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F Mantero

Publications and source records attributed to F Mantero.

At least 73 records · Page 4Linked to original sources

Angiotensin II receptors in cortical and medullary adrenal tumors.

Several pieces of evidences suggest that angiotensin II (Ang II) has mitogenic effects, and a link between Ang II receptors and adrenal tumors can be suggested. In various adrenal tumors, aldosterone-producing adenoma (APA), Cushing's adrenal adenomas (Cush), pheochromocytomas (Pheo), and adrenal carcinomas, we studied the density, affinity, and subtype of Ang II receptors. Ang II binding was tested in cell membrane homogenates. [125I]Ang II was used as ligand, and Losartan and CGP 42112 were used as selective Ang II type 1 and type 2 antagonists, respectively. In APA, Ang II receptor density was 178.5 +/- 82.7 fmol/mg: however, due to the high degree of variability, the receptor density was not significantly higher than that in nontumorous adrenal cortex (59.3 +/- 8.4 fmol/mg). In Cush, the receptor density (27.6 +/- 8.2 fmol/mg; P < 0.05) was significantly lower than that in controls, whereas in Pheo and cortical carcinoma, Ang II binding was very low and in several cases almost undetectable. There was no remarkable difference in the Ang II receptor affinity among all tissues tested. The ratio between type 1 and type 2 Ang II receptors showed a large prevalence of type 1 in controls, APA, and three cases of Cush; in two cases of Cush, this ratio was reversed. In conclusion, our data indicate that Ang II receptors are normally expressed in APA and can also be detected in Cush, whereas they have a very low density in Pheo and adrenal carcinoma. Therefore, Ang II receptors are not involved in the lack of response to Ang II that is characteristic of APA; additionally, a reduction of Ang II receptors can be associated with dedifferentiation or malignancy of adrenal tumors. Further investigation of the expression and functional characterization of Ang II receptors is required to better clarify their possible role in adrenal tumorigenesis.

Adrenal Cortex↗

Apparent mineralocorticoid excess: type I and type II.

The syndrome of apparent mineralocorticoid excess (AME) is a heritable form of hypertension due to an inborn error of cortisol metabolism and is characterized by hypokalemia and low renin levels despite subnormal or normal levels of aldosterone and other known mineralocorticoids. The syndrome is attributable to congenital deficiency of the enzyme 11 beta-hydroxydehydrogenase (11 beta-HSD), which converts cortisol (F) to biologically inactive cortisone. This results in a prolonged half-life of F, which acts at the kidney level as a potent mineralocorticoid (MC). In fact, both F and aldosterone have similar affinities in vitro for type I MC receptor (MR), and 11 beta-HSD activity protects the MR in vivo from the higher circulating levels of F. The biochemical marker of this disorder is an increased ratio of tetrahydrocortisol (THF) + allo-THF/tetrahydrocortisone (THE) in the urine, which has been found in more than 20 patients described to date, together with evidence of a more general defect in steroid ring A reduction. Only a few cases (the so-called type II form) described in Italy differ from the classic form having a normal THF/THE ratio, but in both forms the ratio of free urinary F/E has recently been found to be similarly high. Dexamethasone is the treatment of choice but is often inadequate in long term control of high blood pressure. Acquired forms of AME are those consequent on abuse of licorice or carbenoxolone, which both inhibit 11 beta-HSD; the latter also inhibits the reverse 11-oxoreductase reaction leading to somewhat different abnormalities of urinary cortisol/cortisone. So far, two isoenzymes of 11 beta-HSD have been purified and cloned; 11 beta-HSD type 1 is NADP-dependent, abundant in liver, lung, and testis, and catalyzes both 11 beta-dehydrogenation and 11 beta-oxoreduction; no mutation in its gene was detected in patients with AME. A second NAD-dependent isoenzyme is present in kidney and placenta and catalyzes dehydrogenation only. Very recently (1995) two groups have independently demonstrated the presence of mutations in its gene, located in chromosome 16q22. New and co-workers found a point mutation in exon 6 of two affected siblings of an Iranian family, while White and co-workers in parallel studies showed point mutations or small deletions in both alleles in nine unrelated patients; importantly, expression studies showed minimal or absent activity for almost all the mutant sequences. No definite mutations have been so far identified in patients with AME type II. AME is thus the third single gene cause of human hypertension to be described, after glucocorticoid remediable aldosteronism in 1992 and Liddle's syndrome in 1994.

