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Biomedical subjects

A Colao

Publications and source records attributed to A Colao.

At least 109 records · Page 6Linked to original sources

Muscle sympathetic nerve activity in patients with acromegaly.

Muscle sympathetic nerve activity was measured in nine acromegalic patients (age, 35 +/- 4 yr; body mass index, 28 +/- 2 kg/m2) and eight healthy subjects (age, 32 +/- 3 yr; body mass index, 25 +/- 2 kg/m2) by combining the forearm arterial-venous difference technique with the tracer method [infusion of tritiated norepinephrine (NE)]. Muscle NE release was quantified both at rest and during physiological hyperinsulinemia while maintaining euglycemia (approximately 90 mg/dL) by means of the euglycemic clamp. Arterial plasma NE was similar in the two groups at rest (197 +/- 28 and 200 +/- 27 pg/mL (-1) and slightly increased during insulin infusion. Forearm NE release was 2.33 +/- 0.55 ng x liter(-1) x min(-1) in healthy subjects and 2.67 +/- 0.61 ng x liter(-1) x min(-1) in acromegalic subjects in the basal state and increased to a similar extent during insulin infusion in both groups (3.13 +/- 0.71 and 3.32 +/- 0.75 ng x L(-1) x min(-1), P < 0.05 vs. basal), indicating a normal stimulatory effect of insulin on muscle sympathetic activity. In contrast, insulin-stimulated forearm glucose uptake was markedly lower in acromegalic patients (2.3 +/- 0.4 mg x L(-1) x min(-1)) than in control subjects (7.9 +/- 1.3 mg x L(-1) x min(-1), P < 0.001), indicating the presence of severe insulin resistance involving glucose metabolism. Our data demonstrate that patients with long-term acromegaly have normal sympathetic activity in the skeletal muscle in the basal, postabsorptive state and normal increments in NE spillover in response to the sympatho-excitatory effect of insulin. Thus, the presence of severe insulin resistance in acromegaly is not accounted for by adrenergic mechanisms.

Acromegaly↗

Cabergoline.

Cabergoline (CAB) (1-[(6-allelylergolin-8 beta-yl)carbonyl]-1-[3-(dimethylamino)propyl]-3-ethyl-urea) is an ergoline derivative with potent, selective and long-lasting inhibitory activity on prolactin (PRL) secretion acting on dopamine receptors present in pituitary lactotrophes. Receptor binding studies have demonstrated that CAB has high in vitro selectivity and affinity for the subtype D2 of the dopamine receptor. In cultures of rat anterior pituitary cells, the concentrations of CAB and bromocriptine required to inhibit PRL secretory activity by 50% (IC50) were 0.1 and 3.4 nmol/l, respectively. As compared to bromocriptine, CAB was more potent in inhibiting the binding of [3H]N-n-propylnorapomorphine and it occupied the receptor for longer. These effects were observed in all areas of the rat brain. In vivo, CAB at doses of 0.125-1 mg twice weekly caused a dose-dependent suppression of PRL secretion in women with hyperprolactinaemia. CAB was shown to be significantly more effective than bromocriptine in inducing a complete biochemical response and clinical efficacy and was better tolerated than bromocriptine in the majority of patients. Notable tumour shrinkage until tumour disappearance was observed during CAB treatment in most patients with macroprolactinoma. CAB was also shown to be effective in patients resistant or poorly responsive to bromocriptine. In view of the limited data on CAB-associated pregnancies and the long half-life of the drug, it is currently recommended that women seeking to became pregnant, once ovulatory cycles have been established, should discontinue CAB therapy 1 month before they intend to conceive. However, no data on negative effects on pregnancy or offspring have been reported. The great efficacy of CAB together with its excellent tolerability makes this drug the current treatment of choice for the majority of patients with hyperprolactinaemic disorders. Very recently, the efficacy of CAB treatment has been reported in patients with acromegaly and clinically non-functioning adenomas with controversial results. CAB was also reported to have some efficacy in patients with Nelson's syndrome and Cushing's disease although these data are available only for limited case reports.

Animals↗

Effect of GH and/or testosterone deficiency on the prostate: an ultrasonographic and endocrine study in GH-deficient adult patients.

