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Sex difference in the relation between sellar volume and basal and GH-releasing hormone stimulated GH in acromegaly.

Sellar volume and both basal (r = +0.54, P less than 0.02) and GHRH-stimulated (r = +0.41, P less than 0.05) GH levels were directly correlated in a group of 28 patients with acromegaly as were the latter indices (r = +0.82, P less than 0.001). By subdividing the patients according to sex, a close relation between sellar size and both basal (r = +0.77, P less than 0.02) and stimulated GH (r = +0.71, P less than 0.02) was found only in the men, not in the women (r = +0.12 and r = +0.02, respectively, P greater than 0.10). The presence of a tight relation between sellar volume and basal and GHRH stimulated GH levels in male patients with acromegaly and its complete absence in women are equally intriguing and await further elucidation. A modulating role of gonadal steroids in the genesis of this sex differences remain to be assessed.

Acromegaly↗

Plasma growth hormone profile in acromegaly before and ten days after transsphenoidal surgery.

Profiles of plasma GH, plasma somatomedin-C and serum PRL concentrations as well as serum GH response to iv TRH were determined in 11 patients with acromegaly before and 10 days after surgery. Blood for profile determinations was drawn from a peripheral vein with a continuous withdrawal pump changing the recipient tube at 30-min intervals. Before surgery all patients had high plasma GH concentrations with irregular peaks and somatomedin-C concentrations were elevated. The response to TRH was abnormal in 8 patients. Three patients had slightly elevated PRL concentrations and one had high PRL concentration (6900 mU/l). Ten days after surgery GH concentrations were still high in 2 patients (greater than 5 mU/l), as were somatomedin-C concentrations (3.2 and 2.4 U/l, respectively). In 3 patients basal GH concentrations were less than 5 mU/l and somatomedin-C concentrations were normal, but there were no major peaks in plasma GH concentrations. In 2 patients major peaks in GH concentrations appeared after surgery, but basal GH concentrations were 1.9 and 0.95 mU/l, respectively. One patient with hyperprolactinemia still had slightly elevated PRL concentration (486 mU/l), but the response to TRH was normalized. Finally, in 4 patients, mean GH concentrations were markedly reduced, somatomedin-C concentrations normalized and apparently normal plasma GH profiles appeared with low or undetectable basal levels separating major peaks. The results indicate that in some patients with acromegaly apparently normal GH secretion can be demonstrated 10 days postoperatively. Characterization of circadian GH rhythms during the early postoperative stage may contribute to the evaluation of the effect of surgery.

Acromegaly↗

Familial acromegaly.

Five family members over 3 generations had isolated functional pituitary adenomas diagnosed. In four cases acromegaly was diagnosed, and in the fifth galactorrhoea from prolactin excess was the presenting feature. A prominent feature of the affected members tumours were histological finding of either atypical mixed cell or undifferentiated cell type. Given the low incidence of acromegaly and the demonstration of vertical transmission over 3 generations it is suggested this family represents an inherited pituitary syndrome, distinct from Multiple Endocrine Neoplasia (MEN) type 1.

Acromegaly↗

Single-dose response study of the somatostatin analogue octreotide in acromegaly.

The recommended dosage schedules for intermittent sc therapy with the somatostatin analogue octreotide in acromegaly vary widely, from 100 to 1500 micrograms daily. As acute administration of octreotide has been shown to predict its long-term response, we performed a single-dose response study in 5 patients with active acromegaly using doses of 25, 50, 100, 200 and 400 micrograms octreotide as well as a placebo injection. Plasma GH of 2 patients did not normalize after any of the injections, but nadir plasma GH overall gradually decreased as doses were increased from 25 to 400 micrograms. The 400 micrograms octreotide dose was superior with regard to the duration of plasma GH suppression to below 5 micrograms/l or 25% of the basal GH level, the mean GH as a percentage of the basal level over the first 4 and 8 h, and the integrated reduction of plasma GH during the first 4 and 8 h. The postprandial integrated insulin secretion during the first 3 h after injection of the octapeptide was significantly lower after 50, 100 and 400 micrograms than after the placebo injection. The mean plasma glucose as a percentage of the basal level during the first 8 h was significantly higher after octreotide after the 200 and 400 micrograms injections. Minor adverse events were seen in 2 patients after injection of 200 and 400 micrograms octreotide. Within the limitations of this single-dose response study it was concluded that injection of 400 micrograms octreotide yields the best results with regard to suppression of GH secretion, whereas the 50, 100 and 200 micrograms doses are superior to 25 micrograms, but do not differ from each other.

