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Biomedical subjects

M B Ranke

Publications and source records attributed to M B Ranke.

At least 109 records · Page 6Linked to original sources

Pelvic ultrasonography in Turner syndrome: standards for uterine and ovarian volume.

The purpose of this study was to investigate uterine and ovarian size according to age and pubertal stage in patients with Turner syndrome. Ultrasonographic evaluation of the uterus and the ovaries was performed in 93 patients with Turner syndrome, aged 12 days to 17.85 years. The data were compared with those of 190 healthy controls. One or both ovaries were detected in 41 of 93 patients (44%). Within the prepubertal group, mean uterine volume and mean ovarian volume of the patients with Turner syndrome were significantly (P<0.001) lower than those of controls (0.5+/-0.2 ml versus 1.0+/-0.3 ml; 0.3+/-0.3 ml versus 0.6+/-0.4 ml, respectively). In prepubertal girls, no significant relationship was found between age and uterine size or ovarian size. Both uterine volume and ovarian volume of 19 women with spontaneous puberty increased during breast development, although mean uterine volume and mean ovarian volume were significantly (P<0.01) lower than those of pubertal control patients.

Adolescent↗

Short stature in Duchenne muscular dystrophy: a study of 34 patients.

In Duchenne muscular dystrophy (DMD), short stature is a feature of unknown cause. This cross-sectional study of 34 male patients (mean age 8.0 y, age range 1.2-13.7 y) was conducted to examine the relationship between auxological parameters, markers of growth and the extent of muscular weakness. Weight and length at birth (SDS +/- SD; 0.0 +/- 1.2; 0.2 +/- 1.5) and target height SDS (-0.2 +/- 0.7) were normal. Height (HT) SDS (-1.0 +/- 1.1) was lower than the normal population (p < 0.001) and did not correlate with age. Body mass index SDS (-0.1 +/- 1.6) was normal. Tests of insulin-like growth factor-I SDS (-0.6 +/- 1.2) and insulin-like growth factor binding protein-3 SDS (0.1 +/- 1.3) ruled out a severe derangement in the GH-IGF-axis. The carboxy-terminal propeptide of type I procollagen (PICP) SDS (0.6 +/- 1.5) was normal, but bone-specific alkaline phosphatase (BAP) SDS (-1.7 +/- 0.8) was low (p <0.001). HT SDS did not correlate with BAP SDS. The Vignos scale, a grading of muscular function (score: 0 = unaffected; 11 = confined to bed) (median (range): 3 (0-9)) correlated strongly with age (r = 0.77, p < 0.0001), but did not correlate with HT SDS, PICP SDS or BAP SDS. In conclusion, DMD patients are significantly shorter than the normal population, though the HT SDS does not change with age. Growth hormone deficiency does not seem to be the cause of short stature in DMD. Significantly low BAP levels are probably the result of the reduced muscle mass, which leads to a lower biomechanical load on the bone and thus a reduction in bone turnover. The short stature observed in our study is unlikely to be the result of muscular weakness.

Adolescent↗

Biparental expression of IGFBP1 and IGFBP3 renders their involvement in the etiology of Silver-Russell syndrome unlikely.

Maternal uniparental disomy (UPD) of chromosome 7 has recently been reported in about 10% of Silver-Russell (SRS) patients. It can therefore be concluded that at least one gene on chromosome 7 is imprinted and mutations in this gene/these genes might contribute to the phenotype of the disease. Two genes which are involved in growth and localised in 7p12-13 are the insulin-like growth factor binding proteins 1 and 3 (IGFBP1; IGFBP3). Comparison to the mouse genome shows that the syntenic region on mouse chromosome 11 is imprinted, UPD of this region leads to deviations in growth in mice. In the present study we investigated whether the genes for IGFBP1 and IGFBP3 might be involved in the etiology of SRS: after exclusion of SRS specific mutations we could demonstrate biparental expression of both genes in lymphocytes of an SRS patient without UPD7 as well as expression in a patient with maternal UPD7. Our results as well as those from other groups show biparental expression of IGFBP1 in fetal tissues and expression of IGFBP3 in nearly every tissue during puberty and adult life. Thus, no evidence is given for an involvement of the two genes in SRS.

