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Biomedical subjects

Mariacarolina Salerno

Publications and source records attributed to Mariacarolina Salerno.

15 recordsLinked to original sources

Growth hormone deficiency in a patient with lysinuric protein intolerance.

INTRODUCTION: Lysinuric protein intolerance (LPI; MIM 222700) is a rare, autosomal recessive metabolic disorder caused by mutations in the SLC7A7 gene, which encodes the light chain of the cationic amino acids (CAA) transporter y+. The clinical presentation of LPI includes gastrointestinal symptoms, failure to thrive, episodes of coma, hepatosplenomegaly and osteoporosis. However, other findings have also been reported, and these suggest a multisystem involvement. DISCUSSION: We report a girl with confirmed LPI who presented with severe short stature that was unresponsive to adequate LPI treatment. The girl was found to have a classic growth hormone deficiency (GHD) and responded well to growth hormone (GH) replacement therapy. CONCLUSION: While it is not known whether the mechanisms involved in the GHD of our patient are related to LPI, this case suggests that GH/IGF-I axis should be investigated in LPI children with persistent growth failure.

Amino Acid Metabolism, Inborn Errors↗

Antipituitary antibodies recognizing growth hormone (GH)-producing cells in children with idiopathic GH deficiency and in children with idiopathic short stature.

CONTEXT: Antipituitary antibodies (APA) recognizing GH-secreting cells may indicate an autoimmune pituitary involvement in adults with idiopathic GH deficiency (IGHD). OBJECTIVE: We aimed 1) to investigate the presence of APA in prepubertal children with IGHD or idiopathic short stature (ISS), identifying the pituitary hormone-producing cells targeted by APA; and 2) to verify whether in patients with ISS the presence of APA could predict the development of GHD. DESIGN: We performed a cross-sectional and partially longitudinal cohort study. SETTING: The study was performed at the Endocrinology Unit and Pediatric Unit of the Second University and University Federico II of Naples, respectively. PATIENTS: Twenty-six children with IGHD (group 1), 60 children with ISS (group 2), 33 children with GHD caused by lesions/abnormalities of the hypothalamus or pituitary (group 3), and 40 controls participated in the study. Nineteen children of group 2 were reevaluated after 2 yr. MAIN OUTCOME MEASURES: IGF-I levels, GH secretion, and APA (by indirect immunofluorescence) were evaluated in all participants. RESULTS: At study entry, APA recognizing GH-producing cells were detected in seven of 26 children in group 1 and in 14 of 60 in group 2. Two years later, all eight initially APA-positive and all 11 APA-negative of the 19 reevaluated patients persisted positive and negative, respectively. The reevaluation of GH secretion in these patients revealed the development of GHD in all but one of the APA-positive children but in none of the APA-negative ones. CONCLUSIONS: IGHD in children can be frequently associated with APA targeting GH-secreting cells; thus, the detection of APA in children with ISS could identify those prone to develop GHD.

Animals↗

Improvement of cardiac performance and cardiovascular risk factors in children with GH deficiency after two years of GH replacement therapy: an observational, open, prospective, case-control study.

