Search PubMed⌕ Search

Biomedical subjects

G Saggese

Publications and source records attributed to G Saggese.

At least 55 records · Page 3Linked to original sources

Changes of serum allopregnanolone levels in the first 2 years of life and during pubertal development.

Allopregnanolone is the best characterized among neurosteroids, and its role in the control of neuroendocrine axes has attracted increasing interest recently. However, there is no available information about circulating levels of allopregnanolone during infancy, childhood and puberty. We studied two groups of children: 1) those aged between 0 and 2 y (n = 72), and 2) those aged between 6 and 18 y, at different Tanner's stages (n = 82). In each of these patients, serum allopregnanolone, progesterone, cortisol, and dehydroepiandrosterone levels were evaluated after informed consent; allopregnanolone was measured by RIA after acid extraction on cartridge. There was no significant variation of serum allopregnanolone levels either in male and female children during the first 2 y of life. Furthermore, although serum dehydroepiandrosterone levels showed a significant decrease, inversely correlated with age of the children (p < 0.01), serum cortisol and progesterone levels showed a significant age-related increase during the first 2 y of life. Cortisol and allopregnanolone levels were positively correlated (p < 0.01). During puberty, we observed a progressive increase in serum allopregnanolone levels in both boys and in girls, which were higher at Tanner' s stage IV-V (0.7+/-0.01 nM; mean +/- SEM) than at stages I-II (0.32+/-0.02 nM; p < 0.01); mean levels were significantly higher at puberty than in the first 2 y of life (p < 0.01). Furthermore, during puberty, serum progesterone and dehydroepiandrosterone levels also increased progressively with age in both boys and girls. Allopregnanolone and dehydroepiandrosterone levels were positively correlated throughout puberty. The present results indicate that serum allopregnanolone levels do not change during the first 2 y of life but increase during pubertal development, suggesting that this steroid may be involved in the adaptive neuroendocrine mechanisms related to puberty.

Adolescent↗

A limited repertoire of mutations of the luteinizing hormone (LH) receptor gene in familial and sporadic patients with male LH-independent precocious puberty.

Herein, we report mutation analysis of the LH receptor gene in 17 males with LH-independent precocious puberty, of which 8 were familial and 9 had a negative family history. A total of 7 different mutations (all previously reported) were detected in 12 patients. Among 10 European familial male-limited precocious puberty (FMPP) patients who had a LH receptor gene mutation, none had the Asp578Gly mutation, which is responsible for the vast majority of cases in the U.S. The restricted number of activating mutations of the LH receptor observed in this and other studies of FMPP strongly suggests that an activating phenotype is associated with very specific sites in the receptor protein. Clinical follow-up of the 5 patients who did not have LH receptor mutations shows that such cases most likely do not have true FMPP. LH receptor mutation analysis provides a sensitive tool for distinguishing true FMPP from other causes of early-onset LH-independent puberty in males.

Amino Acid Sequence↗

Management of puberty in growth hormone deficient children.

The pubertal growth spurt accounts for approximately one-eighth of adult height and is regulated by complex hormonal interactions involving the somatotropic and gonadal axes. The observation that children with growth hormone deficiency (GHD) may fail to achieve an appropriate pubertal growth spurt led to the development of strategies to optimize GH therapy during puberty. In one strategy the dosage of GH is increased during puberty to support pubertal growth and in keeping with the physiological increase in serum levels of the hormone seen at that age. A different approach is to combine a GnRH analog (GnRHa) to GH to stop pubertal development, delaying epiphyseal fusion and prolonging peripubertal growth. Both strategies require caution. As regards the first strategy, too high doses of GH may shorten the pubertal time for growth; we found a small, nonsignificant, improvement in final height by increasing the dose by less than half. Preliminary results on the second strategy are more encouraging. However, manipulation of puberty should be limited to selected patients who show a statural height SDS for bone age unfavorable in terms of height prognosis.

Adolescent↗

Effect of central precocious puberty and gonadotropin-releasing hormone analogue treatment on peak bone mass and final height in females.