Abnormalities, Multiple↗

[Reduced incidence of side-effects of growth hormone substitution in 404 patients with hypophyseal insufficiency. Results of a multicenter indications study].

BACKGROUND: Substitution of pituitary insufficient patients with recombinant human growth hormone (rhGH) in addition to the conventional substitution with glucocorticoids, L-thyroxine and sex hormones has been approved by the regulatory authorities in 1995 with the imposition to conduct surveillance studies to monitor drug safety. RESULTS: 24% of all patients were within their 2nd treatment year, 15% within their 4th year, maximum treatment period was 6 years. There were 2 peaks within the patients age distribution: 30 to 39 years (24%) and 50 to 59 years (24%). The causes for pituitary disease were as follows: pituitary adenomas (47%), idiopathic (16%), craniopharyngeomas (16%) and others (21%). Mean GH dose was 1.5 IU/d s.c. (range 0.4 to 4 IU/d). Serum-IGF-1 increased by 159 and 192% in females and males. Waist circumference decreased by 2% and serum cholesterol was lowered by 5.5% in males. There were 2 cases with new carcinomas, 1 diabetes mellitus II and 1 death. Adverse events (AEs) within KIMS were compared to those of the treatment (GH) and placebo (PI) groups of the previous admission trials (in percent): edema: KIMS 10, GH 37, Pl 3; arthralgia: KIMS 8, GH 19, Pl 2; muscle pain: KIMS 3, GH 16, Pl 3; dizziness: KIMS 2, GH 1, Pl 3; headache: KIMS 2, GH 3, Pl 2; others: KIMS 2, GH 22, Pl 13. The reported incidence of AEs in KIMS was lower than in previous clinical trials. There might be 3 reasons for this: 1. under-reporting, particularly those AEs not likely to be related to GH treatment; 2. doses used in trials were 2-fold higher than in KIMS; 3. dose titration for individual patients. CONCLUSION: Surveillance programs are important for monitoring of drug long-term efficacy and safety.

Adolescent↗

A role for helix 3 of the TRbeta ligand-binding domain in coactivator recruitment identified by characterization of a third cluster of mutations in resistance to thyroid hormone.

Resistance to thyroid hormone (RTH) has hitherto been associated with thyroid hormone beta receptor (TRbeta) mutations which cluster in two regions (alphaalpha 310-353 and alphaalpha 429-461) of the hormone-binding domain and closely approximate the ligand-binding cavity. Here, we describe a third cluster of RTH mutations extending from alphaalpha 234-282 which constitute a third boundary of the ligand pocket. One mutant, T277A, exhibits impaired transactivation which is disproportionate to its mildly reduced ligand affinity (Ka). T3-dependent recruitment of coactivators (SRC-1, ACTR) by mutant receptor-RXR heterodimers was reduced in comparison with wild-type. Cotransfection of SRC-1 restored transactivation by T277A. In the TRbeta crystal structure this helix 3 residue is surface-exposed and is in close proximity to residues L454 and E457 in helix 12 which are known to be critical for coactivator interaction, suggesting that they all constitute part of a receptor-coactivator interface. The transcriptional function of other mutants (A234T, R243W/Q, A268D, Delta276I, A279V, R282S) in this cluster correlated with their reduced Ka and they inhibited wild-type TRbeta action in a dominant negative manner. DNA binding, heterodimerization and corepressor recruitment were preserved in all mutants, signifying the importance of these attributes for dominant negative activity and correlating with the absence of natural mutations in regions bordering the third cluster which mediate these functions.

