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Biomedical subjects

V Popovic

Publications and source records attributed to V Popovic.

At least 19 recordsLinked to original sources

Ghrelin has partial or no effect on appetite, growth hormone, prolactin, and cortisol release in patients with anorexia nervosa.

CONTEXT: Anorexia nervosa (AN) is an eating disorder characterized by self-induced starvation. Gastric hormone ghrelin, potent orexigen, and natural GH secretagogue are increased in AN. Although exogenous ghrelin stimulates appetite, GH, prolactin, and cortisol release in humans, its effects have not been studied, during infusions, in AN patients. OBJECTIVE: The objective of the study was to determine the effects of ghrelin on appetite, sleepiness, and neuroendocrine responses in AN patients. DESIGN: This was an acute interventional study. SETTING: The study was based at a hospital. Investigated SUBJECTS: Twenty-five young women, including nine patients diagnosed with AN with very low body weight, six AN patients who partially recovered their body weight but were still amenorrheic, and 10 constitutionally thin female subjects, without history of eating disorder, weight loss, with regular menstrual cycles, were included in the study. INTERVENTION: Each patient received 300-min iv infusion of ghrelin 5 pmol/kg.min and was asked to complete Visual Analog Scale questionnaires hourly. MAIN OUTCOME MEASURES: Visual Analog Scale scores for appetite and sleepiness, GH, prolactin, and cortisol responses were measured. RESULTS: At baseline, AN patients had significantly higher ghrelin, GH, and cortisol levels and significantly lower leptin than constitutionally thin subjects. GH responses to ghrelin infusion were blunted in patients with AN. Ghrelin administration did not significantly affect appetite but tended to increase sleepiness in AN patients. CONCLUSIONS: Ghrelin is unlikely to be effective as a single appetite stimulatory treatment for patients with AN. Our results suggest that AN patients are less sensitive to ghrelin in terms of GH response and appetite than healthy controls. Ghrelin effects on sleep need further studies.

Adult↗

Plasma ghrelin levels of gastrectomized and vagotomized patients are not affected by glucose administration.

BACKGROUND: Ghrelin is a brain-gut peptide with GH-releasing and appetite-inducing activities, secreted mainly by the stomach. Circulating ghrelin concentrations fall rapidly after nutrient ingestion as well as after oral and intravenous glucose challenge. A number of gut hormones including ghrelin require an intact vagal system, which has been hypothesized to have a major role in initiating the postprandial fall in ghrelin levels. AIM: We aimed to investigate the effect of oral glucose challenge on ghrelin secretion in gastrectomized (GASTRX) and vagotomized patients. DESIGN: Interventional study. PATIENTS: Six GASTRX-vagotomized patients and 11 healthy sex- and body mass index (BMI)-matched subjects. METHODS: An oral glucose tolerance test (OGTT) was performed in all subjects. At baseline, circulating plasma total ghrelin, serum glucose, insulin and GH levels were measured. Serum glucose, insulin, GH and plasma ghrelin levels were determined every 30 min for 2 h. RESULTS: Plasma ghrelin levels at baseline were reduced by 55% in GASTRX-vagotomized patients compared to the control group (P < 0.01). In control subjects, plasma ghrelin levels decreased significantly during the OGTT whereas in GASTRX-vagotomized patients no reduction was registered (26.4 +/- 2.8% vs. 5.5 +/- 3.4%). The OGTT revealed a significantly greater increase in circulating glucose levels and serum insulin levels while GH response was not different in GASTRX-vagotomized patients compared to control subjects. CONCLUSIONS: Our data show that circulating ghrelin levels in GASTRX and vagotomized patients were not suppressed after oral glucose administration, unlike control subjects, suggesting that this effect could be due, at least in part, to the lack of contribution of the vagal nervous system to the regulation of ghrelin.

Adult↗

Ghrelin test for the assessment of GH status in successfully treated patients with acromegaly.

