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Acromegaly - evolving strategies.

Growth hormone (GH)-cell adenomas are benign pituitary tumors which present with chronic high GH output. Hereditary GH-cell adenomas are rare and include MEN I, McCune Albright Syndrome, Carney complex and familial acromegaly. Most of the tumors causing acromegaly are sporadic. Acromegaly is a disfiguring and disabling disease and, if untreated, life expectancy is reduced by a decade. Elevated GH levels, hypertension and heart disease are major negative survival determinants in these patients. Current treatments for acromegaly attempt to control the disease by reducing growth hormone secretion from the tumor either by surgery, radiotherapy or medical therapy. The choice of therapy depends on age, general health, the severity and complications of the disease and dangers associated with each treatment. Assessment of disease activity in patients with acromegaly following treatment is a problem because no sensitive clinical parameters are available and there is no well-defined clinical endpoint that defines cure. Cure in acromegaly has been defined therefore as normalization of biochemical parameters. A consensus publication recommended biochemical cure be considered as nadir GH of less than 1 microm g/L after OGTT and a normal circulating IGF-I. In optimizing the control of acromegaly new therapeutic strategies are evolving (growth hormone receptor antagonist - pegvisomant, potent dopamine agonists, universal somatostatin receptor ligands, chimeric molecules). The aim of the evolving therapeutic strategies is to produce a normal life expectancy in patients with acromegaly.

Acromegaly↗

Quantitative ultrasound at the hand phalanges in patients with acromegaly.

The aim of this study was assessment of skeletal status using quantitative ultrasound (QUS) at hand phalanges in patients with acromegaly. A group of 38 patients with acromegaly (27 women and 11 men) with a mean age of 57.21 +/- 9.85 years was compared with a control group of 44 men and 108 women matched for gender, age and body size. Amplitude-dependent speed of sound (Ad-SoS) at hand phalanges had lower values in patients with acromegaly than in controls, both in the entire group and in men and women, respectively. The positive correlation between Ad-SoS and height and the negative one between Ad-SoS and age was found in the entire group of patients with acromegaly. No correlations between Ad-SoS and time from diagnosis or duration of the symptoms were found. Age affected Ad-SoS significantly less in the entire patient group than in controls. Similarly, in women, age and body mass affected Ad-SoS less than in controls. A stepwise multiple regression analysis carried out in the patient group identified age as the only factor significantly influencing negatively the Ad-SoS value (regression equation: Ad-SoS (m/s) = 2124 m/s - 3.26 x age (years) [r2= 0.26, standard error of estimate = 55.1, p < 0.01]). In conclusion, our data demonstrate that, in patients with acromegaly, skeletal status assessed by QUS was affected. This could reflect the worsening of the mechanical properties of bones studied and the increased risk of fractures in other sites of the skeleton. The changes observed were not related to acromegaly-associated hypogonadism. Further studies to assess the role of QUS in acromegaly are necessary and fracture prevalence and risk ought to be established.

Acromegaly↗

Acromegaly and cancer risk: a cohort study in Sweden and Denmark.

OBJECTIVE: Several studies have suggested that patients with acromegaly have an increased risk of benign and malignant neoplasms, especially of the colon. To further investigate this relationship we evaluated cancer risk in population-based cohorts of acromegaly patients in Sweden and Denmark. METHODS: Nationwide registry-based cohorts of patients hospitalized for acromegaly (Denmark 1977-1993; Sweden 1965-1993) were linked to tumor registry data for up to 15-28 years of follow-up, respectively. Standardized incidence ratios (SIR) and 95% confidence intervals (CI) were calculated to estimate cancer risk among 1634 patients with acromegaly. RESULTS: The patterns of cancer risk in Sweden and Denmark were similar. After excluding the first year of follow-up, 177 patients with acromegaly had a diagnosis of cancer compared with an expected number of 116.5 (SIR = 1.5. 95% CI = 1.3-1.8). Increased risks were found for digestive system cancers (SIR = 2.1, 95% CI = 1.62.7), notably of the small intestine (SIR = 6.0, 95% CI = 1.2-17.4), colon (SIR = 2.6, 95% CI = 1.6-3.8), and rectum (SIR = 2.5, 95% CI= 1.3-4.2). Risks were also elevated for cancers of the brain (SIR = 2.7, 95% CI= 1.2-5.0). thyroid (SIR = 3.7, 95% CI = 1.8-10.9), kidney (SIR = 3.2, 95% CI = 1.6-5.5), and bone (SIR= 13.8, 95% CI= 1.7-50.0). CONCLUSIONS: The increased risk for several cancer sites among acromegaly patients may be due to the elevated proliferative and anti-apoptotic activity associated with increased circulating levels of insulin-like growth factor-1 (IGF-1). Pituitary irradiation given to some patients may have contributed to the excess risks of brain tumors and thyroid cancer. Our findings indicate the need for close medical surveillance of patients with acromegaly, and further studies of the IGF-I system in the etiology of various cancers.

