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Amelioration of acromegaly after pituitary infarction due to gastrointestinal hemorrhage from gastric ulcer.

We report a rare case of acromegaly in which pituitary infarction possibly developed in a GH-producing pituitary adenoma following gastrointestinal bleeding from peptic ulcer. In this case, pituitary infarction resulted in spontaneous remission of acromegaly associated with diabetes mellitus. In addition, detailed histological investigation revealed that clinically silent pituitary apoplexy was mainly an acute ischemic event which occurred recently in a GH-producing adenoma. This event led to massive coagulation necrosis of the tumor and endocrinological improvement.

Acromegaly↗

An open, phase III study of lanreotide (Somatuline PR) in the treatment of acromegaly.

Acromegaly is a disorder caused by excessive secretion of human growth hormone (GH). Somatostatin and its analogue-prolonged release formulation, lanreotide (Somatuline PR), inhibit the secretion of growth hormone. The aim of this open Phase III study was to investigate the clinical efficacy of lanreotide in the treatment of six acromegalic patients with a mean age of 44 +/- 13 yr including two patients with diabetes mellitus. All the patients previously received transsphenoidal or transcranial hypophysectomy. Lanreotide was given intramuscularly every 2 weeks at a fixed dose of 30 mg for 12 weeks. Serum GH and insulin-like growth factor-I (IGF-I) levels were evaluated before, 2, 6 and 12 weeks after treatment. After 12 weeks of treatment, mean (+/- SEM) GH levels decreased from 24.8 +/- 12.5 to 6.9 +/- 3.3 ng/ml and mean serum IGF-I levels decreased from 689 +/- 282 to 430 +/- 216 ng/ml. Abdominal ultrasonographic examinations showed no gallbladder stone or bile sand formation before or after the treatment. Three of the patients who did not receive octreotide presented with manifestations of mild gastrointestinal adverse effect such as mild abdominal pain and diarrhea. In conclusion, lanreotide is effective in the treatment of active postoperative acromegaly.

Acromegaly↗

Long-term treatment of acromegaly with lanreotide: evidence of increased serum parathormone concentration.

The somatostatin analogue lanreotide is effective in reducing growth hormone levels in patients with acromegaly. Acromegaly is characterized by calcium homeostasis alterations. The aim of our study was to evaluate the effects of lanreotide on bone turnover markers in a group of acromegalic patients and to verify a possible increase of intact parathormone (iPTH) levels in a transient or persistent way. Serum GH, IGF-I and serum and urinary markers of bone metabolism were measured before treatment and on months 3 and 24. In short-term treatment (3 months), lanreotide significantly decreased GH, IGF-I, serum calcium, osteocalcin and alkaline phosphatase levels, but increased iPTH level (49 +/- 16.7 vs pre-treatment 28.3 +/- 7.6 ng/L, p<0.001). During long-term study (24 months) GH and IGF-I were significantly still low; serum calcium and alkaline phosphatase levels returned to pre-treatment levels. iPTH level was significantly still higher compared with pre-treatment (46.4 +/- 9.2 vs 28.3 +/- 7.6 ng/L, p<0.05). No changes were seen in serum albumin, creatinine and vitamin D during short and long term treatment. The changes of most bone markers during lanreotide treatment can be explained by the decrease of GH and IGF-I. The increase of iPTH concentration suggests that lanreotide has ulterior and long-standing actions on calcium homeostasis: intestinal malabsorption of calcium due to the lanreotide could contribute to this "secondary" hyperparathyroidism. The clinical relevance of these long-standing effects needs to be further investigated.

Acromegaly↗

A Case of acromegaly associated with subclinical Cushing's disease.