OBJECTIVE: Posttreatment assessment of disease activity and definition of cure of acromegaly, using measurement of GH secretion, remains problematic. Furthermore, with our efforts to achieve tight biochemical control of the disease it is foreseeable that a proportion of patients may be rendered GH deficient, thus requiring testing for GH deficiency. The aim of our study was to evaluate residual GH secretion in cured patients with acromegaly. DESIGN AND METHODS: At baseline, circulating GH, IGF-I, IGFBP-3, leptin and lipid (cholesterol and tri-glycerides) levels were measured in 33 acromegalic patients nine years after treatment with surgery of whom 6 were additionally irradiated. Two tests were performed: the GH suppression test--oral glucose tolerance test (OGTT) and the GH provocation test--ghrelin test (1 microg/kg i.v. bolus) and the results were compared with 11 age- and sex-matched control subjects. RESULTS: According to the consensus criteria (normal IGF-I levels and post-OGTT GH nadir <1 microg/l), 21 treated acromegalic patients were cured, 6 had discordant IGF-I and GH nadir values during OGTT, while 6 had persistent acromegaly. After the GH provocative test with ghrelin (cut-off for severe GH deficiency is GH <3 microg/l), we detected 9 severely GH deficient patients (GHD) among 21 cured acromegalic patients. Mean GH peak (+/-s.e.m.) response to the ghrelin test in GHD acromegalics was significantly lower compared with acromegalics with sufficient GH secretory capacity and control subjects (1.2 +/- 0.2 microg/l vs 20.1 +/- 2.4 microg/l vs 31.1 +/- 2.5 microg/l respectively, P<0.0001). Mean IGF-I and IGFBP-3 levels were not different between GHD and GH-sufficient cured acromegalics. Leptin levels and body mass index (BMI) were significantly higher in GHD male acromegalics compared with GH-sufficient male acromegalics. GHD female acromegalics tended to have higher BMIs while leptin levels were not different. CONCLUSIONS: The assessment of residual GH secretory capacity by the GH provocation test is necessary in the long-term follow-up of successfully treated acromegalics since a large proportion of these patients are rendered GH deficient.

Acromegaly↗

Hypopituitarism following traumatic brain injury.

Recent studies have demonstrated that hypopituitarism, and in particular growth hormone (GH) deficiency, is common among survivors of traumatic brain injury (TBI) tested several months or years following head trauma. In addition, it has been shown that post-traumatic neuroendocrine abnormalities occur early and with high frequency. These findings may have significant implications for the recovery and rehabilitation of patients with TBI. Although data emerging after 2000 demonstrate the relevance of the problem, in general there is a lack of awareness in the medical community about the incidence and clinical repercussions of the pathology. Most, but not all, head trauma associated with hypopituitarism is the result of motor accidents. The subjects at risk are those who have suffered moderate-to severe head trauma although mild intensity trauma may precede hypopituitarism also. Particular attention should be paid to this problem in children and adolescents. Onset of pituitary deficits can evolve over years following injury. For the assessment of the GH-IGF axis in TBI patients, plasma IGF-I concentrations, plus dynamic GH testing is indicated. Some degree of hypopituitarism is found in 35-40% of TBI patients. Among multiple pituitary deficits, the most common ones were GHD and gonadotrophin deficiency. In most series 10-15% presented with severe GHD and 15% with partial GHD after stimulating GH secretion confirming that the most common isolated deficit is GHD. Psychometric evaluation together with neurocognitive testing shows variability of disability and the possibility that untreated TBI induced hypopituitarism contributes to the chronic neurobehavioral problems seen in many head-injured patients warrants consideration. Preliminary data, from small pilot, open-label studies show that subjects treated with GH experience significant improvements in concentration, memory, depression, anxiety and fatigue. In conclusion, pituitary failure can occur even in minor head injuries and is poorly recognized.

Brain Injuries↗

Leptin TRH and ghrelin: influence on energy homeostasis at rest and during exercise.