Acromegaly↗

Secretion of alpha and TSH-beta subunits in patients with acromegaly: an in vivo study.

Plasma alpha and TSH-beta subunit responses to iv administration of GHRH were examined in 19 patients with active acromegaly. In 4 patients (21%), plasma alpha subunit levels were increased over 50% of basal levels after administration of GHRH, whereas plasma TSH-beta subunit levels were increased in response to GHRH in another 5 patients (26%). No patient showed simultaneous increases of alpha and beta subunits. After successful surgery, alpha and TSH-beta subunits did not respond to GHRH. These findings support the idea that some pituitary adenomas in acromegaly cosecrete GH and either alpha subunit or TSH-beta subunit.

Acromegaly↗

Size heterogeneity of circulating growth hormone in acromegaly. "Big-big" GH forms are associated with inappropriately low IGF-I levels.

UNLABELLED: Circulating GH consists of several molecular size species with different biological activity. A reduced sensitivity of some monoclonal antibodies towards high-molecular weight GH variants has been reported. The aim of the present work was to evaluate the molecular size species of circulating GH using Sephadex G-100 gel filtration chromatography in acromegalic patients and in normal subjects employing both RIA and an immunoradiometric assay for all GH determinations. In 6 normal subjects, studied under GHRH stimulation, little GH was 69.8 +/- 6% (mean +/- SD), big GH (44 kD) 26.4 +/- 6% and big-big GH (greater than 80 kD) 2.8 +/- 4%, in IRMA, with a good correspondence with RIA results (70.8 +/- 8, 27.0 +/- 4, and 3.2 +/- 2%, respectively). In 13 untreated acromegalic patients, studied in basal conditions, the little form constituted 76.2 +/- 7%, the big form 18.3 +/- 4%, which is significantly lower than in normals (p less than 0.05), and the big-big form 5.5 +/- 7%. Similar results were obtained with RIA. A clear elevation of big-big GH (21% for both in IRMA, and 15.7 and 27.8% in RIA) was found in 2 patients with IGF-I levels lower than expected on the basis of mean GH concentrations. The study was extended to an additional acromegalic patient, previously operated and irradiated on, characterized by discrepant serum GH levels in RIA (4.6 micrograms/l), and in IRMA (1.4 micrograms/l), and by normal IGF-I levels. Serum GH showed a lack of parallelism to standard GH in RIA, but not in IRMA. RIA immunoreactivity was almost completely composed (92%) of a high molecular weight GH form (greater than 90 kD), not recognized by IRMA. All IRMA immunoreactivity eluted with a Kav corresponding to 19-50 kD. IN CONCLUSION: a. the three main molecular size isomers of serum GH are similarly recognized by IRMA and RIA methods in normal subjects. b. in acromegaly, both quantitative and qualitative modifications of the GH chromatographic profile may be present. In particular, increased amounts of big-big forms, whether or not recognized by monoclonal antibodies, have been observed. Their lower bioactivity, suggested by the normal or lower than expected IGF-I levels, can account for the discrepancy between serum GH levels and the clinical picture or IGF-I levels sometimes observed in acromegaly.

Acromegaly↗

Urinary growth hormone excretion in acromegaly: diagnostic value in mild disease activity.

