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Biomedical subjects

G Mazzocchi

Publications and source records attributed to G Mazzocchi.

At least 91 records · Page 5Linked to original sources

Effects of the hypocholesterolemic drug, 4-aminopyrazolo (3,4-d) pyrimidine (4-APP), on the hamster adrenal cortex. An ultrastructural and functional study.

The aim of this study was to gain insight into the effects of 4-aminopyrazolo(3,4-d)pyrimidine (4-APP), a hypocholesterolemic drug, on the adrenal cortex of the hamster, representing an animal species in which steroidogenesis primarily relies on utilization of cholesterol synthesized de novo in the gland. 4-APP administration (1.5 mg/animal day for 3 days) to intact or dexamethasone-suppressed hamsters resulted in a marked proliferation of adrenocortical cells. However, the volume of parenchymal cells was unchanged in intact animals and lowered in the zona glomerulosa (ZG) and zona reticularis (ZR) of dexamethasone-administered hamsters. In both groups of animals, 4-APP strikingly increased the volume of the lipid-droplet compartment and markedly reduced the surface area of smooth endoplasmic reticulum in ZF cells, without significantly affecting the volume of the mitochondrial compartment and the surface area of mitochondrial cristae. These morphologic changes displayed no evident correlation with adrenal cortisol content and secretion. Since most of the 4-APP-induced changes were not prevented by dexamethasone, it seems legitimate to suggest that they could mainly depend on a direct effect of 4-APP on the hamster adrenocortical cells.

Adenine↗

Effects of prolonged cysteamine administration on the rat adrenal cortex: evidence that endogenous somatostatin is involved in the control of the growth and steroidogenic capacity of zona glomerulosa.

A week daily administration of cysteamine (CYS, 300 mg kg-1) lowered plasma aldosterone concentration in rats, without affecting PRA, kalaemia and the plasma levels of ACTH and corticosterone. Prolonged CYS treatment caused a notable hypertrophy of adrenal zona glomerulosa (ZG) and its parenchymal cells, without inducing any apparent change in zona fasciculata morphology. Isolated ZG cells from CYS-treated rats evidenced a notable enhancement in their basal and maximally-stimulated productions of aldosterone and corticosterone. All these effects of chronic CYS administration were completely reversed by the simultaneous infusion of rats with somatostatin (SRIF, 12 micrograms kg-1 h-1). CYS exposure was not found to directly affect the secretory activity of isolated ZG cells from normal rats. Since CYS is known to be a specific depletor of SRIF in different organs of rats, these findings suggest that endogenous SRIF may be involved in the modulation of ZG function.

Adrenal Cortex↗

Neurotensin inhibits the stimulatory effect of angiotensin-II and potassium on aldosterone secretion by rat zona glomerulosa cells.

Neurotensin (NT), a hypothalamic peptide which is also contained in the chromaffin granules of adrenal medullary cells, did not affect either basal or ACTH-stimulated secretory activity of isolated rat zona glomerulosa (ZG) cells. Conversely, NT was found to exert a strong dose-dependent inhibitory effect on aldosterone response of ZG cells to their two main calcium-dependent secretagogues angiotensin-II and potassium. These findings suggest that NT may interfere with the angiotensin-II- or potassium-induced activation of protein kinase C, possibly by blunting the rise in the cytosolic calcium concentration.

Adrenocorticotropic Hormone↗

Interleukin-1 beta enhances corticosterone secretion by acting directly on the rat adrenal gland.

Interleukin-1 (IL-1), a monokine released by activated monocytes during the acute phase of the inflammatory responses, has been reported to enhance hypophyseal ACTH release mainly by stimulating hypothalamic CRF secretion. We investigated a possible direct effect of IL-1 beta on the adrenal gland of the rat. IL-1 beta was found to dose-dependently (4-8 micrograms/kg) raise corticosterone (B) blood concentration in hypophysectomized rats, without inducing any significant increase in the level of circulating ACTH. IL-1 beta did not affect B production by either isolated rat inner adrenocortical cells or fragments of adrenocortical autotransplants lacking chromaffin cells, but dose-dependently (10(-8)-10(-6) M) enhanced that by adrenal slices including both cortex and medulla. The secretory effect of IL-1 beta (10(-6) M) was completely blocked by both alpha-helical-CRF (10(-6) M) and corticotropin-inhibiting peptide (10(-6) M), two competitive inhibitors which (at these concentrations) were able to annul B response of adrenal slices to CRF (10(-6) M) and ACTH (10(-8) M), respectively. In light of many findings indicating that adrenal medulla contains and releases CRF and numerous POMC-derived peptides (including ACTH), the hypothesis is advanced that the mechanism underlying the direct secretory effect of IL-1 beta on the adrenal gland may involve the activation of an intraadrenal CRF/ACTH system.