CONTEXT: GH deficiency (GHD) in adults is associated with a cluster of cardiovascular risk factors that may contribute to an increased mortality for cardiovascular disease. OBJECTIVE: The aim of this study was to evaluate the effect of GHD and GH replacement therapy on cardiac performance, lipid profile, and insulin resistance in children. DESIGN: This was a 2-yr case-control prospective study. PATIENTS: Thirty children with GHD aged 9.3 +/- 0.5 yr and 30 healthy matched controls were studied. INTERVENTION: Children were studied before and after 1 and 2 yr of GH replacement (GHD children) or no treatment (controls). MAIN OUTCOME MEASURES: Lipid profile, serum insulin levels, homeostasis model of assessment (HOMA) index, and left ventricular (LV) mass and function by echocardiography were the main outcome measures. RESULTS: At study entry, the LV mass index was significantly lower in GHD children (50.2 +/- 1.7) than in controls (60.3 +/- 2.5 g/m(2); P < 0.002), whereas LV systolic and diastolic function, lipid profile, insulin levels, and HOMA index were similar. In GHD children LV mass index significantly increased (66.3 +/- 2.4 g/m(2); P < 0.0001) after 1 yr of GH replacement and remained stable thereafter. LV systolic and diastolic function did not change during treatment. After 2 yr of GH replacement, total cholesterol (P < 0.007) and the atherogenic index (P < 0.0001) significantly decreased, whereas fasting insulin levels (P < 0.001) and HOMA index (P < 0.0001) significantly increased compared with both pretreatment and control values. CONCLUSIONS: GHD in children is associated with a reduced cardiac size but with a normal cardiac function, lipid profile, and insulin sensitivity. Two years of GH replacement normalizes cardiac morphology, improves lipid profile, and slightly impairs insulin sensitivity.

Cardiovascular Diseases↗

Factors predicting final height in early treated congenital hypothyroid patients.

OBJECTIVE: To evaluate pubertal development and final height (FH) in early treated patients with congenital hypothyroidism (CH) and to identify the main factors predicting FH. DESIGN: Retrospective. PATIENTS: Eighty-five patients with early diagnosed and treated CH. MEASUREMENTS: Evaluation of length/height at diagnosis (mean age 26.6 days), at onset of puberty, and at the end of linear growth. RESULTS: Mean FH was 161.7 cm in females and 173.8 cm in males, within +/- 0.9 cm of the 50th percentile of Italian growth charts, 5 cm higher than the mean target height (TH). Linear growth did not differ according to thyroid imaging findings. In males, height at onset of puberty was 0.16 standard deviation score (SDS), not statistically different from FH (-0.09 SDS). In females, height both at onset of puberty (0.39 SDS) and at menarche (0.57 SDS) was significantly higher (P < 0.001) than FH (-0.10 SDS). Puberty started at a mean chronological age of 10.2 and 11.6 years in females and males, respectively, with a corresponding bone age. FH correlated with TH and height at diagnosis, at onset of puberty, and at menarche. Multiple regression analysis showed that height at onset of puberty and TH are the most important factors explaining FH variability, although height at onset of puberty is slightly more important. CONCLUSIONS: Our results, obtained in the largest reported available group of congenital hypothyroid patients, show that final height is higher than target height in both sexes and that height at onset of puberty is the main factor affecting final height.

Age Determination by Skeleton↗

Common carotid intima-media thickness in growth hormone (GH)-deficient adolescents: a prospective study after GH withdrawal and restarting GH replacement.

We prospectively investigated the risk of early atherosclerosis, by classical cardiovascular risk factors and intima-media thickness (IMT) at the common carotid arteries, in 23 adolescents diagnosed as GH deficient (GHD) during childhood and in 23 healthy sex-, age-, and BMI-matched controls. Measurements were performed in all subjects before stopping GH replacement. Because the diagnosis of GHD had been confirmed in 15 of the 23 adolescents, the protocol changed according to the diagnosis as follows: measurements were repeated after 6 months of GH withdrawal and 6 months of GH reinstitution in the 15 with GHD, and after 6 and 12 months of GH withdrawal, measurements were also taken in the eight non-GHD subjects. Serum IGF-I levels were in the normal range for age in all patients before GH withdrawal. When compared with controls, before GH withdrawal, GHD adolescents had reduced high-density lipoprotein cholesterol levels and increased total/high-density lipoprotein cholesterol ratio, fibrinogen, low-density lipoprotein cholesterol, and glucose levels; non-GHD adolescents had increased glucose, insulin, and homeostasis model assessment score. IMT at the common carotid arteries was similar in GHD and controls (0.52 +/- 0.03 vs. 0.55 +/- 0.06 mm; P = 0.23) and was higher in non-GHD than in controls (0.62 +/- 0.03 vs. 0.54 +/- 0.06 mm; P = 0.01). In GHD adolescents, 6 months of GH treatment withdrawal and 6 months of GH treatment reinstitution modified IGF-I levels, lipid profile, and insulin resistance but not IMT or systolic and diastolic peak velocities at the common carotid arteries. In non-GHD subjects, 12 months of GH treatment withdrawal significantly decreased IGF-I levels, IMT (to 0.54 +/- 0.06 mm; P < 0.001 vs. baseline), systolic and diastolic peak velocities, and improved insulin resistance. In conclusion, the discontinuation of GH in confirmed GHD adolescents is not followed by significant alterations of the common carotid arteries, despite the profound negative alterations of the lipid profile. In adolescents who were not confirmed to have GHD, IMT was increased while on GH therapy and normalized when they were taken off of GH.

