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D Cocchi

Publications and source records attributed to D Cocchi.

At least 73 records · Page 4Linked to original sources

Different regulation of growth hormone-releasing factor-sensitive adenylate cyclase in the anterior pituitary of young and aged rats.

Low basal GH secretion and reduced GH responsiveness to different GH secretagogues, including GHRF, have been reported in aged animals and humans. Parallel to the in vivo findings, an impaired GH responsiveness to GHRF is evident in somatotropes from old rats of either sex. We report here that in anterior pituitaries (APs) from aged male and female rats GHRF-induced stimulation of adenylate cyclase (AC) activity was strikingly reduced (male rats, change from baseline 700% in young and 100% in old rats) or lacking (female rats, change from baseline 430% in young and 13% in old rats) when compared to that evoked by GHRF in the APs from young counterparts. Pretreatment with GHRH (5 micrograms/rat iv for 3 days) decreased the high basal AC activity of old male rats [from 33.38 +/- 3.60 to 15.99 +/- 5.75 (SEM) pmol cAMP/min.mg protein], did not alter the GHRF-stimulated rise in AC activity in old male rats, and induced a small but unequivocal rise in AC activity in old female rats (change from baseline 35% vs. 13%, respectively). Pretreatment with GHRF markedly reduced the acute effect of GHRF in the APs from young rats of both sexes (male rats, change from baseline 360% and 700%; female rats, change from baseline 230% and 430% in GHRF-pretreated and control rats, respectively). In parallel studies performed in female rats, it was shown that in vivo pretreatment with GHRF at the same schedule markedly reduced the effect of acute GHRF stimulation on GH secretion from cultured pituitary cells of young rats but left unchanged GHRF-induced stimulation of GH secretion from pituitary cells of old rats. In all, these data suggest that deficiency of endogenous GHRF synthesis and/or release may underlie defective GH secretion in old rats and that a GHRF replacement regimen that reduces the sensitivity of the young somatotrope cells does not alter the sensitivity of (male rats) or exerts a priming effect (female rats) on the old somatotrope cell.

Adenylyl Cyclases↗

The beta-endorphin-induced secretion of growth hormone but not of prolactin is inhibited by an endogenous opioid antagonist.

The naturally occurring peptide human beta-endorphin-(1-27) (h beta-EP-(1-27) has been shown to antagonize beta-endorphin (h beta-EP)-induced analgesia. We have evaluated the effects of the fragment on h beta-EP-induced growth hormone (GH) and prolactin (PRL) release. It inhibited beta-EP-induced GH release in a dose-related way but left beta-EP-induced PRL stimulation unchanged.

Animals↗

Reduced tuberoinfundibular dopaminergic neuronal function in rats after long-term withdrawal of estrogen treatment.

Hypothalamic fragments from female rats treated repeatedly with estradiol valerate (EV) and bearing prolactin (PRL)-secreting tumors contained, seven months after the last EV injection, lower concentrations of dopamine (DA) than age-matched controls. Depolarizing concentrations of K+ (35 mM) and amphetamine (50 microM) evoked in PRL-secreting tumor bearing rats an endogenous DA release significantly lower than in controls.

Animals↗

Prolactin lowering effect of dihydroergokryptine in rat and in man.

The prolactin lowering activity of dihydroergokryptine was investigated both in rats and in humans. The drug was administered orally at the doses of 0.2, 1 and 5 mg/Kg to intact or reserpinized male rats. Nine male adult volunteers were given 300 mg cimetidine iv 90 min after receiving 2, 3 or 4.5 mg of dihydroergokryptine and 3, 4.5 and 6.75 mg of dihydroergocristine or placebo per os in a randomized, cross-over design. Eight young adult males were injected im with 10 mg sulpiride 120 min after randomly receiving dihydroergokryptine 2.5 and 5 mg or placebo in a cross-over manner. Finally, five healthy young women were given dihydroergokryptine 2.5 and 5 mg, bromocriptine 2.5 mg and placebo in a cross-over design. Dihydroergokryptine caused a strong, long-lasting, dose-dependent fall of plasma prolactin concentrations in both rats and humans. Moreover, it inhibited the reserpine-induced rise of plasma prolactin in rats, as well as the cimetidine-or sulpiride-induced hyperprolactinemia in humans. Dihydroergokryptine proved twice as potent as dihydroergocristine and about half as potent as bromocriptine. Effective doses of both dihydrogenated ergot alkaloids were much better tolerated than bromocriptine.

