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Biomedical subjects

F Antoniazzi

Publications and source records attributed to F Antoniazzi.

At least 19 recordsLinked to original sources

Growth hormone-binding proteins, IGF-I and IGF-binding proteins in children and adolescents with type 1 diabetes mellitus.

Growth hormone binding proteins, insulin-like growth factor I and insulin-like growth factor binding proteins were determined in 54 children and adolescents affected by type 1 diabetes mellitus (25 prepubertal and 29 pubertal) showing reduced height velocity and the results were compared to those of 104 matched controls. Growth hormone binding proteins were similar in prepubertal and pubertal subjects but were significantly lower in the prepubertal diabetic group than in controls. Insulin-like growth factor I was low both in prepubertal and pubertal diabetic subjects. Insulin-like growth factor binding protein 3 was similar to controls, while insulin-like growth factor binding protein 1 and 2 were always high in diabetic children. Insulin-like growth factor binding protein 4 was high only in the prepubertal diabetic group. In conclusion, a low insulin-like growth factor I in diabetic children seems to depend on a GH receptor and/or a postreceptor defect. A low insulin-like growth factor I together with a normal insulin-like growth factor binding protein 3 and high levels of insulin-like growth factor binding proteins 1, 2 and 4 results in a reduced bioavailability of insulin-like growth factor I to target tissues. This could be a possible contributing factor to the reduced height velocity seen in our diabetic children.

Adolescent

Gonadal function and response to growth hormone (GH) in boys with isolated GH deficiency and to GH and gonadotropins in boys with multiple pituitary hormone deficiencies.

OBJECTIVE: [corrected] To evaluate spermatogenesis in patients with isolated GH deficiency and multiple pituitary hormone deficiencies. DESIGN: Treatment of isolated GH-deficient patients with recombinant human GH (weekly dose of 0.7 IU/kg) for 5.3 +/- 0.4 (mean +/- SD) years and cotreatment of multiple pituitary deficient patients with GH at the same dosage for 8.0 +/- 0.4 years and hCG (2,000 IU, three times per week) and hMG (500 IU, two times per week) for 13.7 +/- 1.1 months. SETTING: Endocrine Pediatric Unit. PATIENTS: Eight patients affected by isolated GH deficiency and seven by multiple pituitary hormone deficiencies. MAIN OUTCOME MEASURES: Serum LH, FSH, and T, testicular volume, semen volume, density, count, and motility. RESULTS: Patients with isolated GH deficiency completed their pubertal development in 19.0 +/- 3.5 months and patients with multiple pituitary hormone deficiencies in 13.7 +/- 1.1 months. At the end of puberty, the two groups of patients had similar testicular volume, penis size, sperm concentration, motility, and morphology, although T levels and seminal volume were lower in isolated GH-deficient patients than in multiple pituitary deficient patients. CONCLUSIONS: The two groups of patients, treated specifically for their identified hormonal deficiencies, in the end had similar satisfactory reproductive results.

Adolescent

Growth hormone treatment in osteogenesis imperfecta with quantitative defect of type I collagen synthesis.

