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Biomedical subjects

Berthold P Hauffa

Publications and source records attributed to Berthold P Hauffa.

16 recordsLinked to original sources

Long-range conserved non-coding SHOX sequences regulate expression in developing chicken limb and are associated with short stature phenotypes in human patients.

Defects in long-range regulatory elements have recently emerged as previously underestimated factors in the genesis of human congenital disorders. Léri-Weill dyschondrosteosis is a dominant skeletal malformation syndrome caused by mutations in the short stature homeobox gene SHOX. We have analysed four families with Léri-Weill dyschondrosteosis with deletions in the pseudoautosomal region but still with an intact SHOX coding region. Using fluorescence in situ hybridization and single nucleotide polymorphism studies, we identified an interval of approximately 200 kb that was deleted in all tested affected family members but retained in the unaffected members and in 100 control individuals. Comparative genomic analysis of this interval revealed eight highly conserved non-genic elements between 48 and 215 kb downstream of the SHOX gene. As mice do not have a Shox gene, we analysed the enhancer potential in chicken embryos using a green fluorescent protein reporter construct driven by the beta-globin promoter, by in ovo electroporation of the limb bud. We observed cis-regulatory activity in three of the eight non-genic elements in the developing limbs arguing for an extensive control region of this gene. These findings are consistent with the idea that the deleted region in the affected families contains several distinct elements that regulate Shox expression in the developing limb. Furthermore, the deletion of these elements in humans generates a phenotype apparently undistinguishable to those patients identified with mutations in the SHOX coding region and, for the first time, demonstrates the potential of an in vivo assay in chicken to monitor putative enhancer activity in relation to human disease.

Abnormalities, Multiple↗

The effect of growth hormone on the response of total and acylated ghrelin to a standardized oral glucose load and insulin resistance in children with Prader-Willi syndrome.

CONTEXT: Fasting levels of plasma ghrelins are grossly elevated in children with Prader-Willi syndrome (PWS). The cause of this elevation and the regulation of ghrelins in PWS is largely unknown. The regulatory role of individual nutritional components and of GH is not well characterized. OBJECTIVE: We investigated the influence of GH on acylated (aGhr) and total ghrelin (tGhr) concentrations before and after an oral glucose load, and on insulin resistance in PWS children. DESIGN, PATIENTS, AND INTERVENTIONS: In a clinical follow-up study, plasma ghrelins were measured during an oral glucose tolerance test, and parameters of insulin resistance were determined in 28 PWS children before and/or 1.18 (0.42-9.6) yr (median, range) after start of GH therapy (0.035 mg/kg body weight per day). MAIN OUTCOME MEASURES: Fasting and postglucose concentrations of aGhr and tGhr and homeostasis model assessment 2 insulin resistance were the main outcome measures. SETTING: The study was conducted in a single center (University Children's Hospital). RESULTS: High fasting [1060 +/- 292 (sd) pg/ml; n = 12] and postglucose trough (801 +/- 303 pg/ml; n = 10) tGhr concentrations in GH-untreated PWS children were found to be decreased in the GH-treated group (fasting 761 +/- 247 pg/ml, n = 24, P = 0.006; postglucose 500 +/- 176 pg/ml, n = 20; P = 0.006). In contrast, aGhr concentrations and insulin resistance were not changed by GH treatment. Both aGhr and tGhr concentrations were decreased by oral carbohydrate administration, independent of the GH treatment status. CONCLUSIONS: Our results indicate that, in PWS children, aGhr and tGhr are differentially regulated by GH.

Acylation↗

Prevalence of autoantibodies associated with thyroid and celiac disease in Ullrich-Turner syndrome in relation to adult height after growth hormone treatment.

