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Biomedical subjects

A Giustina

Publications and source records attributed to A Giustina.

At least 19 recordsLinked to original sources

Development of acromegaly in a patient with anorexia nervosa: pathogenetic and diagnostic implications.

Anorexia nervosa (AN) is a psychosomatic disorder characterized by an alteration in body image, resulting in eating abnormalities that lead to malnutrition associated with secondary endocrinological disturbances. AN is associated with high levels of GH and low levels of IGF-I, suggestive of a nutritionally acquired lack of GH action or GH resistance and of an unbalanced hypothalamic GH neuroregulation with GHRH prevalence on SS tone. In this clinical report, we describe the development of acromegaly in a patient affected by AN and we discuss pathogenetic and diagnostic implications.

Acromegaly↗

Resistance to somatostatin analogs in acromegaly: an evolving concept?

The aim of acromegaly treatment is to control the disease by suppressing GH hyperactivity and reducing the size or impeding the growth of the pituitary GH secreting mass. Over recent years, many studies have emphasized the role of SS analogs in the treatment of acromegaly. In fact, SS analogs have been demonstrated to be an effective tool not only in the control of GH hypersecretion but also more recently in the control of tumor growth, in a relevant number of acromegalic patients both as primary or adjunctive treatment. In this context, the therapeutic failure of medical treatment with SS analogs needs to be accurately defined particularly when they are used as primary treatment but also when they are given to patients previously operated upon, since other effective therapeutic options are nowadays available. Current definition of resistance to SS analogs is based on their efficacy to control GH and IGF-I. However, due to the emerging significance of the shrinkage effect of SS analogs on pituitary adenomas as well as to the apparent dissociation between this effect and the biochemical effects of treatment with these analogs, an evolution in the concept of SS resistance is likely to be occurring. In this review, we will discuss the biological basis of the discordance between biochemical and volumetric effects of SS analogs, and we will address the intriguing clinical and therapeutic aspects related to a possible redefinition of the resistance to SS analogs.

Acromegaly↗

Growth hormone deficiency in the adult.

Growth hormone deficiency (GHD) in adults may be of either adult or childhood onset and may occur as isolated GHD or as multiple hormone deficiencies. Adult-onset GHD (AoGHD) usually results from damage to the pituitary gland or hypothalamus. GH is frequently undetectable in normal subjects and thus GHD cannot be distinguished from the normal state using a single random GH measurement. In general, a stimulation test is required to recognize GHD. Insulin tolerance test (ITT) has been considered the gold standard by the most important scientific societies, although alternative tests, in particular GHRH plus arginine have been proposed as valuable alternative to ITT. The clinical syndrome associated with AoGHD is characterized by a wide array of symptoms and important chronic complications, such as cardiovascular complications, which may be responsible for an increased mortality. The rationale for GH replacement in adults GHD patients is justified by the beneficial effects on some clinical end-points, such as quality of life (QoL) and cardiovascular risk factors, whereas the effects on mortality risk are still controversial. Over the recent years, guidelines on the use of rhGH as a substitution treatment in adult hypopituitarism have been issued by international (Growth hormone research society-GRS, Endocrine Society) and relevant national (National Institute of Clinical Excellence-UK, NICE) institutions. The aim of the paper is to review and discuss these guidelines.

Adult↗

Cardiovascular risk in aging and obesity: is there a role for GH.

GH has significant impact in adults. In fact, patients with the GH deficiency (GHD) syndrome are now recognized as having an increased cardiovascular risk. The effects of human aging on GH secretion have been evaluated by a number of researchers. Studies of 24 h secretion of GH have shown variable reductions in most 24-h GH secretory parameters in middle-aged and in older men and women, resulting in a decrease in plasma levels of its anabolic mediator IGF-I. Obesity is also associated with several endocrine and metabolic abnormalities. These include decreased serum GH concentrations, reduced GH half-life, frequency of GH secretory episodes and daily GH production rate. The mechanism of the low GH in obesity is not completely understood nor is it clear whether its relationship with visceral adiposity is causal. The aim of this article will be to review the available clinical data concerning the potential involvement of "subclinical" or perhaps better "functional" GHD, which is observed in aging and obesity, in the increase in cardiovascular risk which characterizes these two conditions.

Age Factors↗

Consensus statement: medical management of acromegaly.