OBJECTIVES: We studied growth rate, bone density, and bone metabolism in patients affected by type I osteogenesis imperfecta (OI) with quantitative defect in type I collagen synthesis during treatment with human growth hormone (hGH), being aware of its collagen-stimulating synthesis activity in vitro. STUDY DESIGN: Fourteen patients (6 boys; ages 4.8 to 10.8 years) were studied. Any structural alteration in the collagen chains was excluded, and reduced production of structurally normal type I collagen (increase in type III/type I collagen; reduction in the messenger ribonucleic acid alpha 1 (I)/ alpha 2 (I) ratio) was demonstrated. The patients were divided into two groups comparable in sex, age, height, and clinical severity of OI; seven patients (three boys) were treated for 12 months with hGH at a dosage of 0.2 mg/kg per week (0.6 IU/kg per week), in six injections subcutaneously, and seven were followed as control subjects. Auxologic data were measured every 3 months, and bone age was determined at the start, after 1 year of treatment, and 1 year after its completion. Every 3 months, serum insulin-like growth factor type I, osteocalcin, carboxyterminal propeptide of type I procollagen, alkaline phosphatase, calcium, and phosphorus levels and urinary hydroxyproline and calcium levels were determined. Bone mass measurements were carried out at the start of the study in all patients and repeated after 12 months in treated patients at the lumbar spine by dual-energy x-ray absorptiometry and by anteroposterior (second, third, and fourth lumbar vertebrae) and lateral (third lumbar vertebra) scan. Results were expressed as areal (anteroposterior and lateral) bone density (in milligrams per square centimeter) and as calculated true density (in milligrams per cubic centimeter). RESULTS: After 12 months, linear growth velocity in treated patients increased significantly in comparison with the pretreatment period (from 3.57 +/- 0.55 to 6.04 +/- 0.69 cm/yr; p < 0.05) and with the untreated group (p < 0.05). Bone age did not advance faster than chronologic age. The fracture index per year was low before treatment, and during therapy no patient had any fractures. Serum osteocalcin levels were statistically lower than in control subjects before treatment and increased significantly after 12 months (3.3 +/- 1.0 vs 2.1 +/- 0.9 nmol/L; p < 0.05). Serum levels of carboxyterminal propeptide of type I procollagen were significantly lower than normal values before treatment (164.6 +/- 46.7 vs 310.3 +/- 97.6 ng/ml; p < 0.05) and rose, but not significantly, during and after treatment. Before therapy, patients with OI had significantly lower lumbar anteroposterior, lateral, and calculated true bone density than the normal population of the same sex compared for both age and height. After hGH treatment, bone density increased significantly in the lumbar spine, in anteroposterior and lateral scans (+2.6 +/- 2.5% and +9.8% +/- 14.0%, respectively; p < 0.05). CONCLUSIONS: From our results, we conclude that hGH treatment in moderate OI does not increase the fracture risk in treated patients in the short term, significantly increases the rate of linear growth velocity, and increases bone turnover and mineral content in trabecular bone at the lumber spine.

Alkaline Phosphatase

Growth hormone-binding proteins and insulin-like growth factor-binding proteins in protein-energy malnutrition, before and after nutritional rehabilitation.

To clarify the influence of nutrition on the GH-IGF axis in protein-energy malnutrition (PEM), we determined the serum levels of GH, GH-binding proteins (BP) (GHBPs), IGF-I, and IGFBPs in nine children with kwashiorkor and 13 with marasmus, before and after nutritional rehabilitation. In a basal condition, the GH level was significantly higher in the two malnourished groups than in controls (p < 0.01); in contrast, the second fraction of GHBP was lower and seemed to be related to the high GH and to a reduction in GH receptors. After refeeding, the GH level increased and the second fraction of GHBP decreased. The IGF-I basal level was higher in kwashiorkor than in marasmus subjects (p < 0.05), but in both groups it was significantly lower than in controls (p < 0.01); after refeeding it increased. IG-FBP-3, measured by RIA and Western blotting techniques, was in the control range in the kwashiorkor group but in the marasmic group it was significantly lower than in controls; after refeeding it decreased in kwashiorkor (p < 0.01 versus basal values) and increased in marasmus (p < 0.05 versus prerefeeding level). When sera of malnourished patients were mixed with adult control sera, incubated for 5 h at 37 degrees C, and assessed by ligand blotting, a low IGFBP-3 level in marasmus was found to be due to increased adaptive proteolysis of IGFBP-3; in contrast, in kwashiorkor the IGFBP-3 proteolytic activity was very low, probably because of inhibition by aflatoxins. These findings confirm that malnutrition affects the GH-IGF axis.

Adult

Use of the gonadotropin-releasing hormone agonist triptorelin in the diagnosis of delayed puberty in boys.

To differentiate gonadotropin deficiency from delayed puberty in teenage boys, 0.1 mg/m2 of triptorelin, a gonadotropin-releasing hormone agonist, was administered subcutaneously at 4 AM. Serum gonadotropins and testosterone levels were determined at baseline and 4 hours after the injection. The increase in blood gonadotropin and testosterone levels was significantly greater in patients with delayed puberty than in those with gonadotropin deficiency.

Adolescent

Use of combined Gn-RH agonist and hGH therapy for better attining the goals in precocious puberty treatment.

