal albumin. These findings demonstrate that renal albumin drastically reduces the synthesis of collagens by mesangial cells and renal fibroblasts, this effect being most evident on those components which constitute the extracellular matrix in glomerulosclerosis and interstitial fibrosis.(ABSTRACT TRUNCATED AT 250 WORDS)

Albumins↗

Muscle and plasma amino acids and nutritional status in kidney-transplanted children.

Nutritional status, assessed by anthropometric and biochemical methods, protein and amino-acid (AA) composition and muscle water were evaluated in 11 kidney transplanted children and in a control group of 10 children with normal renal function who were undergoing elective surgery. Samples of the rectus abdominis muscle were taken when surgery was performed in the control children and when the peritoneal catheter was removed in the transplanted children. The mean time from the transplantation to the study time was 97 +/- 14 days (range 72-114 days). Height was reduced in the transplanted children compared to the controls but skinfold thickness, arm muscle circumference and serum proteins (total protein, albumin, transferrin, pseudocholinesterase) were normal. The body mass index was over the 50 degree percentile in nine of the eleven children. The muscle contents of total, extracellular, and intracellular water, alkali-soluble protein (ASP), DNA and the ASP/DNA ratio were not significantly different in transplanted children from those in the controls. Plasma leucine and taurine levels were significantly decreased, whereas plasma citrulline and alanine levels and the glycine/serine ratio were increased. Muscle threonine, alanine+taurine, glycine and aspartic acid levels as well as the glycine/serine ratio were increased in the transplanted children. Transplanted children show an almost normal muscle AA profile and a plasma AA pattern that seems to be related to the prednisone therapy.

Adolescent↗

[Intraparenchymal renal Doppler: the indirect signs of renal artery stenosis in native and transplanted kidneys in childhood].

Ultrasonography is currently the method of choice to examine the pediatric patient because it is widely available, noninvasive and inexpensive. Particularly, Doppler US is the method of choice to study renal artery stenoses, which are among the most frequent causes of arterial hypertension in children, in both renal allografts and native kidneys. This study was aimed at investigating the value of the indirect signs of stenosis observed during the assessment of intrarenal vessels--i.e., changes in the waveform, resistive index and acceleration index. We examined 63 renal allograft recipients and a 12-year-old boy with a native kidney and arterial hypertension. In all cases the Doppler curves of the intrarenal vessels were studied both qualitatively and quantitatively. In this paper we report on 5 cases (4 allografts and 1 native kidney) with major waveform changes in the downstream renal circulation. Our findings confirmed the resistive index and the acceleration index measured with Doppler US in the intrarenal vessels to be major diagnostic tools in renal artery stenoses in the pediatric patient when the renal arteries are difficult to assess. However, the technique exhibits some limitations and allows an unquestionable diagnosis only in severe stenoses.

Adolescent↗