The hypothalamus has long been recognized as a major site in the central nervous system (CNS) where a spectrum of internal and external environmental information is integrated for energy homeostasis. The isolation and sequencing of leptin in the mid 90 s, together with the demonstration of leptin administration's ability to correct the obesity syndrome in leptin-deficient ob/ob mice and humans by suppressing food intake and weight gain in laboratory rodents, confirmed the hypothesized existence of a direct humoral signal from adipose tissue to the hypothalamus, thus integrating the energy-related signals. In the 80 s, neuropeptide Y (NPY) was identified as a potent appetite-stimulating neuropeptide produced, released and acting locally within the hypothalamus. This is recognized as a major physiological appetite transducer and central neurochemical substrate receiving, interpreting and processing incoming information on energy status. More recently, ghrelin, produced in the stomach and released into the general circulation, has drawn attention as the other limb of the feedback circuit that stimulates appetite at NPY network level. Prolonged fasting suppresses serum leptin, while suppressing TSH secretion. Intervention with leptin replacement can prevent fasting-induced changes in TSH, suggesting that leptin regulates TSH. Low leptin levels in sportsmen and sportswomen as well as in recreational runners are consistent with reduction in body fat, but are also influenced by the presence of low insulin, hypothyroxemia, and elevated cortisol levels. These metabolic adaptations to chronic energy deficits indicate a role in leptin regulation. A study within the general population found that activity levels and leptin were significantly negatively associated in both sexes. Circulating ghrelin levels, however, do not change during energy expenditure.

Animals↗

Hypopituitarism following traumatic brain injury (TBI): call for attention.

Recent studies have demonstrated that hypopituitarism, in particular GH deficiency, is common among survivors of traumatic brain injury (TBI) years tested several months or following head trauma. In addition, it has been shown that post-traumatic neuroendocrine abnormalities occur early and with high frequency. These findings may have significant implications for the recovery and rehabilitation of patients with TBI. Although data emerging after year 2000 demonstrate the relevance of the problem, in general there is a lack of awareness in the medical community about the incidence and clinical repercussions of the pathology. Most, but not all, head trauma associated with hypopituitarism is the result of motor vechicle accidents. The subjects at risk are those who have suffered moderate-to-severe head trauma, although mild intensity trauma may also precede hypopituitarism. Particular attention should be paid to this problem in children and adolescents; onset of pituitary deficits can evolve over years following injury. Plasma IGF-I concentrations, plus dynamic GH testing, are indicated for the assessment of the GH-IGF axis in TBI patients. Some degree of hypopituitarism is found in 35-40% of TBI patients. Among mulitple pituitary deficits, the most common ones were GH deficiency (GHD) and gonadotrophin deficiency. In most series, 12-15% presented with severe GHD and 14% with partial GHD after stimulating GH secretion, confirming that the most common isolated deficit is GHD. Psychometric evaluation and neurocognitive testing show variability of disability, and these measures are needed and important to support hormonal replacement. Preliminary data, from small pilot, open-label studies show that subjects treated with GH experience significant improvements in concentration, memory, depression, anxiety and fatigue. In conclusion, pituitary failure can occur even in minor head injuries and is poorly recognized.

Brain Injuries↗

Are there alternative tests for diagnosis of acromegaly?

In acromegaly, clinical features are of the utmost importance, and biochemical confirmation is rarely difficult. However, some clinically manifest acromegalics have subtle abnormalities in GH secretion resulting in post-glucose GH nadir in the designated "normal" range with high IGF-I levels. Clinical decision may be based on the probability of the disease and elevated IGF-I levels. The TRH test or the frequent GH sampling test may help confirm acromegaly but on their own have no diagnostic advantage. A TRH-GH response is not specific to acromegaly, while frequent sampling is not practical. Other tests rarely add information beyond that obtained by usual investigations. Post-treatment assessment of the disease activity and definition of acromegaly cure, by measuring GH secretion, remain problematic. IGF-I levels seem to differentiate normality less clearly and discordance of GH and IGF-I results is frequent. Post-treatment probability for residual disease activity should include more clinical parameters such as insulin sensitivity, leptin and echocardiography. Furthermore, with efforts to achieve tight biochemical control of the disease it is foreseeable that a proportion of patients may be rendered GH deficient, requiring stimulatory testing. Acromegaly is a disfiguring and disabling illness, in which by definition, the disorder is caused by a pituitary GH-secreting adenoma resulting in high circulating levels of GH and IGF-I. The clinical features of acromegaly include those of GH and IGF-I on tissues and the effects of the pituitary tumor itself. There is no single cut-off value for GH with perfect discrimination between acromegaly and normality. The recommended post-glucose GH nadir value of 1 microg/l is now considered to be inappropriately high, and measurement of IGF-I levels although extremely valuable has its limitations. Furthermore, some acromegalics may have subtle abnormalities in GH secretion, resulting in post-glucose GH nadir in the designated "normal" range with elevated IGF-I levels.