A 54-year-old man with type 2 diabetes was referred to our hospital for endocrine evaluation of acromegaly. Physical examination showed typical acromegalic features without Cushingoid features. Magnetic resonance imaging of the brain revealed the presence of a pituitary macroadenoma. Basal plasma levels of GH and insulin-like growth factor-I under fasting hyperglycemia (202 mg/dl) were markedly elevated. Plasma GH levels paradoxically increased after stimulation with TRH and LH-RH, and decreased after bromocriptine and octreotide administration. Endocrine examination of the hypothalamo-pituitary-adrenal (HPA) axis showed a lack of circadian rhythm of ACTH and cortisol, non-suppressibility to low-dose (1 mg), but suppressibility to high-dose (8 mg) dexamethasone, and normal response to CRH stimulation. The tumor resected by transsphenoidal surgery was histopathologically consistent with the diagnosis of eosinophilic adenoma: positive immunoreactivities of GH, PRL and ACTH were demonstrated, but negative immunoreactivities of prohormone convertase (PC) 1/3 by immunohistochemical method. After surgery, plasma GH and IGF-I levels decreased along with normalization of HPA axis. Metabolic co-morbidities such as diabetes and hypertension disappeared after removal of the pituitary tumor. This is a very rare case of GH-producing pituitary adenoma causing typical acromegaly with concomitant production of ACTH causing subclinical Cushing's disease.

Acromegaly↗

A case of acromegaly improved by pituitary apoplexy.

This report deals with a detailed course of one patient with acromegaly who had a pituitary apoplexy. The pituitary apoplexy occurred suddenly 5 days after administration of a oral hypoglycemic agent, buformin, during hospitalization. Immediately after the attack changes of the concentrations of several hormones such as serum growth-hormone, serum thyroid hormone and urinary 17-hydroxycorticosteroids were followed until the development to hypopituitary state. Simultaneously with the decrease of the concentrations of the above-mentioned hormones, a regression of the physical manifestations of acromegaly and a complete amelioration of diabetes mellitus were observed.

17-Hydroxycorticosteroids↗

Effect of synthetic ovine corticotropin-releasing factor on growth hormone secretion in patients with acromegaly.

In a significant proportion of patients with acromegaly, a non-specific increase in plasma growth hormone (GH) has been recognized following administration of thyrotropin-releasing hormone (TRH) or luteinizing hormone-releasing hormone (LH-RH), probably due to the lack of the specificity of the receptor in their tumor cells. In this study, the effects of corticotropin-releasing factor (CRF), a newly isolated hypothalamic hormone, in addition to TRH and LH-RH, on plasma levels of GH and the other anterior pituitary hormones were evaluated in 6 patients with acromegaly. Synthetic ovine CRF (1.0 microgram/kg), TRH (500 micrograms) or LH-RH (100 micrograms) was given as an iv bolus injection, in the morning after an overnight fast. Blood specimens were taken before and after injection at intervals up to 120 min, and plasma GH, adrenocorticotropin (ACTH), thyrotropin, prolactin, luteinizing hormone, follicle-stimulating hormone and cortisol were assayed by radioimmunoassays. A non-specific rise in plasma GH was demonstrated following injection of TRH and LH-RH, in 5 of 6 and 2 of 5 patients, respectively. In all subjects, rapid rises were observed in both plasma ACTH (34.3 +/- 6.2 pg/ml at 0 min to 79.5 +/- 9.5 pg/ml at 30 min, mean +/- SEM) and cortisol level (9.1 +/- 1.3 micrograms/dl at 0 min to 23.4 +/- 1.2 micrograms/dl at 90 min). However, plasma levels of GH and the other anterior pituitary hormones did not change significantly after CRF injection. These results indicate that CRF specifically stimulates ACTH secretion and any non-specific response of GH to CRF appears to be an infrequent phenomenon in this disorder.

Acromegaly↗

Disturbed prolactin responses to dopamine-related substances in patients with acromegaly and hyperprolactinemia.

We undertook this study, because conflicting data were reported about the dopaminergic regulation of prolactin (PRL) secretion in patients with acromegaly and hyperprolactinemia. In order to clarify the dopaminergic regulation of PRL secretion in patients with acromegaly and hyperprolactinemia, the effects of nomifensine, a central dopamine agonist, FK 33-824, a centrally antidopaminergically acting agent, and domperidone, a peripheral dopamine antagonist, on plasma PRL in these patients were studied. The results were compared with those observed in normal subjects and hyperprolactinemic patients, with or without a pituitary tumor. Nomifensine did not lower the PRL levels and FK 33-824 did not raise the PRL levels in acromegalic patients. In hyperprolactinemic patients, nomifensine did not lower the PRL levels and FK 33-824 failed to raise the PRL levels. Domperidone did not increase PRL in about a third of acromegalic patients, while TRH increased PRL in the all normoprolactinemic acromegalic patients. These results suggest that in acromegalic patients there may be a disturbance in dopamine related neurotransmission and that such disorders also seem to be present in patients with hyperprolactinemia, with or without a pituitary tumor.

