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Results of radiotherapy in the treatment of acromegaly: lack of ophthalmologic complications.

Between 1956 and 1988, 25 patients were treated with radiotherapy for acromegaly. Acromegalic features were present in 24 (96%), visual field deficits in 4 (16%), and suprasellar extension was present in 7 patients (28%). The median growth hormone level was 40.2 ng/ml (range: 13.8-105) in 15 patients. Initial therapy consisted of radiotherapy alone (19 patients) or surgery followed at some interval by radiation (6 patients). The radiation therapy was administered with megavoltage equipment in 23 (92%) patients and orthovoltage equipment in 2 patients. The median total dose was 46 Gy (range: 24-53.44 Gy) with 21 patients receiving at least 45 Gy. With a median follow-up of 53 months (range: 18-205), 2 of the 19 patients treated with radiotherapy alone have required surgery for symptomatic recurrences. Both are alive and in remission at 69 and 158 months following craniotomy. Thus, the success of radiotherapy as a primary modality in this series is 17/19 (89%). None of the six patients treated postoperatively have recurred. At the time of last follow-up the visual fields remained normal and visual acuity stable in the 21 patients with no pre-existing visual deficits. The four patients with prior visual field deficits improved with therapy. There were no cases of radiation optic neuropathy, brain necrosis or second intracranial malignancies. Seven patients (28%) had evidence of hypopituitarism attributed to the radiotherapy. Growth hormone levels after radiotherapy showed a median of 5.4 ng/ml (range: 3.2-40.0) in 15 patients. Eleven of 15 patients (73%) had growth hormone levels less than 10 ng/ml. Radiation use in acromegaly remains a safe and effective modality assuming careful attention is paid to technique, total dose, and fraction size.

Acromegaly↗

Skin manifestations in acromegaly.

Cutaneous changes in acromegaly result from excess GH and IGF-1 action on skin cells and adnexae. Skin puffiness due to dermal glycosaminoglycan accumulation and edema are most prominent in the face, hands and feet. Oily skin with large pores, hypertrichosis, and excessive sweating are common features. Pigmented skin tags, acanthosis nigricans, and psoriasis are also encountered. Alteration in skin capillaries produce increased vasoconstriction. Discerning these changes contributes to early diagnosis and treatment of this high-morbidity disorder. Controlling GH and IGF-1 over-secretion alleviates most cutaneous manifestations of acromegaly; however, regression may be incomplete.

Acromegaly↗

Pharmacokinetic-pharmacodynamic comparison of a novel multiligand somatostatin analog, SOM230, with octreotide in patients with acromegaly.

OBJECTIVE: Acromegaly is a serious hormonal disorder resulting from a pituitary adenoma causing excess growth hormone (GH) production. Somatostatin analogs such as octreotide have been the medical treatment of choice. SOM230, a novel somatostatin analog, was compared with octreotide with respect to pharmacokinetic (PK) profiles and inhibition of GH secretion in acromegalic patients. METHODS: In a double-blind, 3-period, crossover, proof-of-concept study, 12 patients with active acromegaly were randomized to single subcutaneous doses of SOM230 (100 and 250 microg) and octreotide (100 microg). Concentrations of SOM230, octreotide, and GH were determined at designated times after dosing and at baseline. The PK properties of SOM230 and octreotide and the relationship of PK with GH were investigated by a nonlinear mixed-effects modeling analysis. RESULTS: The apparent clearance for SOM230 is approximately half of that for octreotide (8.0 L/h versus 15.8 L/h). The elimination half-life for SOM230 is about 5 times longer than that for octreotide (11.8 hours versus 2.3 hours). The relationship between GH levels and plasma concentrations of SOM230 and octreotide is well described by a direct inhibitory model. The test drug concentration level at which half of the maximum drug effect is observed (EC50) is 46 and 553 pg/mL for octreotide and SOM230, respectively, with large interpatient variability (coefficients of variation, 164% and 65%, respectively), mainly attributable to the heterogeneous responses among patients. CONCLUSIONS: SOM230 demonstrates a lower clearance and longer half-life than octreotide, which compensates for the lower potency in GH inhibition. As a result of the lower interpatient variability for EC50 , SOM230 is expected to have a more uniform clinical GH inhibition than octreotide for acromegalic patients at a clinically effective dosing regimen.

Acromegaly↗

Biochemical markers of acromegaly: GH vs. IGF-I.