BACKGROUND: The role of IGF-I in prostate development is currently under thorough investigation since it has been claimed that IGF-I is a positive predictor of prostate cancer. OBJECTIVE: To investigate the effect of chronic GH and IGF-I deficiency alone or associated with testosterone deficiency on prostate pathophysiology in a series of patients with hypopituitarism. DESIGN: Pituitary, androgen and prostate hormonal assessments and transrectal prostate ultrasonography (TRUS) were performed in 30 men with adulthood onset GH deficiency (GHD) and 30 age-matched healthy controls, free from previous or concomitant prostate disorders. RESULTS: Plasma IGF-I levels were significantly lower in GHD patients than in controls (Pearson's coefficient P<0.0001). At study entry, 6 of the 13 hypogonadal patients and 7 of the 17 eugonadal patients had plasma IGF-I below the age-adjusted normal range. At study entry, testosterone levels were low in 13 patients (mean +/-s.e.m., 3.8+/-1.0 nmol/l) while they were normal in the remaining 17 (19.4+/-1.4 nmol/l). No difference in prostate-specific antigen (PSA), and PSA density was found between GHD patients (either hypo- or eugonadal) and controls, while free PSA levels were significantly higher in eugonadal GHD than in controls (0.4+/-0.04 vs 0.2+/-0.03 microg/l; P<0.01). No difference in antero-posterior prostate diameter and transitional zone volume (TZV) was observed among groups, while both transverse and cranio-caudal diameters were significantly lower in hypogonadal (P<0.01) and eugonadal GHD patients (P<0.05) than in controls. Prostate volume (PV) was significantly lower in hypogonadal GHD patients (18.2+/-3.0 ml) and eugonadal GHD patients (22.3+/-1.6 ml), than in controls (25.7+/-1.4, P<0.05). The prevalence of prostate hyperplasia (PV>30 ml) was significantly lower in hypogonadal and eugonadal GHD patients, without any difference between them (15.3% and 5.8%), than in controls (43.3%) (chi(2)=6.90, P=0.005). No difference was found in PV between patients with normal or deficient IGF-I levels both in the hypogonadal group (19. 9+/-4.7 vs 17.3+/-4.0 ml) and in the eugonadal group (22.6+/-2.3 vs 21.8+/-2.5 ml). When controls and patients were divided according to age (<60 years and >60 years), PV was significantly lower in hypogonadal GHD patients aged below 60 years than in age-matched controls (P<0.01) or eugonadal GHD patients (P<0.01), without any difference between controls and eugonadal GHD patients. Controls aged above 60 years had significantly higher PV than both hypogonadal and eugonadal GHD patients (P<0.01). Calcifications, cysts or nodules were found in 56.7% of patients and in 50% of controls (chi(2)=0.067, P=0.79). In controls, but not in GHD patients, PV and TZV were correlated with age (r=0.82, r=0.46, P<0. 0001 and P<0.01 respectively). PV was also correlated with GH (r=-0. 52, P=0.0026), IGF-I (r=-0.62, P=0.0002) and IGF-binding protein 3 (IGFBP-3) levels (r=-0.39, P=0.032) but neither with testosterone or dihydrotestosterone (DHT) levels. In GHD patients TZV but not PV was correlated with age (r=0.58, P=0.0007) and neither TZV nor PV were correlated with GH, IGF-I or IGFBP-3 levels. CONCLUSIONS: Chronic GH deficiency in adulthood causes a decrease in prostate size, mostly in patients with concomitant androgen deficiency and age below 60 years, without significant changes in the prevalence of structural prostate abnormalities.

Adenoma↗

Pharmacotherapy or surgery as primary treatment for acromegaly?

In recent years important progress has been made in the management of acromegaly due to the availability of effective and well tolerated drugs and to improved surgical techniques, resulting in a broader choice of therapeutic interventions. Although surgery in the hands of an experienced surgeon still represents the primary option for the majority of patients, the new formulations of somatostatin analogues and dopamine agonists have partially modified the primary therapeutic approach to this severe and disabling chronic disease. Therapy with somatostatin analogues has been shown to reduce morbidity and the mortality rate in patients with acromegaly, and currently in some patients this medical approach may be preferable to surgery. Although in selected patients individualised pharmacotherapy might represent the primary therapy, trans-sphenoidal surgery of microadenomas and noninvasive macroadenomas remains the primary option, since the remission rate is very high and the costs are relatively low in comparison with lifelong therapy with somatostatin analogues. However, the treatment schedule in acromegaly should consider criteria additional to tumour size and invasiveness, such as the age and the general clinical condition of the patient. Presurgical treatment with somatostatin analogues has been reported to reduce surgical complications and time of hospitalisation after the operation. Moreover, a multidisciplinary team of well trained specialists is needed in order to guarantee the most optimal quality of life and life expectancy for patients with acromegaly.

Acromegaly↗

Power Doppler ultrasonographic assistance in percutaneous ethanol injection of autonomously functioning thyroid nodules.