Child, Preschool↗

Urinary free cortisone and the assessment of 11 beta-hydroxysteroid dehydrogenase activity in man.

OBJECTIVE: Two isoforms of 11 beta-hydroxysteroid dehydrogenase (11 beta-HSD) catalyse the interconversion of cortisol to hormonally inactive cortisone; defects in the 11 beta-HSD2 isoform result in hypertension. The kidney, expressing high levels of 11 beta-HSD2, is the principal source of cortisone in man. We have validated the measurement of urinary free cortisone (UFE) excretion in normals and in patients with disorders of the pitultary-adrenal axis in an attempt to more accurately measure the activity of 11 beta-HSD2 in vivo. SUBJECTS: Forty-one normal adults, 12 normal children < 12 years of age, 15 patients with Cushing's syndrome, 12 with hypopitultarism on replacement hydrocortisone, 12 with the syndrome of apparent mineralocorticoid excess (AME) and 7 volunteers consuming liquorice. MEASUREMENTS: A complete 24-hour urine collection was analysed by gas chromatography/mass spectrometry for "A-ring' reduced cortisol and cortisone metabolites, i.e. tetrahydrocortisols (THF and allo-THF) and tetrahydrocortisone (THE). In addition, urinary free cortisol (UFF) and urinary free cortisone were quantified using deuterium-labelled internal standards. RESULTS: In normal adults and children, UFE excretion exceeded that of UFF (UFF 30.4 +/- 2.4 micrograms/24h (mean +/- SE), UFE 54.6 +/- 4.1 micrograms/24h, adults) (for conversion to nmol/24h multiply E by 2.78 and F by 2.76 respectively). Thus the normal UFF/UFE ratio was 0.54 +/- 0.05 in contrast to the (THF + allo-THF)/THE ratio of 1.21 +/- 0.06. UFE excretion was normal in hypopituitary patients on replacement hydrocortisone. Although UFE was elevated in all forms of Cushing's syndrome, the UFF/UFE ratio was grossly elevated in patients with the ectopic ACTH syndrome (14.0 +/- 6.7, n = 6). UFE was below the lower limit of the assay (< 1 microgram/24h) in most patients with the so-called type 1 variant of AME and significantly reduced in 4 patients described as having the type 2 variant of AME (10.5 +/- 3.5 micrograms/h, P < 0.05) and in 7 volunteers consuming liquorice (26.8 +/- 10.0 micrograms/24h, P < 0.01). In ectopic ACTH syndrome, AME, and liquorice ingestion the UFF/UFE ratio was more deranged than the (THF + allo-THF)/THE ratio. CONCLUSION: In normals the discrepant THF + allo-THF/ THE and UFF/UFE ratio suggests that much more of the UFE is derived from the kidney. Reduction in UFE excretion is seen following liquorice ingestion and in both variants of AME, though it is more profound in AME1. The high UFF/UFE ratio in the mineralocorticoid excess state seen in the ectopic ACTH syndrome is compatible with substrate-saturation of renal 11 beta-HSD2. The measurement of UFE and the UFF/UFE ratio is a significant advance in the analysis of human 11 beta-HSD activity in vivo; in particular, the UFF/UFE ratio appears to be a more sensitive index than the (THF + allo-THF)/THE ratio of renal 11 beta-HSD2 activity.

11-beta-Hydroxysteroid Dehydrogenases↗

TGF-beta 1 immunohistochemistry in goiter: comparison of patients with recurrence or no recurrence.