Acromegaly↗

Basal metabolic rate in adults with growth hormone deficiency and in patients with acromegaly: relationship with lean body mass, plasma insulin level and leucocyte sodium pump activity.

1. The relationship of lean body mass, plasma insulin concentration and leucocyte active sodium transport with basal metabolic rate was investigated in 24 adults with growth hormone deficiency before and after treatment with recombinant human growth hormone and in 10 patients with untreated acromegaly. 2. Based on total-body potassium determined by whole-body 40K counting, patients with acromegaly had increased lean body mass, whereas lack of growth hormone was associated with decreased lean body mass. 3. By indirect calorimetry, patients with acromegaly had increased basal metabolic rates and patients with growth hormone deficiency had decreased values when expressed as percentages of values predicted from the WHO/FAO/UNU equations. Basal metabolic rate expressed in terms of lean body mass was similar in acromegaly and growth hormone deficiency, but was higher than normal in both patient groups. 4. The leucocyte ouabain-sensitive sodium efflux rate constant was decreased in both patients with acromegaly and patients with growth hormone deficiency, and there was no correlation with basal energy expenditure, fasting plasma insulin level or serum growth hormone level. 5. There was no increase in the sodium efflux rate constant in patients with growth hormone deficiency after 1 month on treatment with recombinant human growth hormone. 6. Apparent differences in basal metabolic rate in growth hormone deficiency and acromegaly are due to changes in lean body mass. Both adults with growth hormone deficiency and patients with acromegaly have increased energy expenditure, probably owing to changes in fuel metabolism which are not reflected in the leucocyte sodium pump activity.

Acromegaly↗

Sleep apnoea in treated acromegaly: relative frequency and predisposing factors.

OBJECTIVES: Sleep apnoea is common in active acromegaly. It is associated with increased morbidity and mortality but can be treated effectively. The objective of this study was to determine the largely unknown relative frequency of, and the predictive factors for, sleep apnoea in treated acromegalic patients. DESIGN: Retrospective cohort study. SETTING: Tertiary referral hospital. PATIENTS: Fifty-four of 100 patients with treated acromegaly. If sleep apnoea had been diagnosed before acromegaly, the patient was excluded. MEASUREMENTS: Sleep studies (using the MESAM-4 device measuring oxyhaemoglobin saturation, heart rate, snoring sounds and body position to determine presence and severity of sleep apnoea); GH and IGF-I levels; body mass index, neck and index-finger circumference; daytime symptoms of sleep apnoea, duration of acromegaly before treatment, shoe and neck-size difference since beginning of acromegaly; age, sex and treatment modes of acromegaly. RESULTS: The relative frequency of sleep apnoea was 39% in the 54 patients with sleep studies and at least 21% in the entire study population of 100 patients. In patients with sleep apnoea, statistically significant higher values were observed for GH (P = 0.002), IGF-I (P = 0.029), age (P = 0.014) and neck circumference (P = 0.016). An index-finger circumference of > or = 8.5 cm was associated with a significantly higher desaturation index (P = 0.012, Mann-Whitney U-test). Adenomectomy had been performed significantly less frequently in patients with sleep apnoea (P < 0.001, X2 test). The body mass index was non-significantly higher in the patients with sleep apnoea. CONCLUSIONS: The relative frequency of sleep apnoea in patients with treated acromegaly is at least 21%. Parameters of predictive value for the presence of sleep apnoea in this population are neck and index-finger circumference as measures of soft tissue hypertrophy, age, GH and IGF-I levels, and whether or not operative therapy was applied.

Acromegaly↗

The thyroid gland in acromegaly: an ultrasonographic study.