The purpose of this study was to explore the potential role of power Doppler sonography in guiding percutaneous ethanol injection of autonomously functioning thyroid nodules. Thirty-two patients with pretoxic adenoma and 15 with toxic adenoma underwent percutaneous ethanol injection under power Doppler sonographic guidance. All patients with pretoxic adenoma and 13 of 15 patients with toxic adenoma were treated successfully (normalization of circulating thyroid hormones and thyroid stimulating hormone levels and disappearance of nodular hyperactivity with complete recovery of extranodular tracer uptake at scintigraphy). Power Doppler sonography showed the progressive reduction of the intranodular blood flow until its extinction after 6 to 12 months. Nodular shrinkage was obtained in all patients (from 10.85 +/-1.04 to 2.9 +/- 0.3 ml in pretoxic adenoma and from 15.4 +/- 1.8 to 4.2 +/- 0.7 ml in toxic adenoma. Power Doppler sonographic guidance seems to improve the outcome of percutaneous ethanol injection, allowing detection of blood flow even in very small vessels, permitting the ethanol to be guided toward the main afferent vessels of the nodules, and making it possible to monitor the diffusion and the effects of ethanol on nodular vascularization.

Administration, Cutaneous↗

Growth hormone and cardiac function.

Impaired cardiovascular function, which may reduce life expectancy, has recently been demonstrated both in GH deficiency and excess. Moreover, experimental and clinical studies support the evidence implicating GH and/or IGF-I in the regulation of heart development. The existence of a specific acromegalic cardiomyophathy characterized by myocardial hypertrophy with interstitial fibrosis, lympho-mononuclear infiltration and areas of monocyte necrosis which often result in biventricular concentric hypertrophy has been recenty demonstrated. By contrast, patients with childhood or adulthood-onset GH deficiency (GHD) present with abnormalities of structure and function of the left ventricle. In these patients, a significant increase in the vascular intima-media thickness and an increased number of atheromatous plaques have also been reported. The abnormalities of cardiovascular system could be partially reverted by suppressing GH and IGF-I levels in acromegaly or after GH remplacement therapy in GHD patients. The evidence that GH is able to increase cardiac mass suggested its use in the -treatment of chronic heart failure of diverse etiologies. GH administration was -demonstrated to induce an improvement in hemodynamics and clinical status in some patients. Although these data should be confirmed in double-blind placebo controlled studies in larger series, the promising results open new perspectives for GH treatment in humans.

Acromegaly↗

The pituitary uptake of (111)In-DTPA-D-Phe1-octreotide in the normal pituitary and in pituitary adenomas.

The aim of this study was to compare the pituitary (111)In-DTPA-D-Phe1-octreotide uptake measured in 49 patients subjected to the scintigraphy for SS-R expressing tumors not located in the sellar region with that measured in 38 patients with pituitary adenomas. The 87 subjects enrolled in this study were divided into two groups: the first included SSR-expressing tumors (SS-ET), 10 thymomas, 13 differentiated thyroid carcinomas, 4 carcinoids, 5 neuroendocrine tumors, 5 insulinomas, 6 melanomas, 2 renal carcinomas, 2 pheocromocytomas, and 2 parathyroid tumors, while the second included pituitary adenomas, 25 GH-secreting, 4 GH/PRL-mixed and 9 clinically nonfunctioning adenomas (NFA). Planar and single-photon-emission tomography images of the head were obtained 2-4 and 24 hours after the injection of 77-103 MBq of (111)In-DTPA-D-Phe1-octreotide and pituitary uptake was measured by the region of interest method. A 4 point score was used to grade the pituitary-to-blood (T-to-B) ratios: 0=negative; 1 =faint (T-to-B=<1.5); 2=moderate (T-to-B=1.6-3.5); 3=intense (T-to-B=>3.5). In patients with pituitary adenomas, the percent suppression of GH and alpha-subunit levels after 6-12 months of octreotide treatment (0.3-0.6 mg/day) was correlated to T-to-B ratios. After 2-4 hr from injection, pituitary (111)In-DTPA-D-Phe1-octreotide uptake was moderate/intense in 2 out of 49 SS-ET (4%), 18 out of 29 acromegalics (62%) and 6 NFA (66.6%), while a faint uptake was detected in 4 SS-ET (8%), 8 GH-secreting adenomas (27.5%) and 3 NFA (33.3%). Negative scan was detected in the remaining 43 SS-ET (87.7%) and 3 GH-secreting microadenomas (10.3%). 24 hr after injection, pituitary (111)In-DTPA-D-Phe1-octreotide uptake was moderate/intense in SS-ET (10.2%), 21 GH-secreting adenomas (72.4%), and 9 NFA (100%) while a faint uptake was detectable in 15 SS-ET (30.6%), and 6 GH-secreting adenomas (20.7%). No uptake was visualized in 29 SS-ET, and 2 GH-secreting adenomas. By MRI a pituitary tumor was shown in the 2 SS-ET with early moderate tracer uptake. Normalization of circulating GH/IGF-I levels and suppression of alpha-subunit levels was achieved in 16 of 18 acromegalics (88.9%) and 5 of 6 NFA-bearing patients, respectively, with scan scored 2-3 at early images. Eleven acromegalics (37.9%) and 2 NFA (22.2%) displayed significant tumor shrinkage (> or =30% of baseline size) during long-term octreotide therapy. Both in GH-secreting and in NFA, a significant correlation was found between percent GH or alpha-subunit suppression after 6-12 months of octreotide therapy and T-to-B ratios both in early (r=0.626; p<0.0001 and r=0.738, p=0.003, respectively) and late images (r=0.569; p=0.002 and r=0.8, p=0.01, respectively). In conclusion, the (111)In-DTPA-D-Phe1-octreotide uptake in pituitary adenomas was significantly correlated to octreotide treatment. However, since pituitary (111)In-DTPA-D-Phe1-octreotide uptake was clearly detectable in 40% of patients with SS-ET not located in the pituitary region at 24 hr post-injection, (111)In-DTPA-D-Phe1-octreotide scintigraphy with late pituitary images can not be considered an useful method to predict the chronic responsiveness to octreotide in individual patients. Caution should also be taken in evaluating the results of the scintigraphy with early images in patients with scant uptake before excluding them from treatment.