A prospective, multicenter study of patients with Ullrich-Turner syndrome (UTS) was conducted to estimate the prevalence of autoantibodies to tissue transglutaminase (tTg), thyroid stimulating hormone receptor (TSH-R), thyroglobulin (TG) and thyroid peroxidase (TPO) in relation to adult height after long-term growth hormone (GH) treatment. Out of 347 near-adult (> 16 years) patients with UTS from 96 German centers, whose longitudinal growth was documented within the Pharmacia International Growth Study (KIGS), 188 returned for a standardized follow-up visit at a median chronological age of 18.7 (16.0-23.6) years (bone age > 15 years). Serum samples of 120 patients were obtained for central measurements of TSH, thyroxine (T4) and free T4 and autoantibodies by standard immunoassays. Information regarding thyroid disease, karyotype and anthropometric data was extracted from the KIGS database. Thirty-six percent of the patients with UTS had positive TG and/or TPO autoantibodies and 4% had positive tTg autoantibodies, whereas 2% had positive TG and/or TPO autoantibodies as well as positive tTg autoantibodies. TSH-R autoantibodies were undetectable in all patients. The detection of autoantibodies was unrelated to a specific karyotype. Median height standard deviation scores (SDS, UTS) at start of GH treatment (0.43; -1.07, 1.85) and at follow-up (1.36; -0.11, 2.57) were comparable in all patients independent of their antibody status. The total deltaheight SDS, however, was higher in patients with negative autoantibody titers (1.08; -0.03, 2.25) compared to those with positive antibody titers (0.68; -0.44, 1.82; p < 0.01). Our study confirms the high prevalence of autoantibodies in patients with UTS predisposing them to autoimmune thyroid disease and celiac disease, and indicates for the first time that autoimmune pathologies may interfere with GH therapy and thus compromise final height. Therefore, medical care for patients with UTS should routinely include screening for these autoimmune disorders in order to assure early detection and appropriate treatment.

Adolescent↗

Uterine size in women with Turner syndrome after induction of puberty with estrogens and long-term growth hormone therapy: results of the German IGLU Follow-up Study 2001.

BACKGROUND: To evaluate the factors influencing uterine size in young adult women with Turner syndrome (TS) after long-term growth hormone (GH) treatment. METHODS: Cross-sectional study. Out of 188 women with TS from 96 German centres, whose longitudinal growth was documented within KIGS (Pfizer International Growth Database), data on uterine size were collected voluntarily at a standardized follow-up visit: 75 TS women (ages: 15.8-30.8 years) with complete data were included. Classification according to karyotype: 45,X (78.6%), 45,X/46,XX (5.4%), 45,X/46,iXq (8%), 45,X/46,XY (8%). Puberty was induced with estrogens in all women. At follow-up, 66 were on cyclic estrogens and progestins. RESULTS: 13/66 (19.6%) TS women who received estrogens had a reduced uterine length <5 cm. Calculating the data in standard deviation scores (SDS), only women with 45,X/46,XX karyotype had normal median uterine length and volume of 0.6 and 1.59 SDS respectively. An incomplete breast development (Tanner stage B 3) was found in women with 45,X karyotype (n = 11; 18.6%) and with 45,X/46,XY (n = 2). CONCLUSIONS: Only TS women with karyotype 45,X/46,XX had normal uterine sizes, whereas 26% of the TS women with karyotype 45,X had a uterine length <-2 SDS, and 18% a volume <-2 SDS.

Adolescent↗

Microarray analysis reveals differential gene expression patterns and regulation of single target genes contributing to the opposing phenotype of TrkA- and TrkB-expressing neuroblastomas.

Expression of neurotrophin receptors of the tyrosine kinase receptor (Trk) family is an important prognostic factor in solid tumors including neuroblastoma. High expression of TrkA (NTRK1) is associated with a favorable biology and outcome of neuroblastoma, whereas TrkB (NTRK2) is expressed on aggressive neuroblastomas with unfavorable outcome. To gain new insights into the global gene expression program resulting in these divergent biological phenotypes, we stably expressed either TrkA or TrkB in the human SH-SY5Y neuroblastoma cell line. Gene expression profiles were obtained from parental cells and transfectants activated by their ligands in a time course over 24 h using oligonucleotide microarrays. Basal activation of Trk receptors in the absence of exogenous ligand was sufficient to induce broad and divergent genetic changes. Global gene regulation following external ligand stimulation was surprisingly similar in SY5Y-TrkA and SY5Y-TrkB cells except for the differential expression of distinct novel target genes. Consistent with their divergent biological phenotype, SY5Y-TrkA cells were characterized by upregulation of proapoptotic genes and angiogenesis inhibitors, whereas SY5Y-TrkB cells demonstrated upregulation of genes involved in invasion or therapy resistance. We suggest that the transcriptional program of neuroblastoma cells is modulated by Trk-receptor expression and basal activation rather than by ligand-induced activation. Fine-tuning of the malignant phenotype may be achieved by additional ligand stimulation with subsequent activation of a few specific genes.