Adolescent↗

Androgen insensitivity syndrome: somatic mosaicism of the androgen receptor in seven families and consequences for sex assignment and genetic counseling.

Androgen insensitivity syndrome (AIS) is caused by numerous mutations of the androgen receptor (AR) gene. The phenotype may range from partial AIS (PAIS) with ambiguous genitalia to complete AIS (CAIS) with female genitalia. In 70% of the cases, AR mutations are transmitted in an X-linked recessive manner through the carrier mothers, but in 30%, the mutations arise de novo. When de novo mutations occur after the zygotic stage, they result in somatic mosaicisms, which are an important consideration for both virilization in later life-because both mutant and wild-type receptors are expressed-and genetic counseling. We report here six patients with AIS due to somatic mutations of the AR and one mother with somatic mosaicism who transmitted the mutation twice. Of the four patients with PAIS, three presented spontaneous or induced virilization at birth or puberty. These cases underline the crucial role of the remnant wild-type AR for virilization because the same mutations, when they are inherited, lead to CAIS. We also report two novel mutations of the AR, with somatic mosaicism, detected in patients with CAIS. Thus, the remnant wild-type receptor does not always lead to virilization. In one of these patients, a high ratio of wild-type to mutant AR expression was found in the gonads and genital skin fibroblasts. Although no prenatal virilization occurred, the possibility of virilization at puberty could not be excluded, and early gonadectomy was performed. A seventh patient had a CAIS with a novel germline AR mutation. The mutation was inherited from the mother, in whom mosaicism was detected in blood and who transmitted the mutation to a second, XX, offspring. The detection of somatic AR mutations is particularly important for the clinical management and genetic counseling of patients with AIS. Before definite sex assignment, a testosterone treatment trial should be performed in all patients with PAIS, but it becomes crucial when an AR mosaicism has been detected. In patients with CAIS or severe PAIS raised as female, there is no consensus about when (early childhood or puberty) gonadectomy should be performed. When somatic AR mutations are detected, however, gonadectomy should be performed earlier because of the risk of virilization during puberty. When a germline de novo mutation is identified in the index case, the risk of transmission to a second child due to a possible germ cell mosaicism in the mother cannot be excluded. However, given the high number of AR de novo mutations and the rarity of such reports, this risk appears to be very low.

Adolescent↗

Left ventricular mass and function in children with GH deficiency before and during 12 months GH replacement therapy.

