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Biomedical subjects

G Oppizzi

Publications and source records attributed to G Oppizzi.

At least 37 records · Page 2Linked to original sources

Relationship between somatomedin-C and growth hormone levels in acromegaly: basal and dynamic evaluation.

The relationship between basal and stimulated plasma GH and somatomedin-C (SmC) levels in acromegalic patients was evaluated. The basal plasma SmC levels of 66 patients were significantly correlated (P less than 0.01) with mean daily plasma GH levels, but not with the percent GH increase after GH-releasing hormone or TRH or the GH decrease after acute bromocriptine administration. Bromocriptine (7.5-15 mg/day) administration for 9.2 +/- 0.9 (+/- SD) months in 20 patients significantly (P less than 0.05) decreased GH levels. SmC decreased significantly [from 9.8 +/- 1.9 to 5.1 +/- 0.7 U/ml (mean +/- SE)] only in the 10 patients who had the more marked GH inhibition. The administration of a somatostatin analog, SMS 201-995 (100 micrograms twice daily), to 12 patients for 16 weeks significantly decreased plasma GH and SmC levels beginning on the second day of therapy; normal SmC levels were achieved in 5 of 12 patients. Pituitary adenomectomy resulted in normal GH and SmC levels in 10 of 12 and 8 of 12 patients, respectively. Our data indicate an overall dependency of plasma SmC levels on plasma GH levels in acromegaly, although similar GH levels may have differing somatomedin-stimulating activities. A derangement in the feedback mechanisms controlling GH secretion is indicated by the failure of elevated SmC levels to influence the GH responsiveness to releasing hormones. In evaluating pharmacological or surgical treatments of acromegaly, a single plasma SmC value can reliably replace several plasma GH determinations.

Acromegaly↗

Serum type III procollagen propeptide levels in acromegalic patients.

Serum type III procollagen propeptide (PIIIP) is a reliable index of tissue collagen synthesis. Since in acromegaly there is increased collagen production, we measured serum PIIIP in acromegalic patients before any treatment (basal), during medical treatment with the somatostatin analog SMS 201-995, and after pituitary adenomectomy. In all patients, serum GH and plasma somatomedin-C (SmC) levels were also measured. Basal serum PIIIP levels were significantly (P less than 0.01) higher in acromegalic patients (mean +/- SEM, 22.7 +/- 2.1 ng/ml) than in normal subjects (n = 30; 9.7 +/- 0.5 ng/ml), and they were significantly correlated with plasma SmC values (r = 0.31; P less than 0.05). A significant (P less than 0.01) reduction in PIIIP levels occurred in patients treated with SMS 201-995 or surgery (from 24.3 +/- 2.7 to 12.4 +/- 1 ng/ml) as well as in GH and SmC levels. The maximum percent decrease in serum PIIIP was significantly correlated with those in GH (r = 0.65; P less than 0.01) and SmC (r = 0.60; P less than 0.01). Serum PIIIP levels did not change in those patients in whom neither GH nor SmC were decreased by treatment. In conclusion, serum PIIIP levels are elevated in acromegalic patients, and they decline in parallel with GH and SmC during medical or surgical treatment. Serum PIIIP measurements may be useful in the evaluation of acromegalic patients to gain information on the biological activity of GH and in monitoring the course of the disease.

Acromegaly↗

Low doses of dopamine agonists in the long-term treatment of macroprolactinomas.

To evaluate the long-term effects of dopamine agonists in the treatment of macroprolactinoma, we studied prolactin levels and tumor size for 30 to 88 months (57 +/- 14, mean +/- S.D.) in 38 patients treated with bromocriptine or lisuride. Elevated prolactin levels became normal in 30 patients, and the tumor shrank in 29. After two years of treatment, we attempted to reduce the maintenance dose (5 to 20 mg of bromocriptine per day or 0.4 to 0.8 mg of lisuride per day); in 21 patients no changes in prolactin levels or tumor size were observed over 6 to 52 months with 0.625 to 10 mg of bromocriptine per day or 0.05 mg of lisuride per day. However, it was possible to withdraw the drug in only one patient. We conclude that dopamine agonists are usually effective treatments for macroprolactinoma and that after a response has been obtained, it can be maintained in many patients with a greatly reduced dose.