Cell Division↗

The dental anxiety scale and effects of dental fear on salivary cortisol.

Only a few studies have investigated use of the Dental Anxiety Scale in dental fear-induced neuroendocrine changes. The present study examined 19 female patients, each at two timepoints across an educational and a treatment session within periodontitis therapy. Subjective measures included a visual analogue scale, the STAI State scale, and the Dental Anxiety Scale. Salivary cortisol was measured in parallel across all four timepoints. Although patients were significantly more aroused and anxious prior to the treatment session, salivary cortisol remained unchanged. However, patients with high Dental Anxiety were significantly more aroused and anxious and showed significantly higher salivary cortisol during the educational session than those with low scores on Dental Anxiety. In conclusion, the Dental Anxiety Scale differentiated mean neuroendocrine change between patients scoring low and high for Dental Anxiety and its use as an accurate tool to identify patients with high dental anxiety should be further studied predictively.

Adolescent↗

Prenatal diagnosis of P450 oxidoreductase deficiency (ORD): a disorder causing low pregnancy estriol, maternal and fetal virilization, and the Antley-Bixler syndrome phenotype.

We report studies on the second pregnancy of a woman who had previously given birth to a virilized female infant. The cause of the virilization had not been established, but common forms of congenital adrenal hyperplasia (CAH) were excluded. Longitudinal monitoring of the second pregnancy revealed that estriol excretion failed to increase normally, reaching a maximum 0.7 mg/24 hr at the end of pregnancy (normal mean 30 mg/24 hr). The mother showed signs of virilization by the 23rd week of gestation and aromatase deficiency was suspected. However, predicted urinary metabolites for diagnosis of aromatase deficiency (for example, 16alpha-hydroxyandrosterone) were not increased significantly during the pregnancy. Interestingly, excretion of the androgen metabolite androsterone increased rapidly at the beginning of pregnancy and peaked around the 20th week, suggesting increased production of testosterone and 5alphaDHT, probably the cause of maternal virilization. Urine steroid analysis by GC/MS showed gradually increasing excretion (9 mg/24 hr) of the normally minor metabolite 5alpha-pregnane-3beta,20alpha-diol (epiallopregnanediol), an epimer of the dominant progesterone metabolite pregnanediol (5beta-pregnane-3alpha,20alpha-diol). We believe epiallopregnanediol is largely the maternal urinary excretion product of fetal 5-pregnene-3beta,20alpha-diol, the principal metabolite of pregnenolone, implying a build-up of the latter steroid in the fetal adrenal. These findings suggested that the 'block' in the estriol biosynthetic pathway occurs at an early stage with 17-hydroxylation of pregnenolone being affected. The male baby born of this pregnancy had normal genitalia but showed a urinary steroid profile indicating partial deficiencies of P450c17 and P450c21. However, no mutations in the corresponding CYP17 and CYP21 genes were identified. Urinary steroid analysis carried out on his virilized older sibling showed the same pattern of metabolites. Recently, we determined that this disorder is caused by mutations in P450 oxidoreductase (OR), the essential redox partner for CYP17 and CYP21 hydroxylases. The novel metabolic profile has now been seen in many patients, most diagnosed with the skeletal dysplasia Antley-Bixler syndrome. We propose that excessive excretion of epiallopregnanediol together with low estriol may be prenatally diagnostic for OR deficiency (ORD).

Adult↗

Congenital adrenal hyperplasia caused by mutant P450 oxidoreductase and human androgen synthesis: analytical study.

