"A gentleman". Giovanni Antonio Amadeo. Pavia 1447-Milan 1522.
Explore the source record for details and available documents.
Biomedical subjects
Publications and source records attributed to G Faglia.
Explore the source record for details and available documents.
Children suffering from thalassaemia major are reported to have growth delay and bone alterations even when well transfused and chelated. In the present study we evaluated bone and collagen turnover (bone Gla-protein, BGP; carboxyterminal telopeptide of type I collagen, ICTP; aminoterminal propeptide of type III procollagen, PIIINP, respectively) and bone mineral density (BMD) in 5 pre-pubertal GH deficient thalassaemic children before and during rec-GH treatment (0.6 IU/kg/week). Data were compared with those recorded in an age- and sex-matched control group. Before treatment, serum BGP and ICTP levels were significantly lower (p<0.0001) in children with thalassaemia (9.3+/-0.7 ng/ml and 5.3+/-0.5 ng/ml, respectively) than in healthy controls (18.9+/-0.9 ng/ml and 14.4+/-0.6 ng/ml, respectively), while serum PIIINP levels did not significantly differ in the two groups (6.7+/-0.7 ng/ml vs 6.7+/-0.7 ng/ml). Mean lumbar BMD values of patients (0.62+/-0.05 g/cm2) were significantly lower (p<0.05) than those recorded in healthy controls (0.78+/-0.01 g/cm2), while femoral BMD values were similar in the two groups (patients: 0.70+/-0.08 g/cm2 vs controls: 0.74+/-0.01 g/cm2). One-year GH therapy significantly increased height velocity (from 2.3+/-0.2 cm/year to 6.1+/-0.4 cm/yr, p<0.0001) and IGF-I levels (from 61.6+/-15.4 to 342+/-38.5 ng/ml, p<0.005). Serum BGP (basal: 9.3+/-0.7 ng/ml, 6th month: 10.8+/-0.6 ng/ml, 12th month: 14.9+/-1.4 ng/ml), ICTP (basal: 5.3+/-0.5 ng/ml, 6th month: 7.9+/-0.8 ng/ml, 12th month: 10.9+/-1.7 ng/ml) and PIIINP levels (basal: 6.7+/-0.7 ng/ml, 6th month: 9.9+/-1.0 ng/ml, 12th month: 9.6+/-1.4 ng/ml) significantly increased (p<0.05), while no significant effects were observed on lumbar and femoral BMD values. Although the GH-induced stimulation of bone turnover markedly increased BGP (+60%) and ICTP (+105%) levels, one-year GH therapy was not sufficient to completely normalize these parameters, which remained significantly lower than in healthy controls. In conclusion, our study shows that pre-pubertal GH deficient children with thalassaemia major have reduced bone turnover (both bone formation and resorption) and lumbar BMD values, thus indicating that bone metabolism should be monitored and improved even in well-transfused patients. One-year GH treatment is able to increase, but not normalize, bone turnover, this effect being insufficient to improve BMD values. More prolonged periods of GH therapy are probably requested to positively affect both bone turnover and BMD values in GH deficient thalassaemic patients, as occurs in children and adults with GH deficiency.
Estrogens locally generated from androgen precursors due to the action of aromatase play a main role in epiphyseal cartilage fusion. Treatment with an aromatase inhibitor (anastrozole, 1 mg/day for 3 yr) in a boy previously operated on for a hamartoma causing precocious puberty and presenting with advanced bone maturation and nearly fused epiphyseal cartilages, slowed cartilage fusion consenting a higher final stature than expected (164.4 cm vs 158.4 cm). It is suggested that treatment with aromatase inhibitors, alone or in combination with rh-GH, may also be useful in children with constitutional short stature in order to delay epiphyseal closure and improve the final height.
