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Biomedical subjects

F Camanni

Publications and source records attributed to F Camanni.

At least 163 records · Page 9Linked to original sources

Long term treatment with oral single administration of bromocriptine in patients with hyperprolactinemia.

In the treatment of hyperprolactinemia bromocriptine is generally administered in 3 daily doses during the day. Due to the limited compliance of patients under this long term regimen, in 16 hyperprolactinemic patients we investigated the efficacy and tolerability of the treatment with this dopaminergic drug administered as a single evening dose. This dose was the same which the patients had been assuming previously on a tid basis. Chronic treatment (4-12 months) with an oral single evening dose of bromocriptine is able to control plasma PRL at least as well as the traditional tid regimen (2.8-21.6 ng/ml vs 1.2-31.8 ng/ml). Furthermore, during this single dose regimen the side effects were of lesser intensity and extent. Since the compliance of the patients with the single dose regimen was very good and the efficacy the same in reducing plasma PRL and controlling the clinical manifestations with a lower rate of side effects, we suggest to extend this regimen to all patients with hyperprolactinemia treated with bromocriptine after successful reduction of plasma PRL levels is obtained.

Administration, Oral↗

Effects of a new long-acting form of bromocriptine on tumorous hyperprolactinemia.

Recently, a new long-acting form of bromocriptine (Parlodel LA, Sandoz) has been developed and it has already been found to be effective in lowering plasma PRL levels in normal volunteers and postpartum women. This work reports the clinical, hormonal and radiological effects of a single 50 mg dose of long-acting bromocriptine in 10 patients with tumorous hyperprolactinemia (2 microprolactinomas, 6 macroprolactinomas, 1 acromegaly and 1 nonsecreting macroadenoma). A rapid and long-lasting (28 days) normalization of PRL levels was observed in patients with microprolactinoma, acromegaly and nonsecreting adenoma. None of the 6 patients with macroprolactinoma underwent normalization of plasma PRL, but the latter was markedly reduced (61-80% of basal levels). A second injection of the drug in 5 macroprolactinoma patients induced a further reduction of plasma PRL levels in 2 of them. No changes in the tumor size were observed either after the first or the second injection of long-acting bromocriptine in any of the patients. This injectable form of bromocriptine induced nausea and/or mild hypotension lasting a few h in 4 of the 10 patients and was better tolerated than the oral form as regards both the duration and intensity of the side effects. Thus, as this drug has proved to be efficacious and well tolerated by the patients, this long-acting form of bromocriptine may be a valid therapeutical approach for initiating medical treatment of patients with prolactinoma.

Acromegaly↗

Initial treatment of thyrotoxic Graves' disease with methimazole: a randomized trial comparing different dosages.

We evaluated the efficacy of different doses of methimazole (MMI) as the initial therapy for Graves' disease. Fourteen patients were treated with 15 mg/die of the drug (group A) and 14 with 30 mg/die (group B). Blood samples for T3, T4, FT3 and FT4 were obtained before beginning therapy, every 48 h during the first 12 days and on the 45th day of treatment. All these hormonal parameters fell significantly from the 2nd day of therapy in both groups. All the patients, except for one in group B, had normal or subnormal levels of thyroidal hormones on the 45th day of treatment. The comparison between the two groups of regression coefficients over the first 12 days showed no significant differences. The absolute decrease of each examined parameter on day 12 was positively correlated with the relevant pretreatment value. These results demonstrate that doses of MMI (15 mg/die) much lower than those commonly recommended are able to rapidly control thyroidal overproduction as effectively as 30 mg/die.

Adult↗

Growth hormone responses to pyridostigmine in normal adults and in normal and short children.

There is evidence indicating that the cholinergic system positively modulates GH release probably by inhibiting somatostatinergic tone. In the present study, the effects of cholinergic enhancement by pyridostigmine, (PD), a cholinesterases inhibitor, on GH release in normal adults (n = 14) (NA) and in both normal (n = 5) (NC) and short children (n = 19) (SC) with familial short stature (n = 7) or constitutional growth delay (n = 12) were studied. In SC the insulin hypoglycaemia (IH)-induced GH increase was also studied. In both NC and SC 60 mg orally PD induced a significant GH increase with mean peak at 90 min (mean +/- SEM 11.0 +/- 2.2 ng/ml in NC and 11.2 +/- 2.3 ng/ml in SC). The GH areas under response curve (AUC) were 379.3 +/- 76.6 and 327.8 +/- 43.2 ng/ml/h in NC and SC respectively. In NA 120 mg orally PD induced a significant GH increase with mean peak at 120 min (5.1 +/- 1.1 ng/ml) which was significantly lower (P less than 0.05) than that observed in both NC and SC. This statistical difference was strengthened by evaluating AUC (NA:205.6 +/- 33.7 ng/ml/h, P less than 0.05 vs NC and SC). The correlation of drug dosage with body area ruled out that this difference could be related to the different PD dose in adults and children. In SC, IH induced a GH increase significantly lower than that observed after PD (GH peak 7.8 +/- 0.6 vs 16.4 +/- 1.9 ng/ml P less than 0.001).(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Enhancement of cholinergic tone by pyridostigmine promotes both basal and growth hormone (GH)-releasing hormone-induced GH secretion in children of short stature.

