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G Osella

Publications and source records attributed to G Osella.

At least 19 recordsLinked to original sources

Subclinical Cushing's syndrome in adrenal incidentaloma.

OBJECTIVE: Some patients with incidentally discovered adrenal adenomas display autonomous cortisol secretion not fully restrained by pituitary feedback, a condition that may be defined as subclinical Cushing's syndrome. We have evaluated the presence of subclinical Cushing's syndrome and its natural history in a cohort of patients with incidentally discovered adrenal adenomas. PATIENTS: Fifty-three consecutive patients (30 women and 23 men; median age 58 years, range 18-81 years) were studied. Diagnostic procedures were initiated for extra-adrenal complaints. Patients with known extra-adrenal malignancies or patients with hypertension of possible endocrine origin were excluded. MEASUREMENTS: All patients underwent the following endocrine evaluation: (1) measurement of DHEA-S at 0800 h, (2) measurement of serum cortisol at 0800 and 2400 h, (3) measurement of the 24-h excretion of urinary free cortisol (UFC), (4) overnight low-dose dexamethasone suppression test, (5) measurement of plasma ACTH at 0800 h (mean of at least two samples on different days), (6) oCRH stimulation test. Different groups of healthy subjects recruited from the hospital medical staff and their relatives served as controls for the various tests. The same endocrine work-up was repeated after 12 months in 25 patients. All patients were followed up at regular intervals for at least 12 months with clinical examination and abdominal computed tomography. Subclinical hypercortisolism was arbitrarily defined as definitive, probable or possible, according to the degree of endocrine abnormalities. RESULTS: UFC was significantly higher in patients with incidentaloma than in controls (262, 25-690 nmol/24 h versus 165, 25-772 nmol/24 h; P = 0.012). The percentage of subjects who did not suppress on dexamethasone was greater among patients than among healthy subjects (9/53 (17%) versus 5/103 (5%), P = 0.026). Plasma ACTH concentrations were lower in patients with adrenal incidentaloma than in controls (3, 1-9 pmol/l versus 5, 1-14 pmol/l; P = 0.014). These findings consistently point toward a functional autonomy of the adrenal adenomas even if the degree of cortisol excess is mild. Three patients fulfilled the criteria for definitive subclinical hypercortisolism, five for probable and two possible, but none of them experienced clinical and/or biochemical progression to overt hypercortisolism after 12 months. During follow-up, no signs of extra-adrenal malignancy became manifest and the size of the mass did not increase significantly in any patient. CONCLUSIONS: This study provides a clear demonstration of the current opinion that some patients with incidentally discovered adrenal adenomas may be exposed to a subtle, silent hypercortisolism. In some patients, in whom the clustering of more abnormalities in the hypothalamo-pituitary-adrenal axis occurs, subclinical Cushing's syndrome could be assumed. This term should be preferred to that of pre-clinical Cushing's syndrome since the biochemical abnormalities do not become clinically manifest, at least in the short term.

Adenoma

Prevalence of adrenal carcinoma among incidentally discovered adrenal masses. A retrospective study from 1989 to 1994. Gruppo Piemontese Incidentalomi Surrenalici.