High vascular morbidity and mortality is associated with acromegaly. The aim of the present study was to assess the effects of octreotide therapy on several known cardiovascular risk factors and to correlate them with octreotide-induced hormonal changes. Lipid levels, LDL particle size distribution as evaluated by single vertical spin density gradient ultracentrifugation, apolipoproteins AI and B, lipoprotein (a) [Lp(a)] concentrations and apo(a) phenotypes were evaluated in 20 non-diabetic acromegalic patients (6 M, 14 F), with normal thyroid, adrenal and gonadal function, aged 29-66 years. Normal subjects (20), matched for age, sex and BMI served as control for lipid variables. Acromegalic patients were characterized by lower HDL cholesterol (and apoA-I) and by higher Lp(a) concentrations in comparison to controls. Treatment with octreotide (100 microg t.i.d. for 3 months) led to: an increase in HDL cholesterol (median: + 22%), a decrease in LDL cholesterol (-14%) and a decrease of the Lp(a) levels (all phenotypes) (-28%). The expected decreases of IGF-I levels (median: -48%) and 7-h AUC of GH (-50%), insulin (-40%) and glucagon (-20%) were observed. Only Lp(a) modifications showed a correlation with GH modifications. The study of LDL physical properties showed that acromegalic patients had smaller and/or more dense LDL particles, in comparison with normal controls (relative flotation rate, Rf: 0.40 +/- 0.03 versus 0.42 +/- 0.02 P < 0q05), an alteration that might contribute to the high vascular risk of acromegalic patients. However, the LDL subfraction distribution remained unmodified during octreotide therapy (Rf 0.39 +/- 0.03). In conclusion, this study shows that in acromegalic patients octreotide treatment is indeed associated with an amelioration of some lipoprotein parameters, i.e. LDL, HDL, and Lp(a) concentrations. However, this treatment has no effect on the small and/or dense LDL particles present in these patients.
OBJECTIVE: Both in vivo and in vitro evidence indicates that primary hyperparathyroidism is characterized by a reduced sensitivity to extracellular calcium ([Ca2+]o). The existence of alterations in the expression and signalling of calcium sensing receptor (CaSR) in parathyroid neoplasia is still uncertain. In order to clarify the role of CaSR in the reduced [Ca2+]o sensing of parathyroid neoplasia we investigated PTH secretion and intracellular effectors triggered by CaSR activation as well as the levels of expression of CaSR and CaSR coupled G proteins (Gq/G11) in parathyroid adenomas and primary hyperplasia. MATERIALS AND METHODS: The study included 27 parathyroid adenomas, 4 cases of primary hyperplasia and pools of normal parathyroid biopsies. Tissues were either snap frozen in liquid nitrogen or placed in sterile medium for cell dispersion. The effects of increasing [Ca2+]o on in vitro PTH release, intracellular cAMP levels and intracellular calcium ([Ca2+]i) in cells loaded with the Ca2 + indicator fura-2 were evaluated. CaSR mRNA levels were assessed by semiquantitative RT-PCR analysis, using GAPDH as internal standard, while CaSR protein was detected by western blot analysis using a specific polyclonal antibody. Purified antisera selective for G11alpha and Gqalpha were used to detect this class of proteins. RESULTS: In basal conditions (at 0.5 mM [Ca2+]o) in vitro PTH released ranged from 29.4 to 1186 pg/well/60 minutes. Increasing [Ca2+]o from 0.5 to 1, 2.5 and 5 mM caused a variable effect. One group (n = 7) showed a significant but partial reduction of PTH release (of 17 to 60% of basal levels) that occurred at physiological [Ca2+]o concentrations (1 mM) while the remainder showed either inhibition detectable only at 2.5 mM (n = 15) or total (n = 9) resistance to [Ca2+]o. In the responsive cells, [Ca2+]o (1-5 mM) caused a pertussis toxin-insensitive [Ca2+]i rise (ranging from 10% to 260%), due to Ca2+ release from intracellular stores, and an inhibition of forskolin-stimulated cAMP levels. By RT-PCR almost all tumours tested showed a substantial reduction in CaSR mRNA levels when compared to the normal tissue (CaSR/GAPDH ratio: 3.1 +/- 0.5 vs. 15.5 +/- 3.1; P < 0.001), which was confirmed by immunoblotting analysis demonstrating low levels of CaSR protein in tumour tissues. Moreover, low amounts of G11alpha and Gqalpha, the G proteins involved in CaSR coupling, were observed in the majority of pathological tissues. CONCLUSIONS: The study shows that the activation of the calcium sensing receptors expressed in adenomatous parathyroid glands modulates intracellular effectors in a similar way to those operating in the normal parathyroid. Although a reduction of calcium sensing receptor expression is probably involved in the poor inhibition of PTH release induced by [Ca2+]o, this is not the only factor altering [Ca2+]o sensing in parathyroid adenomas, since tumours characterized by different in vitro sensitivity to [Ca2+]o showed similar CaSR levels. The low content of G proteins of the Gq subfamily might represent an additional alteration leading to a defective [Ca2+]o sensing.