OBJECTIVE: An association between acromegaly and goitre is well recognized. We have studied the incidence and morphology of goitre in acromegaly, and examined the role of IGF-I and TSH in goitre pathogenesis. DESIGN AND SUBJECTS: Thirty-seven subjects with acromegaly, active or in remission, were assessed by ultrasound to determine thyroid volume (TV) and morphology, and compared with normal controls. Nine subjects with acromegaly were also studied again following treatment with octreotide for 1 year. RESULTS: Compared with controls, TV was greater (28.7 +/- 18.3 ml vs 5.4 +/- 2.6 ml, P < 0.001) and IGF-I levels were higher (62.0 +/- 34.8 nM vs 28.9 +/- 10.9 nM, P < 0.001) in subjects with acromegaly. Those with active disease tended to have larger glands (30.0 +/- 17.2 ml vs 22.2 +/- 16.7 ml, P = 0.18). The overall incidence of goitre was 92%. Twenty-seven subjects (73%) had nodules or heterogeneous thyroid echotexture. Subjects with nodular goitre had a longer duration of acromegaly than those with homogeneous glands (12.1 +/- 5.7 vs 7.6 +/- 4.0 years, P = 0.032). Those with nodular glands also had larger goitres than those with homogeneous glands (35.2 +/- 18.8 ml vs 19.5 +/- 11.9 ml, P = 0.032). Thyroid volume correlated with IGF-I levels (r2 = 0.38, P = 0.002) and body mass index (r2 = 0.24, P < 0.001), and there was an inverse relationship with TSH levels (r2 = 0.46, P = 0.032). Patients studied again after treatment with octreotide for 1 year had a reduction in TV from 32.6 +/- 16.1 to 27.6 +/- 17.0 ml (P = 0.041). CONCLUSIONS: This study confirms that goitre is a common finding in acromegaly. Our findings suggest that early in the course of the disease, diffuse goitre occurs. Subsequently, thyroid autonomy and nodule formation develop, and further growth may occur independent of TSH. With control of GH hypersecretion, a reduction in thyroid size occurs, but this may be limited by the extent of thyroid nodularity.

Acromegaly↗

Effects of normalization of GH hypersecretion on lipoprotein(a) and other lipoprotein serum levels in acromegaly.

BACKGROUND & AIMS: Lipoprotein(a) has been recognized as an important risk factor for cardiovascular disease. Lipoprotein(a) has been found to be elevated in sera of acromegalic patients, possibly contributing to the increased incidence of coronary heart disease found in these patients. In the present study we sought to determine the effects of GH hormonal status on lipoprotein(a) and other lipid parameters, including lipoprotein lipase (LPL) activity. DESIGN: Cross-sectional study. PATIENTS: Twenty acromegalic patients, with either active (n = 12) or controlled (n = 8) acromegaly, were studied. Twenty-nine healthy subjects served as control group for serum lipid measurements. MEASUREMENTS: Serum GH, IGF-1, IGF binding protein-3 (IGFBP-3) and insulin levels were measured in patients. Insulin resistance was measured by the homeostatic model assessment (HOMA). Plasma total cholesterol, triglycerides, HDL-lipids, apolipoproteins A-I and B, lipoprotein(a) and lipoprotein lipase activity were also measured. RESULTS: The highest lipoprotein(a) levels were observed in patients with active acromegaly, followed by patients with controlled acromegaly, whose lipoprotein(a) concentrations were still significantly higher than those of the control group (means +/- SEM: active acromegaly, 0.67+/-0.13 g/l; controlled acromegaly, 0.41+/-0.12 g/l; controls 0.17+/-0.02 g/l; P<0.05). There were no differences in other lipid and lipoprotein values among the groups. In patients, significant correlations were observed between lipoprotein(a) and basal GH levels (r = 0.56, P<0.02), mean GH levels (r = 0.48, P<0.05) and with insulin resistance estimated by HOMA (r = 0.62, P<0.01). No correlations were found between lipoprotein(a) and IGF-1 or IGFBP-3 levels. CONCLUSIONS: Our present results demonstrate that both active acromegalic patients and those with controlled disease have elevated serum lipoprotein(a) concentrations. The findings might suggest that the present biochemical criteria for cure of acromegaly are not strict enough to result in the normalization of all the undesirable metabolic changes found in this disease, and also that significant cardiovascular risk may persist despite successful treatment of acromegaly.

Acromegaly↗

Increased levels of insulin-like growth factor binding protein-2 in sera and tumours from patients with colonic neoplasia with and without acromegaly.