The biochemical assessment of disease activity in acromegaly still presents a problem, especially in treated patients with mild clinical symptoms. We therefore examined the diagnostic value of the measurement of urinary growth hormone (GH) excretion in seventy unselected patients with acromegaly of different activity by comparing it to serum GH, serum insulin-like growth factor I (IGF-I) and clinical activity. There were highly significant, positive correlations between urinary GH and serum GH, serum IGF-I as well as clinical activity score (p < 0.00005), although some overlap between the groups was observed. In seven patients with low serum GH values (< 2.0 micrograms/l) discordant results were found. Two of the seven patients were clinically mildly active, but only IGF-I was either elevated or within the upper normal range; in three other patients who appeared clinically cured either IGF-I (N = 1) or urinary GH (n = 2) alone were increased. In the remaining two patients elevated serum IGF-I and urinary GH as well as activity score suggested disease activity. Thus, in the majority of cases, urinary GH was significantly correlated to the other three parameters, but added little information to that obtained by serum IGF-I. In conclusion, urinary GH measurements in difficult cases may provide a more direct information on the GH status than IGF-I.

Acromegaly↗

Pharmacokinetics and efficacy of the long-acting somatostatin analogue somatuline in acromegaly.

The aim of this work was to assess the use of a sustained-release formulation of somatuline, a long-acting analogue of somatostatin, in the treatment of acromegaly. Fifteen patients with active acromegaly, as defined by random growth hormone (GH) levels greater than 10 mU/l, which fail to be suppressed to less than 5 mU/l following an oral glucose load, were studied. Somatuline was administered as an intramuscular injection in two regimens: eight patients were given a single injection of the sustained-release formulation and blood samples taken over the next month for the measurement of both basal levels of GH and the GH response to thyrotrophin-releasing hormone; and eight patients were given injections of the sustained-release formulation at 2-week intervals over a 6-month period and basal plasma GH levels and the GH response to both an oral glucose load and to thyrotrophin-releasing hormone was assessed. Following a single intramuscular dose of the sustained-release preparation, random GH levels were reduced to below 10 mU/l in five patients and by greater than 50% of basal levels in the remainder. The insulin-like growth factor I (IGF-I) levels fell to within the normal range in three patients. In the long-term efficacy study. GH levels were reduced to < 10 mU/l in 7/8 patients. The IGF-I levels were normalized in four patients. Five of the eight patients experienced diarrhoea, two of mild and three of moderate severity; none of the patients withdrew from the study.(ABSTRACT TRUNCATED AT 250 WORDS)

Acromegaly↗

Effect of octreotide on glucose tolerance in acromegaly.

To determine the effect of the somatostatin analog octreotide on glucose tolerance in acromegaly, we examined glucose profiles, oral glucose tolerance and the insulinogenic index in patients treated with this analog. Ninety patients participated in a long-term, prospective, open-label study. There was no significant change between mean daily blood glucose profiles at baseline or during octreotide treatment. Using glucose tolerance test criteria, 61% of 90 patients had normal baseline glucose tolerance. While on octreotide, 20% and 29% of these patients, respectively, developed impaired glucose tolerance or became frankly diabetic. Conversely, three of the patients who were diabetic at baseline (N = 11) became normal (18%) or developed impaired glucose tolerance (9%) during octreotide therapy. There was no relationship between the dose of octreotide and change in glycemic state. The insulinogenic index (insulin/glucose) response to a glucose challenge decreased uniformly in octreotide-treated patients. Female patients and those with elevated baseline insulin levels were more likely to develop diabetes mellitus during octreotide therapy. In conclusion, octreotide significantly alters glucose tolerance in patients with acromegaly, mandating glucose monitoring during this form of therapy.

Acromegaly↗

Effect of corticotrophin-releasing hormone administration on growth hormone levels in acromegaly: in vivo and in vitro studies.