We studied 30 girls (age 6.36 +/- 1.21 years, range 4.6-8.8) affected by idiopathic precocious puberty with significant reduction of height velocity (below the 25th centile) at the end of 1 year of Gn-RHa (triptorelin intramuscular depot) treatment, to evaluate GH-IGF-I axis activity and the effects of combined Gn-RHa plus hGH therapy. After 12 months, 15 patients continued Gn-RHa and started hGH therapy for 12 months, while 15 continued treatment with Gn-RHa alone (control group). We evaluated height velocity, bone age, urinary GH, serum IGF-I and IGFBP-3 levels throughout the study; plasma GHBP levels were determined only in the first 12 months of Gn-RHa treatment. Height velocity decreased significantly during Gn-RHa treatment; it increased significantly and became higher than the control group after 12 months of Gn-RHa plus hGH treatment. During Gn-RHa therapy alone, bone age progressed less than chronological age, while in the 12 months of Gn-RHa plus hGH treatment there was a slight nonsignificant increase in bone age progression in comparison to controls. Serum IGF-I and IGFBP-3 levels decreased significantly at 12 months of Gn-RHa therapy and increased significantly after Gn-RHa plus hGH treatment. Urinary GH levels showed the same behavior. Plasma GH binding to peak II-BP, slightly lower than the prepubertal normal range before treatment, significantly increased after 12 months of Gn-RHa treatment. Therefore, in these girls, during Gn-RHa treatment alone, we have a reduction in GH-IGF-I axis activity. During Gn-RHa plus hGH therapy there was a significant increase in height velocity, in urinary GH levels, in serum IGF-I and IGFBP-3 levels. Bone age did not seem to advance faster than chronological age and this may imply a better prediction in adult height. In our opinion, only in a small percentage of patients affected by precocious puberty (with a very low predicted adult height or an important reduction of growth velocity during Gn-RHa treatment) may an association with hGH therapy be useful.

Body Height

Bone mineral metabolism in girls with precocious puberty during gonadotrophin-releasing hormone agonist treatment.

Bone mineral metabolism and mineralization before and during treatment were studied in 10 girls aged 6.9-8.4 years affected by central precocious puberty and treated with gonadotrophin-releasing hormone agonist (GnRHa) leuprolide acetate depot, in order to understand better the consequences of oestrogen deficiency and the reduction of growth hormone (GH)-insulin-like growth factor I (IGF-I) axis activity. Before and after 12 months of therapy, the patients underwent a clonidine stimulation test and a 4-day calcitriol osteoblast stimulation test. On day 0, day 5 and at 3-month intervals thereafter, serum calcium, phosphate, alkaline phosphatase, IGF-I, IGF binding protein 3 (IGFBP-3), GH, GH binding protein and osteocalcin levels were measured; urinary calcium, phosphate and hydroxyproline levels were evaluated in fasting spot samples. Trabecular and cortical bone mass variations, measured by dual X-ray absorptiometry in the lumbar spine and by dual photon absorptiometry in the radius, respectively were evaluated before the start and after 12 months of therapy. During treatment, a decrease of serum oestradiol levels from pubertal to prepubertal levels was observed. The GH peak following clonidine diminished significantly after 1 year. Growth hormone binding protein showed a slight increase, and IGF-I and IGFBP-3 decreased, although not significantly. Osteocalcin levels decreased significantly after 9 and 12 months of treatment, but they did not change significantly after calcitriol load, either before or after GnRHa therapy. Urinary hydroxyproline decreased significantly after 12 months.(ABSTRACT TRUNCATED AT 250 WORDS)

Body Height

A base substitution at IVS-19 3'-end splice junction causes exon 20 skipping in pro alpha 2(I) collagen mRNA and produces mild osteogenesis imperfecta.

Molecular investigations on a young patient and her family were undertaken to identify the molecular defect responsible for a mild form of osteogenesis imperfecta (OI) with blue sclerae, dentinogenesis imperfecta and joint laxity. Analysis of collagenous proteins from the proband's fibroblasts showed the presence of two populations of alpha 2(I) chains, one normal and one migrating faster on SDS gels, thereby suggesting deletion of amino acid sequences. The faster migrating chains were retained mainly in the cell layer and not found in the extracellular matrix deposited by cultured fibroblasts. Chemical cleavage of mismatch (CCM) analysis on the patient's pro alpha 2(I) mRNA: normal cDNA heteroduplexes localized the molecular defect. cDNA sequencing revealed a deletion of exon 20 (54 bp) in about half of the molecules. Genomic DNA sequencing revealed heterozygosity for a G-to-C transversion of the last nucleotide of intron 19, which changed the 3' consensus splicing site. As a consequence pro alpha 2(I)mRNA was abnormally spliced from the last codon of exon 19 to the first codon of exon 21. To our knowledge, this is the first acceptor site mutation so far described in an OI patient. Restriction analysis indicated that the mutation was present also in three other affected family members. The full sequence of COL1A2 introns 19 and 20 are reported.