Acromegaly↗

Hypopituitarism as a consequence of traumatic brain injury (TBI) and its possible relation with cognitive disabilities and mental distress.

Recent studies have demonstrated that hypopituitarism, in particular GH deficiency, is common among survivors of traumatic brain injury (TBI) tested several months or yr following head trauma. We present the results of endocrine, neurological, neuropsychological and psychiatric evaluation in a group of 67 patients who suffered TBI at least one yr ago. Our study shows that decreased endocrine function is either restricted to one or more anterior pituitary hormones and is present in 34% of patients with any pituitary hormone deficit, while multiple pituitary hormone deficiencies are found in 10% of patients. GH/IGF-I axis was evaluated by GHRH+GHRP-6 test and IGF-I measurement. Severe GHD is the most frequent deficiency present in 15% of TBI patients. Gonadotrophin deficiency was present in 9% of patients with TBI, while thyrotroph and corticotroph function seemed more refractory to impairment. Patients with moderate-to-severe trauma are not necessarily more likely to have hypopituitarism than those with mild injury. Neuropsychological testing revealed a significant positive correlation of peak GH levels after GHRH+GHJRP-6 test with verbal learning and verbal short term memory (RAVLT total score p = 0.06, immediate free recall p = 0.02 and delayed free recall p = 0.04). Verbal and visual memory was significantly lower in elderly patients and in males. Visoconstructional abilities (RCF copy) were significantly lower in the elderly (p < 0.01) and undereducated (p = 0.02). Visual memory (free recall of complex figure after 30 min) significantly correlated with lower IGF-I levels (p = 0.01). Gonadotrophins and testosterone correlated significantly with visoconstructional abilities. Simple and complex conceptual tracking (TMT A and B) was significantly more impaired in older TBI patients (p < 0.01) and with longer time from trauma (TMT B only, p = 0.03). The psychiatric evaluation by using two different scales showed depression, phobic anxiety and psychoticism to be more prominent in the TBI group. Paranoid ideation and somatization negatively correlated with the peak GH responses to GHRH+GHRP-6 test (p = 0.04 and p = 0.03, respectively). Depression scale showed that nearly half of patients suffered from mild to moderate depression. The benefits of hormone replacement therapy on cognitive functioning and mental distress in TBI patients are eagerly awaited.

Adult↗

Gonadotropin response to clomiphene and plasma leptin levels in weight recovered but amenorrhoeic patients with anorexia nervosa.

