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Biomedical subjects

M Normand

Publications and source records attributed to M Normand.

At least 37 records · Page 2Linked to original sources

[Cell mediated immunity in a mercury nephrotic syndrome (author's transl)].

A case of extramembranous glomerulonephritis seen in a patient in contact with mercury diodide is reported. The responsibility of mercury in this occurrence of this nephropathy is confirmed by positive tests exploring cell mediated immunity. The other possible actions of mercury are described: modifications in renal tubular antigen, or in a tissue or serum protein, with antibody production and secondary apparition of immune complexes which deposit in the glomerules.

Adult↗

Adrenocortical responses to adrenocorticotrophin in the rat.

The time course of plasma adrenocorticotrophin (ACTH), adrenal cyclic AMP, adrenal corticosterone, and plasma corticosterone was measured in male Sprague-Dawley rats whose endogenous release of ACTH had been blocked (1) following rapid injections of 100 and 300 ng ACTH/100 g body weight, i.v., (2) during prolonged infusions at rates of 1, 2, and 4 ng ACTH/min per 100 g body weight, and (3) after termination of 30-min infusions at rates extending from 0.06 to 8 ng ACTH/min per 100 g body weight. Following injections, the time course of the variables is similar to the one simulated from our models of adrenal cortical secretion, including the simulation of an intermediate variable of our models of the adrenal cortex cell which was presumed to correspond to cyclic AMP. However, during prolonged infusions there is an unexpected overshoot of adrenal cyclic AMP content whereas adrenal and plasma corticosterone concentrations rise to a steady-state value without overshoot. The total amount of cyclic AMP gradually increases following the three increasing infusion rates of ACTH whereas similar levels of plasma corticosterone concentrations are reached at steady state; therefore the saturation of the adrenal cortical secretion is due to a step ulterior to cyclic AMP formation in the steroidogenesis. After 30-min infusions, plasma corticosterone concentration reaches its maximal value following a rate of ACTH input which evokes only a 4-fold increase in adrenal cyclic AMP content; however, there is a 250-fold increase of adrenal cyclic AMP with respect to control value following the higher rates of infusion of ACTH.

Adrenal Cortex↗

Distribution and metabolism of adrenocorticotropin in the rat.

The time course of plasma bioactive adrenocorticotropin (ACTH) concentrations measured following two rapid injections of the hormone at doses of 7.5 and 22.5 mU/100 g, iv, and one infusion over a period of 80 min at a rate of 1.3 mU/min per 100 g, to male Sprague-Dawley rats whose endogenous release of ACTH had been blocked, leads to the conclusion that the hormone is distributed in two compartments. Indeed, the rapid fall of plasma ACTH concentrations in the early minutes following either the injections or the stop of the infusion is followed by a much slower phase. There is no significant difference between the measurements and the two-compartment model outputs. The model represents, on the average, the mean values of the measurements plus or minus 1 standard error for the single injections and plus or minus 1.2 standard error for the infusion.

Adrenocorticotropic Hormone↗

[Catheterisation of the internal jugular vein for parenteral nutrition (author's transl)].

The technique consists of surgical exposure of the vein, its isolation by two threads and the introduction of a soft prethoracic exit. This technique avoids the complications inherent in any blind puncture of a large vessel. By virtue of the type of catheter (soft silicone) and the long subcutaneous course. It may be left in place for more than a month.

Catheterization↗

Metabolic clearance rate of adrenocorticotropin in the rat.

The metabolic clearance rate (MCR) of adrenocorticotropin (ACTH) was estimated after the intravenous infusion of graded rates of the hormone (40-2560 muU/min per 100 g body weight) in rats pretreated with chlorpromazine, morphine, and Nembutal, a preparation which proved effective in blocking endogenous ACTH release. The hormone was infused over a period of 45 min, at which time the plasma ACTH concentration had reached a steady state. A specific and sensitive bioassay, based on the corticosterone production of dispersed adrenal cells, was used to measure the plasma ACTH concentration. With increasing infusion rates of ACTH, a threefold decrease in the MCR of ACTH was observed. Previous studies of our group have shown that the MCR of corticosterone increases as a function of the infusion rate of the steroid. It appears, therefore, that the metabolism of these two hormonal links of the hypothalamo-pituitary-adrenocortical axis vary in opposite fashions as a function of the secretion rate of the hormone.

Adrenocorticotropic Hormone↗

[Adrenocortical responses to ACTH (author's transl)].

To characterize by a mathematical model the dynamics of adrenocortical responses to ACTH, the concentration of plasma corticosterone was measured following a series of injections and perfusions of ACTH to dexamethasone-treated male rats. A similar slope was observed during the rise of plasma corticosterone following graded pulse inputs, and the steady-state corticosterone secretion rate was shown to increase proportionally to the perfusion rate of ACTH up to saturation corresponding to maximal secretion. The data will be used, concurrently with our model of the dynamics of plasma cortiscosterone, for the identification of a mathematical model of the adrenocortical response to ACTH.

Adrenal Cortex↗

Feedback inhibition of adrenocorticotropin release by corticosterone infusions in the adrenalectomized rat.

Advantage was taken of a specific and sensitive bioassay for rat plasma adrenocorticotropin (ACTH) based on the dispersion of rat adrenal cells with trysin, to investigate the relationship between plasma corticosterone concentration and inhibition of ACTH release under steady-state conditions achieved by graded rates (0-5.12 mug/min per 100 g body weight) of intravenous infusion of the steroid for 45 min in 28-day adrenalectomized rats. In contrast to prior reports involving suppression of stress-induced ACTH release, the inhibitory effect of corticosterone was shown, under our experimental conditions, to be exerted also on the basal rate of ACTH secretion. Indeed, a slight though not significant decrease of plasma ACTH concentration was observed with the corticosterone infusion rate of 0.64 mg/min per 100 g body weight, and further progressive and highly significant drops in concentration were recorded for infusion rates of 2.56 and 5.12 mg/min per 100 g body weight. An increase of the metabolic clearance rate of corticosterone, observed as a function of the infusion rate, was ascribed to saturation by the steroid of the plasma transcortin binding sites.

Adrenal Cortex↗

Relationship between ACTH release and corticosterone binding by the receptor sites of the adenohypophysis and dorsal hippocampus following infusion of corticosterone at a constant rate in the adrenalectomized rat.

The amount of corticosterone bound to proteins in the adenohypophysis and dorsal hippocampus was studied concurrently with the plasma ACTH concentration in 4-week adrenalectomized male rats under steady-state conditions achieved by infusing the steroid at a constant rate for 45 min. Corticosterone binding was measured by gel chromatography on Sephadex LH-20, using a TE buffer containing 0.4 m NaCl. No saturation was observed in whole homogenates and supernatants with increasing plasma corticosterone concentrations. However, corticosterone binding by the pituitary and by one of two types of hippocampal receptors evidenced saturation within our range of corticosterone infusion rates, indeed. Scatchard plots allowed us to distinguish two types of binding sites in the hippocampus. The first, saturated at a low corticosterone concentration has an association constant of 3.0 times 10-8 M-1 with a number of binding sites estimated at 150 times 10- minus 15 mol/mg protein, whereas the second is associated with non-specific binding. The adenohypophysis shows only one kind of binding site with an association constant of 3.6 times 10-8 m- minus 1 and a number of sites estimated at 989 times 10- minus 15 mol/mg protein. A suggestive relationship was observed between ACTH inhibition by corticosterone and saturation of the pituitary binding sites. Our data are consistent with the possible involvement of corticosterone binding by specific sites in the negative feedback regulation of ACTH release.

Adrenalectomy↗