Base Sequence

Final height in girls with central precocious puberty: comparison of two different luteinizing hormone-releasing hormone agonist treatments.

In order to evaluate the effects of two long-acting luteinizing hormone-releasing hormone agonists on growth, bone maturation and final height in girls with central precocious puberty, we analyzed growth data from 40 girls (15 treated with buserelin intranasal spray (group A), 15 treated with triptorelin depot im every 28 days (group B) and 10 untreated (group C)). Patients in group A started treatment when chronological age (CA) was 7.7 +/- 0.9 years, bone age (BA) was 10.2 +/- 1.1 years and height was 131.9 +/- 5.0 cm. Patients in group B started therapy when CA was 7.6 +/- 0.5 years, BA 9.8 +/- 1.0 years and height 133.2 +/- 7.6 cm. The diagnosis of untreated patients (group C) was made when CA was 7.2 +/- 0.9 years, BA 9.6 +/- 2.2 years and height 130.2 +/- 8.6 cm. Both luteinizing hormone-releasing hormone agonists appeared to control precocious puberty. Final height in group B (160.6 +/- 5.7 cm) was significantly higher than that of group A (153.2 +/- 5.0 cm: p < 0.05) and group C (149.6 +/- 6.3; p < 0.01), whereas the difference between groups A and C was not statistically significant. In group B a positive difference was observed between final height (160.6 +/- 5.7 cm) and target height (157.6 +/- 5.9 cm) (ns); on the contrary, in groups A and C, final height was lower than target height (155.5 +/- 5.3 and 156.4 +/- 1.3 cm, respectively), but only in group C the difference was statistically significant (p < 0.01).(ABSTRACT TRUNCATED AT 250 WORDS)

Administration, Intranasal

[The therapy of congenital hypothyroidism].

In congenital hypothyroidism precocious diagnosis and consequent replacement therapy are necessary to prevent neurological irreversible damage caused by postnatal thyroid hormone deficiency. Synthetic L-thyroxine is the useful drug, that has to be administered in fasting condition to have the best absorption. Some points about the treatment are still discussed, such initial L-thyroxine dosage, biochemical control parameters and psycho-intellectual outcome in treated patients. The mean initial dosage in Italy increased from 7.5 +/- 2.2 micrograms/kg/day in 1987-90 period to 8.5 +/- 2.5 micrograms/kg/day in 1991, at a mean starting age of 34 and 26 days respectively. Therefore the dosage is modulated on the basis of serum levels of thyroid hormones and clinical signs. Some patients, in spite of a correct dosage of L-thyroxine, show a deficient suppression of TSH circulating level. In our experience this finding is sometimes due to the non-observance of the fasting condition when the drug is administered. Patients precociously identified by neonatal screening and correctly treated have a good mental and statural prognosis. In these patients, the psycho-intellectual development is better than in those diagnosed later clinically.

Child

Gly85 to Val substitution in pro alpha 1(I) chain causes mild osteogenesis imperfecta and introduces a susceptibility to protease digestion.

In this paper we describe a mild moderate form of osteogenesis imperfecta caused by a point mutation in COL1A1 which converted glycine 85 to valine. The valine substitution introduced into the triple-helical domain of type-I collagen a conformational perturbation causing susceptibility to digestive proteases. In fact, SDS/PAGE of pepsin-treated collagen showed the presence of a faint band, migrating between alpha 1(I) and alpha 2(I), both in the medium and in the cell layer. On trypsin digestion the band, a shortened form of alpha 1(I), had a melting temperature of 39.5 degrees C. If the triple-helical collagen was obtained after trypsin or chymotrypsin digestion of procollagen, two shortened bands were identified; the enzymes cleaved about 40% of the trimers. The mutant procollagen was normally secreted and processed in the extracellular matrix at a normal rate. When native type-I collagen was formed after dextran-sulfate incubation, only chains of normal length were found, suggesting that the fibroblast proteases did not recognize the alteration introduced by the mutation. The effects of glycine 85 to valine substitution are compared with those produced by a previously described arginine substitution of the same residue (Deak et al., 1991).

Adult

Effects of 1,25-dihydroxyvitamin D3 and growth hormone therapy on serum osteocalcin levels in children with growth hormone deficiency.