The development of sensitive and specific growth hormone (GH) and insulin-like growth factor I (IGF-I) assays opened a new page in the diagnosis and surveillance of acromegaly. Currently, it is possible to make an accurate pre-operative diagnosis even in patients with virtually no typical clinical signs of the disease and to monitor the efficacy of therapeutic intervention with a high degree of precision. This review briefly discusses the performance parameters of GH and IGF-I as diagnostic and surveillance tools in patients with acromegaly. In brief, whereas GH-based parameters may offer the advantage of disclosing dysregulation of GH secretion, a single plasma IGF-I measurement provides the most comprehensive assessment of both the overall GH output as well as the pattern of GH presentation to the peripheral tissues. Judicious use of both biochemical markers allows accurate and early diagnosis, precise assessment of the efficacy of therapeutic interventions, permits adjustment in the dose of medication and allows for unequivocal demonstration of a final cure.

Acromegaly↗

Diagnosis and treatment of acromegaly.

Acromegaly is an insidious disease that occurs, in the majority of cases, as a result of a pituitary adenoma that hypersecretes growth hormone (GH). The clinical consequences of acromegaly are a function of excess GH secretion and mass effect of the pituitary tumor. The involvement of multiple organ systems may lead to significant morbidity and mortality, prompting the need for rapid and accurate disease recognition and treatment. This brief review will describe current recommendations for management of this uncommon, but debilitating, endocrine disorder.

Acromegaly↗

[Acromegaly in elderly people].

Acromegaly is associated with increased morbidity and mortality. Cardiovascular complications are the major predictors of mortality. Age and duration of symptoms are the major determinants of acromegalic cardiopathy. Successful control of acromegaly reverse cardiovascular abnormalities. Herein, we review clinical, biological and histopathological findings in elderly people. Treatments and side effects in relation with aging are questioned.

Acromegaly↗

Heel pad thickness is an insensitive index of biochemical remission in acromegaly.

The value of serial measurements of heel pad thickness as a clinical predictor of biochemical remission in acromegaly was assessed in 25 patients followed for up to 20 years after treatment by interstitial irradiation using yttrium-90 implantation. Growth hormone (GH) levels fell to 50% of baseline values within 12 months of therapy (P less than 0.001) and to 21% at 5 years, reaching normal levels after 10 years, constituting a biochemical cure maintained to the end of the study period. By contrast, heel pad thickness remained relatively stable, falling to 95% of baseline after 5 years (P less than 0.05) and to 87% after 20 years. There was no overall correlation between the measured parameters (r = 0.033, P greater than 0.05) suggesting that heel pad thickness is a poor predictor of biochemical remission in acromegaly.

Acromegaly↗

The extrathoracic airway in acromegaly.

Pulmonary function tests and a radiological assessment of the larynx and cervical trachea were performed in 26 patients with acromegaly. Pulmonary function tests demonstrated six out of 26 patients to have upper-airways obstruction, while laryngeal tomography demonstrated 14 cases with marked narrowing of the true and false cords. The tracheal dimensions were normal. The thickness of both the true and the false cords showed a statistically significant increase, using the Mann-Whitney U-test, in both male and female patients compared with controls. The transverse tracheal diameter was significantly decreased in male but not female patients. These findings suggest that pulmonary function tests and radiological assessment are of value in indicating those patients with acromegaly who may be at increased risk when undergoing general anaesthesia.

Acromegaly↗

The role of somatostatin agonistic analogs in the treatment of acromegaly.

Acromegaly mainly associated with the presence of a growth hormone (GH)-secreting pituitary tumor causes considerable morbidity and carries a risk of premature mortality. Treatment includes surgery, radiotherapy, and the use of dopaminomimetic drugs and somatostatin agonist analogs (octreotide and lanreotide). The use of long-acting somatostatin analogs is limited to adjuvant therapy following failure of surgery and/or radiotherapy and/or bromocriptine. But it may be considered the drug of choice for childhood acromegaly and for syndrome of plurihormonal pituitary overproduction in association with excess GH-releasing hormone (GHRH) and a McCune/Albright-like syndrome. Octreotide has been administered de novo as primary and/or presurgical preparatory therapy. Octreotide doses of 100 to 1500 micrograms were used in two large series in Europe and the United States, which mainly included acromegalics in whom all other modalities had failed (> 65%). Clinical improvement, which was sustained for over 6 months of follow-up evaluation, was reported for more than 50% to 70% of patients. In evaluable patients with visual-field defects, there was a definite amelioration, even if the tumor mass was not reduced, and there was no worsening during therapy; the same is true for the adenoma mass, which showed a variable reduction (median, 15 to 22%). A reduction of serum GH and insulin-like growth factor-1 (IGF-1) levels was found in more than 90% of patients, with GH serum values < 5 ng/mL and IGF-1 serum values < 2 U/mL recorded in 46% and 49%, respectively. Relapse occurred when treatment stopped. Future developments are expected to improve the clinical usefulness of somatostatin analogs.