The ability of CRH to cause a paradoxical response of GH in acromegaly is still under debate. In this study, the effect of CRH administration on GH release was evaluated in a large series of patients with active acromegaly, both in vivo, compared to that of TRH and GnRH, and in vitro. The study was organized as follows. In vivo study: 30 acromegalic patients were submitted to TRH, GnRH, and CRH tests on non-consecutive days: blood samples were collected before and 10, 20, 30, 45, 60, 90, and 120 min after bolus. In nine patients the CRH test was repeated after a 3-month therapy with octreotide and at the dose of 300-600 micrograms sc thrice daily. In vitro study: CRH (10 nmol/l, 100 nmol/l, and 1 mumol/l) was tested on pituitary tumor tissue obtained in eight patients during transsphenoidal adenomectomy and immediately placed in sterile Ca2+ and Mg2+ free buffer phosphate. A paradoxical GH response to TRH (evaluated as a GH increase over 50% of basal values) was recorded in 19 patients (63.3%), whereas 7 patients (23.3%) responded to GnRH and 4 others to CRH (13.3%). TRH administration induced a maximal percent GH increase significantly greater than that induced by GnRH and CRH (p < 0.05). Octreotide caused the normalization of GH and insulin-like growth factor-I levels in all the patients, as well as the disappearance of the GH paradoxical response to CRH in 3/4 patients. All four CRH responders and four CRH non-responders, used as controls, were surgically treated and adenomatous tissue was used for the in vitro study.(ABSTRACT TRUNCATED AT 250 WORDS)

Acromegaly↗

Persistence of somatostatinergic tone in acromegaly.

It is a matter of debate whether hypothalamic somatostatin (SRIH) secretion in acromegaly is preserved and still regulated by the physiological feedback mechanisms of growth hormone (GH) and insulin-like growth factor I. To gather further information on this, the reproducibility of plasma GH changes induced by growth hormone-releasing hormone (GHRH) administration was evaluated in 15 acromegalic patients. There was a highly significant correlation between the peak/basal ratio (P/B) GH response in the 15 patients administered GHRH on two separate occasions (r = 0.99, p < 0.001). The test was performed also before and after the administration of drugs able to inhibit or stimulate hypothalamic SRIH release, by activating (pyridostigmine) or inhibiting (pirenzepine) cholinergic pathways, respectively. The GHRH-induced GH response (P/B = 2, range 1.1-26.1) was increased significantly by pyridostigmine pretreatment in 30 patients (P/B = 2.6, range 1.3-34.8; p = 0.0045). In nine out of 30 patients an increase of greater than 2 SD of within-subject GHRH variability was observed in response to GHRH plus pyridostigmine when compared to GHRH alone. An inverse correlation (r = -0.37, p < 0.05) was observed between GH response to GHRH alone and after pyridostigmine pretreatment. On the contrary, no change of GHRH-induced GH response was observed in 12 patients after pirenzepine pretreatment (P/B = 1.9, range 1.1-5 and P/B = 2, range 1.3-6 without and after pirenzepine pretreatment, respectively). These data suggest that in acromegaly the somatostatinergic tone does not seem to fluctuate, and that it can be inhibited often by cholinergic pathway activation but not increased further by cholinergic suppression.

Acromegaly↗

Octreotide treatment increases exercise capacity in patients with acromegaly.

This prospective study was conducted to determine the effect of Octreotide treatment on cardiovascular function in patients with active acromegaly. Ten acromegalic patients who failed to suppress growth hormone (GH) to < 5 mU/l during a 2 h oral glucose tolerance test were treated with 100 micrograms of Octreotide subcutaneously three times daily for 2 months, followed by 200 micrograms three times daily if the mean GH level was > 5 mU/l, for a total of 1 year. All patients had GH and insulin-like growth factor I (IGF-I) estimation, ejection fraction determined by Echocardiogram and multigated image acquisition scan, electrocardiogram (ECG), exercise ECG, 24-h ECG and chest x-ray. At 6 and 12 months, both GH and IGF-I were reduced but ECG, heart size and ejection fraction were unchanged. The patients improved symptomatically and had significant reduction in resting heart rate and increase in weight. Exercise time (mean +/- SD) increased from 637 +/- 137s at baseline to 787 +/- 101s at 1 year (p < 0.01) and work done increased from 9 +/- 3.3 to 11.9 +/- 2.7 metabolic equivalents (p < 0.001). We conclude that the decrease in GH and IGF-I following Octreotide treatment of acromegaly is accompanied by decreased heart rate and increased exercise capacity despite an unchanged ejection fraction.

Acromegaly↗

Pituitary insufficiency and regression of acromegaly caused by pituitary apoplexy following cerebral angiography.