Adrenal Glands↗

A coupled morphological and biochemical study on the cellular localisation of the intra-adrenal renin granules in rats.

The effects of prolonged (3-week) sodium restriction on the rat zona glomerulosa (ZG) were investigated by ultrastructural stereological and biochemical techniques. The plasma level of aldosterone was increased, and this was coupled with a notable decrease in the volume density (Vv, microns 3/100 microns 3 of cell) of lipid droplets in ZG cells. Renin-like activity (RLA) underwent a significant rise in ZG, and Vv of dense bodies significantly rose in ZG cells. Since RLA and dense-body Vv displayed a highly significant linear correlation (r = 0.884; n = 22, P less than 0.01), the hypothesis is advanced that part of the dense bodies may be granules of prorenin or renin, and that ZG parenchymal cells are directly involved in the intra-adrenal renin production.

Aldosterone↗

Effects of prolonged treatment with adrenocorticotropin on the morphology and function of rat adrenocortical autotransplants.

Regenerated adrenocortical nodules were obtained by implanting in the musculus gracilis of rats fragments of the capsular tissue of their excised adrenal glands. Five months after operation, transplanted rats showed a slightly elevated blood concentration of adrenocorticotropin (ACTH), a moderately reduced plasma level of corticosterone (PBC) and a very low concentration of circulating aldosterone (PAC). Regenerated nodules were well encapsulated, and from the connective capsule some septa dipped into the parenchyma. Subcapsular-outer (OZ) and inner (IZ) cells were similar to those of the zona fasciculata/zona reticularis (ZF/ZR) of the normal gland; juxta-septal (JZ) cells resembled those of the zona glomerulosa (ZG). Prolonged (14 days) ACTH infusion normalized PBC and caused a conspicuous hypertrophy of transplanted tissue, which was coupled with a marked hypertrophy of ZF/ZR-like OZ and IZ cells and a notable rise in the basal in vitro production of corticosterone. Conversely, ACTH infusion strikingly lowered PAC, reduced the number of ZG-like JZ cells, and decreased both basal and stimulated secretion of 18-hydroxylated steroids by transplants in vitro.

Adrenal Cortex↗

Effects of prolactin on the morphology and function of rat Leydig cells: short-term versus long-term administration.

The bolus administration of prolactin (PRL) to adult rats did not cause any apparent change in the basal and luteinizing hormone (LH)-stimulated blood levels of testosterone (as estimated by radioimmune assay). Prolonged PRL infusion did not affect either basal testosterone plasma concentration or the morphology of Leydig cells (as evaluated by electron microscopy and stereology). Conversely, prolonged PRL treatment notably increased the gonadotrophic effects of chronic LH administration; this mainly consisted of a rise in the blood concentration of testosterone and a conspicuous hypertrophy of Leydig cells. The LH-induced increase in the volume of Leydig cells was the result of an increase in the volumes of all the organelles involved in steroid synthesis (i.e., smooth endoplasmic reticulum, peroxisomes and mitochondria). However, the trophic effects of PRL infusion exclusively concerned smooth endoplasmic reticulum and peroxisomes. In the light of these findings, the hypothesis is advanced that the mechanism underlying the gonadotrophic action of PRL involves an enhancement of the endogenous cholesterol synthesis, which could provide an abundance of precursors for testosterone synthesis, the post-cholesterol steps of which, in turn, would be exclusively controlled by LH.

Animals↗

Effects of prolonged cyclosporine-A treatment on the Leydig cells of the rat testis.