Adenoma↗

Effect of chronic bromocriptine administration on tumor size in patients with "nonsecreting" pituitary adenomas.

The effect of chronic bromocriptine administration (7.5-20 mg/day for 1-32 months) on the size of "nonsecreting" pituitary adenomas (NPA) was studied in 20 patients. Brain computed tomography showed a marked reduction of the adenoma in one patient after 1 month of treatment (7.5 mg/day); further scans taken 2 and 15 months later, under the same bromocriptine dose, did not show any other variations in the tumoral mass. In the remaining 19 patients, no changes in tumor size were documented by CT during the treatment. Four patients had a worsening of visual fields during bromocriptine administration and they were referred for neurosurgery. In conclusion, bromocriptine was ineffective in reducing tumor size in all but one patient with NPA and, in some cases, it did not prevent tumor growth as is suggested by the worsening of visual fields. Thus, bromocriptine treatment, at least at the doses capable of shrinking macroprolactinomas, seems to be of limited value in patients with NPA.

Adenoma↗

Effect of the new ergot derivative terguride on plasma PRL and GH levels in patients with pathological hyperprolactinemia or acromegaly.

Terguride, a derivative of lisuride, has been shown to possess a mixed dopaminergic-antidopaminergic activity in experimental models. We have studied the effects on PRL and GH levels of 0.2 mg po of terguride in 8 normal subjects, in 15 patients with pathological hyperprolactinemia (PHP) and in 17 patients with active acromegaly. In PHP, PRL levels were significantly reduced up to 300 min after terguride with a nadir (45 +/- 4.0% SE) significantly lower (p less than 0.05) than the one observed in the 8 normal subjects (72 +/- 3.5%). There was no significant difference in plasma PRL levels after 0.2 mg terguride or lisuride in 7 out of 15 patients tested with both drugs. Terguride did not significantly modify GH levels in PHP and in normals but when considering basal and peak (occurring between 60 and 150 min) GH values, a significant difference was found (p less than 0.01). Mean peak of GH did not differ significantly between PHP (5.0 +/- 1.1 ng/ml) and normals (6.8 +/- 1.7 ng/ml). Plasma GH levels of 17 acromegalics were not modified by 0.2 mg of terguride but were significantly reduced by 2.5 mg of bromocriptine. Terguride and bromocriptine reduced PRL levels in acromegalics (p less than 0.01) without any significant difference between the two drug. 0.2 mg terguride bid given for 15 days to 7 healthy volunteers significantly reduced both basal and sulpiride (25 mg im)-stimulated PRL levels. Side effects were observed only in 4 out of 47 subjects tested with terguride and in 8 out of 34 tested with bromocriptine.

Acromegaly↗

Changes in growth hormone (GH) secretion induced by human pancreatic GH releasing hormone-44 in acromegaly: a comparison with thyrotropin-releasing hormone and bromocriptine.

We studied the effects of 100 micrograms human pancreatic GH releasing hormone-44 (GRH) in 35 acromegalic patients. Plasma GH levels significantly increased [basal, 30 +/- 10 (SE) ng/ml; peak, 82 +/- 21 ng/ml; P less than 0.01], but a wide intersubject variability of the responses was found (range, 20-1602%). No relationship was found between the percentage GH increase after GRH and basal values of GH, PRL, or somatomedin-C. All patients also underwent an acute test with bromocriptine (2.5 mg orally) and TRH (200 micrograms iv). When dividing the patients according to their GH responsiveness to bromocriptine (Br), an inverse correlation (r = -0.42, P less than 0.05) was found between percentage of GH changes after GRH and after Br; moreover Br responder patients had a lesser (P less than 0.001) GH increase after GRH (124 +/- 27%) than nonresponders (562 +/- 116%). No relationship was found between the GH response to TRH and GRH, and no differences were found between the percentage GH increase after TRH (513 +/- 117%) and after GRH (349 +/- 71%). We conclude that the tumoral somatotrophs are sensitive to their specific releasing hormone and we suggest that the presence in the adenoma of cells with surface membrane receptors similar to those on the lactotropes may explain the lower sensitivity to GRH of Br responders compared to nonresponders.