Adenoma↗

Effects of two years of growth hormone (GH) replacement therapy on bone metabolism and mineral density in childhood and adulthood onset GH deficient patients.

The aim of the current study was to evaluate bone metabolism and mass before and after 2 years of GH replacement therapy in adults with childhood or adulthood onset GH deficiency. Thirty-six adults with GH deficiency, 18 with childhood onset, 18 with adulthood onset GH deficiency and 28 sex-, age-, height- and weight-matched healthy subjects entered the study. Biochemical indexes of bone turnover such as serum osteocalcin, serum carboxyterminal telopeptide of type-I procollagen, urinary hydroxyproline/creatinine and deoxypyridinoline/creatinine, of soft tissue formation such as aminoterminal propeptide of type-III and bone mineral density were evaluated. Childhood onset GH deficient patients had significantly decreased bone (osteocalcin: 2.5+/-1.3 vs 6.6+/-4.8 mcg/l, p<0.001) and soft tissue formation (aminoterminal propeptide of type III: 273+/-49 vs 454+/-23 U/I, p<0.001) indexes and normal bone resorption indexes (serum carboxyterminal telopeptide of type-I procollagen: 105+/-48 vs 128+/-28 mcg/l p=NS; urinary hydroxyproline/creatinine: 0.19+/-0.16 vs 0.28+/-0.16 mmol/mol, p=NS; urinary deoxypyridinoline/creatinine: 21 +/-10 vs 25+/-8 mcmol/mol, p=NS) compared to healthy subjects. On the contrary, no significant difference in bone turnover indexes between adulthood onset GH deficient patients and healthy subjects was found. Moreover, significantly decreased bone mineral density at any skeletal site and at whole skeleton was found in GH deficient patients compared to healthy subjects (e.g. femoral neck: 0.74+/-0.13 vs 0.97+/-0.11 g/cm2, p<0.001). In addition, a significant reduction of bone mineral density was found in childhood compared to adulthood onset GH deficient patients at any skeletal site, except at femoral neck. After 3-6 months of treatment, both groups of patients had a significant increase in bone turnover and in soft tissue formation. In particular, in childhood onset GH deficient patients after 3 months osteocalcin increased from 2.5+/-1.3 to 7.9+/-2.1 mcg/l, p<0.001 aminoterminal propeptide of type-III from 273+/-49 to 359+/-15 U/I p<0.001; serum carboxyterminal telopeptide of type-I procollagen from 105+/-48 to 201+/-45 mcg/l, p<0.001; urinary hydroxyproline/creatinine from 0.19+/-0.16 to 0.81+/-0.17 mmol/mol, p<0.001; urinary deoxypyridinoline/creatinine from 21 +/-10 to 54+/-20 mcmol/mol, p<0.001; while in adulthood onset GH deficient patients after 6 months osteocalcin increased from 4.2+/-3.6 to 6.5+/-1.9 mcg/l, p<0.05; aminoterminal propeptide of type- III from 440+/-41 to 484+/-37 U/I, p<0.05; serum carboxyterminal telopeptide of type-I procollagen from 125+/-40 to 152+/-22 mcg/l, p<0.05; urinary hydroxyproline/creatinine from 0.24+/-0.12 to 0.54+/-0.06 mmol/mol, p<0.001; urinary deoxypyridinoline/creatinine from 23+/-8 to 42+/-5 mcmol/mol, p<0.001. No significant difference in bone turnover between pre- and post-treatment period was found after 18-24 months of GH therapy. Conversely, bone mineral density was slightly reduced after 3-6 months of GH therapy, while it was significantly increased after 18-24 months. In fact, femoral neck bone mineral density values significantly rose from 0.74+/-0.13 g/cm2 to 0.87+/-0.11 g/cm2 (pre-treatment vs 2 years of GH treatment values). In conclusion, patients with childhood or adulthood onset GH deficiency have osteopenia that can be improved by long-term treatment with GH.