OBJECTIVE: Patients with acromegaly are at increased risk of developing colorectal carcinoma and premalignant tubulovillous adenoma. The pathogenesis of these neoplasms could involve a stimulatory effect of serum growth factors on colonic epithelial cell proliferation. The aim of this study was to evaluate changes in (1) serum IGF-I, IGF-II, IGFBP-3 and IGFBP-2 and (2) changes in local expression of IGFBPs and p53 in colonic epithelium in patients with colonic neoplasia with and without acromegaly. DESIGN: A cross-sectional retrospective study was performed. Fasting serum samples were obtained at the time of colonoscopy for patients with acromegaly and at the time of surgery for patients with colonic neoplasia without acromegaly. MEASUREMENTS: Serum IGF-I, IGF-II, IGFBP-2 and IGFBP-3 were measured using specific immunoassays. Tissue expression of IGFBP-2, IGFBP-3 and p53 status were determined by immunohistochemistry. PATIENTS: Group 1: 26 age- and sex-matched control subjects (range 40-69 years); group 2: 18 patients with acromegaly without colonic neoplasia (range 39-68 years); group 3: 18 patients with acromegaly and colonic neoplasia (range 41-74 years, 11 = adenoma, seven = carcinoma); group 4: 19 patients with colonic neoplasia without endocrine disease (range 43-91 years, four = adenoma, 15 = carcinoma). Immunohistochemical staining of colonic biopsies was performed for IGFBP-2, IGFBP-3 and p53 in groups 3 and 4. RESULTS: Mean serum IGF-I and IGFBP-3 levels were significantly elevated in group 2 (371 +/- 131 microg/l and 6.5 +/- 1.8 mg/l, respectively) and group 3 (379 +/- 174 microg/l and 5.8 +/- 1.6 mg/l, respectively), and significantly reduced in group 4 (103 +/- 36 microg/l and 2.4 +/- 1 mg/l) compared to controls (165 +/- 40 microg/l and 4.7 +/- 1 mg/l; P < 0.0001, P < 0.001, respectively). However, median serum IGFBP-2 levels were significantly elevated in group 3 (P < 0.01) and group 4 (P < 0.0001). Immunostaining for IGFBP-2 showed strong areas of immunoreactivity in the cytoplasm of malignant colonic epithelium compared to benign epithelium. IGFBP-3 immunostaining showed strong areas of immunoreactivity in the cytoplasm and in the nucleus of malignant and benign colonic epithelium compared to the normal epithelium. Nuclear staining for p53 was observed in three patients from group 3 (two carcinoma, one adenoma) and four patients from group 4 (all carcinoma). CONCLUSION: Our results describe changes in IGFBP-2 expression in colonic neoplasia in patients with and without acromegaly, which suggest that this binding protein may regulate local bioavailability of IGF, which in turn could modulate colonic cell proliferation and/or differentiation.

Acromegaly↗

Gender and age influence the relationship between serum GH and IGF-I in patients with acromegaly.

BACKGROUND: In patients with acromegaly serum IGF-I is increasingly used as a marker of disease activity. As a result, the relationship between serum GH and IGF-I is of profound interest. Healthy females secrete three times more GH than males but have broadly similar serum IGF-I levels, and women with GH deficiency require 30-50% more exogenous GH to maintain the same serum IGF-I as GH-deficient men. In a selected cohort of patients with active acromegaly, studied off medical therapy using a single fasting serum GH and IGF-I measurement, we have reported previously that, for a given GH level, women have significantly lower circulating IGF-I. OBJECTIVE: To evaluate the influence of age and gender on the relationship between serum GH and IGF-I in an unselected cohort of patients with acromegaly independent of disease control and medical therapy. METHODS: Sixty (34 male) unselected patients with acromegaly (median age 51 years (range 24-81 years) attending a colonoscopy screening programme were studied. Forty-five had previously received pituitary radiotherapy. Patients had varying degrees of disease control and received medical therapy where appropriate. Mean serum GH was calculated from an eight-point day profile (n = 45) and values obtained during a 75-g oral glucose tolerance test (n = 15). Serum IGF-I, IGFBP-3 and acid-labile subunit were measured and the dependency of these factors on covariates such as log10 mean serum GH, sex, age and prior radiotherapy was assessed using regression techniques. RESULTS: The median calculated GH value was 4.7 mU/l (range 1-104). A significant linear association was observed between serum IGF-I and log10 mean serum GH for the cohort (R = 0.5, P < 0.0001). After simultaneous adjustment of the above covariates a significant difference in the relationship between mean serum GH and IGF-I was observed for males and females. On average, women had serum IGF-I levels 11.44 nmol/l lower than men with the same mean serum GH (P = 0.03, 95% CI 1.33-21.4 nmol/l). Age significantly influenced the relationship and for a given serum GH, IGF-I was estimated to fall by 0.37 nmol/l per year (P = 0.04, 95% CI 0.015-0.72). CONCLUSIONS: In keeping with previous observations of relative GH resistance in normal and GH-deficient females we have observed lower serum IGF-I levels for equivalent mean serum GH levels in females patients with acromegaly. This gender-dependent difference is independent of disease activity and the use of concomitant medical therapy. Additionally, we have demonstrated that for a given serum GH level, age significantly influences IGF-I concentrations in patients with acromegaly. These data have important implications for the use of serum IGF-I and GH as markers of disease activity in acromegaly.