Increased cholinergic tone induced by pyridostigmine (PD) increases basal plasma GH levels and potentiates the GH response to GHRH in normal adults. In this study the effects of PD (60 mg, orally) on both basal and GHRH (1 microgram/kg)-induced GH secretion in seven children with familial short stature (FSS), six with GH deficiency (GHD) and 10 with constitutional growth delay (CGD) were studied and compared with results obtained by stimulation with insulin-induced hypoglycemia (IH) and GHRH alone. The mean peak plasma GH levels were variable, but individual values were frequently low in all groups after both IH [FSS, 9.7 +/- 1.3 (+/- SEM) ng/mL; GHD, 1.6 +/- 0.4 ng/mL; CGD, 7.0 +/- 0.8 ng/mL] and GHRH (FSS, 23.8 +/- 6.6 ng/mL; GHD, 11.1 +/- 5.8 ng/mL; CGD, 15.1 +/- 4.5 ng/mL) administration. PD induced GH responses (FSS, 14.5 +/- 1.6 ng/mL; GHD, 3.8 +/- 0.8 ng/mL; CGD, 18.3 +/- 3.2 ng/mL) that in many children in the FSS and CGD groups were higher than those after IH and GHRH treatment. PD clearly increased the GH response to GHRH in all children [FSS, 69.5 +/- 9.4 ng/mL (P less than 0.01 vs. other stimuli); GHD, 18.0 +/- 7.5 ng/mL; CGD, 50.0 +/- 8.5 ng/mL (P less than 0.01 vs. other stimuli)]. We conclude that in children with short stature, as in adults, enhancement of cholinergic tone increases both basal and GHRH-induced GH secretion, and that PD plus GHRH is the best provocative stimulus for evaluating the somatotroph response.

Adolescent↗

Cholinergic involvement in the growth hormone releasing hormone-induced growth hormone release: studies in normal and acromegalic subjects.

To throw light onto the mechanism(s) by which the cholinergic system influences growth hormone (GH) release, the effects of two muscarinic receptor blockers, pirenzepine and atropine, and of an acetylcholinesterase inhibitor, pyridostigmine bromide, on the GH response to GHRH-44 were studied in 19 normal volunteers. Moreover, the effects of pirenzepine administration on plasma GH levels both in basal conditions and after stimulation by GHRH-44 and TRH were studied in 9 acromegalics. Both pirenzepine (0.6 mg/kg i.v., 5 min before GHRH) and atropine (1 mg i.m., 15 min before GHRH) blunted the GH response to GHRH (1 microgram/kg i.v. bolus) (area under the response curve, AUC: 81.3 +/- 17.3 vs. 481.2 +/- 211.3 ng/ml/h for pirenzepine and 100.2 +/- 27.0 vs. 364.7 +/- 81.0 ng/ml/h for atropine; p less than 0.01). Pyridostigmine (120 mg orally, 30 min before GHRH) induced a variable but significant (p less than 0.02) rise in basal plasma GH levels and, furthermore, an unequivocal potentiation of the GH response to GHRH (AUC: 1044.6 +/- 245.3 vs. 481.2 +/- 211.3 ng/ml/h; p less than 0.01). In all but one acromegalics 0.6 mg/kg i.v. pirenzepine was unable to modify the basal GH levels whilst it showed a variable inhibitory effect on the GH response to GHRH. The GH response to TRH (200 micrograms i.v. bolus) was instead unmodified by pirenzepine. In conclusion, muscarinic receptor blockade inhibits while cholinergic potentiation seems to positively modulate the GH response to GHRH. Therefore, the cholinergic system seems to positively modulate the GHRH effect on somatotrophs.(ABSTRACT TRUNCATED AT 250 WORDS)

Acromegaly↗

Comparison between pituitary computed tomographic findings and tests of hypothalamo-pituitary function in 72 patients with hyperprolactinaemia.