BACKGROUND: Congenital adrenal hyperplasia with apparent combined P450C17 and P450C21 deficiency is associated with accumulation of steroid metabolites, indicating impaired activity of 17alpha-hydroxylase and 21-hydroxylase. However, no mutations have been reported in the CYP17 and CYP21 genes, which encode these P450 enzymes. Affected girls are born with ambiguous genitalia, but their circulating androgens are low, and virilisation does not progress. We aimed to investigate the underlying molecular basis of congenital adrenal hyperplasia with apparent combined P450C17 and P450C21 deficiency in affected children. METHODS: We did sequence analysis of the human gene encoding P450 oxidoreductase, an enzyme that is important in electron transfer from NADPH to P450C17 and P450C21. We studied two unrelated families with a total of three affected children and 100 healthy controls. Wild-type and mutant P450 oxidoreductase proteins were bacterially expressed, purified, and assayed for cytochrome c reductase activity. FINDINGS: We identified four mutations encoding single aminoacid changes in P450 oxidoreductase. All patients were compound heterozygotes, whereas their parents and an unaffected sibling harboured a mutation in only one allele. By contrast, no mutations were noted in the controls. Bacterial expression of recombinant mutant proteins revealed deficient or reduced enzyme activity. INTERPRETATION: Molecular pathogenesis of this form of congenital adrenal hyperplasia is caused by mutations in the gene encoding P450 oxidoreductase. Deficiency of this enzyme could suggest an alternative pathway in human androgen synthesis, present only in fetal life, which explains the combination of antenatal androgen excess and postnatal androgen deficiency.

Adolescent↗

Short stature in children with an apparently normal male phenotype can be caused by 45,X/46,XY mosaicism and is susceptible to growth hormone treatment.

UNLABELLED: Girls with unexplained short stature are routinely screened for the presence of Ullrich-Turner syndrome by clinical examination, laboratory tests, and karyotyping. In this study, we performed chromosomal analysis in boys to explore the role of 45,X/46,XY mosaicism for short stature in males. Short-term effects of growth hormone treatment in male 45,X/46,XY individuals were compared retrospectively to those in female patients. We report six boys with a normal-appearing male phenotype and 45,X/46,XY mosaicism, four of whom were diagnosed postnatally because of short stature. Two boys were diagnosed prenatally by amniocentesis. Five boys were short and were treated with growth hormone (0.04-0.05 mg/kg per day) in analogy to girls with Ullrich-Turner syndrome and gonadal dysgenesis. With the exception of one patient in whom treatment was initiated only at the age of 14.6 years, the male patients with 45,X/46,XY mosaicism responded to short-term growth hormone treatment similarly to females with an increasing height SDS. CONCLUSION: 45,X/46,XY mosaicism remains undetected in some short boys because this group is not routinely karyotyped. We recommend chromosomal analysis of boys with otherwise unexplained short stature who are short for their families. Growth hormone treatment should be offered to short boys with 45,X/46,XY mosaicism and a predicted adult height below the mid-parental range within clinical trials.

Body Height↗

Anthropometry, metabolic control, and thyroid autoimmunity in type 1 diabetes with celiac disease: A multicenter survey.

OBJECTIVE: To investigate the influence of celiac disease (CD) on growth and metabolic control in a nationwide cohort of children and adolescents with type 1 diabetes (T1D). STUDY DESIGN: We analyzed data from 19,796 pediatric patients with T1D in the German pediatric multicenter DPV-database for occurrence of CD. RESULTS: CD-specific antibodies were present in 1326 patients (6.7%). The diagnosis was confirmed in 127 patients (0.6%) by small-bowel biopsy. Female subjects were significantly more predisposed to have T1D and CD. The CD-affected patients in our cohort were significantly younger at diabetes onset. Furthermore, they had significantly lower height-SDS at onset (-0.49 vs -0.06, P < .05), a difference that increased during the course of the disease (-0.80 vs -0.26 after 9 years of diabetes, P < .05). In addition, body mass index-SDS significantly differed between the groups (0.22 vs 0.47, P < .05). Evidence for thyroid disease was more commonly observed in the T1D with CD group (6.3% vs 2.3%, P < .05). HbA1c values were lower in the patients with T1D and CD. CONCLUSIONS: The CD-positive patients were characterized by earlier onset of diabetes and decreased growth and weight gain. These findings emphasize the clinical relevance of celiac disease in patients with autoimmune diabetes.