In order to investigate the influence on bone metabolism of growth hormone (GH), we evaluated the response to an acute load of 1,25(OH)2D3 (Rocaltrol) (1.5 micrograms/day for 4 days) in 16 growth hormone-deficient prepubertal children (11 boys and 5 girls, aged from 6.2 to 9.6 years) both before and after 1 month of human GH (hGH) therapy (0.1 IU/kg/day, 6 times per week). Before and after the 1,25(OH)2D3 load, serum IGF-I, osteocalcin, Ca, P, alkaline phosphatase (ALP) and urinary excretion of Ca and P were measured. The serum levels of osteocalcin rose significantly after the first 1,25(OH)2D3 load, without an increase in IGF-I values and with a slight non-significant increase in serum Ca and P. Almost superimposable increases of osteocalcin, Ca and P were observed after 1 month of hGH therapy, with a significant increase of IGF-I, but they did not rise further after the second 1,25(OH)2D3 load. On the basis of our results, 1,25(OH)2D3 seems to have a stimulatory action on osteoblastic activity even in the absence of normal levels of GH. However, there is no apparent additional stimulatory activity after administration of hGH. Osteocalcin level behaviour during our study might suggest that GH and 1,25(OH)2D3 have a common and easily saturable stimulatory pathway on osteoblastic function.

Alkaline Phosphatase

Influence of dietary taurine on vitamin D absorption.

To evaluate the influence of dietary taurine supplementation on vitamin D absorption, we studied three groups of infants: 21 (11 preterm) were fed a taurine-free formula, 21 (10 preterm) were fed a taurine-supplemented formula (50 mg/100 g of powder) and 20 (9 preterm) were fed human, not heat-treated milk. Taurine, total bile acids, glyco-(GBA) and tauro-(TBA) conjugated bile acids, 25-hydroxyvitamin D3 (25OHD3) and 1,25-dihydroxyvitamin D3 (1,25OH2D3) were determined in all infants at birth in blood cord and at one and three months of life. In preterm infants fed a taurine-free formula, we found lower plasma taurine levels than in infants of other groups at one and three months of life. In these infants, GBA predominated, with a G/T ratio of 1.1 and 1.4 at one and three months of life, whereas in all other infants TBA predominated with a G/T ratio always < 1. Also, 25OHD3 and 1,25OH2D3 levels were significantly lower in preterm infants fed a taurine-free formula than in infants fed a taurine-enriched formula or human milk. Term infants fed a taurine-free formula did not show differences in the parameters studied in comparison to infants of other groups. Low taurine dietary intake appears to compromise vitamin D absorption in preterm infants, and therefore taurine supplementation of preterm infant formulas should be encouraged.

Bile Acids and Salts

Impaired response of free alpha-subunits after luteinizing hormone-releasing hormone and thyrotropin-releasing hormone stimulations in beta-thalassemia major.

In order to clarify whether the damage in gonadotropin secretion due to iron overload in patients with beta-thalassemia is of pituitary or hypothalamic origin, 14 euthyroid patients (8 females and 6 males, age 15-24 years) affected by beta-thalassemia major with hypogonadotropic hypogonadism were studied. Luteinizing-hormone (LH), follicle-stimulating hormone (FSH) and free alpha-subunit (FAS) were measured during LH-releasing hormone (LH-RH) stimulation test, and thyroid-stimulating hormone (TSH), prolactin (PRL) and FAS during thyrotropin-releasing hormone (TRH) stimulation test. During LH-RH stimulation, the mean basal LH, FSH and FAS levels were similar to those found in normal prepubertal children, but the peak values were lower than those found in such children. Also during TRH stimulation, the mean peak values of FAS were lower than those of normal prepubertal children, but the TSH response was normal. The lack of response of gonadotropins and FAS to LH-RH cannot exclude hypothalamic failure; however, the normal response of TSH to TRH, in spite of the poor response of FAS, indicates that the origin of hypogonadotropic hypogonadism is the pituitary damage concerning not only the gonadotroph but also the thyrotroph cells.

Adolescent

A de novo G to T transversion in a pro-alpha 1 (I) collagen gene for a moderate case of osteogenesis imperfecta. Substitution of cysteine for glycine 178 in the triple helical domain.