Acromegaly↗

Decrease in human growth hormone (HGH) levels during transsphenoidal surgery for acromegaly as a guide for prognosis.

To evaluate the clinical significance of human growth hormone (HGH) dynamics during transsphenoidal microsurgery for acromegaly, serial HGH levels during the surgery were compared with the post-operative basal HGH levels in 15 acromegalic patients, retrospectively. In all patients, in whom the HGH level immediately after tumor resection was reduced below 5 ng/ml or the decreasing rate which stood for the magnitude of decrease of HGH during resection procedure was above 80%, postoperative permanent HGH levels fell to below 5 ng/ml, namely, within the normal range. The rapid radioimmunoassay (RIA) of HGH was developed by the use of high affinity antibody in order to inform the surgeons of plasma HGH levels quickly during the surgery. It is now possible to know HGH levels about 1 hour after submitting the samples. It was verified that HGH levels measured in the rapid RIA correlated well with those obtained in the conventional way. The rapid RIA method was applied to 6 patients and the correlation between HGH levels during the surgery and post operative levels was also studied prospectively. The results were essentially identical to those in a retrospective study. It was suggested that the HGH level immediately after tumor resection and the extent of the decrease in HGH during the resection procedure were good indicators of the prognosis of surgical results in acromegaly and the rapid RIA method was useful in order to judge HGH levels quickly during the surgery.

Acromegaly↗

Measurement of salivary insulin-like growth factor-I in acromegaly: comparison with serum insulin-like growth factor-I and growth hormone concentrations.

The aim of this study was to establish the concentration of insulin-like growth factor-I (IGF-I) in saliva of acromegalic patients, and to compare it with the basal levels of serum IGF-I and growth hormone. IGF-I was determined in extracted serum or neat saliva by a disequilibrium RIA using antibodies and iodinated ligand from Amersham and WHO 87/518 as standard. The detection limit of the assay was 0.5 microgram/l, and the intra- and interassay coefficients of variations were 7.9% and 15% respectively. Our study included 13 healthy adult individuals and 17 acromegalics. Compared with healthy adult subjects, acromegalics had significantly higher salivary IGF-I concentrations (mean +/- SEM 5.4 +/- 2.64 vs. 10.5 + -5.69 micrograms/l; p < 0.01), as well as serum IGF-I (176 +/- 42.9 vs. 520 +/- 98.8 micrograms/l; p < 0.0001) and somatotropin levels (1.2 +/- 1.02 vs. 15.4 +/- 9.89 micrograms/l; p < 0.0001). However, 47.1% patients (8 out of 17) with active acromegaly had salivary IGF-I concentrations within the normal range. Serum IGF-I and somatotropin concentrations were found to follow more closely the disease activity after adenomectomy, compared with the concentrations of salivary IGF-I. These results suggest that the IGF-I levels in serum and saliva are somatotropin-dependent. According to our results, measurement of IGF-I in saliva cannot be considered as an additional measure for evaluation of the disease activity in acromegaly, being less reliable than the determination of IGF-I and somatotropin in serum.

Acromegaly↗

Recent developments in the therapy of acromegaly.

Acromegaly, a condition due to growth hormone hypersecretion usually from a benign pituitary tumour, is associated with significant morbidity and mortality. Disease control leads to normalisation of life expectancy with a reduction in signs and symptoms. Treatment modalities include surgery, radiotherapy and medical management. Surgery is the primary treatment in most of the patients, with success rates of 61-91% reported for those with microadenomas who are operated on by a specialist pituitary surgeon; however, most patients have macroadenomas and, although benefiting from surgery, are not cured and require additional medical therapy. This review will focus on emerging concepts in the medical treatment of acromegaly.

Acromegaly↗

The size of growth hormone granules in pituitary adenomas producing acromegaly.