Amino Acid Sequence↗

Randomised, double-blind, placebo-controlled trial of human recombinant growth hormone in patients with chronic heart failure due to dilated cardiomyopathy.

BACKGROUND: Some studies have suggested that treatment with recombinant human growth hormone (rhGH) increases left-ventricular mass and improves haemodynamic and functional status in patients with heart failure due to dilated cardiomyopathy. We did a double-blind, randomised, placebo-controlled study of rhGH in patients with chronic heart failure due to dilated cardiomyopathy. METHODS: 50 patients (43 men) were randomly allocated treatment with subcutaneous rhGH (2 IU daily) or placebo for a minimum of 12 weeks. The primary endpoints were the effects on left-ventricular mass and systolic wall stress. The secondary endpoints were the effects on left-ventricular size and function. Data were analysed by intention to treat. FINDINGS: Patients in the rhGH group had an increase in left-ventricular mass compared with those in the placebo group (27%, p=0.0001). There was no significant difference in left-ventricular systolic wall stress, mean blood pressure, or systemic vascular resistance between the two groups. New York Heart Association functional class, left-ventricular ejection fraction, and distance on the 6 min walking test were unchanged. The change in serum insulin-like growth factor (IGF)-I concentrations (rhGH 77 ng/mL; placebo -19 ng/mL, GH vs placebo p=0.0001) was significantly related to the change in left-ventricular mass (r=0.55, p=0.0001). One patient in the rhGH group was withdrawn at 6 weeks because of worsening heart failure. INTERPRETATION: There is a significant increase in left-ventricular mass in patients with dilated cardiomyopathy given rhGH but this is not accompanied by an improvement in clinical status. Changes in left-ventricular mass are related to changes in serum IGF-I concentrations. Whether a longer treatment period would provide clinical benefits and decrease mortality is unknown.

Adult↗

De novo mutations of the growth hormone gene: an important cause of congenital isolated growth hormone deficiency?

UNLABELLED: A family with isolated growth hormone deficiency (IGHD) in two children and their mother is reported. Genetic analysis revealed a heterozygous splice site mutation in intron III of the GH-1 gene. This mutation was de novo in the mother and was transmitted in a dominant way to her offspring. CONCLUSION: De novo mutations in the GH-1 gene may be an important cause of congenital idiopathic IGHD. As these patients have normal fertility, pointing out this mutation is of great value for appropriate genetic counselling in patients with idiopathic IGHD.

Child, Preschool↗

Reference values for height and weight in Prader-Willi syndrome based on 315 patients.

UNLABELLED: The spontaneous growth of 315 patients (109 girls and 208 boys) with Prader-Willi syndrome (PWS) was analysed in a mixed longitudinal and cross-sectional manner. 33 patients were seen in the department between 1970 and 1994; height and weight of 76 patients from Germany were evaluated by means of a questionnaire with detailed measuring instructions, and 206 definite cases were added from the literature. Mean ( SD) length of newborn babies with PWS was 50.2+/-2.8 cm (145 boys) and 48.9 3.3 cm (79 girls). Mean weight at birth was 2945 570 g in boys and 2782+/-594 g in girls. During the 1st year, the children's growth was nearly normal, thereafter short stature was present in approximately 50% of PWS patients. Between 3 and 13 years of age, the 50th percentile for height in PWS is roughly identical with the 3rd percentile in healthy controls. Body weight was normal for all boys and girls during the first 2 years. Thereafter, a rapid weight gain occurred; after an age of 10 years weight-for-height index in nearly all patients exceeded the normal range. The extent of pubertal growth was reduced for the group. Mean adult height was 161.6+/-8.1 cm (23 males) and 150.2+/-5.5 cm (21 females). Head circumference for age was normal for boys and girls. CONCLUSION: Reference data on spontaneous development of growth and weight gain of children with Prader-Willi syndrome are described allowing a better counselling of patients and parents.

Adolescent↗

Activation-dependent expression of the insulin-like growth factor binding protein-2 in human lymphocytes.