Alterations of coagulation and fibrinolytic systems might contribute to the increased cardiovascular and cerebrovascular mortality observed in patients with both chronic growth hormone (GH) excess (acromegaly) and deficiency (GHD). However, contrasting results have been so far reported. To assess the importance of GH in modulating haemostatic system, several haemostatic variables in patients with GHD and acromegaly were measured. Twenty-four adult patients with GHD (8 childhood- and 16 adult-onset; age: 41+/-12 years, insulin like growth factor-I, IGF-I: 6.7+/-4 nmol/L), 10 non-diabetic acromegalic patients (age: 39+/-15 years; IGF-I: 109+/-37 nmol/L) and 64 healthy volunteers age- and sex-matched with cases were studied. The plasma levels of tissue-type plasminogen activator antigen (t-PA), prothrombin fragment 1+2 (F1+2) and thrombin-antithrombin complex (TAT) were measured by ELISA. Plasminogen activator inhibitor type I (PAI-1) was measured by an immunoactivity assay and fibrinogen by von Clauss method. GH levels were measured by IFMA and IGF-I by RIA. GHD patients had higher PAI-1 (12.7+/-16.7 vs 4.8+/-5.3 U/ml, p<0.01), fibrinogen (363+/-104 vs 291+/-71 mg/dL, p< 0.05) and TAT levels (6.8+/-9 vs 3.6+/-2.8 ng/ml, p<0.05) than controls. Taking the 95th pecentile of the normal distribution in the control group as the cut-off point for normal plasma levels of the haemostatic variables, high PAI levels were found in 25% of patients with GHD (P<0.01), while high fibrinogen and TAT levels were observed in 21% (P<0.05). The alterations were mostly present in patients with adult-onset GHD, with the exception of hyperfibrinogenaemia which was equally present in adult- and childhood-onset patients. Acromegalic patients had higher mean fibrinogen levels than controls (398+/-111 vs 291+/-71 mg/dL, p< 0.05), 40% having hyperfibrinogenaemia (P<0.01, vs controls). They also had t-PA levels lower than controls and GHD. No correlations between hormonal and haemostatic variables were found. Body mass index and waist to hip ratio correlated positively with PAI-1 levels in GHD patients only. In conclusion, this study shows that several abnormalities of coagulation variables (increased PAI-1. fibrinogen and TAT levels) are present in patients with GHD, while only hyperfibrinogenaemia is found in patients with acromegaly. These changes do not appear to be directly related to IGF-I levels or to the degree of GH deficiency/excess. However, these abnormalities may be an additional trigger for the development of coronary heart disease and thromboembolic complications mostly in patients with GHD.
BACKGROUND: An association between alopecia areata (AA) and coeliac disease has recently been reported. AIM: The aim of this paper was to evaluate the possible effect of a gluten-free diet (GFD) on the new growth of hair in 5 alopecic patients with CD. METHODS: CD was diagnosed in 5 patients with AA (universalis in 3 cases and patchy in 2 cases). The diagnosis of CD was based on serological and histological standard criteria. RESULTS: In all patients the GFD resolved CD clinically, serologically and histologically but had no effect on the course of alopecia. CONCLUSION: AA and CD, when associated, present different responses to a GFD and have an independent course.