Acromegaly↗

Cushing's disease and marked hyperprolactinemia in a patient with a pituitary macroadenoma: effectiveness of bromocriptine treatment.

The case of a young boy bearing a pituitary PRL secreting adenoma (20-30,000 ng/ml) with the unusual association of clinical and endocrinological features of Cushing's disease successfully treated with bromocriptine is described. Brain computed tomography evidenced a huge pituitary adenoma leading to visual field defects and raised intracranial pressure. Due to the very large size of the tumor, which rendered the complete neurosurgical removal unlikely, medical treatment with bromocriptine (10 mg/day) was started. Follow-up for more than six months demonstrated an impressive reduction of tumor size, the lowering of prolactin levels into the normal range, the normalization of visual field, and the regression of both clinical and biochemical signs of hypercortisolism.

Adenoma↗

Dopaminergic treatment of acromegaly: different effects on hormone secretion and tumor size.

We studied the effects of long term treatment with bromocriptine (Br) or lisuride (L) on GH secretion and tumor size in 19 acromegalic patients with large pituitary adenomas. In 22 additional patients with smaller adenomas, only plasma GH levels were monitored during treatment. All patients underwent an acute test with 2.5 mg Br or 0.3 mg L and, on the basis of GH changes, were classified as responders, i.e. reduction in circulating GH concentrations by at least 50% below baseline, or as nonresponders. The chronic treatment was 5-20 mg/day Br in 26 patients or 0.3-2.0 mg/day L in 15 patients. Treatment was given for 4-26 months (mean +/- SE, 13.3 +/- 2.8 months). Plasma GH levels (baseline, 46.3 +/- 8.3 ng/ml) were significantly lower in the group as a whole (22.7 +/- 3.6 ng/ml; P less than 0.01) after the first month of treatment with dopamine agonist agents. GH levels decreased significantly in those acromegalic patients who responded to the acute test (P less than 0.001), but were unchanged in the nonresponders. In addition, there was a significant correlation between the maximal percent GH decrease in the acute test and the response during chronic treatment (r = 0.73; P less than 0.01). Computed tomography failed to show any tumor size changes in any of the GH nonresponders who had a macroadenoma . However, in two patients in the acute responder group with macroadenomas, chronic dopamine agonist therapy resulted in reduction of the extrasellar portion of the tumor (-30% and -40% of tumor area, respectively). These data show that although dopaminergic drugs lower GH levels and reverse signs and symptoms of active disease in those acromegalic patients who are responsive to an acute challenge, tumor size reduction occurred in a minority of such patients.

Acromegaly↗

Reenlargement of macroprolactinomas during bromocriptine treatment: report of two cases.

We report two cases with macroprolactinoma who during medical treatment with bromocriptine showed a normalization of PRL levels and a reduction of tumor size as documented by computed tomography. After a few months of therapy both patients suddenly complained of worsening of their visual fields and a computed tomography demonstrated a reenlargement of the tumor mass; whereas in one patient PRL levels remained always within normal range, in the other patient, who was taking spiramycin for an intercurrent illness, there was also an escape of the hormonal secretion from the inhibitory effect of bromocriptine. The first patient underwent surgery, whereas in the second patient continuation of bromocriptine and interruption of antibiotic treatment resulted in progressive improvement in visual fields and a reduction of tumor size again. We want to stress that in patients with macroprolactinomas responsive to the medical treatment both in terms of PRL secretion and of tumor size reduction, an escape from the effects of bromocriptine, although infrequently, may occur.