Anorexia nervosa (AN) is a state of leptin and gonadotropin deficiency. Leptin levels are decreased in normal weight women with hypothalamic amenorrhea and leptin may be a sensitive marker of overall nutritional status. The aim of the study is to provide additional information on plasma leptin levels and on gonadotropin responses after clomiphene testing in patients with AN who recovered weight but were still amenorrheic. We evaluated 17 patients with AN, female age 20+/-1.2 yr who reached goal weight [body mass index (BMI) 14.9+/-0.5 to 19.3+/-0.4 kg/m2]. At diagnosis serum leptin levels were 2.2+/-0.1 microg/l while after behavioural therapy and hypercaloric diet for 6-12 months serum leptin levels rose to 6.4+/-1.4 microg/l significantly lower compared with those in the control (no.=10, age 28+/-6.2 yr, BMI 21.1+/-0.3 kg/m2, leptin 9.3+/-0.7 pg/l; p<0.05). None of the patients resumed spontaneous menstrual cycles after weight gain. They were tested with a 10-day administration of clomiphene citrate. All had a significant rise in LH secretion (from 1.7+/-0.3 IU/l to 8.3+/-0.9 IU/l, p<0.01) and serum estradiol levels (from 19.0+/-5.4 to 937.7+/-241.2 pg/ml, p<0.03). Nine out of 17 patients menstruated after clomiphene. Serum leptin levels were not different in those who menstruated from those who did not (6.4+/-1.4 to 6.8+/-1.4 microg/l, p>0.05). Body compositon was studied in 12 additional carefully matched patients with AN who recovered weight. Six of them resumed spontaneous menstrual cycles. Neither BMI, body fat, nor leptin appeared as significant determinants of menstrual status. In conclusion, relative hypoleptinemia persists, independent of fat mass, in weight recovered patients with AN. A normal response to clomiphene in weight-recovered yet still amenorrhoeic patients with AN, offers reassurance that the axis is intact and that the problem lies in the hypothalamus. It is reasonable to believe that nutritional disturbances, fat intake and persisting psychological factors still affect plasma leptin levels and reproductive functions in weight-recovered patients with amenorrhea.

Adolescent↗

Hypopituitarism following traumatic brain injury (TBI): a guideline decalogue.

In order to gain further insight into hypopituitarism, that ensues moderate to severe traumatic brain injury (TBI), a group of experts actively working in the field gathered to exchange recent data and concepts. The objective arising from the meeting was to enhance the awareness of both medical specialists and health care administrators on the problem, whose prevalence is higher than previously thought. Guidelines for the diagnosis and management of TBI-mediated hypopituitarism were produced.

Brain Injuries↗

Case report of hypopituitarism with suspected syndrome of inappropriate VP secretion (SIADH) due to a large aneurysm of the internal carotid in the sellar region.

Hypopituitarism and hyponatremia, especially when severe, are infrequent findings particularly when the cause of hypopituitarism at presentation is unknown and untreated. Interestingly, hyponatremia is usually seen in elderly patients with hypopituitarism due to various causes. We present a case with unrecognized and untreated hypopituitarism due to a large aneurysm of the internal carotid artery in the sellar region causing the syndrome of inappropriate secretion of antidiuretic hormone (SIADH).

Aneurysm↗

Ghrelin main action on the regulation of growth hormone release is exerted at hypothalamic level.

Ghrelin, a recently isolated hormone, seems to participate in the physiological regulation of GH secretion. Exogenously administered ghrelin stimulates GH discharge in all species so far tested including man, but whether this action is exerted at pituitary or alternatively at hypothalamic level is not known at present. To understand the point of ghrelin action a group of patients with organic lesion mainly in the hypothalamic area and matched controls were studied. Patients showed a severe GH deficiency after hypothalamic stimulation (ITT), but partial response after GHRH administration. Cases and controls were tested on three separate days by either ghrelin; GHRH; and ghrelin plus GHRH; always at 1 micro g/Kg iv. The mean GH peak after stimulation in the patients were: 0.4 +/- 0.1 micro g/L by ITT; 3.1 +/- 0.5 micro g/L after GHRH; 2.0 +/- 0.8 micro g/L after ghrelin; and 9.6 +/- 2.9 micro g/L after the combination of GHRH plus ghrelin. In the controls GHRH induced a GH peak of 21.2 +/- 7.5 micro g/L, and 75.1 +/- 16.0 micro g/L after ghrelin with a peak after GHRH + ghrelin of 103.5 +/- 26.4 micro g/L. These data indicate that when hypothalamic structures are not operative ghrelin, either alone or in combination with GHRH, is not able to significantly release GH. In addition to postulating a hypothalamic point of action for the ghrelin-induced GH secretion, these results suggests that ghrelin will not have significant clinical utility in patients with GH deficiency due to organic lesion.