The aim of this work was to establish whether the immunohistochemical pattern for TGF-beta 1 in goiters that recur after thyroid surgery is different when compared with goiters that do not recur postoperatively. Twelve goiters, surgically removed by partial resection between 1977 and 1982, were studied. Ten years after surgery, 6 patients had recurrence of goiter or thyroid nodules (group 1); the others did not have any recurrence (group 2). The presence and location of TGF-beta 1 were evaluated a posteriori by immunohistochemistry in histological samples of the tissue that was removed. In each goiter specimen, 50 randomly selected subcapsular follicles were studied to evaluate the percentage of follicles negative or positive for TGF-beta 1 and the protein's intrathyrocyte location. In the slides of group 1, the percentage of TGF-beta 1-positive follicles was statistically (p < 0.01) greater (93.1%) than in group 2 (71.4%). No difference in the location of TGF-beta 1 was found. The authors found a greater percentage of positive follicles for the TGF-beta 1 protein in group 1 patients. In conclusion, TGF-beta 1 production in goiter is variable, time dependent, and may be a marker of active cellular proliferation due to chronic exposure to a goitrogen stimulus. Thus, the more TGF-beta 1 found, the more the cell is stimulated and, therefore, the greater the risk of relapse.

Adult↗

Enhanced expression of transforming growth factor beta1 in rat thyroid hyperplasia is thyrotropin induced and time dependent.

Forty-three 8-week-old male Wistar rats were studied to evaluate temporal changes of transforming growth factor beta1, (TGF-beta1) mRNA levels in thyroid tissue during pharmacologically induced goiter. Four rats were treated with purified bovine thyrotropin (TSH; Ambinon, 2 mU/day sc) for 7 days before being sacrificed. Thirty-one were treated with propylthiouracil (PTU), added to their drinking water at a concentration of 0.2 g%, and subsequently were sacrificed as follows: five after 1 week (PTU-1): five after 2 weeks (PTU-2); five after 4 weeks (PTU-4); five after 8 weeks (PTU-8); five after 12 weeks (PTU-12). In six rats, after 12 weeks of treatment. PTU was withdrawn for 2 months and subsequently started again in three rats which were sacrificed after 2 weeks (PTU-R); the remaining three rats were sacrificed without any further treatment (PTU-R control). Eight rats (control rats) were never treated and served as controls. After sacrifice, blood was drawn for determination of total thyroxine and the thyroid was excised and subdivided into two lobes. Northern analysis for TGF-beta1 was performed in one lobe. while histological and immunohistochemical studies were performed in the other lobe. Gene expression of TGF-beta1 was induced in TSH- and PTU-treated rats. In TSH-treated rats TGF-beta1 gene expression was less detectable than in PTU-treated rats, where it became evident after 2 weeks and remained through weeks 4-8. Gene expression of TGF-beta1 wits also seen in PTU-R rats, but not in the control and in the PTU-R control. Immunohistochemical analysis showed a different presence and location for the TGF-beta1 protein, which appears to be dependent on the time of exposure to mitogenic stimulus. In conclusion, TGF-beta1 is produced in response to both a direct (TSH by itself) and indirect (TSH induced by PTU-induced hypothyroidism) cellular proliferative stimulus and is not linked to an adaptative phenomenon secondary to hypothyroidism. The immunohistochemical location of TGF-beta1 within the thyrocytes is influenced by mitogen exposure time. A TGF-beta1 immunohistochemical evaluation may be important to define exposure time and activity of goitrogenic stimuli.

Animals↗

Angiotensin II and the adrenal.