Acromegaly↗

Effective and lasting growth-hormone suppression in active acromegaly with oral administration of somatostatin analogue SMS 201-995.

Oral administration of the long-acting somatostatin analogue, SMS 201-995 (Sandoz), was assessed in five patients with active acromegaly, four of whom had not responded to pituitary irradiation. Doses of 4-8 mg three times daily lowered mean 24 h growth-hormone concentrations by over 50% in every case, with suppression to below 10 mU/l for several hours after the morning dose. Despite effective suppression of serum insulin levels, deterioration in glucose tolerance was very slight, and the drug had no side-effects. Orally administered SMS 201-995 avoids the need for multiple daily injections and is potentially valuable in the medical treatment of acromegaly.

Acromegaly↗

Acromegaly in the dog.

The main characteristic findings in canine acromegaly are a visible increase in soft tissue mass, prominent skin folds, abdominal enlargement, and/or radiographic evidence of an increase in soft tissue mass in the orolingual, oropharyngeal, and orolaryngeal region. Acromegalic dogs almost invariably show some degree of respiratory stridor. Enlargement of the interdental spaces can be seen, but it is felt that these changes are less specific for the disease. Other possible findings include hyperglycemia, PU/PD, elevated SAP levels, and lowered PCV. For a conclusive diagnosis, the demonstration of elevated GH levels and, preferably, the demonstration of nonsuppressibility of these high GH levels is required. Basal plasma GH levels in acromegalic dogs varies considerably (for example, from 10 ng per ml to approximately 1500 ng per ml). GH-dependent circulating growth factor (that is, insulin-like growth factor I) is drastically elevated. Acromegaly is encountered in intact female dogs that were treated with progestagens to prevent estrus and in dogs during diestrus (progesterone phase). Progestagen withdrawal and/or ovariohysterectomy will result in a reduction of plasma GH and GH-dependent insulin-like growth factor concentrations and appreciable clinical improvement.

Acromegaly↗

[Biventricular impairment of diastolic function in acromegaly].

AIM: Left ventricle impairment is very common in acromegaly. Concentric hypertrophy and diastolic dysfunction are observed at an early stage. Late left ventricle dilatation with systolic dysfunction may appear. Few reports have studied right ventricle diastolic function. METHODS: Twenty-seven acromegalic patients were included. Biventricular diastolic function was assessed using Doppler-echocardiography. Possible associations with hormonal activity, evolution time of illness, hypertension, left ventricular hypertrophy and systolic impairment on echocardiography were studied. RESULTS: Fifteen patients showed left ventricular diastolic dysfunction, whereas thirteen patients showed right ventricular diastolic dysfunction. A good correlation was observed between E/A relation of both ventricles (r = 0.70; p < 0.01) and isovolumetric relaxation time (r = -0.60; p < 0.01). The right ventricular E/A relation correlated with left ventricular mass index and significance was almost achieved with the presence of hypertension. There was no statistical correlations between the right ventricular E/A relation and hormone values or evolution time of illness. The left ventricular E/A relation showed a significant association with left ventricular mass index, isovolumetric time index and evolution time of illness. There were no statistical association with hormone values. CONCLUSIONS: The high prevalence of right ventricular diastolic dysfunction observed in acromegaly suggests the presence of acromegalic myocardiopathy.

Acromegaly↗

Markers of function and proliferation in non-invasive and invasive bi- and plurihormonal adenomas of patients with acromegaly: an immunohistochemical study.

Twenty-seven plurihormonal and 21 growth hormone- prolactin- (GH- PRL-) mixed cell adenomas obtained from patients with acromegaly undergoing transnasal-transsphenoidal surgery were investigated immunohistochemically for expression of Epidermal Growth Factor (EGF), Transforming Growth Factor alpha (TGF alpha), Insulin-like Growth Factor-1 (IGF-1), Estrogen Receptor-Related Protein (ERRP), Multidrug Resistance Marker (MDRM), Protein Kinase C (PKC), Gs alpha,. Cathepsin D and p53. Five plurihormonal adenomas grew invasively. The panel of markers used in this study represents a selection of functional and proliferative markers thought to be associated with the function and development of pituitary adenomas. Our results imply that the growth factors (EGF, TGF alpha, IGF-1), the cell signalling protein Gs alpha and the MDRM are expressed by both types of pituitary adenomas in a similar pattern. Non-invasive GH-PRL-mixed cell adenomas showed an increased expression of IGF-1, TGF alpha and MDRM compared to non-invasive plurihormonal adenomas. No factor was found which would reliably distinguish between invasive and non-invasive adenomas. We failed to confirm the findings of others that p53 and cathepsin D might be indicators of tumor aggressiveness. A participation of ERRP and PKC in the development of bi- and plurihormonal adenomas with acromegaly appears unlikely, as the immunostains were all negative.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Cutis verticis gyrata: its computed tomographic demonstration in acromegaly.