Adult↗

A single growth hormone (GH) determination is sufficient for the diagnosis of GH-deficiency in adult patients using the growth hormone releasing hormone plus growth hormone releasing peptide-6 test.

BACKGROUND: The diagnosis of GH deficiency in adults is based on the provocative testing of GH secretion. When testing a patient with suspected GH deficiency, clinicians assess the whole secretory curve and select the GH peak as an index of secretory capability. This procedure is time consuming and the determination of GH in several samples is necessary. The combined administration of growth hormone releasing hormone (GHRH) plus growth hormone releasing peptide-6 (GHRP-6) is an effective test of GH secretion, and it has been unambiguously demonstrated that the elicited GH peak is capable of segregating normal GH secretion subjects from GH deficient patients on an individual basis. The GHRH + GHRP-6 test biochemically classifies patients into three groups; those with a stimulated GH peak >/= 20 micro g/l are considered normal and those with peaks at </= 10 micro g/l as GH deficient. The group comprising individuals between these parameters is considered uncertain, and the results are further interpreted according to clinical information, or by other tests. OBJECTIVE: As the GHRH + GHRP-6 test induces GH peaks consistently in the first 30 minutes, the working hypothesis assessed in this study was whether a single determination of GH 30 minutes after stimulus could provide the same clinical classification as the whole secretory curve. PATIENTS AND METHODS: Three hundred and forty-nine adult subjects (146 patients with organic pituitary disease and 203 healthy subjects) were studied. All were administered GHRH 1 micro g/kg i.v. plus GHRP-6 1 micro g/kg i.v. at 0 minutes, and blood samples were obtained at regular intervals. GH was determined in all samples. RESULTS: GHRH + GHRP-6-evoked GH peaks in controls and patients were not correlated with GH basal values, making this determination useless for test validation. In contrast, an excellent correlation was observed between GH values at 30 minutes and the GH peaks (r = 0.994, P < 0.0001). When comparing the 30-minute GH values against the peaks, the biochemical classification changed from normal toward uncertain in only five out of 203 control subjects, which is without clinical relevance according to Bayes theorem. Similarly, when the 30-minute value was used instead of the peak in GH deficient patients, only two out of 146 patients moved from the uncertain area toward the GH deficient one. Thus, better diagnostic classification was provided for patients. CONCLUSIONS: The GHRH + GHRP-6 test is a convenient, safe and reliable, provocative test of GH reserve in adults, which can be reduced to a single fixed GH determination 30 minutes after stimulus.

Adolescent↗

Response of serum macrophage migration inhibitory factor levels to stimulation or suppression of the hypothalamo-pituitary-adrenal axis in normal subjects and patients with Cushing's disease.

Macrophage migration inhibitory factor (MIF) is a proinflammatory pituitary and immune cell cytokine and a critical mediator of septic shock. It has been reported that MIF is secreted in parallel with ACTH from the pituitary in response to stress or inflammatory stimuli. MIF release from immune cells is also induced rather than inhibited by glucocorticoids. It has therefore been suggested that MIF may be a novel counterregulatory hormone of glucocorticoid action that acts both as a paracrine and endocrine modulator of host responses. We have measured circulating MIF levels, using a human MIF ELISA, in normal subjects and patients under numerous pathophysiological conditions. Serum MIF was measured in normal subjects who underwent stimulation of the hypothalamo-pituitary-adrenal axis with an insulin tolerance test (n = 8), a CRH-stimulation test (n = 5), a short synacthen test (n = 5), and following a low-dose dexamethasone suppression test (n = 6). We also sampled from a peripheral vein and both inferior petrosal sinuses before and after CRH stimulation in four patients with a histologically proven diagnosis of Cushing's disease. Immunostaining of the pituitary tumors for MIF was also performed. In normal subjects serum MIF levels did not rise in parallel with cortisol during the insulin tolerance or CRH test or after administration of synthetic ACTH. In all subjects cortisol levels became undetectable after the low-dose dexamethasone suppression test, and no consistent change was observed in serum MIF levels during the test. In patients with Cushing's disease, there was no basal central-to-peripheral gradient in MIF, and no consistent changes occurred in serum MIF levels in either the left or right inferior petrosal sinus after CRH stimulation; however, immunostaining of the surgically removed pituitary tumors from the same patients showed strong staining for both ACTH and MIF. These results show that in humans acute modulation of the hypothalamo-pituitary-adrenal axis does not significantly alter circulating MIF levels. In addition, ACTH-secreting pituitary tumors that express MIF do not release MIF either spontaneously or in response to CRH stimulation, and there is no gradient for MIF in the venous drainage of the pituitary. Our study suggests that the pituitary gland is not the major contributor to circulating MIF; an autocrine or paracrine role for pituitary-derived MIF is more likely.

