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Biomedical subjects

M Uechi

Publications and source records attributed to M Uechi.

At least 37 records · Page 2Linked to original sources

Peritoneal dialysis using a recycling system in dogs.

In this study, Recirculation Peritoneal Dialysis (RPD) apparatus using a pump to circulate the dialysate was devised and its dialysis efficiency was investigated. In the experiment, 15 mongrel dogs with body weights of 6.6 +/- 0.7 kg were used. The surgery to induce azotemia was performed on the dogs, a disk catheter for drainage was placed between the liver and diaphragm, and a straight catheter for infusion was placed on the abdominal side of the bladder. RPD was conducted using 2 l of dialysate containing 1.3% glucose, and the dialysate was circulated by a pump through the peritoneal cavity and the dialysate chamber at the circulation rates of 30, 60, 90 and 120 ml/min. RPD was conducted for 3 hr and the clearances of urea nitrogen, creatinine, inorganic phosphorus and potassium were recorded every hour. The clearances in RPD became higher with an increase in the circulation rate. Although RPD requires two catheters in the peritoneal cavity, it has no appreciable technical difficulty in handling and is considered to be easier than hemodialysis. RPD enabled higher dialysis efficiency to be achieved in a short time compared with conventional peritoneal dialysis. It seems reasonable to conclude that RPD is a useful new dialysis technique for animals.

Animals

Machine perfusion of isolated kidney at 37 degrees C using pyridoxalated hemoglobin-polyoxyethylene (PHP) solution, UW solution and its combination.

To preserve isolated kidney normothermically, PHP containing UW components were evaluated as perfusates. Kidneys were flushed out by Lactate Ringer solution immediately after isolation from mongrel dogs, and then connected to the perfusion circuit which consists of a preservation box, a reservoir of perfusate, a membrane oxygenator and a drive unit. PHP containing 140 mEq/l of Na+ and 4 mEq/l of K+ (PHP(E)), UW solution (UW) and UW components added PHP(E) were prepared and adjusted at pH 7.4 prior to use. Temperature and perfusion pressure were controlled at 37 degrees C and 100 mmHg, respectively. During 12 hour perfusion, remarkable changes in pH were seen in UW group and PHP group while higher oxygen consumption was noted in PHP(E)+UW group than that in PHP(E) group. The histological findings showed moderate damages of tubular epithelial cells and maintaining normal glomerular structure in PHP(E)+UW while severe damage of both tubulus in UW group were seen. There was no edematous degeneration in both UW and PHP(E)+UW groups, however, it was seen in PHP(E) alone. It was suggested that components of UW solution have positive effect on normothermic machine perfusion with PHP(E) solution.

Adenosine