Adult↗

Effects of nomifensine on growth hormone and prolactin secretion in normal subjects and in pathological hyperprolactinemia.

We have studied the effect of the oral administration of 200 mg nomifensine (nom), a drug which activates the dopaminergic system, on GH and PRL secretion in 15 normal subjects, 18 patients with idiopathic hyperprolactinemia, and 17 patients with tumoral hyperprolactinemia. GH levels increased significantly after nom in normal subjects (basal, 0.96 +/- 0.76 ng/ml; peak 4.6 +/- 0.61 ng/ml; P less than 0.01) and patients with hyperprolactinemia, both idiopathic (basal, 1.0 +/- 0.38 ng/ml; peak, 4.2 +/- 1.0 ng/ml; P less than 0.05) and tumoral (basal 0.88 +/- 0.3 ng/ml, peak 6.68 +/- 1.2 ng/ml; P less than 0.01). Peak GH levels higher than 5 ng/ml were observed in 8 of 15 normal subjects, 6 of 18 patients with idiopathic hyperprolactinemia, and 8 of 17 patients with tumoral hyperprolactinemia. PRL levels decreased in response to nom in normal subjects, but not in patients with idiopathic or tumoral hyperprolactinemia. A reduction in plasma PRL levels of at least 30% below the baseline was observed only in two patients with idiopathic hyperprolactinemia and in none of the patients with tumoral hyperprolactinemia. These results demonstrate that nom does not discriminate between idiopathic and tumoral hyperprolactinemia. Since nom probably requires a hypothalamic pool of dopamine to bring about its GH stimulatory effect, the suggestion that the lack of a PRL-lowering effect of the drug is attributable to a dopamine deficiency is not supported by our data.

Adult↗

Size reduction of macroprolactinomas by bromocriptine or lisuride treatment.

We have administered to 29 patients with macroprolactinoma the dopamine agonists bromocriptine and lisuride for 1-50 months (mean +/- SE, 12.7 +/- 1.8) in order to assess the effects of these drugs on tumor size. Fourteen patients were treated with bromocriptine (dose range, 7.5-20 mg/day), 12 patients were treated with lisuride (0.6-2 mg/day), and 3 patients were given both drugs. Computed tomography performed before and during treatment showed the occurrence of tumor shrinkage in 18 patients (62%), but in no case was a complete disappearance of the tumor observed. In 5 of these patients, it was even possible to document tumor shrinkage within the first month of treatment with low doses of the dopamine agonists, whereas in other patients, tumors shrank only after prolonged treatment with higher doses. Visual field and acuity improved or normalized in 8 of the 13 patients with visual defects; in some cases, the improvement was reported as early as 2 days after the treatment was started. Plasma PRL levels fell in all patients who showed a reduction in tumor size; in 2 other patients, PRL levels were only poorly suppressed, and tumor size remained unchanged. In the remaining patients, PRL levels were lowered without convincing evidence of tumor shrinkage. In considering the high percentage of patients showing tumor shrinkage under medical treatment, we propose a course with dopamine agonists as the first step in the management of patients with macroprolactinomas regardless of the presence of visual impairments.

Adolescent↗

Homogeneity in the growth hormone-lowering effect of dopamine and somatostatin in acromegaly.

We have studied the effect of maximally inhibiting doses of dopamine (DA) or somatostatin on GH levels in 39 acromegalic patients. The GH-lowering effects of the two drugs were highly variable in different patients. A significant correlation (r = 0.45; P < 0.01) was found between the percent changes obtained during the infusions of DA (500 microgram/min) and somatostatin (3.33 microgram/min). Pretreatment with L-sulpiride markedly blunted the inhibitory effect of DA but did not affect the response to somatostatin. We conclude that the GH-secreting cells of acromegalic patients contain separate receptors for DA and somatostatin. We hypothesize that the partial or total lack of responsiveness to DA or somatostatin may be due to the loss of receptors for these agents on the GH-secreting neoplastic cells.