BACKGROUND: The incidental discovery of an adrenal mass poses the problem of distinguishing between the frequent benign masses and the infrequent malignant ones that require surgery. Univocal guidelines to approach this problem are unavailable. OBJECTIVE: To perform a survey of the clinical management of incidentally discovered adrenal masses (ie, adrenal incidentalomas). DESIGN: A multicentric retrospective analysis of hospital medical records of adrenal incidentalomas diagnosed during a 5-year period; the medical records were scrutinized for demographic data and clinical details by means of a specifically tailored questionnaire. SETTING: The major surgical and medical centers of Piedmont, a northern Italian region with approximately 4 million inhabitants. The recruitment pattern of these centers was unselected. PATIENTS: The definition of adrenal incidentaloma was limited to patients with a physical examination and a clinical history unindicative of adrenal disease. Exclusion criteria also included hypertension of suspected endocrine origin and a history of neoplasms known to metastasize frequently in the adrenal glands. Two hundred twenty-four medical records were collected, and 210 were analyzed (14 excluded a posteriori). RESULTS: Most patients were in their 50s and 60s, and women were predominantly affected. The frequency of adrenocortical cancer was 13% among patients operated on. The tumor diameter was highly correlated with the risk of cancer; a cutoff at 5 cm had a sensitivity of 93% with a specificity of 64% in discriminating between benign and malignant cortical lesions. CONCLUSIONS: The occurrence of adrenocortical carcinoma among adrenal incidentalomas is not rare. The evaluation of the mass size is a simple and effective method for selecting patients at risk for cancer. The indication for surgery of masses larger than 5 cm, or of masses of any diameter that have suspicious imaging characteristics, limits unnecessary operations and costs.

Adrenal Gland Diseases

Adrenal incidentaloma: an overview of clinical and epidemiological data from the National Italian Study Group.

BACKGROUND: The incidental discovery of an adrenal mass raises the problem of distinguishing the frequent benign masses from the infrequent malignant ones that require surgery. At present, univocal guidelines to approach this problem are not available. The aim of the present study was to perform a multicentric retrospective analysis of adrenal masses incidentally discovered (adrenal incidentalomas). PATIENTS AND METHODS: Hospital records of adrenal incidentalomas diagnosed over a 15-year period in 29 surgical and medical centers in Italy were scrutinized. Collected cases were 1,013, and 887 were analyzed. RESULTS: The majority of patients were in the 5th and 6th decade and females were predominantly affected. The frequency of adrenocortical cancer was 12% among operated patients (316 cases). The tumor diameter was highly correlated with the risk of malignancy, as well as the CT characteristics such as density, shape and margins. The frequency of pheochromocytoma was 10% among operated patients. CONCLUSIONS: The occurrence of incidentally discovered adrenocortical carcinomas and pheochromocytomas is not rare. Evaluation of the mass size and CT characteristics are simple and effective methods to differentiate malignant lesions. Biochemical screening for pheochromocytoma is mandatory before surgery.

Adolescent

Serum markers of bone and collagen turnover in patients with Cushing's syndrome and in subjects with adrenal incidentalomas.

The aim of this study was to assess serum levels of some markers of bone turnover and collagen synthesis in 22 patients with adrenal incidentalomas (AI), a model of silent glucocorticoid excess, and to compare the results with those obtained in 18 patients with Cushing's syndrome (CS). Osteocalcin (BGP), bone isoenzyme of alkaline phsophatase, carboxy-terminal propeptide of type I procollagen, and carboxy-terminal cross-linked telopeptide of type I collagen were measured as biochemical indexes of bone turnover, and amino-terminal propeptide of type III procollagen was determined as an index of collagen synthesis. Two groups of healthy volunteers evenly matched for sex, age, and menstrual status were used for a case-control analysis of AI and CS groups, respectively. Patients with AI showed a slight, albeit significant, reduction in serum BGP and a mild increase in carboxy-terminal cross-linked telopeptide of type I collagen levels compared with controls [median, 6.6 vs. 7.8 ng/mL (P < 0.05) and 4.2 vs. 3.1 micrograms/L (P < 0.01), respectively]. No significant differences were found when comparing the other markers. Patients with CS had BGP, bone isoenzyme of alkaline phosphatase, and amino-terminal propeptide of type III procollagen levels significantly lower than control values [median, 3.0 vs. 7.3 ng/mL (P < 0.0001); 4.4 vs. 11.5 micrograms/L (P < 0.01); 2.2 vs. 4.3 micrograms/L (P < 0.0001), respectively], but no significant difference in the other markers. These results confirm a clear inhibition of osteoblastic activity in CS and could suggest an enhanced bone metabolism in patients with AI. The degree of impairment of bone turnover in patients with AI does not seem enough to recommend surgery (removal of the adrenal adenoma) in the absence of other indications.