In November 2003, the Pituitary Society and the European Neuroendocrine Association sponsored a consensus workshop in Seville to address challenging issues in the medical management of acromegaly. Participants comprised 70 endocrinologists and neurosurgeons with international expertise in managing patients with acromegaly. All participants participated in the workshop proceedings, and the final document written by the scientific committee reflects the consensus opinion of the interactive deliberations. The meeting was supported by an unrestricted educational grant from Ipsen. No pharmaceutical representatives participated in the program planning or in the scientific deliberations.

Acromegaly↗

Diagnostic and therapeutic consensus on acromegaly.

In February 1999 and May 2000, two workshops were held in Cortina, Italy and Montecarlo, respectively, to develop a consensus defining the diagnosis and treatment of acromegaly. The workshops were sponsored by the Italian Society of Endocrinology, the Pituitary Society and European Neuroendocrine Association. Partecipants from all over the world included endocrinologists, neurosurgeons and radiotherapists skilled in the management of acromegaly. This review paper summarizes the main points of the two consensus statements published following these two workshops.

Acromegaly↗

GH-releasing peptides and bone.

It has been extensively demonstrated that GH secretagogues (GHS) play a role in the regulation of bone metabolism in animals and humans. Unlike GH, administration of GHS does not increase bone resorption markers, suggesting that a mechanism exclusively linked to GH release cannot account for the effect of these compounds. On this line, we investigated the effect of GHS and ghrelin, the endogenous ligand of GHS receptors, on bone cells. We found that both hexarelin and ghrelin significantly stimulated cell proliferation and increased alkaline phosphatase and osteocalcin production in primary cultures of rat calvaria osteoblasts. In the same cells, we were able to detect the mRNA for the GHS receptor by RT-PCR and the corresponding protein by Western blot, indicating that ghrelin and GHS may bind and activate this receptor. Two isoforms of GHS receptors (GHS-R), which are presumably the result of alternate processing of pre-mRNA, have been identified and designed receptors 1a (R1a) and 1b (R1b). Ghrelin, the endogenous ligand of the GHS receptors, binds with high affinity GHS-R1a only. Unlike fetal calvaria cells, osteoblasts derived from adult rat tibia did not express the GHS-R1 a, but only the biologically inactive isoform GHS-R1b. The latter isoform was present in only one of the three specimens of human osteoblasts obtained from the iliac crest or the upper femur of patients during surgery. These results would indicate that only osteoblasts from fetal bone express functional receptors responsive to ghrelin and GHS.

Animals↗

GH deficiency in the adult and bone.

GH acts on various tissues and organs, like liver, kidney, bone and muscle. There are no conclusive data on adult onset GH deficiency (GHD) effects on bone remodeling. In fact reduced, increased or unchanged values of serum markers of bone formation and resorption have been described. However, a direct link between GHD and reduced bone mass in hypopituitarism is supported by reports that GH replacement therapy can improve bone mineral density (BMD) in these patients. Recently, many studies have shown an increased prevalence of osteoporosis in adult-onset GHD patients, and the fracture rate in these subjects seems to be twice that in the non-GH-deficient population. Long-term studies in these years have described a BMD increase in GHD patients during treatment with GH alone or in combination with biphosphonates. To understand if these BMD changes may result in a reduction of fracture risk, it is necessary to carry out a longitudinal follow-up of large cohorts of GHD adults on GH replacement therapy.

Adult↗

Diagnosis and treatment of acromegaly and its complications: consensus guidelines.

In February 1999, May 2000 and April 2002, three workshops were held in Cortina, Montecarlo and Versailles, respectively, to develop a consensus defining the diagnosis and treatment of acromegaly and its complications. The workshops were sponsored by the Pituitary Society and European Neuroendocrine Association. Invited international participants included endocrinologists, neurosurgeons and radiotherapists skilled in the management of acromegaly. This review paper summarizes the main points of the three consensus statements published following these three workshops.

Acromegaly↗

High serum osteoprotegerin levels in patients with hyperthyroidism: effect of medical treatment.