To verify the diagnostic capacity of some dynamic tests of the prolactin (Prl) secretion, the findings obtained by high-resolution computed tomography (CT) were compared with results obtained from tests using nomifensine (NOM) domperidone (DOM) and thyrotrophin-releasing hormone (TRH) in 72 patients with pathological hyperprolactinaemia. None of the patients with tumours had a positive Prl response to NOM or to DOM administration; however, a positive response to these tests was present in only 24 and 41%, respectively, of the patients with normal CT picture. The results of TRH testing were similar to those obtained with DOM. Different neuroendocrine patterns were disclosed by comparing pituitary Prl and thyrotrophin (TSH) responses to DOM: 1) some subjects had a reduced Prl response together with an exaggerated or normal TSH response to DOM; they comprised patients with tumour, empty sella, and normal CT picture; 2) other patients with normal CT picture had a positive Prl and a normal TSH response to DOM. These results demonstrate that a negative Prl response to NOM and DOM characterizes all patients with adenoma; however, the tumour-like responses in patients with no visible tumours seem to reduce the diagnostic value of these tests, unless the latter may predate the radiological appearance of an adenoma. On the other hand, a positive Prl and a normal TSH response to DOM exclude the presence of a pituitary tumour. This diagnostic finding is strengthened by the positive response also to NOM. Whatever may be the diagnostic validity of dynamic tests, they provide sound information on the functional state of dopamine neurotransmission.

Adenoma↗

Potentiation of cholinergic tone by pyridostigmine bromide re-instates and potentiates the growth hormone responsiveness to intermittent administration of growth hormone-releasing factor in man.

It is known that in normal subjects repeated administration of the growth hormone-releasing factor (GRF) induces a state of partial refractoriness of the somatotropes to GRF. Studies were conducted to verify whether the cholinergic system plays a role in the mechanism(s) underlying the reduced GH responsiveness to the neuropeptide. In five healthy men, the GH response to three consecutive injections of GRF (50 micrograms iv), administered at 2 h intervals, was considerably blunted after the second and third GRF bolus. Administration of the inhibitor of cholinesterase, pyridostigmine bromide (120 mg orally) 30 min before the second GRF bolus, not only restored but greatly potentiated the GH responsiveness to the second GRF bolus. The GH response to the third GRF bolus was not apparently influenced by pre-treatment with pyridostigmine. These data reinforce the view that cholinergic neurotransmission plays an important role in the control of GH secretion in human.

Adult↗

Prolactin and thyrotropin response to blockade of dopamine synthesis by monoiodotyrosine in subjects with postpartum and pathological hyperprolactinemia.

To better understand the state of dopamine (DA) neurotransmission in the tuberoinfundibular DA system (TIDA), monoiodotyrosine (3-iodo-L-tyrosine, MIT), a potent inhibitor of DA synthesis, was acutely administered to 8 normal women, 7 postpartum women, 8 women with pathological hyperprolactinemia and 5 women after successful removal of a prolactinoma. The effects on plasma prolactin (PRL) and thyrotropin (TSH) were compared to those induced in the same subjects by the DA receptor antagonist domperidone (DOM). MIT (1 gpo) and DOM (10 mg iv) induced qualitatively similar hormonal responses, although the PRL- and TSH-releasing effects of DOM were always greater than those of MIT. In control subjects, MIT treatment induced a consistent rise in plasma PRL (peak increment 45.2 +/- 13 ng/ml at 120 min); in the same subjects DOM induced a prompter and higher PRL response, (peak increment 147.8 +/- 26 ng/ml at 30 min). MIT failed to alter plasma TSH levels, while DOM induced a significant rise in plasma TSH. In postpartum women MIT induced a prompter and higher PRL rise than that occurring in controls (peak increment 180.3 +/- 20 ng/ml at 90 min), though also in this instance DOM proved to be a more potent PRL releaser (peak increment 345.7 +/- 88 ng/ml at 30 min) than MIT. MIT was unable to stimulate TSH secretion, while DOM induced a significant rise in plasma TSH. In women with pathological hyperprolactinemia MIT failed to alter baseline PRL levels while DOM slightly increased them (peak increment 14.7 +/- 3 ng/ml at 30 min).(ABSTRACT TRUNCATED AT 250 WORDS)

Adenoma↗

Prolactin and TSH responses to both domperidone and TRH in normal and hyperprolactinaemic women after dopamine synthesis blockade.