Adrenal Gland Neoplasms

Different patterns of steroid secretion in patients with adrenal incidentaloma.

We previously found that a remarkable number of patients with adrenal incidentaloma display partially autonomous cortisol secretion. The amount of hypercortisolism is insufficient to give clinical expression, but enough to inhibit, in some cases, normal adrenal tissue. Other researchers found with high frequency a partial deficiency of 21-hydroxylase. The aim of the present study was to make a combined evaluation of these aspects of adrenal steroidogenesis. Twenty patients (6 men and 14 women, aged 25-74 yr; median, 59 yr) with incidentally discovered adrenal masses were studied. All had an adrenal adenoma histologically proven or diagnosed on the basis of size (< or = 4.0 cm in all but 1) and computed tomography picture (hypodense homogeneous mass with well defined margins). The following parameters were used to evaluate the ACTH-cortisol axis: overnight 1-mg dexamethasone suppression (4 nonsuppressors), ovine CRH stimulation (blunted ACTH-cortisol response in 2 cases), circadian serum cortisol rhythm (blunted night/day ratio in 4 and increased 24-h mean in 1), and 24-h urinary free cortisol excretion (always within the normal range). Three patients had 2 concomitant alterations, and 5 had a single abnormality. Partial deficiency of 21-hydroxylase was assumed in 6 patients who showed an exaggerated 17-hydroxyprogesterone response to ACTH, with a peak value of more than 10 ng/mL (> 30 nmol/L), according to New's nomogram. No abnormalities of the ACTH-cortisol axis were found in these patients, with the exception of low amplitude cortisol rhythm in 1 case. Therefore, 2 distinct patterns, dysregulated and partially autonomous cortisol secretion, on the one hand, and reduced 21-hydroxylase activity, on the other, can be found in a high number of patients bearing an adrenal incidentaloma. They appear mutually exclusive, and the differentiation by endocrine testing is quite clear. Serum dehydroepiandrosterone sulfate was below the third percentile in 13 of 20 patients and could represent a specific marker of cortical adenomas. This finding was evenly distributed among patients with subclinical hypercortisolism or partial enzymatic defect; therefore, low serum dehydroepiandrosterone sulfate is not readily attributable to suppressed ACTH secretion, which actually occurs in only some patients with subclinical hypercortisolism.

Adenoma

Adrenal incidentaloma, a five year experience.

Since 1989, 45 patients 26 females and 19 males, aged 19-79 years (median 58) bearing incidentally discovered adrenal masses were studied. Endocrine work-up included determination of urinary catecholamines and their metabolites, measurement of plasma renin activity and aldosterone levels in clino- and orthostatic posture, basal and dynamic (dexamethasone-suppression, o-CRH stimulation) evaluation of hypothalamic-pituitary-adrenal (HPA) axis. The most frequent finding was the reduction of DHEA-S levels below the 3rd percentile of controls in 19 (42%) patients. As a whole group, DHEA-S levels were significantly lower in patients than in controls: 68 (5-1000) micrograms/dL vs 208 (34-326) micrograms/dL; p < 0.001. Three patients (7%) had high 24-h mean serum cortisol levels and 6 (14%) had blunted day-night amplitude of cortisol rhythm. Defective dexamethasone suppressibility was found in 15% of patients vs 8% of controls (p < 0.05). ACTH and cortisol responses after o-CRH did not significantly differ between patients and controls although blunted ACTH responses were found in 22% of cases. The above mentioned endocrine alterations could be accounted for by autonomous cortisol secretion by the adrenal nodule at a rate not sufficient to give clinical expression but able to inhibit to some extent the HPA axis. These results indicate that silent cortisol hypersecretion is frequently observed in patients with adrenal incidentaloma even if progression to overt Cushing's syndrome seems unlikely, at least in a short-term follow-up. From a mere cost-benefit ratio, the evaluation of DHEA-S levels and dex-suppression has sufficient sensitivity to identify the occurrence of silent hypercortisolism.