The expression of the insulin-like growth factor binding protein-2 (IGFBP-2) was assayed in mononuclear cells originating from different organs of the immune system. All mononuclear cells studied did express IGFBP-2, but the expression level was found to be dependent on the cell type and origin of the cell. T cells showed a higher expression of IGFBP-2 mRNA than did B cells, and CD34+ stem cells expressed IGFBP-2 mRNA at a high level. Expression was highest in bone marrow and thymus. Stimulation of peripheral mononuclear cells resulted in a marked increase of IGFBP-2 mRNA and also intracellular IGFBP-2, as analysed by fluorescence staining. This increase parallels the increase of other known T-cell activation markers. Furthermore, the increase of intracellular IGFBP-2 seems to precede T-cell blast formation and all T cells in active phases of the cell cycle have high levels of IGFBP-2. Our results provide a basis for further investigations on the contribution of the IGF-system to the regulation of T-cell proliferation and differentiation. IGFBP-2, in particular, may have an important influence in the regulation of T-cell activation and proliferation.

Cell Culture Techniques↗

Bone age in 116 untreated patients with Turner's syndrome rated by a computer-assisted method (CASAS).

Bone age maturation in 116 untreated patients with Turner's syndrome was evaluated in a cross-sectional and longitudinal analysis. A total of 265 radiographs were rated using the TW2-RUS method on the computer-assisted skeletal age score (CASAS) system. Bone age was found to be retarded from the chronological age of 3 to 6y. Between the ages of 7 and 12 y bone age almost equalled chronological age and progressed normally at a rate of 1 y y(-1). Bone maturation slowed down thereafter and epiphyseal closure was not reached before the age of 17 y. Reference data are presented on bone age and a bone age maturation curve for untreated patients with Turner's syndrome to be used in clinical practice. In the assessment of bone age and bone age velocity in Turner's syndrome the CASAS system produced reliable and valid results. The absolute difference between repeated bone age ratings was 0.26 "y" (median) with a range of 0.00-0.56 "y". Future studies evaluating the effect of growth-promoting treatment in Turner's syndrome should use a computerized method for the determination of bone age.

Adolescent↗

Paternally inherited deletion of CSH1 in a patient with Silver-Russell syndrome.

In a continuing study on the aetiology of Silver-Russell syndrome (SRS), we detected a patient with a heterozygous deletion in the growth hormone gene cluster (17q22-q24). The deletion of the chorionic somatomammotrophin hormone 1 (CSH1) gene was inherited from the patient's father. The patient shows typical symptoms of SRS. Though deletions of CSH1 have been reported without any phenotypic consequences, the heterozygous deletion might be involved in the aetiology of SRS in the case presented here. Apart from other observations in SRS, like maternal uniparental disomy 7, changes in the genomic region 17q22-qter might be responsible for the expression of this syndrome for at least some of the patients, leading to the heterogeneity of SRS.

Child↗

Efficacy and safety of growth hormone treatment in children with prior craniopharyngioma: an analysis of the Pharmacia and Upjohn International Growth Database (KIGS) from 1988 to 1996.

We studied short- and long-term responses to growth hormone (GH) treatment and adverse medical events (AE) in 488 patients with craniopharyngioma who were entered into the Kabi International Growth Study (KIGS). First-year growth response and responsiveness (n = 394) were similar to those seen in children with idiopathic GH deficiency. The growth response over 5 years (n = 152) was unaffected by the recurrence of tumour and prior tumour management, but was greater in those receiving thyroxine. Mean height standard deviation scores (SDS) at the end of GH treatment (n = 129) was -0.7+/-1.2, and 79% achieved a height over -2 SD of target height, with evidence of further growth potential. Final height SDS correlated positively with height SDS at the start of treatment and with target height SDS, whereas gain in height SDS was inversely correlated with height SDS and bone age at the start of GH treatment. The rate of recurrence of tumour, 0.045/treatment year, was greater in those who had been treated with surgery alone compared to surgery and cranial irradiation. Other AE included headaches, fluid retention and convulsions occurring at rates of 0.025, 0.005 and 0.004/treatment year, respectively. We concluded that GH treatment is safe and effective in children with craniopharyngioma and provide data for counselling of parents about outcome during GH treatment.