Adult↗

Percutaneous ethanol injection under Power Doppler ultrasound assistance in the treatment of autonomously functioning thyroid nodules.

Power Doppler (PD) is a recent color-Doppler Ultrasound (US)-technique, which allows to detect the presence of flow even in very small vessels, providing a sort of angiographic micromap. The aim of this study was to evaluate whether percutaneous ethanol injection (PEI) outcome might be improved by injecting the ethanol into the nodule under PD assistance. Thus, 14 patients affected with pretoxic (PTA) and 8 with toxic adenoma (TA) were submitted to this alternative tool. Before PEI, all patients were submitted to a careful endocrinological study, including an US-guided fine-needle biopsy in order to exclude the presence of malignancy. In addition, all the nodules were evaluated at PD-US and their vascular patterns were recorded on videotape and compared with those obtained after treatment. The procedure consisted of slow injection of sterile ethanol under direct PD-US control. The number of PEI sessions was 2.3+/-0.1 in PTA and 3.0+/-0.3 in TA. All patients were also evaluated 3, 6, 12 and 18 months after PEI. Successful therapy was considered when normalization of thyroid hormones and TSH was achieved together with the disappearance of nodular hyperactivity and complete recovery of extra-nodular tracer uptake at scintigraphy. PEI was tolerated very well by all patients. The most common side effect was a transient local or irradiated pain. All patients with PTA and 6 out of 8 patients with TA were successfully treated. In these cases, PD-US showed the progressive reduction of the intranodular blood flow, up to its extinction after 6-12 months, with the presence of little perilesional vascular spots. Nodular shrinkage was obtained in all patients (from 4.7+/-0.7 to 1.1+/-0.4 ml in PTA and from 21.0+/-2.8 to 6.2+/-1.6 ml in TA). In conclusion, PD assistance improves PEI procedure, since it allows to guide the ethanol injection towards the principal afferent vessels of the nodules and to monitor the diffusion and the effects of ethanol on nodular vascularization.

Adenoma↗

Complete remission of Nelson's syndrome after 1-year treatment with cabergoline.

In this case report we demonstrated that treatment with the long-acting D2 receptor agonist cabergoline for 1 year induced normalization of plasma ACTH levels and disappearance of the pituitary tumor in a patient with Nelson's syndrome. A young man underwent bilateral adrenalectomy and subsequent pituitary irradiation for Cushing's disease after unsuccessful neurosurgical treatment. Thereafter, he was given cortisone acetate replacement at the dose of 62.5 mg a day. Fifteen months after pituitary irradiation, he developed Nelson's syndrome, having skin hyperpigmentation, high plasma ACTH levels (376 ng/l) and a pituitary microadenoma (5 mm) documented at magnetic resonance imaging (MRI) of the pituitary region. After 6 months of cabergoline treatment, given at the dose of 1 mg a week, plasma ACTH levels were significantly decreased (from 376 to 113 ng/l) but they were not normalized. Cabergoline dose was then increased up to 2 mg a week. Six months later plasma ACTH levels were normalized (22 ng/l) and MRI demonstrated the disappearance of the pituitary adenoma. In order to investigate on the direct effect played by cabergoline treatment on the remission of Nelson's syndrome, the treatment was withdrawn. Plasma ACTH levels significantly increased (119 ng/l) after 3 months of treatment withdrawal. At the last follow-up, during cabergoline treatment at the dose of 2 mg/week plasma ACTH levels were normalized (40.4 ng/l). This case demonstrated that cabergoline treatment is able to induce the remission of Nelson's syndrome and may be a valid therapeutic alternative in this syndrome.