OBJECTIVE: This open, prospective study was designed to evaluate the effect of GH deficiency (GHD) on left ventricular (LV) mass (LVM) and performance, by echocardiography, and on lipid profile during childhood. SUBJECTS: Twelve prepubertal children with GHD (eight boys and four girls) aged 8.1 +/- 1.7 years were studied before and after 6 and 12 months of GH replacement therapy at a dose of GH of 30 micro g/kg/day. Twelve healthy children sex-, height-, weight- and body surface area-matched with the patients, served as controls. METHODS: Echocardiography was performed at study entry and after 12 months both in GHD children and in controls. Only in GHD children, echocardiography was repeated also after 6 months of GH replacement. In all subjects, we measured LV posterior wall thickness (LVPWT), LV end-diastolic diameter (LVEDD), LVM index (LVMi), LV systolic and diastolic function. RESULTS: At study entry, LVPWT (5.3 +/- 0.8 vs. 6.2 +/- 1.1 mm, P < 0.05), LVEDD (34.0 +/- 2.4 vs. 36.7 +/- 2.1 mm, P < 0.007) and LVMi (47.0 +/- 6.9 vs. 59.6 +/- 9.5 g/m2, P < 0.005) were significantly lower in GHD children than in controls. Lipid profile, heart rate, blood pressure, LV systolic function and indices of ventricular filling were similar in patients and controls. After 12 months of GH replacement therapy, LVPWT (6.1 +/- 0.7 mm, P < 0.0005), LVEDD (38.8 +/- 4.3 mm, P < 0.002) and LVMi (71.5 +/- 12.7 g/m2, P < 0.0005) significantly increased in GHD children compared to pretreatment values. In particular, after 12 months of therapy GHD children achieved a normal LVMi when compared to controls (60.7 +/- 8.6, P = ns). LVMi increase was significantly correlated with the increase in IGF-I level (r = 0.49; P < 0.004). LV systolic performance, diastolic filling and blood pressure did not change significantly during GH therapy. After 12 months of treatment, the atherogenic index, measured as total/high-density lipoprotein-cholesterol ratio (2.7 +/- 0.8) was significantly lower than both pretreatment (3.4 +/- 0.3, P < 0.03) and control values (3.8 +/- 1.1, P < 0.04). CONCLUSIONS: GH deficiency in children affects heart morphology, by inducing a significant decrease in cardiac size, but does not modify cardiac function and lipid profile. Twelve months of GH replacement treatment normalizes cardiac mass, and reduces the atherogenic index.

Case-Control Studies↗

Serum homocysteine concentrations in children with growth hormone (GH) deficiency before and after 12 months GH replacement.

OBJECTIVE: This open, prospective study was designed to evaluate the effect of growth hormone deficiency (GHD) and GH replacement therapy on serum homocysteine (Hcy) concentration in children with GHD. SUBJECTS: Seventeen prepubertal children with GHD (11 boys and six girls) aged 8.6 +/- 1.9 years were studied before and after 12 months of GH replacement therapy at a dose of GH of 30 microg/kg/day. Seventeen healthy children acted as controls and were matched for age, sex and body mass index (BMI). METHODS: At study entry, height, weight, blood pressure, serum Hcy, serum IGF-I, total-low density lipoprotein (LDL)- and high density lipoprotein (HDL) cholesterol, triglycerides, free T4, free T3, vitamin B12, folate, glucose and creatinine were measured in all subjects. The atherogenic index (AI) was also calculated as the ratio of total cholesterol/HDL cholesterol (T/HDL). In GHD children these parameters were also revaluated after 12 months of GH therapy. RESULTS: At study entry height and serum IGF-I were significantly lower, as expected, in GHD patients than in controls (P < 0.0001 and P < 0.007, respectively). Serum Hcy levels were significantly higher in GHD patients than in healthy children (8.4 +/- 2.9 vs. 6.0 +/- 2.9 micromol/l; P < 0.03), although the absolute values were within the normal values for age and sex. There were no significant differences at baseline with respect to blood pressure, serum vitamin B12, folate, fT3, fT4, lipid profile, creatinine and glucose levels. After 12 months of GH replacement therapy height and serum IGF-I increased significantly compared to pretreatment values (P < 0.0001); serum Hcy levels decreased significantly (6.0 +/- 3.3 micromol/l; P < 0.002) compared to baseline values, becoming similar to control values. Total cholesterol (3.5 +/- 0.6 mmol/l) and the AI (2.5 +/- 0.8) decreased significantly with respect to both pretreatment (4.2 +/- 1.0 mmol/l; P < 0.0002 and 3.4 +/- 0.8; < 0.002, respectively) and control values (4.2 +/- 0.4 mmol/l; P < 0.0005 and 3.3 +/- 1.1; P = 0.02, respectively). CONCLUSIONS: GHD in children is associated with higher serum levels of Hcy compared to controls, without significantly affecting the lipid profile. GH replacement for 12 months significantly decreased the Hcy levels and improved the lipid profile with a decrease of total cholesterol and the total/HDL cholesterol ratio, compared to pretreatment values. Given the small number of patients, further larger studies are needed to clarify whether these results may have significant effects in the prevention of cardiovascular disease in adulthood.