Adrenocorticotropic Hormone↗

The exfoliation syndrome in cognitive impairment of cerebrovascular or Alzheimer's type.

The prevalence of exfoliation syndrome was studied in 39 patients suffering from dementia and cognitive impairment; a positive finding of exfoliation was detected in 11/39 of these patients. A comparison with an age-matched population survey showed that the prevalence of ocular exfoliation and the relative risk were significantly elevated. These results suggested that lesions related to the exfoliative process might be located also in the brain of patients suffering from dementia and cognitive impairment.

Adult↗

Loss of gender difference in serum leptin levels and its slow recovery after successful surgery for Leydig cell tumours in two virilized females.

One of the factors that predicts serum leptin levels is gender. It has been shown that sex steroid hormones, in particular testosterone, play an important role in the regulation of serum leptin levels. We had the opportunity to examine the effects of acute and chronic changes in serum testosterone levels on serum leptin concentrations in two virilized females harbouring testosterone-secreting ovarian tumours, before and after curative surgery. Chronically elevated basal testosterone levels (46 nmol/l) were associated with suppressed serum leptin levels (1.46 microg/l and 2.56 microg/l) vs. 12 age- and BMI-matched healthy subjects 9.89 +/- 0.64 microg/l. Leptin levels were determined from pooled serum samples assayed by commercial radioimmunoassay. High testosterone levels abolished the well known sexual dimorphism of serum leptin levels. Two weeks after curative resection of these tumours serum leptin levels were unaltered and started to increase progressively after one month. One patient received parenteral conjugated oestrogens while the other resumed spontaneous menstrual cycles. Three months after curative surgery obvious changes in body composition were registered (DEXA). Six months later further rise in serum leptin concentrations occurred without further changes in body composition. In conclusion, leptin levels did not change in spite of rapid changes in the steroid milieu, but in the long term increase in body fat stores, new steroid milieu and maybe other factors are important determining factors of serum leptin levels.

Adult↗

Growth hormone secretagogues as diagnostic tools in disease states.

One of the most active topics in the growth hormone-IGF-1 field is that of the so-called growth hormone secretagogues (GHS). At a time when the isolation of GHRH had not occurred, the GHS were developed as artificial tools to release GH. The interest in these groups of compounds was rekindled when it was realized that they were not surrogates of GHRH nor were they acting through the modulation of the release of either GHRH or somatostatin. With the subsequent cloning of the specific receptor of GHS, and today of the natural ligand for that receptor, named ghrelin, it soon become clear that GHS and the GHS-receptor were part of a new physiological system involved in GH regulation. The dual control of GH secretion became a trinity. GHS releases GH when administered by any route--oral, iv, sc, and even transdermally-with a surprising potency and reproductivity. In addition, GHS when administered together with GHRH exert a synergistic action on GH secretion and that combined administration is the most potent GH releaser to date. Clinical studies have demonstrated that the GHS-GHRH administration may be considered the new "gold standard" test of GH reserve in humans, as the GH secretion so elicited is not altered by gender, adiposity, or age. The combined administration of GHRH plus GHS is able to discriminate between healthy subjects and patients with adult GH deficiency, suggesting a considerable utility in the clinical setting.

Adult↗