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Biomedical subjects

A Michaud

Publications and source records attributed to A Michaud.

At least 73 records · Page 4Linked to original sources

Mechanism of action of a new antialdosterone compound, prorenone.

Two new aldosterone antagonists, K-prorenoate [potassium 3(17 beta-hydroxy-6 beta, 7 beta-methylen-3-oxo-4-androsten-17 alpha-yl)propionate] and prorenone [3(17 beta-hydroxy-6 beta, 7 beta-methylen-3-oxo-4-androsten-17 alpha-yl) propionic acid gamma-lactone], its lactonic form, were studied in rat kidney using in vitro systems. Study of [3H]prorenone binding by a recently developed computer method indicated a high affinity, low capacity class of sites which are, seemingly, mineralocorticoid receptors. In competition experiments performed on [3H]aldosterone- and [3H]dexamethasone-binding sites, prorenone appeared to be a good competitor for mineralocorticoid-binding sites and a poor competitor for glucocorticoid-binding sites. The specificity of this molecule was further confirmed by its poor ability to displace [3H]dihydrotestosterone from rat prostate androgenic receptors compared to spironolactone [3-(3-oxo-7 alpha-acetylthio-17 beta-hydroxy-4-androsten-17 alpha-yl) propionic acid gamma-lactone]. In the same experiments, K-prorenoate demonstrated a very low affinity for the two types of receptors. The behavior of [3H]prorenone cytosolic complex was also studied in kidney mince experiments, which showed that the [3H]prorenone complex was not able to translocate into the nucleus. Prorenone inhibited the binding of [3H]aldosterone to the receptor and, consequently, the nuclear binding of aldosterone was not observed.

Aldosterone↗

Tritiated 9alpha-fluorocortisol metabolism and binding in rat kidney.

Metabolism of 9alpha-fluorocortisol (9alpha-F) has been studied in rat kidney slices, homogenate, and in the isolated perfused kidney. These studies show that the rate of 9alpha-F metabolism varies depending upon the experimental conditions. The major metabolite formed, identified by mass spectrometry, is 20(xi)-dihydro-9alpha-fluorocortisol. The kidney slice experiments show that only 3H-9alpha-F and none of the metabolites bind to cytosolic receptors. In competition experiments performed with tritiated and unlabeled 9alpha-fluorocortisol, aldosterone (A), dexamethasone (DM) and triamcinolone acetonide (TA), 9alpha-F was found to bind to mineralocorticoid receptors with a lower affinity than A but also to glucocorticoid receptors with a higher affinity than A. The Scatchard plot analysis indicated that 3H-9alpha-F is characterized by KD : 8.6 X 10(-9)M and N : 1.9 x 10(-13)moles/mg of protein. In conclusion it is felt that 9alpha-F would not be a better "marker" than aldosterone for the renal mineralocorticoid receptors.

Adrenalectomy↗

Antiandrogenic effect of spirolactones: mechanism of action.

Spirolactones are aldosterone antagonists which inhibit the binding of aldosterone to the renal mineralocorticoid receptor. These molecules also possess an antiandrogenic effect which could be due, among other possibilities, to a peripheral antagonism of androgens. This hypothesis has been tested in the present study. From in vivo experiments, spironolactone K+ canrenoate appear to inhibit the binding of [3H]5alpha-dihydrotestosterone [3H]DHT to the cytosolic and nuclear receptor of the rat ventral prostate. The doses used are in the same range as those used for demonstrating the antimineralocorticoid effect of these molecules. In vitro incubations and in vitro displacement studies show that spironolactone and K+ canrenoate are respectively about 20 and 100 times less effective than DHT in displacing 50 percent of 5 times 10- minus 10 M [3H]DHT from its receptor. Spirolactones are also able to compete with [3H]DHT for the specific 8 S cytosolic receptor. Neither spironolactone nor K+ canrenoate decreases prostatic 5alpha-reductase activity, even at a concentration as high as 10- minus 5 M. It seems likely that spirolactones, besides their action on testosterone biosynthesis, exert their antiandrogenic activity via a peripheral androgen antagonism.

3-Oxo-5-alpha-Steroid 4-Dehydrogenase↗