Cultured fibroblasts from a patient affected with a moderate form of osteogenesis imperfecta were defective for the synthesis of type I collagen molecules; about half of the alpha 1(I) chains contained a cysteine residue in the triple helical domain and a disulfide link formed when two mutant alpha 1(I) chains were incorporated into a type I collagen heterotrimer. The proband's parents were clinically and biochemically normal. The cysteine was localized within peptide alpha 1(I)CB8 between residues 170 and 200 of the triple helical domain using a chemical procedure with 2-nitro-5-thiocyanobenzoic acid (Tenni, R., Rossi, A., Valli, M., Mottes, M., Pignatti, P. F., and Cetta, G. (1990) Matrix 10, 20-26). Type I procollagen heterotrimers containing either one or two mutant chains showed (i) a slight abnormality in secretion from cells; (ii) a low degree of post-translational overmodifications; (iii) the same, but lower than normal, thermal stability. Total RNA was isolated from the proband's dermal fibroblast cultures, and cDNAs for pro-alpha 1(I) were prepared d using total RNA. A portion of cDNA, coding for the region encompassing residues 119-193 of alpha 1(I) triple helical domain, was amplified by polymerase chain reaction. A single base pair mismatch was identified by chemical cleavage of DNA.DNA heteroduplexes, indicating a possible substitution of a guanine in the triplet coding for glycine 178 or 181. The same unique mismatch was detected by chemical cleavage in about one-half of the molecules in heteroduplexes formed between patient's pro-alpha 1(I) mRNAs and a normal cDNA probe. The amplified products were cloned and sequenced, confirming the heterozygous nature of the patient and demonstrating the presence and the location of a missense mutation; a single T for G substitution was found in the first base of the triplet coding for residue 178 of alpha 1(I) triple helical domain, leading to a cysteine for glycine substitution. Allele-specific oligonucleotide hybridization to amplified DNA confirmed a de novo point mutation in the proband's genome. The findings in this patient are in accord with the phenotypic gradient model, which correlates the localization of the structural defect with the clinical outcome of osteogenesis imperfecta. The mutant protein has some properties that differ from the caused by the cysteine for glycine 175 substitution, suggesting a direct influence of the neighboring amino acids on the effects of the mutation.

Alleles

Growth hormone response following growth hormone releasing hormone injection in thalassemia major: influence of pubertal development.

Thirty-five patients with thalassemia major, aged 7 to 21 years, were studied to define the relationship between the pubertal development and the growth-hormone (GH) secretion during sleep, after administration of GH-releasing factor (hpGRF 1-44), and betaxolol-glucagon or arginin-insulin. Pubertal development was classified as being appropriate or delayed for chronological age. GH response to pharmacological stimuli and during sleep was not linked to the pubertal development according to the chronological age. The peak of GH secretion after GHRH injection was significantly delayed in thalassemic patients with retarded puberty. The integrated secretion of GH during the 120-min test was slightly but not significantly reduced in these patients. The prepubertal pattern of GHRH response was restored in the patients receiving substitutive therapy by HCG or testosterone. The alteration of GH response to GHRH in thalassemic patients is likely to be only due to delayed puberty and decreased endogeneous GHRH secretion since it is corrected by androgen or gonadotropin replacement.

Adolescent

Irreversible respiratory failure in an achondroplastic child: the importance of an early cervicomedullary decompression, and a review of the literature.

The authors report the case of a girl with achondroplasia suffering from a progressively worsening hypotonic quadriparesis. CT scan showed slight dilatation of ventricular and subarachnoid spaces, with well-defined evidence of cortical sulci and gyri. This aspect was compatible with the diagnosis of macrocrania and megalencephaly (CP being 51 cm). The foramen magnum was narrowed, the transverse diameter measuring 15 mm and the 50th percentile being, for age, 26 mm. Somatosensory evoked potentials (SEPs) revealed bilaterally prolonged interpeak latencies Erb-N13, slowing of central conduction time N13-N20 from right median nerve stimulation, and block from left median nerve. The suspicion of cervicomedullary compression was confirmed by MRI, showing a very marked stenosis with compression exerted by the odontoid process. Further, a stenotic cervical canal and optic nerves verticalization were manifest. The patient underwent neurosurgical decompression by suboccipital craniectomy and cervical-C1 laminectomy. In spite of treatment, both neurologic and respiratory problems (rapid, shallow and almost abdominal breathing) were unchanged. The girl died 4 1/2 months later. The authors emphasize the important role of SEPs in detection of cervicomedullary compression in achondroplastic children and also stress the necessity of an early surgical treatment as the only condition for possible clinical improvement and/or full recovery.

Achondroplasia