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Biomedical subjects

A Delage

Publications and source records attributed to A Delage.

23 records · Page 2Linked to original sources

The use of the artificial pancreas in uremic diabetic patients.

Maintenance hemodialysis and renal transplantation are increasingly used for treating diabetic patients with end-stage renal failure. The use of the artificial pancreas is able to prevent large blood glucose fluctuations in these patients with atherosclerosis, advanced retinopathy or neuropathy in which hyper- and hypoglycemia are potentially deleterious. For this purpose, we have developed and are utilizing an artificial pancreas easily utilizable without special training by the staff of a dialysis unit. This artificial pancreas uses a polarographic glucose electrode with a fast response time (45 to 90 seconds), a terminal display for operator communication, and a continuous digital and analogyl display for control of the running operation. There is also a printer to display in tabular and graphical form the values at any time during the operation. In this preliminary study, 7 patients have been studied: five under repetitive hemodialysis for four hours, 3 times a week; one treated by peritoneal dialysis for 12 hours, twice a week and one controlled during, and 48 hours after, renal transplantation. The macroscopic pancreas normalizes blood glucose under these circumstances, helps in a better understanding of blood glucose homeostasis in uremic patients under dialysis, leads to a more precise evaluation of insulin needs, may help to improve the nutritional status of the patients, and has an educational value for the patient and the medical staff.

Artificial Organs↗

Plasma insulin and C-peptide levels during continuous subcutaneous insulin infusion.

A study was performed to estimate the absorption kinetics of insulin infused subcutaneously. Four insulin-dependent diabetic subjects had their insulin pumped through a subcutaneously implanted fine polyethylene catheter at a constant rate of 5.0 +/- 0.3 ml/h but at two different insulin concentrations: 218 mU/ml between meals, and 2400 mU/ml at the start of breakfast, lunch, and dinner (lasting 20, 30, and 30 min, respectively). The amount (40 U/day) and distribution of insulin delivered was identical in the four patients in order to facilitate comparison between the subjects. No attempt was made to normalize their blood glucose during the study period. A study of the kinetics of insulin absorption was made by assaying plasma insulin levels; lack of plasma anti-insulin antibodies was verified; plasma C-peptide levels were measured and were far below values observed in the fed state in nondiabetic patients. The mean maximum insulin level reached after switching from low to high concentration insulin was observed 87 +/- 2 min after breakfast, 117 +/- 22 min after lunch, and 125 +/- 20 min after dinner. Differences observed are not significant. These values are similar to those observed after subcutaneous injection of 40 U/ml Regular insulin as a single bolus. After switching from high to low concentration, plasma insulin levels did not return to their basal values before the third or fourth hour. Subcutaneous insulin infusion could be a safe and easy way of insulin administration in an open-loop system; however, this method does not seem to be suitable for a closed-loop system.

Blood Glucose↗