The etiopathogenesis of sporadic central hypothyroidism (CH) involves pituitary and hypothalamic lesions. Pituitary CH (pCH) implies a diminished number of functioning thyrotropes, accounting for the quantitative impairment of TSH secretion. Hypothalamic CH (hCH) is characterized by normal or even increased TSH concentrations and qualitative abnormalities of TSH secretion, including a decreased bioactivity of circulating TSH. However, controversy still exists about the actual occurrence of bioinactive TSH among CH patients, and no data are available in pCH. Therefore, we studied 41 CH patients with different hypothalamic-pituitary disorders. Immunoreactive TSH (TSH-I) ranged from 0.08-11.1 mU/L (normal, 0.24-4.0), free T4 (FT4) ranged from 0.6-8.8 pmol/L (normal, 9-18), and FT3 ranged from 1.2-5.4 pmol/L (normal, 4-8). A blunted TSH response to TRH (<4 mU/L), indicating prevalent pCH, was found in 56% of the patients, and a net TSH-I increment > or =4 mU/L, indicating prevalent hCH, was found in the remaining 44%. Net TSH-I increments showed significant correlation with basal FT4 (P < 0.02), indicating the relevance of pituitary TSH reserve in the pathogenesis of CH. Circulating TSH was immunoconcentrated and tested in bioassay and in ricin affinity chromatography. The ratio between biological (B) and immunological (I) activities of circulating TSH was reduced (n = 25; TSH B/I, 0.38+/-0.19) compared to the values recorded in normal subjects (n = 26; TSH B/I, 1.53+/-0.54; P < 0.001) and primary hypothyroid patients (n = 24; TSH B/I, 0.74+/-0.31; P < 0.001), but no difference between pCH (n = 9; 0.36+/-0.16) and hCH (n = 16; 0.39+/-0.20) was seen. TSH B/I values in CH patients showed a limited overlap with normal values (20%) and a highly significant correlation with the FT3 response to endogenous TRH-stimulated TSH (P < 0.005). The elevated sialylation degree of TSH molecules may explain part of these findings. In conclusion, the secretion of TSH molecules with reduced bioactivity is a common alteration in the patients with hypothalamic-pituitary lesions, contributing along with the impairment of pituitary TSH reserve to the pathogenesis of CH.
OBJECTIVE: Nonfunctioning pituitary adenomas (NFPA), which represent about one-quarter of human pituitary tumors, occur in middle or old age. Determination of gonadotropin levels, which are not expected to be high during the early postmenopause in normal women and which are low in women with NFPA, is important to distinguishing hypogonadal status due to the normal decline of gonadal function from that due to hypothlalamic-pituitary dysfunction. The aim of the study was to verify whether this difference still persists in old subjects, despite the physiological decline of gonadotropins in the last decades of life. DESIGN AND METHODS: The study included 154 healthy subjects (aged 50-104 years) and 47 patients with NFPA (aged 50-80 years). Blood samples were collected after an overnight fast and hormone levels were measured by two immunofluorimetric assays. RESULTS: In healthy women the highest serum levels of gonadotropins were present in the 50-60 year age group, with a slight but progressive age-associated decrease in serum FSH and LH being observed thereafter. In healthy men serum gonadotropin levels were stable up to 70 years, increased up to 75-85 years and thereafter gradually decreasing. Female patients with NFPA showed levels of gonadotropins which were far lower than controls. Only three patients had levels of both FSH and LH above the 2.5 centile for normal subjects. A high sensitivity and specificity of gonadotropin measurements (about 90%) for the diagnosis of NFPA was observed in female patients aged 50-80 years. In male subjects, a large overlap of gonadotropin values in NFPA and controls, namely over the 50-70 years age range, was observed. CONCLUSIONS: Our study demonstrates that despite the gradual decline of gonadotropin levels in healthy postmenopsausal women, the reduction of both FSH and LH persists in old patients with NFPA, suggesting that measurement of gonadotropin levels could prove useful in the evaluation of pituitary lesions even in old women. More subtle differences seem to occur in male subjects.