Body Mass Index↗

Effect of long-term L-thyroxine treatment on bone mineral density in young adults with congenital hypothyroidism.

OBJECTIVE: To evaluate whether long-term L-thyroxine therapy in young adults with congenital hypothyroidism may affect bone mineral density (BMD). DESIGN: Thirty-seven subjects with congenital hypothyroidism, detected by neonatal screening and longitudinally followed from the time of diagnosis and treatment (26+/-4 days) up to the age of 17.8+/-1.0 years, were studied. METHODS: Spinal (L2-L4) BMD, measured by dual-energy X-ray densitometry, and bone quality, measured as amplitude-dependent speed of sound (Ad-SoS) by quantitative ultrasound, were evaluated. RESULTS: Z-score mean values (+/-s.d.) of BMD (-0.3+/-0.7) and Ad-SoS (-0.7+/-1. 1) were slightly below the average but within the normal range. Ad-SoS resulted in a z-score below -1 in 38% of patients as compared with BMD which resulted in a z-score below -1 in only 13.5% of subject. No significant differences were observed between males (BMD, -0.3+/-0.7; Ad-SoS, -0.9+/-1.0) and females (BMD, -0.3+/-0.7; Ad-SoS, -0.5+/-1.2) or when dividing patients on the basis of aetiological defects; ectopic gland (BMD, -0.3+/-0.6; Ad-SoS, -0.8+/-0.9), athyreosis (BMD, -0.3+/-0.9; Ad-SoS, -0.8+/-1.0) and eutopic gland (BMD, -0.3+/-0.8; Ad-SoS, -0.4+/-1.3). No significant relationships were observed between BMD or Ad-SoS z-score and hormonal status or L-thyroxine dosages at the time of the study or during the pubertal period. CONCLUSIONS: The careful monitoring of serum thyroid-stimulating hormone and adjustment of l-thyroxine dosage avoided the significant deleterious effects of prolonged L-thyroxine replacement therapy on bone tissue in adolescents and young adults with congenital hypothyroidism treated from the neonatal period.

Absorptiometry, Photon↗

Beta-cell dysfunction in classic transient neonatal diabetes is characterized by impaired insulin response to glucose but normal response to glucagon.

OBJECTIVE: To investigate beta-cell function and the long-term health of four case subjects presenting with chromosome 6-associated transient neonatal diabetes (TND). RESEARCH DESIGN AND METHODS: Two unrelated case subjects presenting with paternal uniparental isodisomy of chromosome 6 (UPD6) and two siblings with a paternally inherited duplication of 6q24 were studied. Three case subjects presented with neonatal diabetes that recurred at 4-17 years, while diabetes was incidentally discovered in the other case subject at 14 years of age. beta-Cell function was investigated after diabetes relapse by means of an oral glucose tolerance test (OGTT), an intravenous glucose tolerance test (IVGTT), and glucagon tests. The quantitative insulin sensitivity check index (QUICKI) was calculated from fasting blood samples as an estimate of insulin sensitivity. RESULTS: beta-Cell function was investigated at diabetes relapse in two case subjects: the insulin response to both an OGTT and IVGTT was low, whereas the basal levels of C-peptide were normal. No evidence of insulin resistance was found. Residual beta-cell function was further explored by a glucagon test in all subjects at the age of 16-28 years and was found to be normal. Final height was within the normal percentiles, whereas one case, who had been poorly controlled since puberty, presented with diabetes-related microvascular complications. CONCLUSIONS: In patients with chromosome 6-associated TND, the beta-cell is preserved and able to secrete insulin through the stimulatory G protein pathway while exhibiting a specific defect of insulin secretion after glucose stimulation. This form of diabetes can be managed with insulin or diet, although new therapeutic agents (glucagon-like synthetic analogs) may prove useful in the future. Lack of treatment leads to long-lasting hyperglycemia without the risk of ketoacidosis but associated with microangiopathy in adult life.