Body Height↗

Catch-up growth after childhood-onset substitution in primary hypothyroidism: is it a guide towards optimal growth hormone treatment in idiopathic growth hormone deficiency?

Catch-up growth was analyzed in 20 prepubertal children with primary hypothyroidism (PH) starting treatment at an age of 4.4 (1.2-10.1) years and a height (HT) SD score (HT SDS) of -3.1 (+/-0.8). All patients were followed for at least 3 prepubertal years. HT velocity was 12.3 +/- 2.3, 9.0 +/- 1.8 and 7.5 +/- 2.2 cm/year, and change in HT SDS was 1.60 +/- 0.56, 0.57 +/- 0.33 and 0.28 +/- 0.38 during the 1st, 2nd and 3rd year, respectively. The 11 children followed to adult height reached a HT SDS of -0.11 +/- 1.1, all within their target HT range. HT gain (DeltaHT SDS) during the 1st year was correlated with the degree of catch-up growth (r2 = 0.78, p < 0.001). While catch-up growth in childhood-onset PH is complete, this is not the case in GH deficiency (GHD). Based on the auxological characteristics of the patients with PH, HT velocities during the first 2 years were predicted applying prediction models devised for prepubertal children with idiopathic GHD. The modalities of GH treatment observed in the models were used to calculate predicted HT velocities of the PH patients. Observed HT velocities in PH were higher than predicted HT velocities during the 1st (10.67 +/- 1.37 cm/year, p < 0.01) and 2nd (8.35 +/- 0.86 cm/year, p = 0.128) year. The data show that catch-up potential in idiopathic GHD of childhood onset is reduced compared to PH. Since early catch-up as well as total HT recovery in children with GHD are often not reached by present treatment modalities, catch-up growth in PH may serve as a model towards optimizing GH treatment. The data suggest that initial GH doses of 1.0 IU/kg/week, rather than the presently recommended 0. 6 IU/kg/week, need to be given in GHD in order to achieve the degree of early catch-up observed in PH and to consequently improve the final outcome.

Body Height↗

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↗

Effects of intensive chemotherapy on bone and collagen turnover and the growth hormone axis in children with acute lymphoblastic leukemia.

To investigate the effects of disease and intensive chemotherapy on bone turnover and growth in children with acute lymphoblastic leukemia (ALL), a longitudinal prospective study was carried out in 22 children, aged 1.2-13.5 yr, enrolled in the Medical Research Council-funded randomized trial of childhood ALL treatment in the UK. We measured lower leg length and markers of bone formation [bone alkaline phosphatase (ALP) and procollagen type I C-terminal propeptide (PICP)], bone resorption [pyridinoline, deoxypyridinoline, and carboxyl-terminal telopeptide of type I collagen (ICTP)], soft tissue turnover [procollagen type III N-terminal propeptide (P3NP)], and the GH axis [IGF-I, IGF-binding protein-3 (IGFBP-3), IGFBP-2, and urinary GH] at 1- to 4-week intervals from diagnosis to week 27 of treatment. In addition, GH-binding protein was measured at diagnosis. At diagnosis, mean SD scores were: bone ALP, -1.84; PICP -1.77; pyridinoline, -1.42; deoxypyridinoline, -1.66; ICTP, -0.42; P3NP, +1.45; GH, +24.4; IGF-I, -1.70; IGFBP-3, -0.88; IGFBP-2, +2.42; and GH-binding protein, -0.69. Bone ALP, PICP, and IGFBP-3 were all correlated (P < or = 0.03). During induction and intensification, there was shrinkage of the lower leg, with decreases in PICP, pyridinoline, ICTP, and P3NP (P < 0.05), whereas IGF-I and IGFBP-3 increased (P < 0.05). After prednisolone was discontinued, bone ALP and collagen markers increased markedly (P < 0.01), but there was no significant change in IGF-I and IGFBP-3. In 12 children who received high dose i.v. methotrexate, postglucocorticoid increases in bone ALP and PICP were less, whereas those in ICTP and P3NP were greater, compared to levels in children who did not receive methotrexate (P < 0.05). We conclude that ALL itself caused GH resistance and low bone turnover. During early intensive chemotherapy, further suppression of osteoblast proliferation and osteoclast activity occurred, not mediated through the systemic GH axis, probably by the direct action of prednisolone on bone. The postglucocorticoid increase in bone turnover was also independent of the GH axis and was modulated by high dose i.v. methotrexate, which depressed osteoblast recovery and enhanced osteoclast activity.