1. Angiotensin II (AngII) evokes a variety of physiological responses in the adrenal gland. It is the major regulator of aldosterone secretion, in the medulla it enhances catecholamine release and it exerts trophic effects in the adrenal and stimulates growth factor secretion. 2. Angiotensin II acts via binding to specific receptors, located on the plasma membrane. Two pharmacologically distinct AngII receptor subtypes, type 1 (AT1) and type 2 (AT2) receptors, have been identified using the non-peptide antagonists Dup753 and PD 123177, respectively, and cDNA encoding each type have been identified. 3. In the adrenal, the AT1 receptor modulates all the known biological effects of AngII. The expression of the AT1 receptor is modulated at the mRNA and protein levels by many factors: conditions that increase levels of AngII (low sodium diet, renovascular hypertension, AngII infusion) up-regulate AT1 receptor mRNA levels and binding and increase aldosterone secretion. 4. A tissue renin-angiotensin system has been found in the adrenal, suggesting an important paracrine role for AngII in aldosterone regulation. 5. The possible involvement of AT1 receptors in human disease has been investigated by examining the role of AngII receptors in adrenal tumours. Binding and gene expression studies have shown that AngII receptors are abundantly expressed in aldosterone-producing adenoma (APA). 6. Densitometric analysis of AT1 expression in APA showed no significant differences compared with normal and non-tumorous adrenal. In addition, no mutations in the coding sequence of the AT1 receptor have been found to date in adrenal tumours.

Adenoma↗

Long-term treatment of mineralocorticoid excess syndromes.

Recognition of the pathogenesis of secondary forms of hypertension is often considered the key to appropriate choice of treatment. We here present the results of a prolonged clinical follow-up (from 1 to 20 years) of a large number of patients with mineralocorticoid excess syndromes (MES), including over 100 patients with primary aldosteronism (PA), 3 cases with dexamethasone-suppressible aldosteronism (DSA), 3 cases of apparent mineralocorticoid excess (AME) Type II, and 4 patients with 17-hydroxylase deficiency (17OHDS). The patients with PA have been divided in two subgroups, one of 69 cases followed between 1973 and 1982, and the second of 37 patients studied between 1983 and 1992; 33 further cases were not evaluated due to poor compliance. In group I, 26 patients underwent surgery (23 unilateral adenoma, 1 primary hyperplasia, 2 bilateral nodular hyperplasia); at 5 years 50% had normal blood pressure, 25% had mild hypertension and 25% had moderate to severe hypertension. Forty-three patients with either adenoma (APA) or idiopathic aldosteronism (IHA) received long-term spironolactone treatment. Among them, 13 required the addition of thiazide and/or beta-blockers, while 13 were switched to an amiloride/thiazide combination (+/- beta blockers) due to side-effects to spironolactone (gynecomastia 6/20 males, menstrual upset or breast pain in 7/23 females). In group II, 12 patients underwent surgery (11 adenoma, 1 primary hyperplasia) with a similar outcome at 3 years as in group I; 25 patients were put on either K canrenoate (11) or Ca++ channel blockers (14) with or without KCl supplementation; in 8 cases these two drugs were combined according to blood pressure levels achieved during the follow-up.(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenal Hyperplasia, Congenital↗

Morphology and function of the adrenal zona glomerulosa of transgenic rats TGR [mREN2] 27: effects of prolonged sodium restriction.

Heterozygous female transgenic rats for the murine Ren-2 gene (TGR) display a high blood pressure, together with a low kidney and high adrenal renin content. The effects of prolonged sodium restriction on the morphology and secretory activity of adrenal zona glomerulosa (ZG) of TGR and their age- and sex-matched Sprague-Dawley control rats (SDR) were investigated. Under basal conditions, TGR had a moderately hypertrophic ZG, that showed a significantly higher secretion of 18-hydroxylated (18OH) steroids: 18-hydroxy-11-deoxycorticosterone (18OH-DOC), 18-hydroxycorticosterone (18OH-B) and aldosterone (ALDO); ZG cells of TGR showed angiotensin II (AII)-binding site concentrations and ALDO secretory responses to AII similar to those of SDR ZG cells. Prolonged sodium restriction increased plasma ALDO level in both SDR and TGR, and significantly raised the volume of ZG. ZG hypertrophy was due to the increase in both the number and average volume of its parenchymal cells. The secretion of 18OH-steroids was markedly enhanced in both groups of rats; however, in TGR this rise was exclusively due to increases of 18OH-DOC and 18OH-B, while in SDR also ALDO production was enhanced. The yield of non-18OH-steroids was not affected. 11-Dehydrocorticosterone production was not changed in SDR, but doubled in TGR. ZG cells of sodium-restricted SDR and TGR displayed similar increases in their AII-binding site concentration and ALDO secretory response to AII. In conclusion, our present findings confirm that TGR possess a hypertrophic ZG and an elevated secretory capacity o 18OH-steroids, but show only slight differences in ZG and ZG-cell responses to prolonged sodium deprivation.