Chromosome Aberrations↗

Molecular analysis of the GNAS1 gene for the correct diagnosis of Albright hereditary osteodystrophy and pseudohypoparathyroidism.

Pseudohypoparathyroidism (PHP) is a heterogeneous disease characterized by PTH resistance and classified as types Ia, Ib, Ic, and II, according to its different pathogenesis and phenotype. PHP-Ia patients show Gsalpha protein deficiency, PTH resistance, and typical Albright hereditary osteodystrophy (AHO). Heterozygous mutations in the GNAS1 gene encoding the Gsalpha protein have been identified both in PHP-Ia and in pseudopseudohypoparathyroidism (PPHP), a disorder with isolated AHO. A single GNAS1 mutation may be responsible for both PHP-Ia and PPHP in the same family when inherited from the maternal and the paternal allele, respectively, suggesting that GNAS1 is an imprinted gene. To evaluate whether molecular diagnosis is a useful tool to characterize AHO and PHP when testing for Gsalpha activity and PTH resistance is not available, we have performed GNAS1 mutational analysis in 43 patients with PTH resistance and/or AHO. Sequencing of the whole coding region of the GNAS1 gene identified 11 mutations in 18 PHP patients, eight of which have not been reported previously. Inheritance was ascertained in 13 cases, all of whom had PHP-Ia: the mutated alleles were inherited from the mothers, who had AHO (PPHP), consistent with the proposed imprinting mechanism. GNAS1 molecular analysis confirmed the diagnosis of PHP-Ia and PPHP in the mutated patients. Our results stress the usefulness of this approach to obtain a complete diagnosis, expand the GNAS1 mutation spectrum, and illustrate the wide mutation heterogeneity of PHP and PHP-Ia.

Adolescent↗

Effect of different starting doses of levothyroxine on growth and intellectual outcome at four years of age in congenital hypothyroidism.

To evaluate the effect of different initial levothyroxine (LT4) replacement doses on growth and intellectual outcome in patients with congenital hypothyroidism (CH) detected by neonatal screening program, the longitudinal growth and intelligence quotient (IQ) were assessed and compared at 4 years of age in 83 patients with CH. The patients were divided into three groups according to the initial LT4 dose used: (1) group 1 (n = 42) received the previously recommended dose of 6.0-8.0 microg/kg per day; (2) group 2 (n = 21) received a dose of 8.1-10.0 microg/kg per day; (3) Group 3 (n = 20) a dose of 10.1-15.0 microg/kg per day. The IQ, evaluated by the Wechsler Preschool and Primary Scale of Intelligence test at 4 years of age, was significantly higher in group 3 (IQ 98 +/- 9) compared to group 1 (IQ 88 +/- 13; p < 0.05) but not compared to group 2 (IQ 94 +/- 13). However, the IQs were below the normal range (< 85) in six patients from group 2 (28%), but in none of the patients from group 3 (p = 0.03). Patients from group 3, with severe CH at diagnosis, had an IQ (97 +/- 9) at 4 years of age, which was not different from that of patients from the same group with moderate CH at diagnosis (IQ 99 +/- 9). Similar results were also observed in patients from group 2 however, mean IQ scores in these patients (93 +/- 12) were several points lower than those observed in patients from group 3 (95 +/- 15). After the first month of treatment, optimal serum levels of thyroxine (T4) and free thyroxine (FT4) were achieved in all groups, however, only patients from group 3 were able to normalize thyrotropin (TSH) (group 1, 16.0 +/- 12.0; group 2, 9.2 +/- 10.0; and group 3, 2.4 +/- 3.3 mU/L; p < 0.0001). Twelve patients from group 2 treated with an initial LT4 dose above 9 microg/kg per day were able to normalize TSH levels within the first 3 months of life and this resulted in a better IQ (97 +/- 16) compared to the remaining patients from the same group (IQ 90 +/- 9). In the whole group of 83 patients the IQ at 4 years of age was positively correlated to both initial LT4 dosage (r = 0.27, p < 0.02) and FT4 concentrations after the first month of treatment (r = 0.29, p < 0.02), and negatively correlated to TSH concentrations after the first month of treatment (r = -0.27, p < 0.02). No significant differences were observed in height, weight, head circumference, and bone age maturation among the three groups of patients. No clinical signs or symptoms of overtreatment were observed during follow-up in patients receiving the higher LT4 dosage. Our results indicate that high LT4 starting doses rapidly normalize serum TSH concentrations resulting in an improvement of the IQ at 4 years of age, even in patients with severe CH at diagnosis. Growth and bone age maturation are not affected by such a high dose.