UNLABELLED: To evaluate the effect of central precocious puberty (CPP) and its treatment with gonadotropin-releasing hormone (GnRH) analogues on final height and peak bone mass (PBM), we measured lumbar bone mineral density (BMD) in 23 girls at final height. Patients were distributed in two groups. Group 1: 14 patients with progressive CPP were treated with GnRH analogues; seven patients received buserelin (1600 microg/daily), subsequently switched to depot triptorelin (60 microg/kg/26-28 days); seven patients were treated with depot triptorelin (60 microg/kg/26-28 days); mean age of treatment was 6.2 years (range 2.7-7.8 years); the treatment was discontinued at the mean age of 10.1 years (range 8.7-11.3 years); final height was reached at the mean age 13.4 years (range 12.0-14.9 years). Group 2: 9 patients (mean age 6.5 years, range 4.8-7.7 years) with a slowly progressing variant of CPP were followed without treatment; final height was reached at the mean age 13.6 years (range 12.5-14.8 years). Lumbar BMD (L2-L4 by dual energy X-ray absorptiometry) was measured in all patients at final height. In group 1, final height (158.9+/-5.4 cm) was significantly greater than the pre-treatment predicted height (153.5+/-7.2 cm, P < 0.001), but significantly lower than mid-parental height (163.2+/-6.2 cm, P < 0.005). Subdividing the girls of group 1 according to the bone age at discontinuation of therapy (i.e. < or =11.5 years, n=5, or > or =12.0 years, n=9), the former patients had a final height significantly higher than the latter (163.7+/-3.9 cm vs 156.5+/-4.6 cm, P < 0.02). In group 2, final height (161.8+/-4.6 cm) was similar to the pre-treatment predicted height (163.1+/-6.2 cm, P=NS) and was not significantly different from mid-parental height (161.0+/-5.9 cm). BMD values (group 1: 1.11+/-0.14 g/cm2, group 2: 1.22+/-0.08 g/cm2) were not significantly different from those of a control group (1.18+/-0.10 g/cm; n=20, age 16.3-20.5 years) and the patients' mothers (group 1: 1.16+/-0.07 g/cm2, n=11, age 32.9-45.1 years; group 2: 1.20+/-0.08 g/cm2, n=7, age 33.5-46.5 years). In group 1, the girls who stopped therapy at a bone age < or =11.5 years had significantly higher BMD (1.22+/-0.10 g/cm2) compared to those who discontinued therapy at a bone age > or =12.0 years (1.04+/-0.12 g/ cm2, P < 0.05). CONCLUSION: In girls with progressive CPP, long-term treatment with GnRH analogues improves final height. A subset of patients with CPP does not require treatment because good statural outcome (slowly progressing variant). In CPP, the abnormal onset of puberty and the long-term GnRH analogue treatment do not impair the achievement of PBM. In GnRH treated patients, the discontinuation of therapy at an appropriate bone age for pubertal onset may improve both final height and PBM.

Adolescent↗

[Growth hormone treatment of familial hypophosphatemic rickets].

X-linked hypophosphatemic rickets (XLHR) is frequently associated with growth retardation and short adult stature, even with an appropriate conventional treatment associating phosphate and calcitriol or 1 alpha-hydroxyvitamin D. Its pathogenesis is unclear; growth hormone (GH) secretion is usually normal. Six children with XLHR and growth retardation were treated with GH during 6 years. In addition, they received the conventional treatment. At the beginning of the treatment mean age was 7.8 +/- 1.8 years, and height mean Z score was -3.4 +/- 0.5. A control group was composed of six children with XLHR (age: 7.9 +/- 2.5 years) receiving the conventional treatment only. Under GH treatment statural growth was improved, with significant increase in Z score and predicted adult height; the height gain was significantly higher in the GH treated group as compared with the group receiving the conventional treatment only. In addition, radial bone mineral density increased significantly under GH treatment. GH treatment thus appears to be a useful treatment to improve statural growth in children with XLHR.

Adult↗

[Effect of hormonal treatment on bone mineralization in Turner syndrome].