Adult↗

Growth hormone-releasing factor does not stimulate phosphoinositides breakdown in primary cultures of rat and human pituitary cells.

It has been reported that rat growth hormone releasing factor (rat GRF-43), similarly to the two human GRFs (GRF-40 and 44) stimulates adenylate cyclase activity in pituitary cells. Controversial findings have been presented by two different groups on the action of GRF on phosphoinositides (PI) metabolism, a phenomenon linked to Ca-- mediated intracellular mechanisms. In the work to be reported, we evaluated the accumulation of inositol phosphates induced by GRF exposure in primary cultures of rat and human pituitary cells. Addition of rat GRF-43 to rat pituitary cells at doses up to 1 microM had no effect on inositol phosphates accumulation, while already at a dose as low as 0.05 nM it increased growth hormone secretion in the incubation medium significantly. In the same cell system, TRH, a known activator of PI breakdown, significantly increased [3H]inositol phosphates. In primary cultures of human somatotrophs from acromegalic subjects as in rats, addition of hpGRF-40 and also of TRH did not elicit any modification in the accumulation of [3H]inositol phosphates. Consistent with in vivo findings, both peptides induced a significant release of GH in the medium. Our results show that the GH releasing effect of GRF does not involve the hydrolysis of phosphatidylinositol in normal rat as well as in tumoral human somatotrophs. In addition it appears that the anomalous response of TRH on adenomatous cells from acromegalic patients is differently mediated in respect to the action of the tripeptide on normal lactotrophs and thyrotrophs.

Acromegaly↗

Oestrous cycle-related LH responsiveness to naloxone: effect of high oestrogen levels on the activity of opioid receptors.

Endogenous opioid peptides have a tonic inhibitory control on LH secretion, participating in the functional changes of the hypothalamic-pituitary-ovarian axis. To evaluate the activity of the endogenous opioid systems during the oestrous cycle, we measured plasma LH levels after naloxone administration (5 mg/kg, s.c.) at 09.00 and 16.00 h on all days of the cycle (two further measurements were taken at 14.00 and 18.00 h on the day of pro-oestrus) and after one dose or one week's treatment with oestradiol benzoate (OB; 0.2 micrograms/rat). Concentrations of LH were measured in the same experimental models after injection of LH-releasing hormone (LHRH; 1 microgram/kg, i.p.) or saline. Naloxone induced a significant rise in LH levels on the day of oestrus, dioestrus day-1 and dioestrus day-2; this response was blunted on the morning of pro-oestrus and absent in the afternoon and after acute and chronic OB treatment. Conversely LHRH was most effective in increasing LH levels on the day of pro-oestrus and in OB-treated rats. These results indicate that opioid mechanisms, independently of the time of day and the pituitary responsiveness, exhibit a reduced activity when preovulatory changes occur, probably as a result of increased oestrogen levels.

Animals↗

Effect of single or repeated estrogen administration on tuberoinfundibular GABA neurons and anterior pituitary GABA receptors: biochemical and functional studies.

The effect of single or protracted administration of estradiol valerate on the hypothalamo-pituitary gamma-aminobutyric acid (GABA)ergic system and on plasma prolactin levels has been evaluated in female rats 2 months after the last (chronic treatment) or the single dose of the steroid. In the group of animals receiving one dose of estrogen, no modifications were detected in the activity of the tuberoinfundibular GABAergic neurons as implied by unchanged GABA accumulation either in the median eminence or the anterior pituitary after blockade of GABA catabolism with ethanolamine-O-sulphate. However, a complete disappearance of the low affinity population of GABA receptors in the anterior pituitary was observed. In this experimental condition, where baseline prolactin levels were 3-fold higher than in control rats, muscimol, a potent GABA agonist, was effective in significantly lowering plasma prolactin concentrations. Chronic estradiol valerate administration reduced GABA accumulation in the median eminence and the anterior pituitary at 4, but not at 2 h, after intracerebroventricular injection of ethanolamine-O-sulphate. Moreover, in this instance, a complete disappearance of the high affinity population of GABA receptors in the anterior pituitary was detected. Long-term estrogen administration induced also a 55-fold increase of plasma prolactin titers and muscimol was ineffective in reducing prolactin concentrations in plasma. The ability of muscimol to inhibit prolactin release only in single-estrogen-treated animals strongly suggests that the high affinity population of anterior pituitary GABA receptors is that involved in the mechanisms whereby GABA inhibits prolactin release from anterior pituitary.

Animals↗

Prolactin releasing and luteinizing hormone inhibiting activity of dermorphin shorter homologues in the rat.