Adolescent↗

Congenital primary hypothyroidism in a turkish family caused by a homozygous nonsense mutation (R609X) in the thyrotropin receptor gene.

Congenital primary hypothyroidism can be caused by reduced or absent responsiveness of the thyroid gland to thyrotropin (TSH), which normally binds to the thyrotropin receptor (TSHR) and exerts its effects mainly by stimulating intracellular cyclic adenosine monophosphate (cAMP). So far 22 causative loss-of-function mutations in the TSHR gene have been reported as occurring in families from different ethnic and geographical origins. We here report a family of Turkish origin in which all four children were diagnosed as having congenital primary hypothyroidism. A homozygous nonsense mutation in codon 609 (R609X) of the TSHR gene was identified in all affected individuals as the underlying molecular defect. The mutation leads to a truncated TSHR, which is likely to be biologically inactive. This mutation has been identified before to cause resistance to TSH in a large Bedouin kindred where two affected hypothyroid individuals were also resistant to adrenocorticotrophic hormone (ATCH). Interestingly none of the affected individuals in our family had symptoms consistent with hypocortisolism, which excludes a direct impact of this TSHR mutation on the hypothalamicpituitary-adrenal axis.

Amino Acid Sequence↗

Mosaic trisomy 15 in a short girl with hemihypotrophy and mental retardation.

We describe a girl with short stature, mild mental retardation, hemihypotrophy, atrial septal defect I, bilateral branchial cleft fistulas and abnormal skin pigmentation. Growth hormone deficiency and other frequent causes of short stature were excluded. Blood karyotype was investigated twice. In one sample an additional marker chromosome was found in one of 53 analysed metaphases, which could not be further characterized, whereas a second investigation showed a normal female karyotype. Cytogenetic studies in skin fibroblasts revealed a mosaic trisomy 15. Although mosaic trisomy 15 is a rare finding the diagnosis must be considered in the presence of pigmentary changes, body asymmetry, short stature and other minor dysmorphic signs even if blood karyotype is normal.

Abnormalities, Multiple↗

Central reassessment of GH concentrations measured at local treatment centers in children with impaired growth: consequences for patient management.

OBJECTIVE: GH deficiency is diagnosed in children if serum GH fails to rise above a predefined cutoff value in response to at least two stimuli. Diagnostic decisions based on this testing are highly variable between centers and depend on the GH assays used. Considering the large spectrum of commercially available GH assays, we wanted to evaluate the agreement between assays, and to test whether assay-related variability of diagnostic decisions could be reduced by reassessment of peak GH concentrations in a reference center. DESIGN: We reanalysed 699 peak GH serum samples obtained after GH testing of 382 children and adolescents from 19 centers using three reference assays and compared these results with those obtained with the local assays. A subgroup of 132 patients tested with the combination of insulin hypoglycemia test and arginine test was evaluated for changes in the assignment to the diagnostic group of GH deficiency. RESULTS: The mean difference between methods ranged from 5.4 to 10.3 mU/l, slopes of the regression lines from 1.28 to 1.65. Significant non-linearity was detected in five of six assay comparisons, indicating that most assay results cannot be interconverted by the use of a factor. Overall agreement between reference and local assays was only moderate. Significant changes in diagnostic assignment occurred when different assays were used on the same patient (P<0.0001-P<0.0023). Based on GH remeasurement by one reference assay, 36 of 132 patients were categorized differently, with 35 patients changing into the GH-deficient group. Similar findings were obtained with the other reference assays. CONCLUSIONS: To decrease variability in GH testing related to assays and cutoff values, we recommend nationwide reassessment of GH peak sera in reference centers. Decisions to treat GH deficiency should incorporate the reference center results.

Adolescent↗

Increase of serum leptin after short-term pulsatile GnRH administration in children with delayed puberty.