The effects of a prolonged (30-day) treatment with daily therapeutical doses of cyclosporin A (CAS) (20 mg/kg) on testicular Leydig cells were studied in adult rats. CSA administration provoked a significant decrease in both basal and human chorionic gonadotropin (hCG)-stimulated testosterone concentration in the peripheral blood without affecting the volume of the testes or the interstitial space. However, there was conspicuous atrophy of the Leydig cells, due mainly to a decrease in mitochondria and smooth endoplasmic reticulum, the organelles containing the enzymes of testosterone synthesis. Lipid droplets, in which cholesterol is stored, were notably increased. The nuclear volume and the surface area per cell of rough endoplasmic reticulum fell significantly in Leydig cells of CAS-treated animals. In light of these findings, it is concluded that CSA inhibits the growth and steroidogenic capacity of rat Leydig cells, probably by depressing their protein synthesis. Whether the mechanism underlying the action of CSA on Leydig cells is only indirect, by blockade of hypophyseal gonadotropin release, or also direct is unsettled and requires further investigation.

Animals↗

Streptozotocin-induced experimental diabetes causes a time-dependent inhibition of growth and steroidogenic capacity of rat adrenal zona glomerulosa.

The effects of streptozotocin-induced experimental diabetes on the morphology and secretory activity of the zona glomerulosa were studied in rats whose hypothalamo-hypophyseal-adrenal axes and renin-angiotensin systems had been pharmacologically interrupted by the simultaneous administration of dexamethasone-captopril and maintenance doses of ACTH-angiotensin II. The animals were examined 7, 14, 21, and 28 days after diabetes induction, which was evidenced by conspicuous hyperglycemia. Experimental diabetes caused notable atrophy of the zona glomerulosa and its cells, along with a significant decrease in both basal and angiotensin II-stimulated plasma aldosterone concentration. There was a positive linear correlation between all these changes and the number of days elapsed after streptozotocin administration. These data indicate that experimental diabetes exerts a profound time-dependent direct inhibition of rat zona glomerulosa. The hypothesis is advanced that the chronic lack of insulin that occurs in rats treated with streptozotocin, may depress de novo synthesis of structural and enzymatic proteins in zona glomerulosa cells and reduce their growth and steroidogenic machinery.

Adrenal Cortex Hormones↗

Gestational changes in hamster adrenal cortex: stereologic and functional studies.

Pregnancy in hamsters evoked a prompt increase in adrenal weight, with the highest value at day 5 and a subsequent fall toward the end of gestation. The surface densities of mitochondrial cristae and smooth endoplasmic reticulum did not display significant changes in the course of gestation, while 11 beta-hydroxylase and 3 beta-hydroxysteroid dehydrogenase/isomerase activity (two enzymes located in these two organelles) underwent significant increases at day 5 and day 10 of pregnancy, respectively. Neither the adrenal content of cortisol nor cortisol output by adrenal homogenates changed, but cortisol production measured in adrenal slices gradually rose during the course of pregnancy. Blood cortisol concentration increased about ten-fold toward the end of gestation, whereas the plasma ACTH level remained unchanged and plasma aldosterone concentration was significantly lowered. The conclusion is drawn that the pregnant hamster's adrenal glands possess an enhanced capacity to secrete cortisol, but the factor(s) involved remain unknown.

3-Hydroxysteroid Dehydrogenases↗

Morphology and functional responses of isolated zona glomerulosa cells of streptozotocin-induced diabetic rats.

Streptozotocin-induced diabetes significantly decreased plasma aldosterone concentration in rats whose renin-angiotensin system had been pharmacologically interrupted. Isolated zona glomerulosa cells showed a marked atrophy, coupled with a reduced basal secretion of aldosterone and corticosterone. The secretory response to the three main physiological stimuli (ACTH, angiotensin II and potassium) was also notably impaired. The hypothesis is advanced that the chronic lack of insulin may directly impair the growth and steroidogenic capacity of rat adrenal zona glomerulosa.

Adrenocorticotropic Hormone↗

Effects of prolonged administration of lovastatin, an inhibitor of cholesterol synthesis, on the morphology and function of rat Leydig cells.