Dermorphin, a heptapeptide isolated from the skin of the frogs Phillomedusa sauvagei and Phillomedusa rhodei, is endowed with potent peripheral and central opioid-like activity. Intracerebroventricular (icv) injection of dermorphin (31.2, 62.5 and 125 pmol/100g) induced in ovariectomized (OVX) rats dose related rises and decreases in prolactin (PRL) and luteinizing hormone (LH) levels, respectively. The aim of this work was to evaluate the same endocrine responses after administration of shorter peptide amide homologues, related to the N-terminal sequence of dermorphin. These compounds retain a substantial analgesic activity although the latter decreases with the decrease in the number of amino acid residues. Icv administration of the hexapeptide homologue (dermorphin 1-6 amide) to OVX rats did not induce any PRL rise or LH inhibition, even at the high dose of 250 pmol/100g. The pentapeptide (dermorphin 1-5 amide), instead, increased PRL and decreased LH secretion, although the effect was significant only at the dose of 250 pmol/100g. Administration of the tetrapeptide (dermorphin 1-4 amide) induced a significant PRL rise and LH inhibition at both the doses of 125 and 250 pmol/100g. The tetrapeptide was the smallest fragment of the dermorphin moiety which caused endocrine responses while the tripeptide (dermorphin 1-3 amide) was completely ineffective in this context. These data indicate that a complete dissociation exists between the behavioral and endocrine effects of the dermorphin homologues examined. In fact, shorter dermorphins whose analgesic potency was directly related to the number of amino acids, exhibited an opposite pattern in evoking endocrine effects.

Analgesics↗

Evaluation of hypothalamic dopaminergic function by neuropharmacologic means in aged women.

The function of the hypothalamic tuberoinfundibular dopaminergic (TIDA) neurons involved in the control of prolactin secretion was investigated in aged subjects with the use of nomifensine, an indirect-acting dopamine (DA) agonist, domperidone, a DA receptor antagonist, and DA, which acts directly on the pituitary lactotropes. In all 33 women, aged 69-92 yr, were studied. Baseline prolactin values were slightly but significantly higher in aged women (13 +/- 1.2 ng/ml, M +/- S.E.M.) than in a group of control fertile women (8 +/- 0.7 ng/ml). Oral administration of nomifensine (200 mg), in 14 aged women suppressed plasma prolactin (greater than or equal to 30% of baseline) in 8 subjects, a proportion not different from that present in fertile women (7/15) also receiving a single oral dose of nomifensine. Intravenous infusion of DA (0.04 microgram/kg min, 120 min) induced a similar inhibition in plasma prolactin in the aged and the fertile women, while administration of domperidone (4 mg i.v.) evoked a higher plasma prolactin rise, 15 min post-administration, in fertile than aged women. In all, presence of baseline prolactin levels only slightly elevated and prolactin responsiveness to nomifensine and DA not different from that of fertile women denote preservation of TIDA neuronal function in old women. The blunted response to domperidone of the old women is likely attibutable to a reduced pituitary pool of prolactin.

Adolescent↗

Persistence of a defective tuberoinfundibular dopaminergic function in rats after long-term removal of oestrogen treatment. An in vivo study.

The function of the tuberoinfundibular dopaminergic (TIDA) neurons of 49 rats bearing oestradiol-valerate (EV)-induced prolactin (Prl) secreting tumours (prolactinomas) was evaluated in vivo, 7 months after discontinuation of EV-treatment, with neuroactive drugs acting via stimulation or inhibition of DA neurotransmission. Based on the size and morphologic appearance of the pituitary and on determination of plasma Prl levels, rats previously treated with EV could be divided into those bearing macro- (31/49) and those bearing micro-prolactinomas (18/49). Administration of the indirect DA agonist drug nomifensine (10 mg/kg iv) lowered plasma Prl levels in control rats, but failed to do so in rats bearing either macro- or microprolactinomas. Administration of the DA receptor antagonist domperidone (50 micrograms/kg ip) or the synthetic enkephalin analogue FK 33-824 (1 mg/kg ip) failed to induce a rise in plasma Prl in rats with macro-, but induced a clear-cut rise in plasma Prl in those with microprolactinomas. Prl unresponsiveness to all three neuroactive drugs indicates that long time after EV withdrawal TIDA neuronal function is still highly impaired in rats bearing EV-induced macroprolactinomas. The impairment of TIDA neuronal function would be of lesser extent in rats bearing microprolactinomas as revealed by a defective response to only one of the three applied neuroendocrine probes.

