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Biomedical subjects

P G Chiodini

Publications and source records attributed to P G Chiodini.

At least 19 recordsLinked to original sources

Doxorubicin for acromegaly: a case report.

We report the case of an acromegalic woman, aged 35 years, with a huge GH-secreting tumor, repeatedly treated with neurosurgery and radiotherapy, not responsive to bromocriptine (Br) and octreotide (SMS), whose clinical picture evolved to coma due to endocranic hypertension. Since remnant size was too large to be further treated by surgery, chemotherapy with doxorubicin (DOX) (100 mg i.v. every three weeks up to 0.5 mg/m2 over 7 months) was started. Treatment was followed by a rapid improvement of clinical picture with resumption out of coma, progressive decline of GH levels (from 800 ng/ml to 15 ng/ml) and a slight shrinkage of tumor. No side effects were observed during DOX administration. We suggest that in those few acromegalic patients resistant both to SMS and Br, and with poor prognosis, DOX may be effectively used.

Acromegaly

Amyotrophic lateral sclerosis: thyroid and prolactin hormone changes in thyrotropin-releasing hormone therapy.

13 patients with amyotrophic lateral sclerosis (ALS) were treated with intravenous infusion of thyrotropin-releasing hormone (TRH). In 6 patients 2 mg/day of TRH was i.v. given over 2 hours for 10 days. In 7 others 2 mg/day of TRH was continuously infused by means of a pump. An increase of thyroid hormones related to the duration of the treatment was observed. A surprising finding was the onset of prolactin (PRL) response to growth hormone releasing hormone (GHRH), previously absent.

Amyotrophic Lateral Sclerosis

Prolactin response to growth hormone-releasing hormone during chronic thyrotropin-releasing hormone infusion in the treatment of amyotrophic lateral sclerosis.

In six patients suffering from amyotrophic lateral sclerosis we evaluated changes of T4, T3, TSH, PRL, and GH during treatment by continuous iv infusion of TRH for at least 15 days. No clinical improvement was detected. A significant rise of thyroid hormone levels was observed, as well as an upward trend of basal TSH levels and no change of basal PRL and GH levels. TRH acute test-induced TSH and PRL responses became blunted. Treatment provoked also the onset of a responsiveness of PRL to GHRH. The reduced TSH and PRL responses to acute TRH test during treatment could be explained by a down-regulation of TRH pituitary receptors. On the contrary, the onset of PRL responsiveness to GHRH is at present without a satisfactory explanation.

Amyotrophic Lateral Sclerosis

Resistance to a long-acting somatostatin analog (SMS 201-995) reversed by surgery in acromegaly.

A 42-year-old woman had acromegaly and a large macroadenoma with supra- and parasellar extension. Her GH levels (median 85 ng/ml, range 63-170 ng/ml) were not responsive to TRH (200 micrograms iv), GHRH (100 micrograms iv) and bromocriptine (Br 2.5 mg po) acute tests; Sm-C level was 8 U/ml. She was treated with octreotide (SMS) (up to 1500 micrograms daily) for 3 months. No changes of clinical, biochemical and radiological findings were seen, therefore she underwent transsphenoidal surgery. After surgery, hypopituitarism and diabetes insipidus appeared: GH levels remained high (median 45 ng/ml; range 37-56 ng/ml), but became responsive to Br acute test. The patient was given SMS again, and this resulted in clinical improvement, marked reduction of GH and Sm-C levels and slight shrinkage of the residual tumor. Speculative hypotheses about this previously unreported phenomenon might be either an excess of both GHRH and somatostatin, caused by a primary increase of dopaminergic tone, or a primary excess only of GHRH; in both cases the surgical lesion of the hypothalamic-pituitary region might have impaired the neurohormones inflow to the residual pituitary and so let SMS and Br exert their inhibitory actions on GH secretion.

Acromegaly

Effects of theophylline infusion on the growth hormone (GH) and prolactin response to GH-releasing hormone administration in acromegaly.

Since theophylline has been shown to blunt the GH response to growth hormone-releasing hormone (GHRH) in normal subjects, we investigated whether the same effect of theophylline administration could be reproduced in patients with active acromegaly. Ten acromegalic patients received on two different days 100 micrograms GHRH iv alone and the same GHRH dose during a constant infusion of theophylline (3.56 mg/min), beginning 2 h before GHRH administration. In the whole group theophylline did not affect basal GH secretion significantly (from a mean of 44.6 +/- 14.4 at 0 min to 41.8 +/- 13.5 ng/ml at 120 min). However, the amount of GH released after GHRH stimulation was lower when theophylline was concomitantly infused (7525 +/- 3709 ng min/ml vs. 12038 +/- 6337 ng min/ml; p less than 0.05). The inhibitory effect of theophylline was not homogeneous, since either marked or minimal reductions of the GHRH-stimulated GH secretion occurred. Serum PRL levels increased after GHRH administration in 6 patients and theophylline infusion had no influence upon this response. Peak GHRH levels were not different in both studies (14.9 +/- 1.7 and 17.1 +/- 4.0 ng/ml, respectively). Free fatty acid levels rose progressively during theophylline administration (from 0.66 +/- 0.10 at 0 min to 1.04 +/- 0.10 mEq/l at 240 min) and were significantly higher than after GHRH stimulation alone from 180 min up to the end of the test. Our results demonstrate that in active acromegaly theophylline blunts the GH response to GHRH, though this effect is not uniformly seen in all patients.(ABSTRACT TRUNCATED AT 250 WORDS)

Acromegaly

Medical treatment of acromegaly with SMS 201-995, a somatostatin analog: a comparison with bromocriptine.