A review of the literature together with personal results show that both growth hormone (GH) and estrogen treatments improve bone mineral density (BMD) in patients with Turner syndrome. Insofar as GH treatment alone appears to normalize BMD in girls with Turner syndrome it is suggested that substitutive estrogen treatment could be delayed in order to guarantee optimal result for their statural growth, without affecting the quality of their bone mineralization.

Adolescent↗

Androgens and fetal growth.

Boys are heavier than girls at term birth. Children with a 46,XY karyotype and androgen insensitivity syndrome (clinically complete form and/or proven mutations in the androgen receptor gene) were found to have a birth weight comparable to that of girls. These findings support the hypothesis that the difference in birth weight between boys and girls is generated by androgen action.

Androgen-Insensitivity Syndrome↗

Altered bone mineral density in patients with complete androgen insensitivity syndrome.

Androgens have major influences on the regulation of bone mineralization. Because of their unique peripheral metabolism androgens may act on bone via activation of the androgen and/or estrogen receptor. Patients with complete androgen insensitivity syndrome (cAIS) are natural models to assess androgen actions on bone. We studied bone mineral density (BMD) in 10 patients with cAIS (mean age 13.70, range 4.7-19.8 years); 3 patients were studied before gonadectomy; the others were castrated and 6 were on hormonal replacement therapy. The BMD area (aBMD) was measured by dual energy X-ray; lumbar 'apparent' volumetric density (vBMD) was calculated using the formula vBMD = aBMD x [4/(pi x width)]. In the patients, aBMD (0.72 +/- 0.16 g/cm2) and vBMD (0.23 +/- 0.04 g/cm3) were significantly (p < 0.001) reduced in comparison with those of a control group (n = 15, age 5.0-20.5 years: aBMD 1.028 +/- 0.20 g/cm2; vBMD 0.35 +/- 0.04 g/cm3). Both aBMD and vBMD were also reduced in comparison with normal values for males (aBMD -2.66 +/- 0. 99 SDS, p < 0.001; vBMD -3.08 +/- 1.53 SDS, p < 0.0005) and females (aBMD -2.88 +/- 1.05 SDS, p < 0.001; vBMD -2.84 +/- 1.18 SDS, p < 0. 0007). Real lumbar bone density, assessed by computed tomography in 1 patient, was also reduced (-6.2 SDS and -3.5 SDS for male and female normal values, respectively). Biochemical markers of bone metabolism were normal and not significantly different in patients and controls. Girls with cAIS did not have more fractures than controls. In conclusion, both aBMD and vBMD are reduced in cAIS patients, while bone turnover and the fracture risk seem not to be increased. Our data indicate that both androgens and estrogens may be required for acquisition of bone density during childhood.

Absorptiometry, Photon↗

Diagnosis and treatment of growth hormone deficiency in children and adolescents: towards a consensus. Ten years after the Availability of Recombinant Human Growth Hormone Workshop held in Pisa, Italy, 27-28 March 1998.

This article summarizes the content of an international workshop on the diagnosis and treatment of growth hormone deficiency (GHD) in children and adolescents that was held in Pisa, Italy, in March 1998. The issues discussed are divided into those addressing the definition and diagnosis, and the treatment of GHD in children and adolescents, and those concerning the transition of patients with GHD from adolescence to adulthood. Recommendations are presented for improving the diagnosis and management of children and adolescents with GHD and issues are highlighted that require further studies to be undertaken before recommendations can be made.

Adolescent↗

Normal volumetric bone mineral density and bone turnover in young men with histories of constitutional delay of puberty.