OBJECTIVE: To evaluate the plasma ACTH and serum cortisol responses to desmopressin in patients with Cushing's disease either before or after pituitary adenomectomy during long-term follow-up, and to compare the results with those obtained after corticotrophin-releasing hormone (CRH) testing. DESIGN: Plasma ACTH and serum cortisol concentrations were evaluated after the administration of desmopressin (10 microg i.v.) or CRH (1 microg/kg i. v.) in 34 patients with Cushing's disease. Twenty-four patients with active Cushing's disease were evaluated both before and after transsphenoidal pituitary surgery (TSS); these patients were followed up for 1-36 months. Ten patients were studied only after a long-term period (1-19 years, median 4 years) after TSS (six patients), TSS plus external pituitary irradiation (three patients) and TSS plus radiosurgery (one patient). RESULTS: In 24 patients with active Cushing's disease a significant ACTH/cortisol response (P<0.001) was induced by either desmopressin (ACTH from a baseline of 15.3+/-2.7 pmol/l to a peak of 40.9+/-7.3 pmol/l; cortisol from 673+/-59 nmol/l to 1171+/-90 nmol/l) or CRH (ACTH from a basal of 14. 2+/-2.5 pmol/l to a peak of 47.2+/-7.7 pmol/l; cortisol from 672+/-50 nmol/l to 1192+/- 80 nmol/l). In all patients a positive cortisol response to desmopressin was found. After pituitary adenomectomy the 14 'cured' patients were followed up for 1-36 months; desmopressin administration never induced ACTH or cortisol responsiveness in any patient. In contrast, a progressive recovery of ACTH and cortisol responses after CRH was observed at different intervals of time in all patients but one. Five patients, in whom the cortisol concentration only normalized after surgery, showed a persistent responsiveness to desmopressin, and two of them relapsed 12 and 24 months later. In five patients who were not cured, the hormonal responsiveness to either CRH or desmopressin was similar before and after operation. Of 10 patients studied only after long-term follow-up, six were cured and a normal response to CRH was present, whereas no changes in ACTH/cortisol concentrations were induced by desmopressin. The other four unsuccessfully operated patients underwent pituitary irradiation and showed different and equivocal hormonal responses to desmopressin and to CRH. CONCLUSIONS: During the postoperative follow-up of patients with Cushing's disease, the maintenance or the disappearance of the hormonal response may be related to the persistence or the complete removal of adenomatous corticotrophs, respectively. It is suggested that desmopressin test should be performed in the preoperative evaluation and follow-up of patients with ACTH-dependent Cushing's syndrome.