Adenoma↗

Effectiveness and tolerability of slow release lanreotide treatment in active acromegaly.

This single-center open sequential study aimed at comparing the efficacy of a 6-month treatment with lanreotide (LAN) (60-90 mg/month i.m.), to that of octreotide (OCT) (0.3-0.6 mg/day s.c.) in 45 patients with active acromegaly (GH, 63.2+/-12.1 ng/ml, IGF-I, 757+/-67.1 ng/ml). After 6 months of OCT treatment, safe GH (fasting <2.5, glucose suppressed <1 ng/ml) and IGF-I (normalized for age) levels were achieved in 23 patients. After treatment withdrawal, GH levels significantly increased in all patients, though remaining slightly lower than pre-OCT therapy (39.2+/-5.8 ng/ml) while plasma IGF-I levels were unchanged (654+/-59.4 ng/ml). After 6 months of LAN treatment, safe GH and IGF-I levels were achieved in 26 patients (57.7%). After OCT or LAN treatments, no significant difference was found between nadir GH (6+/-1 vs 5.9+/-1.1 ng/ml) and IGF-I levels (281+/-23.3 vs 262+/-20.6 ng/ml). Four out of the 20 patients poorly responsive to OCT achieved safe GH and IGF-I levels after LAN treatment. Among the 20 non-operated patients, a significant tumor shrinkage was documented by CT and/or MRI in 5 patients after OCT and in 1 patient after LAN treatment. All patients referred a notable improvement of soft tissue swelling, arthralgia, headache and weakness, both after OCT and LAN treatments. During the first days of OCT treatment, abdominal discomfort was referred by 12 patients and steatorrhea by 5 patients: side effects disappeared spontaneously in 6 cases while during treatment with pancreatic enzymes in the remaining ones. After the first injections of LAN, abdominal discomfort was referred by 10 patients and steatorrhea by 2 of them. No difference in the prevalence of both early and late side effects was noted after treatment with OCT and LAN (chi2, 0.49). The majority of these poorly tolerant patients had side effects with both compounds. During LAN treatment, side effects were mild and spontaneously disappeared but recurred after the injection of the drug in six patients. Gallstones were detected in one patient during OCT and in another during LAN, sludge was noted in 6 patients after OCT and in 2 after LAN treatment. In conclusion, the treatment with LAN allowed to achieve safe GH and IGF-I levels in 57.7% of acromegalics with an excellent patients' compliance. LAN treatment possessed similar efficacy and caused side effects with a similar incidence of OCT treatment. The recurrence of side effects after LAN injection suggests the necessity of a careful monitoring of adverse reactions.

Acromegaly↗

Efficacy of combined treatment with lanreotide and cabergoline in selected therapy-resistant acromegalic patients.

The aim of this study was to evaluate the efficacy of a 6-month treatment with lanreotide (LAN) (60-90 mg/month) alone and combined with cabergoline (CAB) (1.5-3 mg/week) in 10 acromegalic patients previously demonstrated to be poor responders to octreotide (OCT) (0.6 mg/day) alone and combined with quinagolide (CV) (0.6 mg/day). All patients had previously undergone unsuccessful surgery and none of them received radiotherapy. Immunohistochemistry showed intense positive GH staining in all adenomas, positive PRL staining in 5 adenomas and faint ACTH or FSH/LH positive staining in other 2 adenomas. Moderately elevated serum PRL levels (35 and 47 ng/ml) were recorded in two patients. Fasting plasma IGF-I and serum GH levels were assayed at baseline and 30, 60, 90 and 120 days after each treatment. Gallbladder ultrasonography and sellar MRI were performed before and after 6 months of OCT and LAN treatments. After OCT treatment circulating GH and IGF-I levels remained elevated in all patients, while after 3 months of combined OCT + CV treatment, serum GH levels were suppressed (below 2.5 ng/ml) in only 1 patient. Significant increase of the percent GH (83.9 +/- 4.3 vs. 70.3 +/- 5.6%, p < 0.01) and IGF-I suppression (54 +/- 4.4 vs. 45.3 +/- 5.7, p < 0.01) and decrease of the nadir of GH (8.5 +/- 1.2 vs. 14.6 +/- 1.9 ng/ml, p < 0.01) and IGF-I (400.9 +/- 32.8 vs. 462.1 +/- 45.1 ng/ml) were obtained with the combined treatment when compared to OCT treatment alone. After a 15-30 days wash-out, circulating GH and IGF-I levels significantly increased up to pretreatment level in all patients. After 6 months of treatment with LAN, suppression of serum GH was achieved in 1 patient, but no difference in GH (66.3 +/- 6.3%) and IGF-I (43.9 +/- 4.6%) suppression was recorded in comparison to OCT treatment. After 3 months of treatment with LAN combined with CAB, suppression of serum GH and normalization of plasma IGF-I levels was achieved in 4 and 5 patients, respectively. Percent suppression of GH (88.1 +/- 2.1%) and IGF-I (57.5 +/- 2.8%) was significantly greater with the combined treatment than with LAN treatment alone. In the 7 patients with evident residual mass no change was documented by magnetic resonance imaging (MRI). None of the patients withdrew LAN + CAB treatment for poor tolerance, one patient had mild hypotension. Sludge was shown after 6 months of LAN treatment in one patient without notable change after 3 months of LAN + CAB treatment. In conclusion, the treatment with dopaminergic drugs such as CV and CAB, significantly increased the efficacy of somatostatin analogs, and can be used in combined therapy in poorly responsive patients.