Adenoma↗

Prolactin in cerebrospinal fluid increases the synthesis and release of hypothalamic gamma-aminobutyric acid.

The effect of intracerebroventricularly (i.v.t.)-injected rat prolactin (2 micrograms/rat) on the function of tuberoinfundibular gamma-aminobutyric acid (GABA)ergic neurones was assessed in adult male rats by measuring the activity of glutamic acid decarboxylase (GAD) in the mediobasal hypothalamus (MBH) and the concentrations of GABA in hypophysial portal plasma and in the anterior pituitary gland. Fourteen hours after i.v.t. injection of rat prolactin the activity of GAD in the MBH was significantly (P less than 0.05) increased and it remained elevated for at least 16 h after injection. The mean concentrations of GABA in hypophysial portal plasma and in the anterior pituitary were twice those found in vehicle-treated controls 16 h after administration of rat prolactin; no significant effects were observed at earlier time-periods. A significant (P less than 0.01) and long-lasting decrease in endogenous plasma prolactin concentrations was detected 2 h after the i.v.t. injection of rat prolactin and the concentrations remained suppressed for up to 16 h. The present results are consistent with the concept that the activity of tuberoinfundibular GABAergic neurones is regulated, at least in part, by circulating prolactin. The ability of prolactin to accelerate the synthesis and release of GABA in the MBH might constitute a short loop feedback system by which the hormone regulates its own secretion.

Animals↗

[Blood prolactin-lowering activity of dihydroergocristine].

The prolactin lowering activity of dihydroergocristine, a dihydrogenated ergopeptine derivative, was evaluated in male rats. The drug caused a significant decrease of prolactin levels both in the normoprolactinemic animals and in reserpine-induced hyperprolactinaemia at 5 mg/kg p.o. while 0.2 and 1 mg/kg p.o. were ineffective. In a second experiment the prolactin lowering activity of dihydroergocristine (0.2; 1.5 mg/kg), in reserpine-induced hyperprolactinaemia was compared with bromocryptine (0.1; 0.5; 2.5 mg/kg) administered intraperitoneally. Both dihydroergocristine and bromocryptine caused a significant decrease of prolactin plasma concentrations at all dose levels. Moreover the prolactin lowering effect was independent of the dose administered. Our data suggest prolactin lowering activity of oral or i.p. dihydroergocristine both on normal plasma concentrations and on the experimentally-induced hypersecretion of the hormone.

Animals↗

Hypothalamic neurotransmitter function in experimentally induced hyperprolactinemia.

It is known that animals or patients bearing a prolactin (PRL)-secreting tumor (PST) do not suppress PRL levels after administration of indirectly acting dopamine agonists, namely nomifensine (Nom), and are not responsive to the PRL releasing effect of antidopaminergic drugs and opioid peptides. Since the action of these drugs is mediated through the tuberoinfundibular dopaminergic (TIDA) system, these findings have been taken to indicate that animals and humans bearing prolactinomas have a defective TIDA function. Alternatively, PRL unresponsiveness to these drugs could be due to hyperfunction of TIDA system for the feedback action of high PRL levels. To clarify whether hypo- or hyperfunction of the TIDA system was responsible for such behaviour, we tested the effect of a synthetic opioid peptide (FK 33-824), a DA receptor antagonist, domperidone (Dom), and of Nom on PRL secretion in two experimental models of non-tumoral hyperprolactinemia, i.e. rats bearing ectopic pituitaries since 3 days (TP rats), or treated with ovine PRL (oPRL 250 micrograms, twice daily for 3 days), in which existence of an increased TIDA function has been demonstrated. FK 33-824 (0.5 mg/kg i.p.) increased significantly plasma PRL levels in control rats but failed to do so in TP rats and it elicited a significantly lower PRL response than in controls in rats treated with oPRL. In both experimental models, a PRL secretagogue, e.g. 5-hydroxytryptophan (50 mg/kg i.p.), elicited the same response as in controls, indicating that the pituitary PRL pool was preserved.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Mechanisms involved in the prolactin-releasing effect of benserazide.