OBJECTIVE: The present study examines the LH secretory process in hyperprolactinaemic women before, during and after bromocriptine therapy, using restrictive clinical selection criteria as well as improved methodological tools. PATIENTS AND DESIGN: Six women (aged 20-40 years) with microprolactinomas (mean +/- SE prolactin, PRL: 2478 +/- 427 mU/l, range: 1370-3800 mU/l) and four age- and sex-matched healthy controls were admitted to the study. After an overnight fast, all patients and controls had blood samples withdrawn at 10 minute intervals for 6 h (during saline infusion) from 0800 h to 1400 h to determine serum LH and PRL concentrations. After baseline evaluation, patients were treated with bromocriptine, which was started at a daily dose of 1.25 mg for 7 days; the dose was then increased to 2.5 mg daily for the next 7 days and subsequently to 2.5 mg twice daily. PRL levels were evaluated at weekly intervals after the beginning of bromocriptine therapy for the duration of the study. The 6 h pulsatility study was repeated on four patients during treatment at a time when PRL levels were decreased, although not normalized (PRL range: 450-1350 mU/l) and, on four patients, with the attainment of normal serum PRL levels (PRL < 450 mU/l) in the early follicular phase of the menstrual cycle (days 2-5). The LH instantaneous secretion rate was reconstructed by a nonparametric deconvolution method. In addition to pulse analysis made using the program DETECT, the evaluation of the secretion rate yielded the pulse frequency as well as the pulse amplitude distribution. RESULTS: Each time series was submitted to deconvolution analysis using a nonparametric method in order to estimate the instantaneous secretion rate (ISR). Hyperprolactinaemic patients had very few high-amplitude LH pulses above 0.2 IU/(l minutes) before treatment (average frequency: 0.83 +/- 0.40 pulses/6 h) and at the intermediate evaluation (0.25 +/- 0.25 pulses/6 h). In both cases, the pulse frequency was significantly lower than in controls (P < 0.05 and P < 0.01, respectively). When PRL was normalized, the number of high-amplitude LH pulses (4.25 +/- 1.03 pulses/6 h), became statistically different from the pulse number before (P < 0.01) and during (P < 0.01) therapy; in particular the pulse frequency after therapy rose to a level not statistically different from that in controls. CONCLUSION: The present study shows the presence of reduced LH pulsatility in hyperprolactinaemic women that recovers completely to within the physiological distribution when PRL levels are normalized by bromocriptine therapy.
We used bioelectrical impedance analysis (BIA) as an exploratory tool to monitor the changes in body composition induced by a short-term (3-wk) weight reduction (energy-restricted diet, moderate aerobic exercise conditioning and psychological counselling) in 175 highly obese subjects (body mass index, BMI=41.7+/-5.8 kg/m2). The decrease in weight and BMI after the weight reduction program was 3.4% (geometric mean, p<0.0001) and 3.7+/-1.3 kg/m2 (mean+/-SD, p<0.0001), respectively. Bioelectrical impedance (Z) increased of about the same value at each of the measured frequencies (from 6+/-10% at 5 kHz to 5+/-9% at 100 kHz, mean+/-SD, p<0.0001). A statistically significant increase in Z5:Z100 was also seen (p<0.0001), but its clinical significance is questionable owing to its low absolute value (<1%). Taken together, these data suggest that no clinically relevant change in body water distribution occurred in our subjects as a result of the weight reduction program. However, the changes in Z did not satisfactorily predict the changes in anthropometric dimensions despite the evidence of a substantial association between Z and anthropometry both before and after the weight reduction program. Thus, accurate predictions of body composition changes in obese subjects may require more than two BIA measurements so as to have a better description of the weight-losing process.
Serum aminoterminal propeptide of type III procollagen (PIIINP) levels, a reliable marker of collagen formation, were evaluated in children (C=7) and adults with childhood-onset (CO=10) and acquired (A=18) GH deficiency (GHD) before, during and after withdrawal of rec-GH therapy (C=0.6 IU/kg/week, CO=0.5 IU/kg/week, A=0.25 IU/kg/week). The duration of treatment was 12 months for C and A and 6 months for CO; investigations were carried out before and at 3, 6, 9 and 12 months (for C and A) and at 3 and 6 months (for CO) of GH treatment and 6 months after the withdrawal of therapy (for A and CO). Data obtained from patients were compared with those recorded in two age- and sex-matched control groups. Before treatment, serum PIIINP levels were significantly lower (p<0.001) in C with GHD (mean+/-SE: 2.9+/-0.4 ng/ml) than in controls (6.1+/-0.4 ng/ml), while no significant differences were recorded between adults with CO/A-GHD (3.7+/-0.5 ng/ml and 3.4+/-0.2 ng/ml) and controls (3.2+/-0.2 ng/ml). GH treatment caused a significant increase (p<0.0001) of PIIINP levels both in C (3rd month: 4.4+/-0.2 ng/ml, 6th month: 