Pituitary apoplexy as a complication of cerebral angiography has been described in only a few case reports. Some studies have reported the clinical resolution of active acromegaly after pituitary apoplexy. We present a patient with active acromegaly due to a growth hormone (GH)-secreting pituitary macroadenoma, who developed anterior and posterior pituitary insufficiency following cerebral angiography. Furthermore, a significant reduction in tumour size was accompanied by normalization of mean 24 h in GH insulin-like growth factor I (IGF-I) and IGF binding protein 3 levels.

Acromegaly↗

Megavoltage pituitary irradiation lowers but seldom leads to safe GH levels in acromegaly: a long-term follow-up study.

Radiotherapy (RT) has long been used in the treatment of acromegaly, but confusion regarding the definition of biochemical cure has hampered interpretation of previous reports on the outcome of this treatment. In the present study we present additional data using the currently accepted criteria of biochemical cure in a large group of patients followed up by our department. Forty-six acromegalic patients were treated with external beam megavoltage RT and followed up for a mean of 7.6 years (range 2-22 years). Only four patients had had previous surgical treatment by either transsphenoidal or transfrontal routes. Following RT, mean basal GH levels decreased from 30.9 ng/ml (5-96 ng/ml) to 11.5 ng/ml (1-36 ng/ml) at 10 years of follow up with a further fall to 6.1 ng/ml (1-29 ng/ml) in those patients followed up for more than 10 years. As a result, although mean GH levels of less than 5 ng/ml were achieved in 9/28 (30.1%) at 5 years, 6/19 (31.6%) at 10 years, and in 6/11 (54.5%) of those patients followed up for more than 10 years post-RT, only 0/28 (0%), 7/28 (25%), 4/19 (21%) and 1/11 (1%) achieved GH levels of <2.5 ng/ml at 2, 5. 10 and >10 years following RT. Thus, in the whole series only 10/48 (20.8%) patients showed a decrease of GH level to less than 2.5 ng/ml at their latest follow up. Hypopituitarism as a result of RT was only infrequently observed in this series; gonadal deficiency developed in 12 (26.6%) patients, thyrotrophin (TSH) deficiency in 3 (6.6%) and adrenocorticotrophin deficiency in 2 (4.4%). In conclusion, megavoltage RT is an effective treatment for the control of GH hypersecretion in acromegaly, with a continuing lowering effect for several years following RT but seldom leads to safe GH levels.

Acromegaly↗

Reduced disorderliness of growth hormone release in biochemically inactive acromegaly after pituitary surgery.

The episodicity of 24 h GH release was studied in 18 patients with active acromegaly, 12 patients 7-10 days after pituitary surgery, 14 patients long after operation (3-17 years), and 21 healthy gender- and age-matched control subjects, using a recently introduced scale- and model-independent regularity statistic, approximate entropy (ApEn). Blood samples were taken at 10-min intervals for 24 h, and plasma GH concentrations were measured by immunofluorometric assay (detection limit 11.5 ng/l). For this study we selected operated patients who were biochemically in remission, defined by normal circulating IGF-I and insulin-like growth factor-binding protein-3 (IGFBP-3) concentrations, normal glucose-suppressed plasma GH concentration (<0.38 microg/l), and the normalization of the paradoxical rise of GH to TRH or GnRH. In patients with active acromegaly ApEn was 1.23+/-0.04, with no overlap with the control subjects (P = 1.2 x 10[-16]), who had an ApEn of 0.40+/-0.04. ApEn in patients shortly after surgery was 0.71+/-0.09 (P < 0.001 vs controls), and long after surgery 0.56+/-0.05 (P < 0.011 vs controls). ApEn values in treated and untreated patients correlated significantly with the plasma concentration of IGF-I (r=0.531) and IGFBP-3 (r=0.598), and the log-transformed 24h GH secretion rate (r=0.749). Shortly after surgery only one-third of the patients had a normal ApEn value, whereas long after surgery about 70% of the patients had a normal ApEn value. Although ApEn eventually normalized in about 70% of the operated patients, the cause of the persistence of abnormal GH release in the remainder of the subjects is not known, and might reflect permanent hypothalamic-pituitary dysfunction or a very early recurrence of the somatotroph adenoma.