Acromegaly↗

Myocardial perfusion abnormalities in patients with active acromegaly.

Cardiomyopathy is often seen in patients with a long history of acromegaly. In order to screen for perfusion abnormalities, patients with active acromegaly without evidence for coronary heart disease were examined by single photon emission computed tomography (SPECT). The study included a group of 11 strictly selected patients with active acromegaly (7 males and 4 females; age 51 +/- 12 y [mean +/- S.D.]) with elevated age-adjusted IGF-I levels (IGF-I 569 +/- 193 micro g/l; GH 31.2 +/- 56.3 micro g/l) compared to an age- and sex-matched non-acromegalic control group with comparable muscle mass index of the left ventricle (126 +/- 41 active vs. 122 +/- 33 g/m 2 control group) and body mass index (26.6 +/- 2.7 vs. 27.0 +/- 5.0 kg/m 2). To address this issue, myocardial perfusion was investigated by single photon emission computed tomography (SPECT) using a triple head gamma-camera. 70 MBq 201TlCl was injected, and post-stress (from bicycle ergometer) images were obtained. Images were interpreted quantitatively by bull's eye polary map (16 regions of the left ventricle) and were compared to the control group. In the patients with active acromegaly, the mean nuclide uptake of the 16 regions of the left ventricle after bicycle stress examination was lower than in the control group (82.99 +/- 2.85 active vs 85.48 +/- 1.29 control group, p < 0.01). Non-homogeneity of nuclide uptake was defined as the standard deviations of the 16 regions and was higher in patients with active acromegaly (11.11 +/- 2.35 active vs. 8.77 +/- 1.39 control group, p < 0.01). In conclusion, myocardial perfusion is impaired in patients with active acromegaly, thus representing an early stage of cardiac involvement in acromegaly that may be directly mediated by growth hormone excess.

Acromegaly↗

Characterization of 24-hour growth hormone secretion in acromegaly: implications for diagnosis and therapy.

OBJECTIVE: Early studies of acromegaly undertaken before the general availability of insulin-like growth factor I (IGF-I) assays have used arbitrary and varying growth hormone (GH) threshold levels for diagnosing and assessing outcome of treatment for this disease. We have undertaken a detailed study of GH secretion and its relationship to IGF-I levels to assess the usefulness of GH and IGF-I measurements in the assessment of acromegaly. PATIENTS: Thirty acromegalic subjects (12 untreated and 16 previously treated) and 30 age and sex-matched normal subjects were studied. MEASUREMENTS: Twenty-four-hour GH secretion was obtained from 20-minute sampling and serum IGF-I was measured. Comparisons were made of IGF-I, mean 24-hour GH concentration, and of the pulsatile and diurnal characteristics of GH secretion between the two groups. RESULTS: IGF-I levels in untreated acromegaly were elevated and clearly separated from the normal range. Mean 24-hour GH concentrations in untreated and treated acromegalic subjects with elevated IGF-I (> 40 nmol/l) were greater than (P < 0.01), and showed good separation from, those of normal subjects only after age-matching. From the 24-hour profiles, nadir GH levels in normal subjects fell below the level of detectability while those in untreated acromegalic subjects did not. Pulse amplitude (P < 0.01), ratio of pulsatile to non-pulsatile GH release and the night to daytime GH ratio (P < 0.05) were significantly reduced in acromegaly. In the six patients who attained normal IGF-I levels after surgery, pulsatile characteristics remained abnormal in four. Mean 24-hour GH was significant related (r = 0.57) to IGF-I. A random GH concentration > 2.5 micrograms/l (5 mIU/l) has a sensitivity of 77% and specificity of 95% in identifying acromegalic patients who have biochemically active disease (elevated IGF-I) after treatment. CONCLUSIONS: Patients with active acromegaly secrete more GH than age-matched normal controls. GH secretion in acromegaly is characterized by marked blunting of pulsatile secretion and, in contrast to normal subjects, the failure of GH to fall to undetectable levels at any time during the 24-hour day. IGF-I measurement is a more practical alternative in the diagnosis of acromegaly and in the assessment of therapeutic outcome. Since abnormalities of GH regulation may persist despite normalization of IGF-I, a distinction between remission and cure should be made. Detailed post-treatment evaluation of GH secretion is necessary to define the nature of underlying GH regulation and to evaluate the risk of disease recurrence.