Acromegaly↗

Lisuride hydrogen maleate: evidence for a long lasting dopaminergic activity in humans.

In 12 acromegalics a single oral dose of 0.2 mg lisuride, an ergoline derivative, significantly reduced plasma PRL but not GH concentrations. Three-tenths milligram of the drug significantly reduced plasma levels of the two hormones. Four-tenths milligram of lisuride did not augment this inhibitory effect. Plasma PRL levels were suppressed in all patients, whereas GH levels were reduced by more than 50% of the base-line values in only seven patients who also responded to the administration of 2.5 mg bromocriptine (CB154). In the patients unresponsive to lisuride, CB154 also failed to change GH levels. The suppressive effect of lisuride started at 60 min (at 150 min for CB154) and plasma GH and PRL levels were still markedly suppressed at 300 min. Plasma GH and PRL concentrations were consistently reduced in two acromegalic patients during 2 weeks of chronic treatment with 0.3 mg lisuride four times a day. In six normal subjects, TRH-induced PRL release was significantly inhibited by pretreatment with 0.3 mg of the drug. The similarity in the effects of lisuride and CB154 suggests that the observed effects of lisuride on GH and PRL are attributable to the known dopaminergic activity of the drug. This conclusion is supported by the data showing that pimozide effectively counteracted the inhibitory action of lisuride on GH and PRL release. We suggest that lisuride may be of value in the medical treatment of acromegaly and hyperprolactinemic states.

Acromegaly↗

Evidence for a dopaminergic activity of methysergide in humans.

The acute administration of 2 mg of methysergide significantly reduced plasma prolactin levels in nine normal subjects and in seven hyperprolactinaemic patients. The prolactin lowering effect of this drug was abolished by sulpiride. Morever methysergide lowered plasma GH levels in four out of nine acromegalic patients, who were also responsive to a dopaminergic drug such as bromocriptine. Although methysergide did not significantly blunt the TRH-induced prolactin release, our data suggest that this drug may affect GH and prolactin release through a dopaminergic mechanism of action. This effect should be taken into account when methysergide is employed as antiserotoninergic drug in neuroendocrinological studies.

Acromegaly↗

Effect of dopamine infusion on plasma levels of growth hormone in normal subjects and in agromegalic patients.

In ten normal subjects and in twenty acromegalic patients plasma levels of growth hormone were studied after administration of L-dopa and a dopamine infusion. In the ten normal subjects L-dopa, but not dopamine, increased plasma levels of GH. In the acromegalic patients both L-dopa and dopamine were followed by an inhibition of GH release. Since dopamine does not cross the blood-brain barrier, these results, although not excluding a site of action at median eminence level, support the thesis that the inhibitory effect of dopaminergic stimulation on GH release in acromegaly possibly involves receptors present on GH-secreting cells.

Acromegaly↗

Inhibitory effect of an ergoline derivative, methergoline, on growth hormone and prolactin levels in acromegalic patients.

Plasma levels of growth hormone (GH) and prolactin (PRL) were measured in twelve acromegalic patients after acute administration of an ergoline derivative (methergoline) which has been proposed as a specific serotoninergic blocking agent. The administration of methergoline (4 mg p.o.) was followed by a significant decrease in plasma GH and PRL concentrations. The administration to the same subjects of CB 154 (2.5 mg p.o.), a known stimulator of dopaminergic receptors, led to results almost superimposable to those obtained with methergoline although the suppressive effect of CB 154 on GH and PRL levels was more sustained. Also on the ground of results obtained in these patients with the use of cyproheptadine, phentolamine, or pimozide, we have concluded that methergoline inhibition of GH and PRL release is, in acromegalic patients, most probably due to a dopaminergic mechanism of action.

Acromegaly↗