We studied the effects of acute and chronic sc administration of SMS 201-995 (SMS), a long-acting somatostatin analog, in acromegalic patients. The results were compared with those obtained in the same patients treated with oral bromocriptine (Brc). A single dose of 50 micrograms SMS administered to 28 patients induced a more rapid, greater, and more prolonged reduction in plasma GH levels than did 2.5 mg Brc. Chronic treatment [60-330 days; mean 208 +/- 23 (+/- SEM)] with SMS (100-300 micrograms/day) induced in 16 patients a significantly greater decrease in mean plasma GH and somatomedin-C levels than did 20 mg Brc. Combined treatment with the 2 agents had an additional effect. The clinical and metabolic parameters of acromegaly dramatically improved in all patients whose plasma GH and somatomedin-C levels decreased even if they were not normalized by SMS. Reduction in tumor size occurred in 3 of the 10 patients examined by computed tomography before and during SMS treatment. We conclude that SMS is more effective than Brc and that the 2 drugs may be complementary in the medical treatment of acromegaly.

Acromegaly

Bromocriptine does not alter growth hormone (GH) responsiveness to GH-releasing hormone in acromegaly.

GHRH (100 micrograms) and TRH (200 micrograms) were administered to 24 active acromegalic patients before and during chronic bromocriptine (Br) treatment (Br, 10-15 mg/day for 3-5 months) to evaluate the possible effects of the dopamine agonist on GH release induced by these releasing hormones. Mean daily plasma GH levels were reduced by Br treatment from 34 +/- 40 (SD) to 16 +/- 19 ng/ml (P less than 0.01). No significant changes were found when comparing the GH response to GHRH as mean area under the response curve (nanograms per min/ml above the basal) (pretreatment, 5453 +/- 7843; during Br, 7017 +/- 12763 ng/ml . min), and as mean individual peak GH values (pretreatment, 130 +/- 148; during Br, 126 +/- 187 ng/ml) before and during treatment. The percentage GH increase (pretreatment, 340 +/- 354; during Br, 617 +/- 539%) was however significantly higher during Br. Br treatment significantly reduced the GH response to TRH in terms of mean of individual peak levels (from 136 +/- 134 to 60 +/- 52 ng/ml; P less than 0.01) and area under the response curve (from 3142 +/- 3998 to 1331 +/- 1646 ng/min . ml; P less than 0.01). However, the percentage GH increase was not significantly different (pretreatment, 486 +/- 729; during Br, 1059 +/- 1862%). When the patients were divided into Br responders, i.e. mean daily GH reduction during Br of at least 50% below baseline, and nonresponders, the initial response to GHRH was significantly higher in the latter group, but was unaffected by Br treatment in either group. On the contrary, the response to TRH, statistically significant initially only in the Br responder group, was reduced by Br treatment. We suggest that cells sensitive to Br and TRH but not to GHRH (lactotroph-like) and cells sensitive to GHRH but not to Br (pure somatotrophs) may coexist in GH-secreting adenomas.

Acromegaly

Growth hormone-releasing hormone infusion in patients with active acromegaly.

To determine GH-releasing hormone (GHRH)-stimulated GH secretion in patients with active acromegaly, nine patients received a 50-microgram GHRH-(1-44) bolus dose followed by a 2-h infusion with 100 micrograms GHRH/h, after which a second 50-microgram GHRH bolus dose was given. Serum GH, PRL, and immunoreactive GHRH levels were measured from 2 h before to 1 h after the end of the infusion and compared with hormone levels in six normal subjects subjected to the same protocol. In addition, seven of the nine acromegalic patients received 100 micrograms GHRH as an iv bolus dose, followed by a 2-h saline infusion on a different day. After the 100-micrograms GHRH bolus dose, the mean GH level increased from 55.9 +/- 18.0 (+/- SE) to 148.5 +/- 40.0 ng/ml within 15 min. Thereafter, GH levels decreased and were significantly lower at 90 and 120 min compared to the peak level 15 min after GHRH injection. After the 50-micrograms GHRH bolus dose, all acromegalic patients except two also had a clear-cut rise of GH levels, with the mean GH level increasing from 37.5 +/- 13.2 to 108.4 +/- 55.0 ng/ml at 60 min. Thereafter, elevated GH levels were sustained in the acromegalic patients throughout the GHRH infusion. In contrast, normal subjects had a significant decrease in the initially elevated GH levels, despite continuous GHRH infusion. There were no significant differences between PRL secretion and immunoreactive GHRH levels in either group. These findings suggest that patients with active acromegaly not only have elevated basal GH levels, but also have a greater ready releasable GH pool and/or accelerated GH turnover compared to those of normal subjects, which cannot be exhausted by a 2-h GHRH infusion.

Acromegaly

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

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