Measurements of the diameters of large numbers of granules in electron micrographs of pituitary adenomas in cases of acromegaly do not show that a typical size exists which allows of the retrospective diagnosis of the hormone secreted by the tumour. The granule diameters found in single cases show a normal distribution. The average values determined in 19 unselected cases of acromegaly range between 160 and 342 nm. They are also normally distributed about the mean for the entire group which is 238 nm. With histo-immunological electron microscopic techniques h GH can be demonstrated in small, medium and large granules. The size of hormone granules is determined by functional factors such as the speed of hormone synthesis and hormone release but not by the type of hormone secreted.

Acromegaly↗

Bromocriptine treatment in acromegaly: clinical and biochemical effects.

Eight selected patients with active acromegaly and elevated GH levels without other endocrine disturbances were submitted to long-term treatment and acute dose-response trials with bromocriptine. Seven patients showed clinical improvement and lowering of GH levels in response to long-term treatment, however, two of these showed only minor changes in GH levels during the acute dose-response trial. Glucose tolerance and heel pad thickness remained unchanged, while urinary hydroxyproline excretion and blood, plasma and erythrocyte volumes decreased. Using daily doses of 20 mg bromocriptine, side effects were generally minor. Severe vasovagal reactions were, however, observed in two patients, in one at the start of treatment, in the other after ingestion of 25 mg bromocriptine. Bromocriptine represents a valuable treatment alternative in acromegaly, but only long-term treatment will separate responders from nonresponders.

Acromegaly↗

Calcium and phosphate metabolism in acromegaly.

A study of 28 consecutively admitted patients with active acromegaly revealed the following results with regards to calcium and phosphate metabolism. When compared with controls, there was an increase in serum calcium levels corrected for total protein, urinary calcium was increased, but the tubular re-absorption of calcium was normal. There was a negative correlation between the urinary cAMP and calcium excretion indicating that hyperabsorption of calcium from the gut is the cause of the increased urinary calcium excretion. Serum phosphate values were increased in acromegalics and correlated well with TmP/GFR which was also increased. Immunoreactive parathyroid hormone (PTH) was increased in 5 patients, three of whom had hypercalcaemia. In the remaining patients the PTH values were scattered within the normal range. The urinary cAMP/creatinine ratio was increased in acromegalics, but most of this difference was abolished when urinary cAMP was expressed relative to 100 ml of glomerulus filtrate. It is concluded that parathyroid hyperactivity is a feature of acromegaly.

Acromegaly↗

Hyperthyroidism and acromegaly caused by a pituitary TSH- and GH-secreting tumour.

A female patient with acromegaly, TSH-induced hyperthyroidism and a large eosinophilic pituitary adenoma is reported. Granules in the adenoma cells were by immunohistochemical methods shown to contain GH and with monoclonal TSH-antibodies it was shown that 5-10 per cent of the cells secreted TSH. The basal serum TSH was elevated in the hyperthyroid phases and was not suppressible by exogenous T3 but decreased markedly with dexamethasone. There was a small subnormal rise in serum TSH after TRH injection which was totally suppressed by T3 (but not dexamethasone). L-dopa, bromocriptine and somatostatin caused a 20-30 per cent decrease in serum TSH. The alpha-subunit concentration was also elevated and was equally depressed by bromocriptine and somatostatin. The urinary excretion of TRH was within reference limits. This mixed tumour obviously secreted an excess of both GH and TSH causing acromegaly and hyperthyroidism.

Acromegaly↗

Progesterone-controlled growth hormone overproduction and naturally occurring canine diabetes and acromegaly.