The mechanism(s) underlying the prolactin (PRL)-releasing effect of benserazide (Bz), a peripheral inhibitor of L-aromatic amino-acid decarboxylase, was investigated in the rat. In intact male and female rats, Bz was ineffective to increase significantly plasma PRL at 0.8 mg/kg i.p. but elicited an already maximal effect at 1.6 mg/kg. Bz added to in vitro incubated anterior pituitaries (APs) did not alter PRL secretion at the dose of 3.8 X 10(-6)M but increased PRL release at 10(-4)M. Bz, even at very high doses (up to 10(-3) M), did not displace [3H]spiroperidol binding from AP membrane preparations. In rats having had mechanical ablation of the medio basal hypothalamus (MBH), Bz (15 mg/kg i.p.) induced no rise in plasma PRL and did not counteract the striking inhibitory effect of a dopamine (DA) infusion (5 micrograms/kg per min per 120 min). Administration of Bz (15 mg/kg i.p.) into intact male rats decreased significantly the DA concentrations in the median eminence (ME) but not in the residual hypothalamus and the AP. In the same rats 1-dopa (50 mg/kg i.p.) increased significantly the DA concentrations not only in the ME but also in the hypothalamus and the AP. Bz given concurrently with 1-dopa markedly reduced the rise in DA concentrations induced by 1-dopa in the ME, and greatly potentiated the increase in DA concentrations in the hypothalamus. These data indicate that the mechanism whereby a single administration of Bz increases PRL secretion in the rat is not consistent with the postulated DA receptor antagonist action of the drug, but instead implies inhibition of the decarboxylation of 1-dopa at dopaminergic nerve terminals of the ME.

Animals↗

Autonomous beta-endorphin secretion from the pituitary neurointermediate lobe: in vivo studies.

The existence of independent control mechanisms of beta-endorphin (beta-EP) secretion from the anterior (AP) and intermediate (NIL) pituitary lobes is now ascertained. The aim of this study was to evaluate the effect of surgical separation from the hypothalamus of the two pituitary lobes on beta-EP secretion. Two experimental models of surgical hypothalamo-pituitary disconnection were used: 1) rats with ablation of the medial basal hypothalamus (MBH); 2) rats bearing two entire ectopic pituitaries or two anterior pituitaries (APs) only, transplanted under the kidney capsule. In rats with MBH-ablation plasma beta-EP levels were significantly higher than in sham-operated controls. Plasma beta-EP levels increased in rats transplanted with entire pituitaries 3 days after surgery and were still elevated after 1 week. In rats transplanted with APs only, no significant beta-EP changes in plasma were evident. In both experimental conditions no significant difference was present in beta-LPH plasma levels. Concentrations of beta-EP in the ectopic NILs decreased gradually after transplantation. In all these results indicate that that NIL but not the AP is capable, when is disconnected from the hypothalamus, or secreting autonomously beta-EP.

Animals↗

Effects of beta-endorphin fragment 6-31 on morphine- and beta-endorphin-induced growth hormone and prolactin release.

A fragment of human beta-endorphin (beta h-EP-(6-31] has been proposed as an endogenous inhibitor of beta-endorphin. We have evaluated the effects of the fragment on beta-endorphin- and morphine-induced prolactin and growth hormone release. It inhibited both morphine- and beta-endorphin-induced prolactin release, while it was ineffective on the release of growth hormone.

Animals↗

Regulation of prolactin secretion during suckling: involvement of the hypothalamo-pituitary GABAergic system.

Previous results demonstrated that GABA exerts a dual control on PRL secretion, one excitatory mediated in part by the impairment of the tubero-infundibular dopaminergic (TIDA) system function, the other inhibitory occurring at the level of the anterior pituitary (AP), where 3H-GABA and 3H-Muscimol (3H-M) recognition sites have been described. This report provides evidence for a physiological role of the tubero-infundibular GABAergic system (TI-GA-BA) on PRL secretion in the rat. In lactating rats separated for 4 h from their pups reinstitution of suckling for different periods resulted in an increase either in glutamic acid decarboxylase (GAD) activity in the mediobasal hypothalamus (MBH) or in AP-GABA content. Dynamic changes of the GABAergic function in the MBH-AP system seemed to have a certain degree of specificity because suckling did not affect GAD activity in the caudate nucleus. In lactating rats 2, 4, 8 and 24 h after removal of the offsprings AP-GABA concentrations and plasma PRL titers significantly decreased with respect to values present in rats never separated from their pups. Since it has been demonstrated that the PRL lowering effect of GABA is a receptor-mediated event, we have investigated the plasticity of AP-GABA receptors during suckling. The inhibitory action of GABA seems to be mediated mainly by the activation of the high affinity binding sites. This proposition is supported by the fact that in lactating rats, where only the high affinity receptor population is present, M was still able to decrease significantly plasma PRL concentrations.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