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Biomedical subjects

E Gaggiotti

Publications and source records attributed to E Gaggiotti.

27 records · Page 2Linked to original sources

Morphology of the peritoneal membrane during continuous ambulatory peritoneal dialysis.

In the last 3 years we performed 52 peritoneal biopsies (PB) in 31 patients on continuous ambulatory peritoneal dialysis (CAPD). Samples of the parietal peritoneum were obtained either during insertion of the catheter or while it was being repositioned or removed. PB was performed in 13 patients before initiating CAPD and in 27 after 7-49 months of CAPD while 7 had PB during peritonitis, and, again, in 5 of these cases, PB was repeated after 1-4 months for light, electron transmission, and scanning electron microscopy. BP after CAPD showed that mesothelial cells were irregularly spaced, and at times we observed alterations in the cellular structure. Rarely were these cells degenerating, while rarefaction and in many cases complete absence of microvilli were observed. In some cases the submesothelial layers showed rarefaction of the connective tissue and sclerosis. During peritonitis, PB showed more alterations with marked degeneration and in some cases necrosis of the mesothelium and alterations of connective tissue. PB performed some months after peritonitis showed only a partial regression of these alterations and sclerotic patches, and no microvilli were noted in the mesothelium.

Ascitic Fluid↗

Phosphatidylcholine and peritoneal transport during peritoneal dialysis.

Peritoneal effluent of patients on chronic ambulatory peritoneal dialysis (CAPD) contains a surface-active material (SAM) made up of phospholipids and showing phosphatidylcholine on thin-layer chromatography. This substance drastically lowers surface tension, helps to repel water and has a lubricating effect. The presence of stratified phosphatidylcholine on the peritoneum might narrow the stagnant dialysate fluid layer and situations which can alter the quantity or composition of SAM may affect peritoneal transport and also, perhaps, the formation of adherences. This led us to verify, experimentally, the presence of phospholipids in basal conditions, after CAPD and during peritonitis and to check if addition of phosphatidylcholine to dialysis liquid is able to modify water transport in patients with low ultrafiltration and peritonitis. Phospholipids in the dialysis effluent of patients who have been on CAPD for a long time are lower than observed in the first days of peritoneal dialysis. A more drastic, significant decrease in phospholipids was observed in patients with low ultrafiltration and in patients with peritonitis. Mean ultrafiltration significantly increases in patients with low ultrafiltration and in those with peritonitis during dialysis exchanges containing phosphatidylcholine (50 mg/l) indicating that the latter is able to restore normal physiological conditions.

Biological Transport↗

A new technique for insertion of the Tenckhoff peritoneal dialysis catheter.

To eliminate the discomfort caused by surgical methods and the risks involved using the trocar, for 1 year we have been using a new technique for insertion of peritoneal catheters (PC). We devised a steel instrument, vaguely resembling a rhinoscope, composed of two semicones. The handles are connected by a screw to permit dilatation of the semicones. After local anesthesia, an introducer needle is inserted into the peritoneal cavity. A guide-wire is passed through the needle which is then withdrawn and our instrument is placed around the guide and gently pushed into the peritoneal cavity. The guide is now removed and squeezing the handles of the instrument we introduce the PC up to 2 cm beyond the first Dacron cuff. When the catheter is in place, the instrument is removed and a subcutaneous tunnel may be made. We have used this method for 25 patients. 14 were new cases while 11 underwent PC repositioning. For all patients this new method proved to be excellent with practically no leakage and PC were utilized immediately or after only 24 h. We emphasize the brief time for PC insertion, the minimum discomfort and the simplicity of the technique.

Catheterization↗

[Alkaptonuria with ochronosis and monoclonal gammopathy].

A case of alkaptonuria with ochronosis is described. It is suggested that such cases are not so much rare as unobserved. Their aetiology is to be sought in a metabolic error, though the pathogenesis is not clear. The syndrome is of interest because ochronosis, wich is the articular manifestation, is one of the few rheumatological affections with a certain aetiology. The case described is unusual on account of the presence of monoclonal gammopathy. Since the presence of myeloma and macroglobulinaemia could be excluded, an immunological relation was sought between the alkaptonuria and the particular serological picture.

Adult↗

Biocompatibility of a peritoneal dialysis solution with amino acids: histological evaluation in the rabbit.

OBJECTIVE: To determine the biocompatibility of a peritoneal dialysis (PD) solution containing amino acids compared to PD solutions containing glucose. DESIGN: The biocompatibility of three dialysis solutions containing 1.1% amino acids, 1.36% glucose, and 3.86% glucose, respectively, was evaluated in vivo in rabbits. METHODS: After 60 days of PD, peritoneal histological changes in rabbits were investigated by light and transmission electron microscopy. The parameters investigated were: (1) mesothelial damage; (2) submesothelial edema; (3) submesothelial cell infiltration; (4) submesothelial fibrosis; and (5) vascular alterations. Semiquantitative evaluations were performed for all the above alterations; quantitative morphometric evaluation was performed for mesothelial damage (cubic transformation of the mesothelium, areas devoid of mesothelium, submesothelial edema) and thickness of peritoneal arteriole walls. RESULTS: (1) Mesothelial damage was practically nonexistent in rabbits dialyzed with the solution containing amino acids, and intermediate and severe with low-glucose and high-glucose solutions, respectively. Both controls and rabbits dialyzed with amino acid solution showed flat continuous mesothelium; rabbits dialyzed with low-glucose solution showed cubic continuous mesothelium; and rabbits dialyzed with high-glucose solution showed cubic discontinuous mesothelium. Cytopathic mesothelial effects were slight with the solution containing amino acids and severe with both the low- and high-glucose solutions. Duplication and thickening of mesothelial basement membrane were never observed. (2) Submesothelial edema showed a worsening trend from controls to rabbits dialyzed with solution containing amino acids, low glucose, and high glucose. (3) No difference in submesothelial infiltration was found between groups. (4) Submesothelial fibrosis was never observed. (5) Vascular alterations were never observed. CONCLUSION: These results are evidence that PD solution with amino acids is more biocompatible than high- and also low-glucose solutions.

Amino Acids↗