A retrospective review of the 17 cases of acromegaly, recorded in the hospital and with available CT scans was undertaken in order to determine the presence and of cutis verticis gyrata (CVG) frequency, and the spectrum of other associated radiographic appearances of CVG. The hormone levels were analysed, and the histopathology of the surgical specimens reviewed. Five cases were uncovered. In these, the scalp in CVG was markedly thickened with convoluted, gyriform or cog-wheel appearances. There was no correlation in the age, sex, duration of symptoms or the hormone levels in these two groups of acromegalics: with or without CVG. All cases were histologically pituitary adenoma. It is concluded that CVG is not uncommon in acromegaly. Its presence on a CT scan should caution the radiologist to the presence of pituitary adenoma or any of the other neurological causes of CVG.

Acromegaly↗

Medical therapy for acromegaly.

Both somatostatin analogues, which bind to the somatostatin receptor subtypes 2 and 5, and dopamine agonists, which are specific for the D2 receptor, have been used to treat acromegaly. Each of these classes of drugs contains several compounds that vary in duration of action, efficacy, and side effect profile. Although somatostatin analogues reduce GH levels and alleviate symptoms in most patients and restore IGF-1 levels to normal in 60% to 65% of patients, tumor shrinkage is limited to 40% of patients. evidence in the literature supports the use of these medications as secondary therapy in patients with acromegaly who have had surgery and who continue to have elevated GH levels (above 2 ng/mL during an oral glucose tolerance test) with or without IGF-1 concentrations that are above the upper limit of normal for age. In addition, medical therapy indicated in patients who refuse surgery and in patients who are poor surgical candidates. The controversial question is whether medical therapy should be an option for primary treatment of the acromegalic patient. Currently, ther are no data from prospective randomized trials comparing the effects of surgery versus somatostatin analogues as first-line therapy for for newly diagnosed acromegalic patients. Limited data from nonrandomized studies demonstrate that somatostatin analogues are effective long-term in suppressing GH and reducing IGF-1 into the normal range in approximately two-thirds of patients who have never undergone previous treatment. It is still the consensus that patients with GH-secreting microadenomas should undergo surgical resection, because the likelihood of complete cure by an experience neurosurgeon is high, at least 70% or greater. Successful surgical treatment has the advantage of completely removing the tumor in contrast to medical therapy, which rarely produces shrinkage greater than 50% despite the fact that IGF-1 and GH levels may be normal. In patients with macroadenomas of a size and location that suggest that the chance of complete resection is 40% or less, primary treatment with a somatostatin analogue should be considered as one option in the initial management of the patient. Another option in such an individual would be surgical debulking followed by medical therapy, because it is theoretically possible that biochemical cure with medical therapy after surgical debulking might be achieved with lower doses. The cost-effectiveness of these approaches has not yet been determined. Once the decision has been made to begin medical therapy, a choice must be made between dopamine agonists and somatostatin analogues. Most evidence suggests that somatostatin analogues are more effective than dopamine agonists and therefore would be the therapy of choice. In select patients, dopamine agonists, particularly the long-acting agonist cabergoline, may be preferred initially if the patient is unwilling to take injections or if the GH elevations are relatively modest (< 10 ng/mL). Biochemical cure should be assessed by measurement of GH (which can be performed 2 hours after an octreotide injection) and IGF-1 concentrations. The goal of treatment include reduction of of GH below 2 ng/mL and reduction of IGF-1 into the normal range. In patients who do not reach these goals, the dose or frequency of injection of the somatostatin analogue or both should be increased. If such measures are unsuccessful, a dopamine agonist may be added to the medical regimen because some studies suggest that combination therapy may be more effective in select cases than octreotide therapy alone. If such measures are still unsuccessful, other options should be considered, including surgery, pituitary radiation, and medical treatment with investigational drugs.

Acromegaly↗

Acromegaly.

Acromegaly is a slow developing disease caused by hypersecretion of growth hormone and insulin-like growth factor 1. Increased morbidity and mortality associated with the disease make early diagnosis and treatment crucial. This article reviews the etiology, clinical manifestations, and diagnosis of acromegaly, with an emphasis on newly available therapeutic options.

Acromegaly↗

Acromegaly.

Acromegaly can be a serious, chronic, debilitating condition. The disease is often missed for years, resulting in significantly delayed diagnosis. This article reviews recent advances in our understanding of acromegaly and the impact of current approaches on the diagnosis and monitoring of patients with this disorder.

Acromegaly↗