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Biomedical subjects

R Alric

Publications and source records attributed to R Alric.

At least 37 records · Page 2Linked to original sources

An electrocapillary flowmeter usable as a quantitative sweat detector.

A quantitative sweat detector was devised as part of a noninvasive portable warning apparatus intended for the surveillance of unstable insulin-treated diabetics who may have nocturnal hypoglycemic attacks. The sweat sensor consists of a pair of electrodes embedded in a porous material that is infiltrated under capillary drive by sweat as it oozes out of the skin. It was shown that the detector is almost insensitive to insensible perspiration but undergoes graded variation of impedance as it is filled with sweat. It thus works as a transducer of sweat flux (flow rate through unit skin area) as long as the porous material is not saturated. This device has already proved useful as a hypogycemic alarm and could certainly be used for the measurement of sweating rate in place of more cumbersome devices involving ventilated chambers.

Adult↗

Is lactate involved in phenformin-induced insulin secretion?

Phenformin at high doses (10 mg/l, 50 mg/l, and 100 mg/l) increased the insulin and lactate output rates by the isolated perfused rat pancreas. Glucagon secretion was not modified. There was a statistically significant correlation between the increase in insulin and lactate output rates induced by phenformin. Intra-pancreatic L (+) lactate concentrations induced by phenformin were in the range of sodium L (+) lactate concentrations which experimentally stimulated insulin secretion by the same preparation. Thiamin pyrophosphate and sodium dichloroacetate, which promote the aerobic metabolism of pyruvate, opposed the phenoformin induced increase in lactate output by the isolated perfused rat pancreas and provoked as well a decrease in insulin release. These results suggest that the increase in insulin secretion following the administration of phenformin at high concentrations can be explained, to a large extent, by the increase in the production of lactate ions.

Animals↗

[Non-saturable cooperative binding of tolbutamide to rat endocrine pancreas. Criteria of specificity].

The binding of 3H-tolbutamide to isolated islets, which shows a cooperative non-saturable pattern up to about 5 X 10(-5) M, was confirmed. Binding to exocrine pancreatic tissue shows much less cooperativity. Among congeners of tolbutamide, unlabelled carbutamide and chlorpropamide in isodynamic concentrations, as well as diazoxide in an exactly antagonistic amount, behave like tolbutamide 5 X 10(-5) M itselt by cancelling cooperativity when added to the labelled drug. Glipizide and glibenclamide do not.

Animals↗

[Correlation between lactate output and insulin secretion of the isolated perfused rat pancreas under the influence of high concentrations of phenformin].

On the isolated perfused rat pancreas phenformin at high concentrations (10 mg/1, 50 mg/1 and 100 mg/1) provokes an increase of the insulin and lactate output in the effluent liquid. In no case is glucagon secretion modified by this substance. There exists a statistically significant correlations between the increase in insulin output and the increase in lactate output induced by phenformin.

Animals↗

[Corneal and lens deposits due to treatment by phenothiazine type neuroleptics].

The authors have studied the corneal and lens lesions which appeared following a prolonged treatment by phenothiazines. They examined 186 patients: 147 took phenothiazines of which 35 of them presented anterior segment alterations. It seems that all phenothiazines can be held responsible for the apparition of these lesions. At this point the authors evaluated the global dose of the various phenothiazines which were administered. The threshold at which the association of these lesions seem to appear, seems to be situated around 300 gr. The total quantity of phenothiazines which are absorbed seems to be a good measure of the risk of ocular toxicity. In the case of one patient they observed that his visual keenness was lowered due to the importance of his corneal and lens lesions.

Antipsychotic Agents↗

[Experimental study of glipizide. A comparison with other hypoglycemic sulfonamides (author's transl)].

Glipizide is a new hypoglycaemic sulphonylurea. In this work we have studied experimentally the hypoglycaemic activity of this drug, its insulin secretory effect and its action on the development of the islets of Langerhans. Studies in the dog: In the normal conscious dog the hypoglycaemic effect of the drug was studied when increasing doses (0,03 mg/kg, 0,05 mg/kg, 0,07 mg/kg and 0,09 mg/kg) were injected intravenously. The hypoglycaemic effect of the drug occurred rapidly, reaching a maximum in about 30 minutes. The relative potency of glipizide was determined in comparison with tolbutamide. Under our experimental conditions, glipizide proved to be on average 99 times more active than tolbutamide when the doses were evaruated by weight; when the doses were expressed in moles it was 163 times more active. Plasma insulin levels manifested an increase at the first minute. This rose rapidly to a maximum at 5 to 15 minutes after the injection. Following this, insulinemia decreased and the values recorded at 60 minutes were about the same as the starting values. There is a linear relation between the logarithm of the dose and the area under the insulin curve measured for the first sixty minutes. After oral administration to the normal dog, glipizide (081 mg/kg and 1mg/kg) provoked a hypoglycemia manifested after a 30 to 60 minutes latent period. With the dose of 1 mg/kg the maximal effect on blood glucose level was reached between 1,30 and 3 hours, depending on the animal. Plasma insulin levels also increased after a latent period which varied from one animal to another. The dogs presenting the earliest increase in insulinemia were those in which glycemia drops most rapidly. Comparison with other sulfonamides (glibenclamide, glisoxepide and tolbutamide) showed that the hypoglycemic action of glipzide was very similar to that of glisoxepide and that it occurred much earlier than with glibenclamide. The insulin secretory effect of glipizide also occurred much earlier than that of glibenclamide, manifesting itself as early as that of glisoxepide and tolbutamide. Studies on the isolated rat pancreas: On the isolated rat pancreas perfused with Krebs-Ringer solution containing glucose (1,5 g/l), glipizide (10 mug/I) considerably increased the amount of secreted insulin. The stimulation of insulin secretion occurred rapidly and persisted powerfully during the entire duration of the infusion. It faded out progressively after stopping the infusion and the secretion remained higher than the control secretion during the following 45 minutes of the experiment. A concentration as low as 0,5 mug/I provoked a distinct increase of insulin secretion. Studies on the development of the islets of langerhans in the mouse: The prolonged administration of glipizide (100 mg/kg daily for 35 days) increased the "insular index", which is directly proportional to the islet weight, by 27%. Therefore this product possesses betacytotrophic activity...

Administration, Oral↗