Animals↗

[Primary hyperaldosteronism].

The diagnosis of primary aldosteronism (PA) is based on the finding of the combination of elevated urinary and/or plasma aldosterone and suppressed renin activity in patients with hypertension and hypokalemia. However, PA consists in a number of subsets, and diagnostic criteria for a correct identification of surgically remediable forms are of great interest. The methods and the results concerning our series of 113 patients with primary aldosteronism are presented in this review. Aldosterone producing adenoma (APA) and idiopathic hyperaldosteronism (IHA) were the most frequent forms, 51% and 44% respectively. They had similar BP levels, but hypokalemia was most frequently found in APA. Urinary and upright plasma aldosterone were similar, but supine plasma aldosterone was lower in IHA. Plasma aldosterone response to upright posture and angiotensin II infusion was absent in most cases of APA and present in IHA, but occasionally renin-responsive adenoma were found. Captopril failed to decrease plasma aldosterone in most patients with APA, and in a subgroup of patients with IHA. Patients with adenoma had also higher values of the aldosterone precursor 18-OH-B, and of atrial natriuretic peptide (ANP), probably as a consequence of a greater degree of volume expansion. Among morphological studies, CT scan and adrenal radio-cholesterol scintiscan provided similar results (85% accuracy): adrenal vein catheterization clarified almost all the remaining cases. Among the subsets of PA, 3 familiar cases of dex-suppressible hyperaldosteronism were recognized, with characteristically high levels of aldo, 18-OH-B, 18-OH-cortisol and 18-oxo-cortisol, due to the genetic abnormalities of the 11-18 hydroxylase system.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenoma↗

Immunoradiometric versus enzymatic renin assay: results of the Italian Multicenter Comparative Study. Italian Multicenter Study for Standardization of Renin Measurement.

OBJECTIVES: The measurement of plasma renin activity (PRA) is very convenient for estimating the action of the renin system, but its interlaboratory reproducibility is notoriously poor. This multicentre study aimed to examine whether an immunoradiometric assay which quantifies renin directly with monoclonal antibodies can reduce this limitation of the enzymatic assay. The study also aimed to establish the reference values of immunoreactive renin (IrR) in a large sample of normotensive subjects and patients with various pathophysiological conditions. DESIGN AND METHODS: PRA and IrR were measured once in each of the eight participant centres in eight pool plasma samples with a wide range of renin content; in seven centres these measurements were repeated twice more in order to compare the intralaboratory interassay reproducibility of both methods. Finally, PRA and IrR were measured in the supine and standing positions in 503 subjects including normal controls, patients with various forms of hypertension, patients with Cushing's and Bartter's syndromes, patients with hepatic cirrhosis and pregnant women. RESULTS: We found that both the inter- and intralaboratory coefficients of variation for PRA measurements were higher than those for IrR. In plasma samples from normal subjects and from patients, mean +/- SEM supine PRA and IrR ranged, respectively, from 0.08 +/- 0.03 ng/ml per h and 2.6 +/- 0.5 pg/ml in patients with Conn's syndrome to 7.2 +/- 2.5 ng/ml per h and 138 +/- 51 pg/ml in patients with hepatic cirrhosis. PRA and IrR were found to be significantly correlated in all laboratories (mean +/- SEM of correlation coefficients 0.84 +/- 0.03) and for all of the conditions (correlation coefficient ranging from 0.98 in patients with Cushing's syndrome to 0.50 in pregnant women). However, for the pregnant women the slope of the regression line depicting the PRA-IrR relationship was significantly steeper than for all of the other conditions. CONCLUSIONS: In our experience the inter- and intralaboratory reproducibilities of the immunoradiometric assay appear to be greater than can be achieved with the enzymatic assay, the difference being probably due to the greater complexity of the latter. The two methods provide superimposable information on the renin-angiotensin system activity, except in pregnancy, during which the PRA:IrR ratio is much higher than in the other conditions. Therefore, in this and other pathophysiological situations associated with marked angiotensinogen concentration alterations, the enzymatic assay may be still preferable for assessing the activity of the system accurately.