OBJECTIVE: Leptin is known to play an important role in pubertal development in humans, probably acting as one permissive factor for the onset of puberty. Leptin serum concentrations change during pubertal development and an initial increase before the onset of puberty has been reported. The underlying mechanism for this increase in leptin levels is unknown. We hypothesized that the pulsatile release of GnRH stimulates leptin metabolism. In this study, the effect of short-term pulsatile GnRH administration on leptin levels in children with delayed onset of puberty was investigated. METHODS: Nineteen children (15 males and four females, mean age 15.5 years, range 13.1-20.5 years), who underwent evaluation for delayed sexual maturation, were included in the study. Sixteen subjects received 36 h of pulsatile intravenous GnRH, using an infusion pump that released 5 microg GnRH every 90 min. Serum concentrations of LH, FSH, testosterone, estradiol and leptin were analysed before and up to 36 h after GnRH administration. Eight patients received a single dose GnRH-agonist stimulation test (buserelin acetate test, 10 microg/kg body weight) with a 24-h follow-up (five patients underwent both tests). RESULTS: Mean (+/-s.e.m.) serum leptin increased significantly (P<0.01) after 36 h of pulsatile GnRH administration (7.26+/-1.35 vs 9.75+/-1.76 ng/ml). In contrast, no increase in leptin concentrations was observed after administration of a single dose of buserelin. CONCLUSIONS: These findings suggested that the increase in serum leptin at the onset of puberty is triggered by the pulsatile release of GnRH.

Adolescent↗

Venous sampling can be crucial in identifying the testicular origin of idiopathic male luteinising hormone-independent sexual precocity.

UNLABELLED: It has been recently shown that male LH-independent sexual precocity is caused by a somatic activating mutation in the luteinising hormone receptor (LHR) of Leydig cell tumours. In each of the patients described to date, the tumour was a well-defined, single encapsulated nodule. We present a 5.7-year-old boy with nodular Leydig cell hyperplasia, who harbours a somatic mutation of the LHRgene. The boy showed the clinical features of severe sexual precocity caused by LH-independent testosterone hypersecretion. Congenital adrenal hyperplasia, hCG- or androgen-secreting tumours, McCune-Albright syndrome, and familial male-limited precocious puberty (or testotoxicosis) were all ruled out as possible causes. A hypoechoic area was detected at the cranial pole of his right testis and a biopsy was performed. Histological examination revealed a lack of mature Leydig cells. When DNA from the affected tissue was isolated and sequenced, no somatic mutation of the LHR gene was found. To further determine the origin of the elevated testosterone levels, venous sampling was performed. Blood samples taken from the right spermatic vein showed an elevated serum testosterone concentration of 259 nmol/l. Unilateral orchiectomy of the right testis was performed, and systemic testosterone concentrations normalised. Histological examination revealed nodular Leydig cell hyperplasia. DNA analysis of the nodular tissue showed a heterozygous mutation in exon 11 of the LHR gene, which caused the replacement of aspartic acid at codon 578 by histidine. CONCLUSION: the somatic activating mutation (Asp578His) of the luteinising hormone receptor gene is not only present in Leydig cell adenomas, but can also be found in nodular Leydig cell hyperplasia. Venous sampling can play a vital role in determining the origin of elevated testosterone levels.

Amino Acid Substitution↗

Behavioral phenotypes in four mental retardation syndromes: fetal alcohol syndrome, Prader-Willi syndrome, fragile X syndrome, and tuberosis sclerosis.

Behavioral phenotypes were studied in four mental retardation syndromes using the Developmental Behavior Checklist (DBC). The four samples comprised fetal alcohol syndrome (FAS), Prader-Willi syndrome (PWS), fragile X syndrome (FRAX), and tuberosis sclerosis (TSC). Both on the item and the subscale level, there were clear behavioral differentiations across the four syndromes. FAS and FRAX proved to be most clearly differentiated from the other two samples, with PWS and TSC showing lower scores and less abnormal behavior profiles. Neither intelligence nor gender nor age contributed to variations in the number of behavior abnormalities. It was concluded that the DBC as a quantitative approach contributes significantly to the differentiation of behavioral phenotypes in various mental retardation syndromes.

Adolescent↗