A study of the effect of alpha-methyl-1-tryosine (metyrosine) blockade (2 g/d for 2 d) of dopamine (DA) synthesis on the PRL and TSH response to domperidone (DOM) and TRH in normal women and subjects with pathological hyperprolactinaemia is reported. In the normal subjects, there was a marked increase in basal PRL (51.7 +/- 11.1 vs 5.7 +/- 1.0 ng/ml) and the PRL and TSH responses to DOM were abolished. The PRL response to TRH was also reduced. In the hyperprolactinaemic subjects, metyrosine had no effect on basal PRL nor on the virtually non-existent PRL response to DOM, whereas it abolished the exaggerated TSH response. The conclusion is drawn that the response of both PRL and TSH to DA receptor blockers is really dependent upon DA inhibitory tone. A fall in this tone can also be postulated as responsible for the hyporesponsiveness of PRL to DOM frequently observed in pathological hyperprolactinaemia. In addition, the fact that metyrosine also abolished the exaggerated TSH response to DOM shows that the latter is totally dependent on enhanced DA inhibition of the thyrotrophs. Lastly, the reduced PRL response to TRH after metyrosine indicates that DA partly determines the ability of the lactotrophs to respond to TRH.

Adult↗

Estrogenic treatment does not modify the TSH and PRL responses to domperidone and TRH in patients with tumoral hyperprolactinemia.

To verify if the low estrogen regimen could condition the TSH hyperresponsivity and PRL hyporesponsivity to antidopaminergic drugs seen by us and others in patients bearing prolactinoma, the effect of ethynilestradiol treatment (50 micrograms/day/14 days) on TSH and PRL responses to domperidone in 6 women with tumoral hyperprolactinemia and hypoestrogenemia were studied. Estrogenic treatment was unable to modify the TSH and PRL responsiveness either to domperidone and TRH. These data do not support the hypothesis that hypoestrogenemia could cause the peculiar TSH and PRL pattern in response to antidopaminergic drugs, in patients bearing prolactinoma. Also the TRH releasable pool of TSH and PRL in these patients seems to be unaffected by estrogenic treatment.

Adult↗

Blockade of hp-GRF-40-induced GH release in normal men by a cholinergic muscarinic antagonist.

In five healthy young men, pretreatment with the cholinergic muscarinic antagonist pirenzepine (0.6 mg/kg iv) almost completely abolished the rise in plasma growth hormone (GH) elicited by an iv bolus injection of 1 microgram/kg human pancreatic GH-releasing factor 1-40 (hp-GRF-40). These data demonstrate that cholinergic receptor sites involved in GH-releasing mechanisms do not interact with GRF-secreting structures in the central nervous system. A mechanism mediated via hypothalamic release of somatostatin or, alternatively, a direct pituitary site of action, can be postulated for the blocking effect of pirenzepine.

Adult↗

Prolactin lowering effect of amphetamine in normoprolactinemic subjects and in physiological and pathological hyperprolactinemia.

The effect on plasma prolactin (PRL) of d-amphetamine (Amph) was studied in normo- and hyperprolactinemic subjects. In normoprolactinemic women Amph failed to lower plasma PRL levels when infused intravenously over 1 h at the dose of 7.5 mg, but induced at the dose of 15.0 mg a modest inhibition of plasma PRL (maximum PRL inhibition 20 +/- 4.5% at 45 min). Likewise, in puerperal women Amph at the dose of 7.5 mg did not decrease significantly plasma PRL levels but it was active in this respect (maximum inhibition 37 +/- 10% at 120 min) at the dose of 15.0 mg. In subjects with presumptive evidence of a PRL-secreting adenoma, Amph at either the 7.5 mg or the 15.0 mg dose failed to alter baseline PRL levels. These results indicate that Amph is a poor PRL suppressor in either normo- or hyperprolactinemic subjects. It is proposed that this may be due to the drug's ability to effect release of dopamine mainly from a non-granular pool of the amine.

Adenoma↗

Reciprocal pattern of the TSH and PRL responses to dopamine receptor blockade in women with physiological or pathological hyperprolactinaemia.

The TSH and PRL responses to administration of the two dopamine (DA) receptor antagonists sulpiride and domperidone, were studied in fifteen normoprolactinaemic subjects, twenty-two post-partum women and sixteen subjects with presumptive evidence of (six subjects) or surgically confirmed (ten subjects) prolactinomas. Sulpiride (100 mg i.m.) or domperidone (10 mg i.v.) elicited a slight increase in basal TSH levels in both normoprolactinaemic and post-partum women, but induced a clear-cut TSH rise in subjects with a tumour. Conversely, sulpiride and domperidone strikingly stimulated PRL secretion in normoprolactinaemic and post-partum women, but only slightly enhanced base-line PRL levels in women with prolactinomas. The reason for the reciprocal pattern of TSH and PRL responsiveness to DA receptor blockade of post-partum women and subjects with prolactinomas is presently obscure. Since baseline PRL levels in the two hyperprolactinaemic states overlapped widely, it would appear that hyperprolactinaemia per se is not responsible for such behaviour.

Adolescent↗