We examined the effects of a prolonged treatment with lovastatin, a potent competitive inhibitor of 3-hydroxy-3-methylglutaryl coenzyme A (HMG-CoA) reductase, on the morphology and function of rat Leydig cells. Twenty-four h after the first lovastatin injection, no conspicuous ultrastructural changes were found, but isolated Leydig cells showed a notable reduction in their basal and HCG-stimulated testosterone production. By prolonging lovastatin administration (daily injections for 3 and 5 days), Leydig cells progressively recovered their secretory activity, and this was associated with a striking proliferation of smooth endoplasmic reticulum and peroxisomes. The hypothesis is discussed that these morphologic changes are the counterpart of an enhanced newly synthesis of HMG-CoA reductase, that is the expression of a compensatory response of Leydig cells aimed at maintaining an adequate production of cholesterol (i.e. testosterone precursors) in spite of the chronic competitive inhibition of HMG-CoA reductase by lovastatin.

Animals↗

Effects of acute and chronic treatments with atrial natriuretic factor (ANF) on the Leydig cells of the rat testis.

Acute ANF bolus administration (40 micrograms.kg-1) did not affect secretory activity and morphology of rat Leydig cells. Prolonged (7-day) ANF infusion (20 micrograms.kg-1.h-1), on the contrary, elevated both basal and hCG-stimulated testosterone blood concentration, and caused a notable hypertrophy of rat Leydig cells. Leydig-cell hypertrophy was due to increases in the volume of all the organelles involved in cholesterol and testosterone synthesis (i.e. mitochondria, smooth endoplasmic reticulum and peroxisomes). These findings suggest that ANF, when chronically administered, is able to stimulate the growth and steroidogenic capacity of rat Leydig cells.

Animals↗

Investigations on the morphology and function of adrenocortical tissue regenerated from gland capsular fragments autotransplanted in the musculus gracilis of the rat.

This paper describes the function and morphology of regenerated adrenocortical nodules obtained by implanting, in the musculus gracilis of rats, several (n = 6-7) fragments of the capsular tissue of their excised adrenal glands. Four months after the operation, each bilaterally adrenalectomized rat developed six or seven well encapsulated adrenocortical nodules about 2-3 mm in diameter and always lacking chromaffin cells, and displayed almost complete normalization of basal and stimulated blood levels of corticosterone, but not of aldosterone. In vitro study showed that regenerated nodules were well functioning as far as glucocorticoid production was concerned. Accordingly, electron microscopy and stereology indicated that the majority of the parenchymal cells (independently of their location in the outer subcapsular, middle, or inner portions) closely resembled those of the zonae fasciculata/reticularis of the adrenal gland of age-matched sham-operated rats. By contrast, regenerated nodules evidenced a relative impairment in aldosterone secretion, and this was coupled with the presence of only a few zona glomerulosa-like cells. Such cells were grouped in small islets located near the few connective trabeculae detaching from the capsule, and autoradiography showed that they were the only parenchymal elements of the nodule able to bind [125I]angiotensin-II. The possibility is suggested that the paucity of zona glomerulosa-like cells in regenerated nodules could be ascribed to the absence of zona medullaris, which is currently thought to exert a paracrine control on the growth and secretion of zona glomerulosa in the rat adrenal glands.

18-Hydroxycorticosterone↗

Stereological and functional investigations on isolated adrenocortical cells. III. Zona glomerulosa cells of chronically ACTH-treated rats.

Prolonged (5 day) treatment of rats with high doses of ACTH caused a significant reduction in the plasma concentration of aldosterone and a notable rise in that of corticosterone. Outer subcapsular (zona glomerulosa [ZG]) adrenocortical cells were isolated, and their morphology and secretory activity was investigated. ACTH pretreatment induced a marked hypertrophy of ZG cells which was coupled with significant increases in the volume of the mitochondrial compartment and in the surface area per cell of mitochondrial cristae and AER tubules, as well as with a striking lipid droplet depletion. Mitochondrial cristae were found to change from a tubulo-laminar to a tubulo-convolute configuration. Despite their hypertrophy, ZG cells from ACTH-pretreated rats displayed a conspicuous decrease in both basal and stimulated overall production of post-pregnenolone steroids, which was ascribed to the depletion of their stores of steroid hormone precursors (i.e. cholesterol and cholesterol esters contained in the lipid droplets). However, both basal and stimulated secretion of aldosterone was doubled, suggesting that chronic ACTH treatment induces in ZG cells an increased availability of monoxygenase II, the enzyme involved in the transformation of 18-hydroxycorticosterone into aldosterone. In the light of these findings, the drop in the plasma level of aldosterone observed in rats after prolonged treatment with ACTH is assumed to be due to an enhanced metabolism of aldosterone, possibly at the hepatic level.