This study was aimed at evaluating serum osteoprotegerin (OPG) concentrations in a cohort of patients with hyperthyroidism before and after methimazole (MMI) treatment. One hundred fourteen hyperthyroid patients [93 with Graves disease (GD) and 21 with toxic nodular goitre (TNG)] and 68 matched for sex and age healthy subjects were evaluated for serum free-thyroxine (FT4), free-triiodiothyronine (FT3), thyrotropin (TSH), TSH receptor antibodies (TRAb), bone alkaline phosphatase (BALP), C-telopeptides of type-1 collagen (CrossLaps), OPG levels, and bone mineral density (BMD). In hyperthyroid patients, the biochemical evaluations were performed before and after 6 and 12 months of MMI treatment, whereas BMD was measured at baseline and after 12 months of treatment. Hyperthyroidism was more severe in GD than TNG patients. Serum OPG levels were found to be significantly higher in hyperthyroid patients than in the healthy subjects (4.3 pmol/l, range: 1.6-12.0, vs. 2.2 pmol/l, range: 1.4-6.0; P < 0.001), the values being higher in GD patients than TNG. A significant correlation between serum OPG levels and age was found in the healthy subjects (r: 0.48; P < 0.001) but not in hyperthyroid patients (r: -0.03; P = 0.8). In the healthy subjects, serum OPG levels were also positively correlated with both serum FT4 (r: 0.23; P = 0.03) and FT3 (r: 0.24; P = 0.04) levels. In hyperthyroid patients, however, serum OPG was still correlated with FT3 levels (r: 0.38; P < 0.001), whereas the correlation with serum FT4 was lost (r: 0.19; P = 0.06). In hyperthyroid patients, but not in the healthy subjects, serum OPG levels were correlated positively with CrossLaps (r: 0.20; P = 0.03) and negatively with BALP (r: -0.24; P = 0.01) and BMD (r: -0.33; P = 0.01). After 6 months of MMI treatment, serum OPG concentrations decreased significantly in TNG patients (from 3.5 pmol/l, range: 1.6-8.0, to 2.3 pmol/l, range: 1.0-4.3; P < 0.001), whereas a not significant change in OPG levels occurred in GD patients (from 4.8 pmol/l, range: 1.8-12.0, to 4.2 pmol/l, range: 1.0-14.0; P = 0.7). At Month 12 of treatment, serum OPG concentrations were significantly lower than those measured at baseline in both TNG (2.5 pmol/l, range: 1.0-3.1, vs. 3.5 pmol/l, range: 1.6-8.0; P < 0.001) and GD (2.1 pmol/l, range: 1.0-8.6, vs. 4.8 pmol/l, range: 1.8-12.0; P < 0.001). At this time, no significant differences in serum OPG, CrossLaps, and BALP values were found between patients and control subjects. At the end of follow-up, BMD was higher than those measured at baseline but still significantly lower than those measured in the control subjects. This study shows that hyperthyroid patients have serum OPG concentrations significantly higher in comparison with euthyroid subjects, in relation to thyroid hormone excess and high bone turnover. Medical treatment of hyperthyroidism normalizes serum OPG levels in temporal relationship with the normalization of bone metabolism markers, even in presence of persistent abnormal bone structure as determined by ultrasonography.

Adult↗

Effects of the selective estrogen receptor modulator LY117018 on growth hormone secretion: In vitro studies.

Sex steroids play an important role in modulating pulsatile growth hormone (GH) release, acting at both hypothalamic and pituitary level in both humans and experimental animals. Selective estrogen receptor modulators (SERMs) act as either estrogen receptor agonists or antagonists in a tissue-selective manner. In postmenopausal women, serum GH levels correlate positively with endogenous estradiol levels and insulin-like grwoth factor-I (IGF-I) is positively related to bone mineral density (BMD) at the spine and hip. The aim of the present study was to evaluate, for the first time, the direct effect of LY117018, an analog of raloxifene, on GH secretion from both human and rodent pituitary cells in vitro. Our results demonstrated that pharmacological concentrations of the raloxifene analog LY117018 can stimulate GH secretion through a direct action on the pituitary. LY117018 also showed an estrogen-like activity, inducing the proliferation of rat pituitary GH-secreting adenomatous cells (GH1).

Adenoma↗

Preliminary observations on the effects of acute infusion of growth hormone on coronary vasculature and on myocardial function and energetics of an isolated and blood-perfused heart.