Acromegaly↗

Apoptosis is reduced in the colonic mucosa of patients with acromegaly.

BACKGROUND: Patients with acromegaly have an increased risk of developing colonic tumours; reduced apoptosis is considered a leading mechanism in tumorigenesis. GH and IGF-1 decrease apoptosis in several cell lines including human colonic adenocarcinoma, but it is unknown whether epithelial cells of colonic mucosa of patients with acromegaly have reduced apoptosis. AIM: The aim of the study was to evaluate the degree of apoptosis in a cross-sectional study, in biopsy samples of colonic mucosa obtained from patients with acromegaly. PATIENTS AND METHODS: Eleven patients with active, untreated acromegaly (AcroUntr), 16 patients with acromegaly in remission (AcroRem) and 23 controls were enrolled in the study. Samples of colonic mucosa were obtained during colonoscopy; apoptosis was evaluated by either DNA fragmentation or terminal deoxynucleotidyl transferase assay. RESULTS: Apoptotic cells were 60.0 +/- 2.5% in samples of colonic mucosa of controls, 62.0 +/- 3.4% in those from patients with AcroRem (P = ns vs. controls), and 39.0 +/- 4.1% in those from patients with AcroUntr (P < 0.0001 vs. the other groups). Apoptosis was inversely related to serum IGF-I (r = 0.771, P < 0.001) or GH (r = 0.404, P = 0.05) levels and less to the estimated duration of disease (r = 0.384, P = 0.07). PPARgamma is considered to be a tumour suppressor gene the expression of which might be involved in colonic tumorigenesis. The expression of PPARgamma was lower in the colonic mucosa of patients with AcroUntr (2845 +/- 947 transcripts) than in that of controls (35 200 +/- 2450 transcripts) or AcroRem (29 547 +/- 3650 transcripts) (P < 0.005). The recovery of PPARgamma expression was associated with apoptosis in most cells. The lower degree of apoptosis in patients with AcroUntr was associated with a reduced expression of the antiapoptotic Bax protein. CONCLUSION: In conclusion, patients with AcroUntr have reduced apoptosis in colonic mucosa that is apparently reversed after acromegaly is cured. It is conceivable that reduced apoptosis may represent an early event in colonic tumorigenesis of patients with acromegaly.

Acromegaly↗

Subclinical cardiac dysfunction in acromegaly: evidence for a specific disease of heart muscle.

Acromegaly is associated with an increased cardiac morbidity and mortality, but it is not clear whether this is the result of increased incidence of hypertension and coronary heart disease or of a specific disease of heart muscle. Thirty four acromegalic patients were studied by non-invasive techniques. Seven of these patients had raised plasma concentrations of growth hormone at the time of study; three were newly diagnosed and had not received any treatment. Hypertension was present in nine (26%) but only three (9%) had electrocardiographic left ventricular hypertrophy. Echocardiography showed ventricular hypertrophy in 12 (48%) and increased left ventricular mass in 17 (68%) patients. Holter monitoring detected important ventricular arrhythmias in 14 patients. Thallium-201 scanning showed evidence for coronary heart disease in eight patients. Systolic time intervals were normal except when there was coexistent ischaemic heart disease. A comparison between 19 acromegalic patients with no other detectable cause of heart disease and 22 age matched controls showed appreciably abnormal left ventricular diastolic function in the group with acromegaly. The abnormalities shown did not correlate with left ventricular mass or wall thickness. There was no difference in diastolic function between patients with active acromegaly and those with treated acromegaly. Hypertensive acromegalic patients had worse diastolic function than hypertensive controls, suggesting that hypertension may further impair the left ventricular diastolic abnormality in acromegaly. This is the first study to find evidence of subclinical cardiac diastolic dysfunction in acromegaly and it supports the suggestion that there is a specific disease of heart muscle in acromegaly.

Acromegaly↗

Quality of life in acromegaly.