It has been suggested that an appropriate timing of puberty is necessary for normal bone mineral density (BMD) acquisition, which may not be achievable in children with constitutional delay of puberty (CDP). To assess the effect of pubertal delay on BMD, we measured areal BMD (aBMD) at lumbar spine, by dual-energy x-ray absorptiometry (DEXA), in a group of patients with CDP (n=21; mean age, 21.8+/-1.7 yr) at final height and in healthy controls (n=12; mean age, 19.3+/-1.3 yr). A subset of seven patients (group a) were untreated, whereas six subjects (group b) had received im testosterone depot (100 mg/month, for 6-12 months) and 8 boys (group c) oral oxandrolone (1.25-2.5 mg/daily, for 6-28 months) for their pubertal delay. Volumetric BMD (vBMD) was calculated from DEXA measurements. aBMD was reduced in patients with CDP (1.101+/-0.134 g/cm2), in comparison with controls (1.222+/-0.091 g/cm2; P < 0.009); no significant differences were found among the groups (group a, 1.089+/-0.133 g/cm2; group b, 1.111+/-0.118 g/cm2; group c, 1.103+/-0.160 g/cm2). vBMD was not significantly different in patients with CDP (0.327+/-0.021 g/cm3) and in controls (0.337+/-0.017 g/cm3; P= not significant); no significant differences were found among the groups (group a, 0.326+/-0.016 g/cm3; group b, 0.332+/-0.022 g/cm3; group c, 0.330+/-0.021 g/cm3). No differences were found in mineral metabolism and in bone markers between patients and controls; patients did not report an increased fracture rate, compared with controls. Our data indicate that: 1) men with CDP have normal vBMD; 2) the reduced aBMD may be the result of uncritical use of DEXA measurements in subjects with altered growth pattern; and 3) androgen administration during pubertal years did not improve BMD in young men with a history of CDP.

Absorptiometry, Photon↗

Measurement of volumetric bone mineral density accurately determines degree of lumbar undermineralization in children with growth hormone deficiency.

The effect of anthropometric variables and bone size on bone mineral density (BMD) was examined in 22 children with GH deficiency (GHD) aged 6.1-8.0 yr at diagnosis and in 40 sex- and chronological age-matched controls. In all patients and controls, bone mineral content (BMC), BMDarea and BMD corrected for the apparent bone volume (BMDvolume) were measured by dual-energy x-ray absorptiometry in the lumbar spine at L2-L4 level. In patients, BMDarea was corrected for body height (BMDheight), body mass index (BMDBMI), and bone age (BMDBA). Patients showed significantly reduced (P < 0.0001) BMC (males 11.55 +/- 0.71 g, females 10.13 +/- 1.48 g) and BMDarea (males 0.502 +/- 0.033 g/cm2, females 0.515 +/- 0.034 g/cm2) compared with controls (BMC: males 18.09 +/- 1.23 g, females 15.58 +/- 1.87 g; BMDarea: males 0.689 +/- 0.065 g/cm2, females 0.685 +/- 0.059 g/cm2). In patients, BMDheight (males 0.537 +/- 0.031 g/cm2, females 0.548 +/- 0.032 g/cm2) and BMDBMI (males 0.641 +/- 0.028 g/cm2, females 0.624 +/- 0.035 g/cm2) remained significantly lower (P < 0.02 to P < 0.0001) than BMDarea of controls. BMDBA of patients was significantly reduced (-1.49 +/- 0.51 Z score, P < 0.0001) in comparison with bone age-matched controls (n = 35). BMDvolume was significantly lower (P < 0.01 to P < 0.0005) in patients (males 0.268 +/- 0.006 g/cm3, females 0.276 +/- 0.010 g/cm3) compared with chronological age-matched controls (males 0.283 +/- 0.013 g/cm3, females 0.293 +/- 0.017 g/cm3). Mean bone volume of patients was affected to a greater extent than bone area (-2.36 +/- 0.49 Z score and -1.56 +/- 0.70 Z score, respectively). Bone area/bone volume ratio was significantly higher in patients than in chronological age-matched controls (0.53 +/- 0.02 and 0.42 +/- 0.08, P < 0.0001, respectively). Chronological age, body height, BMI, and bone age correlated significantly with BMDarea (r2 = 0.389-0.450, P < 0.002 to P < 0.001) but not with BMDvolume (P = not significant). The results show that anthropometric variables and bone size affect lumbar BMC and BMDarea in children with GHD. Reduced lumbar BMDvolume indicates that apparent true bone density is decreased in children with GHD, suggesting a role of GH in bone mineralization.