Adolescent↗

Zona glomerulosa of the adrenal gland in a transgenic strain of rat: a morphologic and functional study.

Transgenic rats for the murine Ren-2 gene display high blood pressure, low circulating levels of angiotensin II, and high renin content in the adrenal glands. Moreover, transgenic rats possess an increased aldosterone secretion (maximal from 6 to 18 weeks of age), paralleling the development of hypertension. To investigate further the cytophysiology of the adrenal glands of this strain of rats, we performed a combined morphometric and functional study of the zona glomerulosa of 10-week-old female transgenic rats. Morphometry did not reveal notable differences between zona glomerulosa cells of transgenic and age- and sex-matched Sprague-Dawley rats, with the exception of a marked accumulation of lipid droplets, in which cholesterol and cholesterol esters are stored. The volume of the lipid-droplet compartment underwent a significant decrease when transgenic rats were previously injected with angiotensin II or ACTH. Dispersed zona glomerulosa cells of transgenic rats showed a significantly higher basal aldosterone secretion, but their response to angiotensin II and ACTH was similar to that of Sprague-Dawley animals. Angiotensin II-receptor number and affinity were not dissimilar in zona glomerulosa cells of transgenic and Sprague-Dawley rats. These data suggest that the sustained stimulation of the adrenal renin-angiotensin system in transgenic animals causes an increase in the accumulation in zona glomerulosa cells of cholesterol available for steroidogenesis, as indicated by the expanded volume of the lipid-droplet compartment and the elevated basal steroidogenesis. However, the basal hyperfunction of the zona glomerulosa in transgenic animals does not appear to be coupled with an enhanced responsivity to its main secretagogues, at least in terms of aldosterone secretion.

Adrenocorticotropic Hormone↗

Decreased expression of insulin-sensitive glucose transporter mRNA (GLUT-4) in adipose tissue of non-insulin-dependent diabetic and obese patients: evaluation by a simplified quantitative PCR assay.

Impaired cellular uptake and utilization of glucose is the hallmark of non-insulin-dependent-diabetes (NIDDM). We have developed a quantitative assay to probe the expression of glucose-transporter genes in tissues derived from patients with NIDDM. Using the polymerase chain reaction (PCR), we assessed levels of expression of the insulin responsive glucose transporter GLUT-4 in adipose tissue of patients with NIDDM and in obese patients. We report that expression of GLUT-4 is reduced in NIDDM and in obesity associated with hyperinsulinemia and insulin resistance. These results suggest that reduction of GLUT-4 levels in the adipose cell plays an important role in the pathogenesis of insulin resistance, an early feature of NIDDM.

Adipose Tissue↗

Transforming growth factor-beta 1 is more expressed in thyroid follicular adenoma than in normal tissue.