Acromegaly↗

Comparison of six months therapy with octreotide versus lanreotide in acromegalic patients: a retrospective study.

OBJECTIVE: We analysed the effects of 6-months' treatment with octreotide s.c. and lanreotide-SR on circulating GH and IGF-I levels in acromegaly. DESIGN: Open retrospective study. PATIENTS: Thirty-eight patients with active acromegaly (plasma IGF-I levels greater than 2 standard deviations for age-matched controls and increased serum GH levels not suppressible by oral glucose load) were studied. All patients received s.c. octreotide at a dose of 150-600 microg/day for six months as first therapy and subsequently, lanreotide i.m., 30-60 mg either at 14 or 10 day intervals, for 6 months. A 3 months' washout was applied before starting lanreotide treatment. MEASUREMENTS: Mean serum GH levels (from three samples), IGF-I, and clinical examination were performed before and 30, 60, 90 and 180 days after octreotide and lanreotide treatments. Safety tests, HbA1c and, thyroid function were evaluated every three months. RESULTS: Circulating GH and IGF-I levels were significantly reduced (P < 0.001) after one, three and six months of both octreotide and lanreotide treatment. The absolute values were lower and the percent decrease in serum GH levels obtained after octreotide treatment was significantly greater, at all scheduled assessments, than after lanreotide (P < 0.01). Serum IGF-I levels during octreotide were significantly lower only after the first month of therapy (P < 0.01). CONCLUSIONS: Our study shows that octreotide s.c. is able to induce an earlier reduction in IGF-I levels and a more marked reduction in GH levels than lanreotide. However, after six months of therapy the number of patients with safe GH levels and normal IGF-I age-matched levels, was similar with both drugs. Therefore we suggest that octreotide treatment be preferentially used in the short-term presurgical treatment, while lanreotide can be used in chronic therapy when better compliance is necessary.

Acromegaly↗

Ultrasonographic evidence of joint thickening reversibility in acromegalic patients treated with lanreotide for 12 months.