Adenoma

Biochemical markers of bone and collagen turnover in acromegaly or Cushing's syndrome.

We evaluated serum bone Gla-protein (osteocalcin, BGP), carboxyterminal propeptide of type I procollagen (PICP) and aminoterminal propeptide of type III procollagen (PIIINP) in 15 patients with active acromegaly (6M aged 27-54, 4 PMF aged 39-51, 5MP aged 54-65 years), 12 with active Cushing's syndrome [(CS) 2M of 32 and 42 years; 4PMF aged 25-40; 6MF aged 50-64)] and controls evenly matched for age, sex and menstrual status. Patients with acromegaly were evaluated before and at regular intervals on octreotide treatment (50-150 micrograms t.i.d., s.c.); the duration of the follow-up was 5-49 months (median 28). Endocrine evaluation included measurements of serum GH, IGF-I, BGP, PICP and PIINP. In a case-control analysis, acromegalic patients showed increased BGP (14.3 +/- 2.1 vs 8.3 +/- 2.1 ng/ml p < 0.001) and PIIINP concentrations (4.8 +/- 1.4 vs 3.1 +/- 0.7 micrograms/l, p < 0.02). During octreotide treatment we observed a roughly parallel decline of GH, IGF-I and BGP. BGP and log-transformed 24-h mean GH concentrations were positively correlated (r = 0.48, p < 0.001) as was the case for BGP and IGF-I (r = 0.43, p < 0.001). Also PIIINP correlated with log-transformed GH (r = 0.58, p < 0.001) and IGF-I (r = 0.35, p < 0.05). Serum PICP did not differ in the two groups (152 +/- 55 vs 120 +/- 55 micrograms/l, NS) and did not correlate either with GH or IGF-I. Patients with CS were evaluated measuring serum and urinary cortisol (UFC), ACTH, BGP, PICP, PIIINP.(ABSTRACT TRUNCATED AT 250 WORDS)

Acromegaly

Endocrine evaluation of incidentally discovered adrenal masses (incidentalomas)

Since 1989, 45 patients [pts; 26 females and 19 males, aged 19-79 yr (median, 58)] bearing incidentally discovered adrenal masses were studied. The aim of the study was to verify the prevalence of hormone activity in clinically silent adrenal masses. Endocrine work-up included determination of urinary catecholamines and their metabolites, measurement of PRA and aldosterone levels in clino- and orthostatic posture, and basal and dynamic [dexamethasone (dex) suppression and ovine CRH stimulation] evaluation of hypothalamic-pituitary-adrenal axis. The most frequent finding was the reduction of dehydroepiandrosterone sulfate (DHEA-S) levels below the third percentile of controls in 19 (42%) pts. DHEA-S levels were significantly lower in pts than in controls [68 (range, 5-1000) vs. 208 (34-326) micrograms/dL; 1.8 (0.1-27.1) vs. 5.6 (0.9-8.8) mumol/L; P < 0.001]. Three pts (7%) had high 24-h mean serum cortisol levels, and 6 (14%) had blunted day-night amplitude of cortisol rhythm. Defective dex suppressibility was found in 15% of pts vs. 8% of controls (P < 0.05). ACTH and cortisol responses to ovine CRH did not significantly differ between pts and controls, although blunted ACTH responses were found in 22% of the cases. The above-mentioned endocrine alterations could be accounted for by autonomous cortisol secretion by the adrenal nodule at a rate not sufficient to give clinical expression, but able to inhibit to some extent the hypothalamic-pituitary-adrenal axis. These results indicate that silent cortisol hypersecretion is frequently observed in pts with adrenal incidentaloma even if progression to overt Cushing's syndrome seems unlikely. Indeed, the size of the mass and the hormone pattern remained substantially unchanged in 9 pts followed up for 12 months. From merely a cost/benefit ratio, the evaluation of DHEA-S levels and dex suppression has sufficient sensitivity to identify the occurrence of silent hypercortisolism.