Recent studies have shown that growth hormone (GH) deficiency may deteriorate post-ischemic myocardial reperfusion damage. Furthermore, GH has been reported to be a promising therapeutic option in the treatment of chronic myocardial dysfunction. However, the exact mechanisms of action of GH on the cardiovascular system, particularly in the acute setting, are still unclear. The aim of our study consisted of monitoring the acute effects of GH infusion on isolated blood-perfused rabbit heart according to dose-response pattern and during ischemic conditions to test its anti-ischemic property. Seven blood-donors perfused isolated hearts were used as experimental model. The mechanical and metabolic data of the isolated organs were continuously monitored. Under aerobic conditions, dose-response curves were initially tested after intracoronary infusion of GH at increasing dosages (1, 2, 3 mg/l). After a stabilization period, the effects of GH infusion (5 mg/kg) administered 30 minutes prior to acute global myocardial ischemia (30 minutes) were also investigated. At the doses tested, GH did not induce any changes either in the developed or in the diastolic pressures of the isolated organ. However, transient reduction of the coronary perfusion pressure was observed at the dosage of 3 mg/l. During the ischemia/reperfusion study, at the dosages used in this study, GH did not modify either the degree of stunning in the early reperfusion or the recovery of the developed pressure at the end of reperfusion. In addition, GH did not prevent either the increase of diastolic pressure during ischemia or the release of lactate and CPK during reperfusion. Tissue content of high-energy phosphates was also not changed by GH infusion. In our experimental model, acute GH infusion did not reduce the ischemic/reperfusion damage of the myocardium. However, GH transiently induced coronary vasodilation without modifying the myocardial contractility. Acute effects of GH appear, therefore, to predominantly relate to vascular dilation suggesting that the effects on myocardial contractility may require long-lasting intake being likely linked to enhancement of specific protein synthesis or gene expression of cardiac myocytes.

Animals↗

Development of a meningioma in a patient with acromegaly during octreotide treatment: are there any causal relationships?

Somatostatin receptors are highly expressed in almost all meningiomas but in this setting their functional role is not clear. A 59-yr-old woman had been treated with octreotide after an unsuccessful operation for a GH-secreting pituitary adenoma. After 8 yr of treatment, a nuclear magnetic resonance (NMR) scan disclosed a 3 cm meningioma of the tentorium. Mean GH was 2.2 ng/ml and IGF-I 325 ng/ml. Meningioma was resected and tissue was digested to obtain tumor cell suspension. Aim of the study was to measure epidermal growth factor (EGF)-induced proliferation of cultured meningioma cells in the presence of either somatostatin or octreotide. Cells were grown to semiconfluency in Dolbecco's modified eagle medium (D-MEM) supplemented with 10% fetal calf serum (FCS). After 48 h in D-MEM without serum, the medium was replaced by fresh medium plus recombinant EGF (10 ng/ml) and somatostatin or octreotide were added in the final concentrations of 1, 10 and 100 nM. 20 h later 1 microcgCi of 3H-thymidine was added to each well. After 4 h, incorporated radioactivity was measured. While octreotide did not influence significantly cell growth at the three dose tested, somatostatin increased thymidine incorporation dose-dependently (peak 100 nM: 150% +/- 27% vs medium plus EGF, p<0.05). Octreotide effectively suppressed GH secretion in our acromegalic patient but is unlikely that its long-term use could have stimulated the growth of meningioma since it did not significantly influence the in vitro proliferation of the meningioma cells. These results suggest that somatostatin-mediated proliferative effect on meningioma cells is not mediated by the subtype 2 of the somatostatin receptor.

Acromegaly↗

Diagnosis and treatment of acromegaly complications.

The Pituitary Society in conjunction with the European Neuroendocrine Association held a consensus workshop to develop guidelines for diagnosis and treatment of the co-morbid complications of acromegaly. Fifty nine pituitary specialists (endocrinologists, neurosurgeons and cardiologists) assessed the current published literature on acromegaly complications in light of recent advances in maintaining tight therapeutic control of GH hypersecretion. The impact of elevated GH levels on cardiovascular disease, hypertension, diabetes, sleep apnea, colon polyps, bone disease, reproductive disorders, and neuropsychologic complications were considered. Guidelines are proposed for effective management of these complications in the context of overall acromegaly control. When appropriate, requirements for prospective evidence-based studies and surveillance database development are enunciated. Effective management of co-morbid acromegaly complications will lead to improved morbidity and mortality in acromegaly.

Acromegaly↗

Diagnosis and complications of Cushing's syndrome: a consensus statement.