Acromegaly is a disease with an important impact on health-related quality of life (HRQoL). Cross-sectional evaluation of HRQoL in patients with acromegaly using generic questionnaires and the specific questionnaire AcroQoL has confirmed severe impairment; active disease, female gender, ageing, disease duration, joint symptoms and prior radiotherapy are associated with worse HRQoL. The most affected dimension is appearance and the least affected, personal relations; comparable results have been observed in Spanish, Dutch, German, English and Turkish speaking patients. Patients with active acromegaly show a worse score (mean range 43-56) than those in remission (mean range 65-71). In longitudinal studies, in patients with stable acromegaly, no change was observed on retesting at 1 month, demonstrating a good test-retest reliability. In patients with active acromegaly, after 6 months of treatment, an improvement in the AcroQoL score was observed (56 +/- 20 to 66 +/- 18; p < 0.01). The internal consistency of AcroQoL was good (Cronbach's alpha >0.7). No correlation between AcroQoL and insulin-like growth factor-I/growth hormone levels was observed, even though a trend was found for the most affected dimension (appearance) and insulin-like growth factor-I (p = 0.051). In summary, HRQoL is severely affected in acromegaly, even in patients with controlled disease. Thus, to optimise management, not only biochemical and radiological parameters but also dimensions that reflect HRQoL should be evaluated in acromegaly.

Acromegaly↗

Collapsibility of passive pharynx in patients with acromegaly.

Sleep-disordered breathing (SDB), either central or obstructive in nature, is common in patients with acromegaly. However, no study has systematically examined the collapsibility of the pharynx in acromegaly to date. We evaluated intrinsic mechanical properties of passive pharynx in 10 anesthetized and paralyzed patients with active acromegaly before transsphenoidal adenomectomy for their pituitary adenoma. Static pressure-area relationships of the velopharynx and oropharynx were obtained by step changes in airway pressure during endoscopic cross-sectional area measurement of each segment. Moreover, curve fitting analysis by an exponential function estimated the closing pressure (P'close) of each segment. Preoperative nocturnal oximetry identified five acromegalic patients with an oxygen desaturation index (ODI) greater than 10 h-1 and clinical symptoms suggesting presence of SDB. The pharyngeal airway of all five acromegalic patients with SDB was highly collapsible at both velopharynx and oropharynx with positive P'close. Compared with age-, body mass index (BMI)-, and ODI-matched SDB patients without acromegaly, SDB patients with acromegaly had a higher P'close of the oropharynx, indicating that the etiology of SDB in acromegaly appears to differ from that of ordinary sleep apnea. Our results suggest that anatomic abnormality, especially at the base of the tongue, appears to play a significant role in development of SDB in acromegaly.

Acromegaly↗

Absent growth hormone response to L-tryptophan in acromegaly.

In acromegaly, regulation of GH secretion by dopamine pathways appears to be qualitatively abnormal. To determine whether regulation of GH secretion by serotonin pathways is also abnormal in acromegaly, we administered L-tryptophan (5 g orally), the initial precursor of serotonin, to 10 patients with active acromegaly (9 treated and 1 untreated), 3 patients with cured acromegaly, and 8 normal subjects. The normal group showed a significant (P less than 0.05) increase in serum GH after L-tryptophan [peak value, 12.3 +/- 4.0 (se) ng/ml], though the magnitude of the response was highly variable. In contrast, subjects with active acromegaly did not show an increase in serum GH after L-tryptophan [mean integrated percentage change in serum GH, -25 +/- 25% (SE); P = NS]. One patient whose acromegaly had been surgically cured did show a GH rise after L-tryptophan. In acromegaly, the GH response to L-tryptophan is absent, suggesting that regulation of GH secretion by serotonin pathways might be qualitatively abnormal.

Acromegaly↗

Evaluation of disease status with sensitive measures of growth hormone secretion in 60 postoperative patients with acromegaly.