Adenoma

Serum levels of bone Gla protein (osteocalcin, BGP) and carboxyterminal propeptide of type I procollagen (PICP) in acromegaly: effects of long-term octreotide treatment.

We measured serum concentrations of bone Gla-protein (osteocalcin, BGP) and carboxyterminal propeptide of type I procollagen (PICP) in 14 patients with active acromegaly. Blood was collected at 0800 for measurement of bone Gla-protein (BGP), carboxyterminal propeptide of type I procollagen (PICP), and insulin-like growth factor I (IGF-I); growth hormone (GH) was then determined at 15-minute intervals for 3 hours and the integrated mean was calculated. The same protocol was repeated at regular intervals during treatment with the long-acting somatostatin analog, octreotide, 150-450 micrograms/day for 6-33 months (median 15). In a case-control analysis, serum BGP concentrations recorded in the acromegalic patients were significantly elevated (14.2 +/- 4.2 micrograms/liter versus 8.0 +/- 3.3 micrograms/liter, P < 0.001). Octreotide treatment induced a roughly parallel reduction in serum GH, IGF-I, and BGP. We found a significant positive correlation between BGP levels recorded before and during therapy and the logarithm of corresponding mean GH levels (r = 0.67, P < 0.001). Also IGF-I concentrations were positively correlated with BGP (r = 0.66, P < 0.001). On the other hand, PICP levels recorded in the acromegalics did not differ from control subjects (146 +/- 46 micrograms/liter versus 127 +/- 44 micrograms/liter, NS) and no correlation was found between either GH and PICP or IGF-I and PICP. To conclude, the present data are compatible with the view that GH and IGF-I play an important role in the control of BGP but not PICP production. It could be that BGP and PICP are submitted to different hormonal modulation.

Acromegaly

Exogenous melatonin enhances the TRH-induced prolactin release in normally cycling women: a sex-specific effect.

The aim of the present study was to analyze the effects of exogenous melatonin (MT) upon pituitary and adrenal responsiveness to releasing hormones in different phases of the menstrual cycle. We evaluated the response of FSH and LH to 100 micrograms gonadotropin releasing hormone, of TSH and prolactin (PRL) to 200 micrograms thyrotropin releasing hormone (TRH), and of cortisol to 10 micrograms ACTH 1-17. We studied eight young women with normal ovulatory cycles in the early follicular (days 5-7) and luteal (days 22-24) phases. Stimulation tests were performed at 18.00 in baseline conditions as well as 1 h after oral intake of exogenous MT (2 mg as a gelatine capsule). We did not observe any significant change in FSH, LH, TSH and cortisol responses to their respective releasing hormones in either phase of the cycle. PRL response to TRH was higher after MT in the follicular phase, when evaluated in terms of net increment and integrated area of response (p less than 0.02 versus baseline conditions for both variables). In the luteal phase, we recorded larger interindividual variability and higher responses after MT were observed in five out of eight subjects. These results suggest that MT may play a facilitatory role in the TRH-induced PRL release in women of reproductive age.

Adrenal Glands

[Drugs and andrological side-effects].

Human sexual behaviour is determined by different regulatory systems. Central and peripheral nervous system, endocrine and vascular systems, all play a pivotal role in the modulation of male sexual activity. Therefore, many steps of possible drug interference can be recognized. In this regard, drugs are usually classified on the basis of their side effects (impairment of libido, erection and/or ejaculation). In the present work we review the sexual-related side effects of drugs of widespread clinical use on the basis of their mechanism and site of action.

Central Nervous System

Morning to evening changes of human pituitary and adrenal responses to specific stimuli.