Female pet dogs exhibiting either glucose intolerance alone or glucose intolerance and acromegaly were investigated. Some dogs developed the disorder(s) during dioestrus and some animals developed the disorder(s) after they were given medroxyprogesterone acetate (MPA). Elevated fasting plasma glucose levels (12.3 +/- 1.9 mM, mean +/- SEM) were accompanied by fasting hyperinsulinaemia (144 +/- 21 microU/ml, mean +/- SEM) and drastic elevation of plasma growth hormone (GH) levels (112.6 +/- 45 ng/ml, mean +/- SEM). An iv glucose tolerance test (IVGTT) performed on all dogs revealed non-suppressibility of GH levels and glucose intolerance. Plasma concentrations of glucose, insulin and GH during IVGTT in affected dogs differed significantly from the concentrations measured in normal dogs during the same test. MPA withdrawal and/or ovariohysterectomy (OVx-HYx) in affected animals was followed by reversal of GH levels to normal and improved glucose tolerance. Acromegaly associated soft tissue changes were also reversible after MPA withdrawal and/or OVx-HYx when GH levels had dropped. In 5 dogs which had developed diabetes during dioestrus and in which a spontaneous decrease in plasma progesterone occurred during the investigation a concomittant decrease in GH levels was observed. Plasma GH measured at different stages of pregnancy in 45 dogs was found to be elevated in one animal only. The results show that the development of spontaneous diabetes/acromegaly occurring in some female dogs is related to progestagen (progesterone/MPA) exposure and that reversal of the signs is achieved by progesterone/MPA withdrawal. The results suggest that diabetes/acromegaly in the dogs studied was caused by progesterone/MPA-evoked GH elevation. Finally, the findings also suggest that the GH axis normally not appreciably responsive to progestagen exposure in some dogs becomes and/or is paradoxically controlled by physiologic levels of endogenous progesterone or low doses of MPA.

Acromegaly↗

Patients with acromegaly come from tall families.

The heights of 59 patients with acromegaly and their first-degree relatives were studied. The mean height SD score (SDS) for the patients was 0.93 +/- 1.19 (equivalent to 5.6 cm above the population mean), and for their siblings (N = 166) 0.39 +/- 1.05 (2.3 cm above the population mean) (P less than 10-5 for difference from the general population). The height distribution of both groups was markedly positively skewed. Probably the parents were as tall (in relation to the population of their age) as the siblings. Growth data were available for 13 of the patients and showed that the height of the tall (SDS greater than 2.0) patients had increased by 2.5-10 (mean 5) cm after normal cessation of growth. This explains the extra height of the patients over their siblings. Only 2 of the 13 patients became oversized for their families during the normal growth period. We suggest that in a part of the population with acromegaly the disease is associated with primary genetic tallness.

Acromegaly↗

The effect of minisomatostatin on anomalous growth hormone responses in acromegaly.

Twelve patients with active acromegaly were treated with the long-acting somatostatin analogue SMS 201-995 at a dose of 50 micrograms sc twice daily in the first 2 weeks of treatment and 100 micrograms twice daily thereafter. Four hours after the first injection of SMS, GH levels became normal in 8 of the 12 patients. The GH response after hpGRF administration was strongly suppressed by SMS. Paradoxical GH responses to TRH disappeared in 6 out of 7 patients during SMS. Paradoxical GH responses to LHR, however, persisted in 4 out of 4 patients. Paradoxical responses of GH after glucose loading disappeared in 2 out of 2 patients. We conclude that SMS normalizes most anomalous growth hormone kinetics in acromegaly. This drug offers a new tool in the treatment of this disease.

Acromegaly↗

The effect of subcutaneous infusion versus subcutaneous injections of a somatostatin analogue (SMS 201-995) on the diurnal GH profile in acromegaly.

Multiple sc injections of a long-acting somatostatin analogue (SMS 201-995) are currently used in the treatment of acromegaly. However, plasma GH concentration often reaches a pathological level (less than 5 micrograms/l) between two injections. In seven patients with active acromegaly we compared, in a short-term trial, the effect of SMS 201-995 administered by continuous sc infusion (50 micrograms and 100 micrograms a day) and by three sc injections (100 micrograms each). In six patients, plasma GH levels were significantly reduced regardless of the mode and dose of treatment (P less than 0.05). However, comparing diurnal profiles, 100 micrograms continuous sc infusion was more effective than discontinuous administration in reducing the number of GH levels above 5 micrograms/l (P less than 0.01). In two patients, continuous infusion was the only way to decrease all plasma GH values below 5 micrograms/l during the diurnal profile determination. Moreover, even when, in a long-term study, the dose of multiple injections was progressively increased to 500 micrograms three times a day, GH levels remained consistently elevated in one of these patients. Thus, in some acromegalic patients continuous sc injection seems currently the most efficient way of treatment with SMS 201-995.

Acromegaly↗