Traditionally, suppression of GH measured by polyclonal RIA to less than 2.0 microg/L after oral glucose was accepted as evidence of remission after transsphenoidal surgery for acromegaly. Recently, with newer, more sensitive GH assays, a cut-off of less than 1.0 microg/L has been suggested. With the development of accurate insulin-like growth factor I (IGF-I) and IGF-binding protein-3 (IGFBP-3) assays, additional tools are now available for assessing postoperative GH secretion. There has, however, never been a systematic comparison of sensitive GH, IGF-I, and IGFBP-3 assays in defining disease status in a large cohort of postoperative patients with acromegaly. Therefore, we evaluated how the use of modern assays impacts on our assessment of disease activity in these patients. Sixty postoperative subjects with acromegaly and 25 age-matched healthy subjects were evaluated with nadir GH levels after 100 g oral glucose as well as baseline IGF-I and IGFBP-3 levels. GH was assayed by polyclonal RIA, sensitive immunoradiometric assay (IRMA), and highly sensitive enzyme-linked immunosorbent assay. The mean nadir GH determined by IRMA was 0.09 +/- 0.004 microg/L in the healthy subjects, with the upper limit of the normal nadir being 0.14 microg/L (mean + 2 SD). Subjects with acromegaly were divided into those with active disease (n = 22), defined by elevated IGF-I levels, and those in remission (n = 38), defined by normal IGF-I levels. GH determined by IRMA failed to suppress into the normal range defined by our healthy subjects in all patients with active disease; nadir GH determined by IRMA ranged from 0.33-5.0 microg/L in this group. In 50% of the active group, nadir GH levels determined by IRMA were less than 1.0 microg/L, a GH nadir previously considered normal by strict criteria. When nadir GH levels in the subjects with active disease were measured by polyclonal RIA, there was overlap with the range of RIA values in the healthy subjects. Thus, the IRMA was superior to the RIA in that the overlap between these two groups was eliminated. Subjects with acromegaly in remission included those with normal GH suppression (n = 23; mean nadir GH by IRMA, 0.10 +/- 0.006 microg/L) and others with abnormal GH suppression by IRMA (n = 15; mean nadir GH by IRMA, 0.35 +/- 0.07 microg/L). The latter group may have persistent GH dysregulation detected by the sensitive IRMA. GH levels measured by enzyme-linked immunosorbent assay confirmed the IRMA results. IGFBP-3 levels were significantly higher in subjects with active acromegaly (4940 +/- 301 microg/L) vs. those in healthy subjects (2887 +/- 153 microg/L; P < 0.0001) and those in the subjects in remission (2966 microg/L; P < 0.0001). IGFBP-3 levels correlated overall with IGF-I levels (r = 0.765; P < 0.0001), but IGFBP-3 levels were not predictive of disease status because 32% of the subjects with active acromegaly had normal IGFBP-3 levels. In addition, failure of GH to suppress adequately was not associated with a higher IGFBP-3 level among the subjects in remission. These data indicate that the IRMA is superior to the RIA in distinguishing between patients with active disease (defined by elevated IGF-I levels) and healthy subjects. We also show that GH levels after oral glucose measured with highly sensitive GH assays can be much lower in subjects with active disease than previously believed; values less than 1.0 microg/L may be found in up to 50% of patients. In addition, in 39% of patients in apparent remission with normal IGF-I levels, GH determined by highly sensitive assays fails to suppress normally; it remains to be determined whether these patients are at higher risk for recurrence of active disease.

Acromegaly↗

Development of acromegaly in patients with prolactinomas.

OBJECTIVES: Patients with prolactinomas and patients with acromegaly often have heterogenous adenomas. In this study we have focused on patients with prolactinomas who developed acromegaly and acromegalic patients with hyperprolactinaemia. Our hypothesis is that some patients with hyperprolactinaemia may develop clinical acromegaly. METHODS: We have included patients examined at department M, Odense University Hospital between 1996 and 2001. Seventy-eight patients with prolactinomas, 65 females and 13 males, with a median age (range) of 30 Years (14-74) and 47 Years (20-66), respectively, were included in the study. RESULTS: In females and males the median prolactin (PRL) levels were 90 microg/l (27-4700; normal values (NV) <or=23) and 1075 microg/l (24-6500; NV <or=14), respectively. The PRL levels were significantly higher in males compared with females (P<0.002). Fifty-nine patients with acromegaly, 24 females and 35 males, with a median age (range) of 45 Years (24-70) and 53 Years (19-70), respectively, were included. Seven of the 24 females had hyperprolactinaemia, with PRL levels of 90 microg/l (27-494). Thirteen of the 35 males had hyperprolactinaemia with PRL levels of 47 microg/l (17-251). Three females with prolactinomas developed acromegaly clinically and biochemically. These patients had a normal low GH level and/or a normal IGF-I level at first diagnosis. CONCLUSIONS: Our findings suggest that there is a common group of patients with a pituitary adenoma who secrete PRL and GH unsynchronously. Some of these patients have clinical acromegaly at diagnosis and some patients diagnosed as prolactinomas will develop acromegaly. We suggest an annual IGF-I measurement as a screening test.

Acromegaly↗