5.1+/-0.4 ng/ml, 12th month: 5.1+/-0.5 ng/ml), CO-GHD (3rd month: 12.7+/-1.2 ng/ml; 6th month: 10.2+/-0.6 ng/ml) and A-GHD (3rd month: 10.0+/-1.0 ng/ml; 6th month: 8.4+/-0.6 ng/ml; 12th month: 7.0+/-0.7 ng/ml), the increase being dose-dependent (more marked and sustained in adults with CO-GHD). The maximal stimulation of collagen synthesis occurred after 3 months of GH treatment in adults with GHD, while a more gradual and less relevant increase was observed in C with GHD. Six months after the withdrawal of GH therapy, serum PIIINP levels of adults with CO-GHD (3.6+/-0.3 ng/ml) were similar to those recorded before treatment, while in adults with A-GHD serum PIIINP levels (2.6+/-0.2 ng/ml) were significantly lower (p<0.01) than in basal condition. In conclusion, our study shows that: a) GHD is associated with a reduction of soft tissue formation in children, while it seems to exert no relevant effects in adults with GHD; b) GH therapy causes a rapid stimulation of collagen turnover, which shows a different pattern in children and adults; c) the GH-induced stimulation of collagen synthesis is rapidly removed after the withdrawal of GH treatment. For these reasons, the determination of peripheral markers of GH effects appears useful for the monitoring of GH therapy and can contribute to assess the "tailored" substitutive dose for the individual patient.
Multiple posttranslational processes modify native PRL and result in the secretion of several PRL isoforms with different bioactivity. Since we observed that serum samples contain non-lactogenic substances able to interfere in Nb2 cell bioassay, in this study we extracted PRL molecules from sera of pregnant and non-pregnant normal adults, fetuses and patients with prolactinoma and evaluated the ability of partially purified PRL to stimulate Nb2 cell proliferation. The preliminary immunopurification of PRL samples, conferred good sensitivity and specificity to PRL biological assay. Whenever possible, bioactivity values were correlated with glycosylated-PRL levels (G-PRL), the major posttranslational modification known to reduce PRL bioactivity. The ratio of bioactive (B-) vs immunoreactive PRL (I-PRL) (B/I) in normal subjects was 0.9 +/- 0.1 (mean +/- SD), and not affected by TRH and sulpiride administration. PRL B/I ratio did not change during pregnancy, both in maternal (0.8 +/- 0.1) and fetal circulation (1.0 +/- 0.01). In patients with prolactinoma PRL B/I ratios (0.8 +/- 0.18) were in the normal range. However, in 2 women with microprolactinoma, with a clear discrepancy between high I-PRL levels and mild clinical features, a significantly reduced PRL B/I ratio was observed (0.51 +/- 0.08 and 0.52 +/- 0.1 respectively). Conversely, a woman with clear clinical features of hyperprolactinemia, but border-line elevated I-PRL levels had a PRL B/I ratio in the upper limit of normal range. No variation in G-PRL vs NG-PRL percentages was observed in all the cases studied. In conclusion, our data show that physiological and pathological conditions of hyperprolactinemia, including fetal life, are associated in the majority of cases, with the secretion of PRL molecules with unchanged mitogenic activity on Nb2 cells. Nb2 PRL bioassay may be an useful tool to explain the discrepancies between clinical features and immunoreactive PRL levels in some particular cases.
To date, physical capacity of adults with GH deficiency (GHD) has been studied in terms of muscle strength, contractile properties and aerobic performance. As a result, scanty data are available regarding the maximum anaerobic performance of these patients with reference to healthy controls. Therefore, the objective of this study was to evaluate maximum anaerobic power of adults with GHD and of age-matched controls by two methods, one testing lactacid power (w.;(c)) through a 15-s-maximal bout on a bicycle ergometer, the other testing alactic power (w.;(j)) through a vertical jump on a force platform. Absolute w.;(c)and w.;(j)values were both found to be 35% lower(P<0.04) in GHD patients than in controls. Similarly, peak pedalling velocity (V(peak)) was 21% lower (P<0.04) in patients. When w.;(c)and w.;(j)were respectively normalized for thigh and lower limb muscle plus bone volumes and V(peak)for muscle length, differences between patients and controls were no longer significant. Furthermore, the rate of power loss during the cycling bout was approximately 35% in both groups. This observation was in line with similar delta (peak minus baseline) lactate capillary blood concentrations, being 6.3 mM/l in patients and 7.5 mM/l in controls (NS). Lactacid capacity, which represents the energy extracted from lactate metabolism, normalized for body mass was similar in the two groups. In conclusion, the maximum anaerobic power that can be developed by short-statured childhood-onset GHD adults is significantly lower in terms of absolute values, but not different from that of controls once appropriately normalized. Therefore, the changes in maximum anaerobic power of GH deficient patients seem to be a consequence of their smaller muscle mass.