BACKGROUND: A major cause of morbidity and functional disability in acromegaly is represented by axial and peripheral arthropathy. OBJECTIVE: The effect of a 12-month treatment with lanreotide (LAN) on arthropathy in 12 untreated acromegalic patients has been evaluated. Twelve healthy subjects served as controls. STUDY DESIGN: Open prospective. STUDY PROTOCOL: Articular cartilage thickness of shoulder, wrist and knee, as well as the size of the heel tendons, was measured by ultrasonic (USG) examination before, monthly for the first 3 months and quarterly thereafter, during treatment with 60-90 mg/month of LAN. The achievement of safe GH and IGF-I levels was considered when fasting GH was below 5 mU/l and IGF-I levels were normalized for age. RESULTS: Before treatment, thickening of shoulder, wrist and knee cartilages, and of heel tendons, was found in all patients compared with controls (P < 0.01). During the first 3 months of LAN treatment, a significant decrease in circulating GH (from 86.8 +/- 19.8 to 25.6 +/- 9.8 mU/l) and IGF-I levels (from 624 +/- 47.8 to 412.2 +/- 44.5 microg/l) was observed. Overall, a slight decrease was noted in all the articular sites examined, but it reached statistical significance only at the right shoulder (P < 0. 001). However, a notable improvement of joint pain and active and passive articular mobility were recorded in all patients, as well as of weakness, soft tissue swelling, hyperhydrosis and headache. After 6 months of LAN treatment, a further significant decrease was observed at the level of the right shoulder (P < 0.01) and the right knee (P < 0.01). Eight patients achieved safe GH and IGF-I levels. After 12 months of LAN treatment, a significant decrease was observed at the level of all the articular sites examined (P < 0.01), as well as at the level of both heel tendons (P < 0.01). Safe GH and IGF-I levels were achieved in all but one of the patients who, similarly, had a significant decrease in shoulder, wrist and both heel tendon thicknesses. The thickness reduction of right shoulder cartilage, a non-weight-bearing joint, was significantly greater than that observed at the level of the right and left knee cartilages and heel tendons (37.4 +/- 4.4% vs. 18 +/- 6.1%, 19.3 +/- 4.4%, 16.5 +/- 4.2%, and 13.7 +/- 5.5%, respectively, P < 0.01). No difference was found in thickness decrease of all sites examined between the eight patients achieving safe GH levels after 3-6 months, and the remaining four patients, or between patients with estimated disease duration below (n = 6) or above 10 years (n = 6). CONCLUSIONS: Improvement in articular and periarticular soft tissue hypertrophy of the shoulder and wrist, two non-weight-bearing joints, but also of the knees, two weight-bearing joints, and heel tendons, was obtained by suppressing GH and IGF-I levels for 12 months with LAN treatment, although complete reversal of joint thickening was not achieved. Since no difference in the response to treatment, in terms of joint size decrease, was found between patients with short or long disease duration, treatment longer than 12 months may be needed to reverse the acromegalic arthropathy completely.

Acromegaly↗

The study of spontaneous GH secretion after 36-h fasting distinguishes between GH-deficient and normal adults.

OBJECTIVE: Within an appropriate clinical context, GH deficiency (GHD) in adults can only be diagnosed biochemically by provocative testing. The evaluation of IGF-I, IGFBP-3 and even of spontaneous GH secretion do not establish the diagnosis of adult GHD. In fact, remarkable overlaps between normal and GHD adults have been reported for all these parameters. On the other hand, it is well known that even short-term fasting stimulates GH secretion in normal subjects. The aim of our study was to determine the effects of 36 h fasting on 8-h diurnal GH, insulin and glucose levels as well as on basal IGF-I, IGFBP-3, acid-labile subunit (ALS), IGFBP-1, GHBP and free fatty acid (FFA) levels. SUBJECTS: We studied 9 GHD adults (GHD, 8 males, 1 female; age, mean +/- SEM: 37.6 +/- 2.3 years, body mass index (BMI): 24.5 +/- 1.0 kg/m2) and 20 age-matched normal subjects (NS) as controls (13 males, 7 females; age: 28.9 +/- 0.6 years, BMI: 21.6 +/- 0.4 kg/m2). STUDY DESIGN: In all subjects we studied the effects of 36 h fasting on 8-h daytime GH, insulin and glucose levels (assay every 30 min from 0800 h to 1600 h) as well as on basal IGF-I, IGFBP-3, ALS, IGFBP-1, GHBP and FFA levels. RESULTS: Before fasting, basal mean IGF-I, IGFBP-3 and ALS levels in GHD were lower (P < 0. 0001) than in NS. IGFBP-1, GHBP and FFA levels were similar in both groups. Before fasting mean GH concentration (mGHc) in GHD was lower (P < 0.05) than in NS (0.4 +/- 0.2 vs. 2.2 +/- 0.6 mu/l) but with a clear overlap between the 2 groups (range 0.4-0.8 vs. 0.4-6.8 mu/l). After fasting, both in GHD and NS basal IGF-I, IGFBP-3, ALS and GHBP levels did not change significantly. On the other hand, in both GHD and in NS IGFBP-1 was increased (P < 0.0001) to a similar extent, while FFA increased in NS more (P < 0.01) than in GHD. Fasting significantly increased mGHc in NS (12.0 +/- 1.2 mu/l, P < 0.0001) but not in GHD (0.6 +/- 0.2 mu/l). After fasting, no overlap was present between GHD and NS (0.4-1.6 vs. 2.4-20.8 mu/l, respectively). Mean glucose and insulin concentrations over 8 h in GHD and NS in basal conditions were similar and were reduced to the same extent in both groups. CONCLUSIONS: Our findings demonstrate that after short-term fasting, the study of spontaneous GH secretion distinguishes between GH-deficient adults and normal subjects; this phenomenon occurs before significant changes in IGF-I and IGFBP-3 levels. These results suggest that the assessment of spontaneous GH secretion could be useful for the diagnosis of adult GH deficiency only after short-term fasting.

Adult↗