18-Hydroxycorticosterone↗

Lipid droplets in the secretory response of Leydig cells of normal and hCG-treated rats.

Prolonged (7-day) hCG infusion caused a remarkable hypertrophy of rat Leydig cells, coupled with a notable enhancement of their basal and stimulated testosterone production in vitro. It also provoked a conspicuous accumulation of lipid droplets in the cytoplasm of hypertrophic cells. The administration of 4-aminopyrazolo-pyrimidine (4APP), at a dose causing a significant hypocholesterolaemia, did not affect the morphology and function of Leydig cells in normal rats. Conversely, in chronically hCG-infused animals, 4APP reversed lipid-droplet accumulation and significantly depressed stimulated testosterone production. The following conclusions are drawn: 1) chronic hCG treatment enhances the ability of rat Leydig cells to take-up exogenous cholesterol from circulating lipoproteins, and to store it in lipid droplets as a reserve material; 2) lipid-droplet stored cholesterol is employed only in the case of intense acute stimulation, since, under basal conditions, endogenous cholesterol synthesis is able to meet the requirements for testosterone production alone.

Adenine↗

Gestational changes in hamster adrenal cortex: morphometric and ultrastructural stereologic studies.

In the hamster, the weight of the adrenal glands increases during the course of gestation, with the highest value at day 5. In comparison to non-pregnant control animals, there were no changes in the volume of the zona glomerulosa (ZG) and zona fasciculata (ZF), while the volume of the zona reticularis (ZR) increased notably. The average volume of ZG-cells rose at day 5 of pregnancy and thereafter gradually decreased to that of control hamsters. A marked drop in the volume of ZF-cells was seen at days 5 and 10 of pregnancy, whereas at day 15 the cells were larger than in controls. At day 5 of pregnancy, a conspicuous increase in the cell volume was found in ZR, followed by lower values at day 10 and again higher than in control hamsters at day 15. The total number of parenchymal cells in hamster adrenal cortex increased at day 10 of gestation, then underwent a marked decrease, reaching the control value at the final day of pregnancy; this drop was mainly due to a reduction in the number of ZF-cells. The changes in the cell volume were paralleled by rather proportional changes in the volume of the mitochondrial compartment and in the quantity of smooth endoplasmic reticulum. The volume of the lipid-droplet compartment significantly rose in the course of gestation in both ZF- and ZR-cells. The cortisol output by adrenal homogenates gradually decreased during pregnancy.

Adrenal Cortex↗

Stereological and functional investigations on isolated adrenocortical cells: zona fasciculata/reticularis cells of chronically ACTH-treated rats.

The morphology and function of isolated inner (zona fasciculata/reticularis) adrenocortical cells of rats pretreated with ACTH for 3, 6, 9 or 12 days were investigated. ACTH treatment induced a notable time-dependent enhancement in the steroidogenic capacity (corticosterone production) and growth of inner cells. The volumes of cells, mitochondrial compartment, membrane space [the cellular space occupied by smooth endoplasmic reticulum (SER) membranes] and lipid-droplet compartment, as well as the surface area of mitochondrial cristae and SER tubules, were increased in relation to the duration of ACTH pretreatment, and showed a highly significant positive linear correlation with both basal and stimulated corticosterone production. The acute exposure of isolated cells to ACTH provoked a striking lipid-droplet depletion, the extent of which was linearly and positively correlated with stimulated corticosterone secretion. The hypertrophy of the mitochondrial compartment and SER are interpreted as the morphological counterpart of the enhanced steroidogenic capacity of inner adrenocortical cells, inasmuch as the enzymes of steroid synthesis are located in these two organelles, and it is well known that chronic ACTH exposure stimulates the de novo synthesis of many of them in vivo. The rise in the number of lipid droplets, in which cholesterol is stored, is interpreted as being due to the fact that, under chronic ACTH treatment, the processes leading to cholesterol accumulation in adrenocortical cells (exogenous uptake and endogenous synthesis) exceed those of its utilization in basal steroid secretion. Cholesterol accumulated in lipid droplets as a reserve material may be rapidly utilized after acute ACTH exposure to meet the needs of the enhanced steroidogenic capacity of adrenocortical cells.

Adrenal Cortex↗