Absorptiometry, Photon↗

Androgen-receptor blockade does not impair bone mineral density in adolescent females.

The effect of peripheral androgen hypersensitivity on bone mineral density (BMD) was investigated in a group of adolescent women with idiopathic hirsutism (n = 17; mean age 17.0 +/- 1.7 years). The effect of long-term androgen-receptor blockade with flutamide (500 mg daily in two divided doses for 12 months) on BMD was assessed too. BMD was measured at lumbar spine (L2-L4) by a dual energy X-ray densitometer. Before flutamide treatment, patient BMD (1.14 +/- 0.07 g/cm2) was not significantly different from that of the control group (1.16 +/- 0.12 g/cm2, n = 22), and was normal for age and sex (BMD 0.14 +/- 0.69 SDS, P = NS vs. 0). After 12 months of treatment, absolute BMD in patients increased (1.18 +/- 0.08 g/cm2, P < 0.002), but SDS BMD did not change (0.21 +/- 0.72, P = NS vs. baseline). Flutamide treatment determined a clinical, marked improvement of androgen hypersensitivity (Ferriman-Gallwey score: before 22.0 +/- 6.2; 6 months: 13.2 +/- 6.4, P < 0.003; 12 months; 7.6 +/- 4.1, P < 0. 001; acne score: before 3.8 +/- 0.8; 3 months 0.8 +/- 0.5, P < 0. 001; later disappeared). The serum levels of 3alpha-androstenediol-glucoronide decreased (before: 8.6 +/- 1.1 microg/liter; 12 months: 7.2 +/- 1.0 microg/liter, P < 0.02), whereas the other endocrinological parameters did not change. No relationship was found between BMD and clinical or biochemical parameters of hyperandrogenism. We concluded that in adolescent women, peripheral hyperandrogenism is not associated with abnormal BMD; long-term treatment with flutamide, which blocks the androgen receptor, does not alter their BMD.

Absorptiometry, Photon↗

Effect of celiac disease and gluten-free diet on growth hormone-binding protein, insulin-like growth factor-I, and insulin-like growth factor-binding proteins.

Failure to thrive is common in children with celiac disease. As alterations in the growth hormone-insulin-like growth factor I (GH-IGF-I) growth axis have been reported in these patients, we studied the behavior of growth hormone-binding proteins (GH-BPs I and II), IGF-I and its binding proteins in 14 children with celiac disease, either before or after a 6-month gluten-free diet. GH-BP II levels were significantly lower in patients during the active phase of the disease than after the diet or in comparison with control subjects, appropriate for age and sex. There was no difference in the GH-BP-I levels of patients and controls, nor did they change after the diet. Blood levels of IGF-I and IGFBP-3 were reduced before the diet in all patients while ligand blotting showed that IGFBP-2 and 1 were increased. All of these parameters normalized after the gluten-free diet. IGFBP-4 was not greatly influenced by the disease. Furthermore, we found a significant, positive correlation between GH-BP II and IGF-I or IGFBP-3 levels. The height standard deviation scores and body mass indices of the patients improved significantly after the diet. The body mass index significantly and positively correlated with GH-BP II, IGF-I or IGFBP-3 levels. In conclusion, our data show that celiac children had multiple alterations in the growth axis during the active phase of the disease which disappeared during the gluten-free diet.

Body Height↗

Long-term outcome of male-limited gonadotropin-independent precocious puberty.