In October 2002, a workshop was held in Ancona, Italy, to reach a Consensus on the management of Cushing's syndrome. The workshop was organized by the University of Ancona and sponsored by the Pituitary Society, the European Neuroendocrine Association, and the Italian Society of Endocrinology. Invited international participants included almost 50 leading endocrinologists with specific expertise in the management of Cushing's syndrome. The consensus statement on diagnostic criteria and the diagnosis and treatment of complications of this syndrome reached at the workshop is hereby summarized.

Cardiovascular Diseases↗

[Growth hormone secretion in heart failure].

Growth hormone is a pituitary polypeptide hormone regulating growth in paediatric age as well as inducing anabolic actions directly or IGF-I mediated in adult age. Particularly, in many animals GH and IGF-I receptors were observed in cardiac myocyte membrane. GH modifies left ventricle structure and function. As concerns spontaneous GH secretion, some data suggest that pituitary gland can have a compensatory role on endocrine response to heart failure. Heart failure stage was directly correlated to nocturnal GH levels. All GH spontaneous night secretion parameters as well as IGF-I levels showed a range between normal people and very high spontaneous secretion. Therefore in these patients there are either a GH peripheric resistance or a reduction of the activity of GH/IGF-I axis. Anyhow in our patients, GH 24 hour infusion was inducing a 5 fold increase in GH concentration and a 50% increase in basal IGF-I levels. Anker et al. suggested to evaluate nutritional state in heart failure patients, observing no differences in non-cachectic patients vs controls, while cachectic patients presented a typical GH resistance syndrome. Interestingly, cardiovascular effects of GH administration seem to be only marginally correlated to hemodynamic basal state. On the other hand basal hormonal setting of the patient seems to correlate to the GH-induced cardiovascular response. In fact, low basal IGF-I but high basal GH patients presented the worst endocrine and cardiovascular response to GH infusion. In literature there are controversial data about GH treatment in patients with chronic heart failure. The heterogeneity of the population could be the reason for this discrepancy. Besides very different IGF-I responses to GH have been reported. Therefore, as there is good clinical evidence that GH acute infusion can improve heart failure, it seems to be necessary firstly to evaluate the basal endocrine status of the patients. Particularly attention should be given to those patients that present a peripheric GH resistance. On the other hand, those patients with a reduced pituitary GH reserve are supposed to have very beneficial effects from GH treatment.

Animals↗

Preoperative growth hormone response to thyrotropin-releasing hormone and oral glucose tolerance test in acromegaly: a retrospective evaluation of 50 patients.

The objective of this study was to investigate the relationship between growth hormone (GH) dynamic tests (thyrotropin-releasing hormone [TRH] test and oral glucose tolerance test [OGTT]), insulin-like growth factor-I (IGF-I) plasma values, tumor size, and clinical outcome in patients with GH-secreting pituitary adenomas. Furthermore, we investigated the potential prognostic utility of the above biochemical parameters in the follow-up of patients with acromegaly. We studied 50 acromegalic patients (18 males and 32 females; mean age, 40 years; range, 16 to 69) who underwent trans-sphenoidal removal of a GH-secreting pituitary adenoma from 1990 to 1994. Preoperatively, we evaluated (1) GH plasmatic levels after an oral glucose load (OGTT) (blood samples were drawn at -15, 0, 30, 60, 90, 120, 150, and 180 minutes after oral administration of 0.75 g/kg body weight [BW] of glucose), (2) GH plasma levels after a TRH test (200 microg as an intravenous [IV] bolus), and (3) basal IGF-I plasma levels after an overnight fast. From 3 to 12 months after surgery we evaluated (1) GH plasma values after an OGTT, and (2) basal plasma IGF-I, free triiodothyronine (FT(3)), free thyroxine (FT(4)), thyroid-stimulating hormone (TSH), and urinary free cortisol. The same tests were performed every year for 5 years. All of the patients were classified into 4 subgroups according to the system of Hardy and Vezina. Preoperatively, "controlled" patients (n = 29) had a GH paradoxical response to TRH (n = 28) and an unresponsiveness to OGTT (n = 29); 23 of them belonged to the I and II classes. Only 5 poorly controlled patients (n = 21) showed a preoperative paradoxical response to TRH and 9 had a preoperative GH partial inhibition after OGTT; 19 of them belonged to the III and IV classes. Our data suggest that in the preoperative period in acromegalic patients the simultaneous presence of a GH paradoxical response to TRH and lack of GH inhibition after OGTT is inversely related to the tumor size and therefore more likely to be restored to normal by surgical treatment.

Acromegaly↗