Body Height↗

The cardiovascular risk of GH-deficient adolescents.

To investigate the onset of the cardiovascular impairment in patients with GH deficiency (GHD), we prospectively studied cardiovascular risk parameters, cardiac mass and performance (by echocardiography) in 10 adolescent patients (5 with isolated GHD and 5 with multiple GHD) who reached their final height before GH replacement withdrawal, 6 months after GH replacement withdrawal, and 6 months after GH treatment was restarted, and in 10 sex- and age-matched controls. At study entry, when compared with controls, GHD adolescents had lower IGF-I levels (although still in the normal age range) and high-density lipoprotein (HDL)-cholesterol levels, higher total/HDL-cholesterol ratio, lower triglyceride levels, higher fibrinogen levels, and lower heart rate, systolic blood pressure, and early-to-late mitral flow velocity ratio (E/A). Left ventricular (LV) mass index and ejection fraction were normal. Six months after GH withdrawal, IGF-I levels decreased remarkably in all cases (from 176.6 +/- 8.3 to 77.5 +/- 8.9 microg/liter; P < 0.001), whereas low-density lipoprotein-cholesterol and triglyceride levels significantly increased. The total/HDL-cholesterol ratio (from 3.89 +/- 0.1 to 4.74 +/- 0.2; P < 0.05) and fibrinogen levels (from 261 +/- 7.1 to 287.5 +/- 6.4 mg/dl; P < 0.05) also significantly increased compared with study entry, without any change in the other parameters. In contrast, both LV mass index (from 94.2 +/- 1.6 to 87.8 +/- 1.7 g/m(2); P = 0.05) and E/A (from 1.32 +/- 0.05 to 1.12 +/- 0.03; P < 0.01) decreased, although remaining in the normal range. Six months after restarting GH replacement (at a median dose of 10 micro g/kg x d), lipid and cardiac parameters were brought back to the levels measured at study entry, but in no patient did IGF-I levels reach the 50th centile for age. HDL-cholesterol levels (P < 0.0001), heart rate (P < 0.05), systolic blood pressure (P < 0.01), LV ejection fraction (P < 0.005), and E/A (P < 0.0001) remained lower, whereas total/HDL-cholesterol ratio (P < 0.01), triglycerides, and fibrinogen levels (P < 0.05) remained higher than controls. In conclusion, GH discontinuation is inappropriate in adolescents with severe GHD, inducing impairment of lipid profile and cardiac morphology and performance. Because the results on the cardiovascular system and on the lipid profile were suboptimal, it is likely that the GH dose in severe GHD adolescents should be higher.

Adolescent↗