It is well known that TSH is the main factor responsible for thyrocyte proliferation and growth. Recent studies have shown that other growth factors, including transforming growth factor-beta 1 (TGF-beta 1), have an important role in the control of thyrocyte proliferation and differentiation. The aim of the study was to evaluate the expression of the TGF-beta 1 gene in thyroid follicular adenoma (FA) by Northern analysis, and its protein localization by immunohistochemistry. Surgically removed thyroid tissue from 56 patients with thyroid FA was screened for the study. Normal thyroid tissue from 4 patients with papillary carcinoma was used as a control. Sixteen FA (8 with a "cold" and 8 with a "hot" scintiscan pattern) having homogeneous histological characteristics were subsequently selected. FA showed greater TGF-beta 1 gene expression than control tissue. There was not a statistically significant difference between "cold" and "hot" FA. Immunohistochemistry analysis showed that TGF-beta 1 was located in various histological structures of the adenomas (thyrocytes, endothelium, perinervium and connective tissue); on the other hand, perinodular and control tissue did not show appreciable TGF-beta 1 protein. Our data suggest that TGF-beta 1 may be involved in the pathogenesis of FA. The different TGF-beta 1 distribution in thyrocytes, endothelium, perinervium and connective tissue in FA suggests that TGF-beta 1 may be variably expressed during the natural history of FA. Since no significant difference in TGF-beta 1 gene expression between "hot" and "cold" adenomas was found, it appears that other factors are involved in their functional differentiation.

Adenoma↗

Apparent mineralocorticoid excess type II.

The syndrome of apparent mineralocorticoid excess (AME) is currently understood to reflect impaired peripheral metabolism of cortisol, which is then able to activate the non-selective mineralocorticoid (MC) receptor. The failure of glucocorticoid inactivation at the MC target tissue level in AME involves abnormal activity of 11 beta-hydroxysteroid dehydrogenase, with impaired conversion of cortisol to cortisone, and also of 5 beta-reductase. We have discovered a new form of AME (Type II) in four patients with the same clinical picture of hypertension, hypokalemia, and suppressed renin-angiotensin-aldosterone system, but in whom this conversion seems either to be normal (since cortisol to cortisone metabolite ratio is normal) or to be impaired in both directions, leaving the ratio unchanged. Both types are characterized by a profound decrease in cortisol turnover quotient and Ring A reduction constant. Short-term dexamethasone treatment is effective in correcting the MC-derived abnormalities, while in the long term the addition of other antihypertensive drugs may be required to control the severity of hypertension.

11-beta-Hydroxysteroid Dehydrogenases↗

Effects of endothelin-1 and endothelin-3 on rat hypothalamic corticotrophin-releasing hormone and pituitary ACTH release in vitro.

Endothelins (ETs) are potent vasoconstrictor peptides that also participate in the regulation of endocrine function. Indeed, immunoreactive ET, ET mRNA and ET receptors have been found in the brain and the pituitary gland and ETs stimulate arginine vasopressin, LH, FSH, TSH and gonadotrophin-releasing hormone and inhibit prolactin release in vitro. The present study was undertaken to evaluate the effects of ET-1 and ET-3, two members of this family, on corticotrophin-releasing hormone (CRH) release by explanted male rat hypothalami in vitro and on ACTH release by primary pituitary cell culture. ET-3 decreased basal CRH release in a concentration-related manner. The lowest effective concentration tested was 3 nmol/l but a more pronounced inhibitory effect was obtained at a concentration of 10 nmol/l. On the other hand, ET-1 did not have any detectable effect on basal CRH release. Neither ET-1 nor ET-3 had any effect on the release of CRH stimulated by potassium chloride. ET-1 increased basal ACTH release, whereas ET-3 did not have any effect. Both ET-1 and ET-3 suppressed the release of ACTH stimulated by 1 nmol CRH/l. These data suggest that both ET-1 and ET-3 are able to modulate the hypothalamic-pituitary-adrenal axis function in vitro. However, they act at different levels and seem to have opposite effects. Indeed, while ET-1 stimulated pituitary ACTH release, ET-3, the peptide produced mainly in the brain, inhibited hypothalamic CRH release in vitro.

Adrenocorticotropic Hormone↗