Long-term outcome of five new cases of male-limited precocious puberty (MPP) is reported. Three patients had positive family history. One patient was untreated; 2 boys received cyproterone acetate (2.0-3.6 mg/kg/daily) without clinical effects. Two patients were treated with ketoconazole (600 mg/daily); in 1, GnRH analogue therapy (Buserelin, 1,600 microg/day) was added after 6 months of effective ketoconazole treatment for development of central precocious puberty. The other patient did not develop central puberty under ketoconazole treatment and improved his predicted adult height from 172.4 to 181.1 cm. Four patients reached final height [B.A. (therapy cyproterone acetate): age 22.0 years, -2.0 SDS; B.G. (untreated): age 15.5 years, -1.7 SDS; M.M. (therapy cyproterone acetate): age 19.5 years, -1.6 SDS; M.F. (therapy ketoconazole plus GnRH analogue): age 21.3 years, -2.2 SDS]; three had reduced testicular volume (B.A.: -1.6/-1.6 SDS; B.G.: -2.1/-2.1 SDS; M.F.: -2.4/-1.9 SDS); one (M.F.) showed oligospermia. We concluded that in MPP cyproterone acetate treatment did not improve final height; ketoconazole was effective in reducing testosterone secretion, but its real effect on final height cannot be determined; the timing of central puberty may be precocious, suggesting that an adjunctive GnRH analogue treatment may be needed. In some patients, testicular impairment may be present in young adulthood.

Androgen Antagonists↗

Sex steroids and the acquisition of bone mass.

Bone mineralization increases with age, height and weight through childhood, with a significant gain during pubertal development. Approximately 37% of bone mass is accumulated between pubertal stages 2-5. The factors driving the pubertal increase of bone mass is not fully known, but a crucial role is played by the sex steroids. Patients with central precocious puberty show an increased bone mineral density (BMD) for their chronological age, but appropriate for their bone age and pubertal stage. In girls and boys with hypogonadism, as well as in constitutional delay of puberty, the 'tempo' of puberty seems to be another important determinant of peak bone mass. Hypogonadal patients increase their BMD when treated in adulthood with sex steroid substitutive therapy, but normal adult BMD values are not reached. If these patients start sex steroid therapy at the appropriate age for the onset of pubertal development, however, a greater increase in BMD occurs. Both oestrogen and androgen receptors have been demonstrated in bone cells. Patients with oestrogen resistance or aromatase deficiency had a severely undermineralized skeleton. Reduced area and volume BMD are also present in patients with complete androgen resistant syndrome compared to normal. The pubertal increase of BMD may be the result of the coordinated activation of oestrogen and androgen receptors at the bone level in both sexes. In conclusion, the gonadal secretion of sex steroids, the tempo of puberty, and the normal function of both oestrogen and androgen receptors seem to be important factors in the acquisition of bone mass.

Adult↗

Biochemical selection of prepubertal patients with androgen insensitivity syndrome by sex hormone-binding globulin response to the human chorionic gonadotropin test.

Before puberty, the diagnosis of androgen insensitivity syndrome (AIS) can be difficult. We studied whether the decrease of sex hormone-binding globulin (SHBG) during the human chorionic gonadotropin (hCG) test may represent a biochemical test to select prepubertal patients with AIS. We examined prepubertal patients with AIS (n = 9, age 0.9-8.2 y), male pseudohermaphroditism not due to AIS (other-MPH) (n = 8, age 0.6-10.7 y), and control boys (n = 12, age 0.8-12.5 y). Testosterone and SHBG levels (mean +/- SD) were measured before (d 0) and after (d 5) a hCG test (1500 IU X 3 d). Testosterone levels (nmol/L) increased in all groups [AIS: from 1.5 +/- 1.2 to 22.1 +/- 11.8 (p < 0.001); other-MPH: from 0.6 +/- 0.6 to 9.2 +/- 7.4 (p < 0.02); controls: from 1.8 +/- 1.4 to 22.8 +/- 14.4 (p < 0.001)]. SHBG concentrations (nmol/L) did not change in AIS [from 66.2 +/- 15.1 to 67.5 +/- 18.6 (p = NS), delta-variation 1.7 +/- 12.7%], whereas they were significantly decreased in other-MPH [from 59.9 +/- 14.2 to 46.5 +/- 18.6 (p < 0.005), delta-variation -23.7 +/- 19.6%] and controls [from 63.0 +/- 16.9 to 33.7 +/- 14.6 (p < 0.003), delta-variation -46.9 +/- 15.2%]. Our data suggest that the SHBG changes during the hCG test can be used to assess in vivo the biologic response to androgens in prepubertal patients with ambiguous genitalia, selecting those patients in whom it is worth performing second level investigations to confirm the AIS diagnosis.

Androgens↗