We performed a combined stimulation test with the simultaneous application of GnRH (100 micrograms), TRH (200 micrograms) and ACTH (10 micrograms) in 10 healthy adult males at two opposite clock timing, i.e. at 09:00 and 21:00 h. Pituitary (gonadotropins, PRL, TSH) and adrenal (cortisol, aldosterone, progesterone) hormones showed a common trend of enhanced responsiveness to the evening challenge. Differences reached statistical significance in the case of cortisol, aldosterone, PRL and FSH. These findings suggest that the responsiveness of some pituitary and adrenocortical hormones to specific stimuli is physiologically different in humans as a function of the clock timing, being higher in the evening than in the morning. From the clinical standpoint, however, differences in the magnitude of responses were not enough to recommend provocative testing at a particular clock time, at least for routine diagnostic purposes.

Adrenal Glands

Effects of long-term, low-dose, time-specified melatonin administration on endocrine and cardiovascular variables in adult men.

Six healthy adult male volunteers underwent serial blood drawings at 4-hour intervals over 24 hours for the definition of melatonin (MT), prolactin (PRL), cortisol, and testosterone circadian patterns. Serum levels of triiodotironine (T3) and thyroxine (T4) were determined at 0800. Systolic and diastolic blood pressure and heart rate were automatically recorded every 30 minutes for 24 hours. The responses of luteinizing hormone (LH), follicle stimulating hormone (FSH), PRL, thyroid stimulating hormone (TSH), cortisol, and aldosterone to a stimulation test with gonadotrophin-releasing hormone (Gn-RH), thyrotrophin-releasing hormone (TRH), adrenocorticotrophin (ACTH), and testosterone to human chorionic gonadotrophin (HCG) were also evaluated. The same protocol was repeated after a two-month course of treatment with MT, 2 mg per os daily at 1800. After treatment, we recorded a marked elevation of mean serum MT levels with a significant phase-advance of its circadian rhythm. The 24-hour patterns of cortisol and testosterone displayed an anticipation of the morning acrophase of about 1.5 hour (not significant) for cortisol and three hours (P less than 0.05) for testosterone. PRL pattern was unchanged as well as serum levels of thyroid hormones. The circadian organization of the cardiovascular variables did not show any changes after MT supplementation; the pituitary, adrenal, and testicular responses to specific stimuli were comparable before and after treatment. These results are compatible with the view that the MT signal may provide temporal cues to the neuroendocrine network for the organization of testicular circadian periodicity.

Adrenocorticotropic Hormone

Circadian profile of serum melatonin in Cushing's disease and acromegaly.

We evaluated the circadian profiles of serum melatonin (MT) and cortisol in 6 patients with Cushing's disease while those of serum MT and GH were evaluated in 8 patients with acromegaly. The control group consisted of 15 healthy subjects in whom MT, cortisol and GH were determined. The presence of a circadian rhythmicity was validated by the cosinor method, while the diurnal and nocturnal amount of MT secretion were expressed in terms of area under the curve. Gross alterations of MT rhythm were not apparent in Cushing's patients. In acromegalics, we observed a blunted day-night oscillation of MT accounted for by a significant increase of its secretion during the day-time period.

Acromegaly

24-hour profiles of blood pressure and heart rate in Cushing's syndrome: relationship between cortisol and cardiovascular rhythmicities.

We monitored the circadian profiles of cortisol, systolic and diastolic blood pressure (SBP and DBP) and heart rate (HR) in 33 matched normotensive subjects, 32 patients with essential hypertension and 16 patients with Cushing's Syndrome (8 pituitary adenomas, 6 adrenal adenomas and 2 adrenal carcinomas). Each subject underwent serial blood drawings at 4-hr intervals along the 24-hr cycle. BP and HR were automatically recorded every 30 min. Data were analyzed by conventional statistics and by chronobiological procedures (cosinor rhythmometry). Both the control subjects and essential hypertensives showed a circadian profile of BP and HR characterized by a peak in the early afternoon and a clear nocturnal fall (rhythm detection: P less than 0.001). The rhythmicity of BP was disrupted in patients affected by Cushing's Syndrome, whereas the 24-hr oscillation of HR was preserved (P less than 0.001). Our data are compatible with the view that glucocorticoids are involved in the control of BP circadian rhythm, whereas HR is not under their control.

Adult