Acromegaly↗

Kleine-Levin and Munchausen syndromes in a patient with recurrent acromegaly.

Hypothalamic disease often affects the patients' personality and this also applies to pituitary tumors with suprasellar extension. We report on a patient with a 12-year history of recurrent acromegaly, treated with three transphenoidal operations, single field radiation therapy and bromocriptine/octreotide administration. During the course of follow-up she presented with self-inflicted anemia and Kleine-Levin syndrome (hypersomnia, hyperphagia and hypersexuality). Furthermore, she developed post-radiation necrosis within the right temporal lobe. Whether her neurological and personality disorders result - at least partially - from the acromegaly or the temporal lobe necrosis remains unclear.

Acromegaly↗

Baseline and stimulated catecholamine secretion in normotensive patients with active acromegaly: acute effects of continuous octreotide infusion.

OBJECTIVE: Alterations in catecholamine plasma levels may contribute to the cardiovascular complications of acromegaly. Since few data are available on the catecholamine secretory dynamics in active acromegaly and no evidence exists on catecholamine variations during GH decrease, we studied acromegalic patients before and during octreotide administration. METHODS: We evaluated the catecholamine responses to upright posture and a cold pressure test (CPT) in 11 acromegalic (A) patients before and during continuous administration of octreotide (500 microgram/24h by s.c. pump) compared with 11 normal (N) subjects. RESULTS: All the acromegalic patients showed left ventricular cardiac hypertrophy. The cardiovascular responses to upright posture were similar between normal subjects and acromegalics both before and during octreotide treatment. The basal levels of norepinephrine (NE) were significantly higher in A patients compared with N subjects (423+/-45 vs 264+/-32pg/ml, P<0. 05) and decreased during therapy (291+/-32pg/ml; P<0.01). The increase in plasma NE during upright posture was significantly lower in A than in N subjects (P<0.01), but was restored to normal during octreotide treatment. CPT increased systolic and diastolic blood pressure, pulse rate and NE plasma levels in N (P<0.05) but not in A subjects both before and during octreotide treatment. CONCLUSIONS: Our data demonstrate the presence of increased basal NE levels in acromegalic patients with a defective sympathetic response to stimuli. Short-term octreotide infusion is able to induce a reduction in the basal levels of NE and a normalization of the catecholamine response to posture.

Acromegaly↗

Failure of radiotherapy in acromegaly.

BACKGROUND: Recent data has raised skepticism regarding the long-term effectiveness of radiotherapy (RxT) in acromegaly and its role as an ancillary tool to neurosurgery (Tx). PATIENTS: We evaluated 72 acromegalic patients previously submitted to RxT. Data were discarded in 23 patients, who were lost to follow-up, operated on after RxT or irradiated with techniques different from external conventional fractionated RxT. Among the remaining 49 (five with mixed GH-prolactin adenoma), 34 were irradiated after surgical failure and 15 as primary treatment. A second cycle of RxT was administered in two. RESULTS: (i) GH/IGF-I. After a median follow-up of 14 years (range 3-41), normal age-matched IGF-I levels were reached in eight patients (16%) after 10 years, and GH levels <2.5 microg/l in six (12%) after 9 years. The rate of persistently pathological hormonal levels was still 90% at 25 years. All patients with GH/IGF-I normalization had undergone irradiation without any antisecretory drug. Neither basal GH nor tumor size affected the outcome of RxT. In three patients (6%) a relapse/worsening occurred. (ii) Tumor size. Tumor shrank after 8.5 years in 24 patients (49%), in nine of whom during GH-suppressive treatment. Tumor shrinkage was not predictive of hormonal normalization. (iii) Side-effects. Hypopituitarism was diagnosed in four patients (selective in three and global in one) and GH deficiency in one. Three patients had neurological side-effects and meningioma was shown in two patients. CONCLUSION: RxT is unable to cure acromegaly, because it seldom achieves hormonal normalization even after a very prolonged follow-up. Concomitant antisecretory treatment seems to counteract its effects. RxT can still play a role in those patients with large tumor remnants, because of its capacity to shrink tumor size.

Acromegaly↗