Explore the source record for details and available documents.
The mechanism of action of the synthetic growth hormone (GH)releasing peptide hexarelin is not yet fully understood. Although a direct effect on pituitary cells has been demonstrated, the peptide is also active at hypothalamic level, where specific binding sites have been found. The observation that hexarelin acts synergistically with GH-releasing hormone (GHRH) in releasing GH has suggested that it might suppress endogenous somatostatin secretion. As somatostatin is also inhibitory on TSH secretion, to verify the occurrence of modifications of the somatostatinergic tone induced by hexarelin, we studied its effects on TRH-induced TSH secretion. Seven normal subjects (4 women and 3 men aged 24-29 years) underwent the following tests on 3 different days: a) TRH (200 micrograms/l i.v.) + placebo; b) hexarelin (1 microgram/Kg bw i.v.) + placebo c) combined TRH + hexarelin administration. Hexarelin induced significant and similar increases in serum GH levels when given in combination either with placebo or with TRH (1217 +/- 470 vs 986 +/- 208 micrograms/min/l p:NS), while no modifications of GH levels were seen after TRH + placebo. Serum TSH levels were unmodified by hexarelin + placebo injection. The TSH increase elicited by hexarelin + TRH was superimposable to that elicited by TRH + placebo (1124 +/- 530 and 1273 +/- 380 mU/min/l respectively). Circulating PRL levels slightly increased after hexarelin + placebo too (897 micrograms/min/l), and the PRL response to hexarelin + TRH was slightly, although not significantly, greater than that observed after TRH + placebo (2680 +/- 1517 and 2243 +/- 1108 micrograms/min/l, respectively). In conclusion, our data show that hexarelin does not alter basal and TRH-stimulated TSH secretion, thus suggesting that it does not inhibit somatostatin release. Furthermore a modest PRL-releasing effect of this peptide has been confirmed.
Because of its ability to cause the release of thyrotropin (TSH), prolactin (PRL), and, under particular circumstances, also of other adenohypopyseal hormones, from the pituitary, thyrotropin-releasing hormone (TRH) has been widely used as a diagnostic tool for about 30 years. The recent introduction of an ultrasensitive TSH assay, able to clearly distinguish suppressed from unsuppressed TSH levels, has rendered the use of the TRH test obsolete in the diagnosis of classic hyperthyroidism. On the contrary, the TRH test is still extremely useful in hyperthyroid patients with inappropriate secretion of thyrotropin, allowing the distinction between TSH-secreting pituitary tumors (usually unresponsive) and the pituitary variant of resistance to thyroid hormone (PRTH) syndrome (always responsive). In hypothyroidism, the TRH test is still of value in patients with preclinical primary hypothyroidism, as they show exaggerated TSH response, and in those with central hypothyroidism, allowing the differentiation between pituitary (secondary) and hypothalamic (tertiary) hypothyroidism. The availability of high-resolution imaging techniques such as magnetic resonance has rendered the use of the TRH test obsolete, to distinguish microprolactionomas from functional hyperprolactinemia. The TRH test still has great clinical value in the follow-up of patients with pituitary tumors (in particular somatotropinomas and clinically nonfunctioning pituitary adenomas) showing abnormal responses of anterior pituitary hormones other than TSH.