Adolescent↗

Elevated insulin-like growth factor (IGF) binding protein (IGFBP)-2 and IGFBP-4 expression of leukemic T-cells is affected by autocrine/paracrine IGF-II action but not by IGF type I receptor expression.

We recently found evidence indicating that the source of elevated serum insulin-like growth factor binding protein (IGFBP)-2 in leukemia was the leukemic T-cells. Here we report that locally produced IGF-II affects IGFBP-2 expression and growth of leukemic cells through the IGF type I receptor. We measured IGFBP-2, -4 and IGF type I receptor (IGF-I-R) mRNA by RT-PCR, cell growth and IGFBP-2 secretion (per 10(6) cells). IGF-I-R binding sites were assessed by 125I-IGF replacement studies. Inhibition using an IGF-II antibody showed that tumor cell-derived IGF-II accounts for a significant 25% (P < 0.001) increase in IGFBP-2 secretion and enhanced growth (P < 0.01) of leukemic T-cells after 7 days in culture. IGFBP-2 secretion, but not IGFBP-2 mRNA was specifically increased by IGFs, while no specific effect of insulin was detectable. The addition of 100 ng/ml IGF-II enhanced the IGFBP-2 secretion 2.8-fold, while the use of IGF-I only enhanced IGFBP-2 secretion 1.7-fold, although IGF-I enhanced IGF-II action. Through inhibition using JB1, a peptide inhibiting the IGF signal transduction by blocking the IGF-I-R, we demonstrated the involvement of the IGF-I-R in IGFBP-2 and -4 expression and leukemic cell growth. However, only slight differences in the IGF-I-R mRNA expression were seen for T- and B-cells compared with the differences found for the IGFBP-2 and -4 mRNA or IGFBP-2 secretion. Thus, although IGF-I-R mediates the autocrine/paracrine effects of the IGFs, IGF-I-R mRNA expression is most probably not involved in the differential IGFBP-2/IGFBP-4 expression in leukemic cells.

Base Sequence↗

Magnetic resonance images of 91 children with different causes of short stature: pituitary size reflects growth hormone secretion.

UNLABELLED: In order to validate an association between pituitary size and severity of growth hormone deficiency (GHD) we evaluated the magnetic resonance images (MRI) of 107 children with different causes of short stature. Ninety-one MRIs were evaluable (64 male, 27 female; age: 9.1 +/- 3.9 years). The levels of insulin-like growth factor-1 (IGF-1) and insulin-like growth factor binding protein-3 (IGFBP-3), and tests of GH stimulation and spontaneous secretion, led to the following subgroups: severe isolated GHD (SIGHD) (GH < 7 ng/ml) (n = 21); partial, isolated GHD (GH 7-10 ng/ml) (n = 22); multiple pituitary hormone deficiency (MPHD) (n = 13); neurosecretory dysfunction (n = 10); non-classifiable diagnosis (NC) (n = 13); idiopathic short stature (n = 9); and intra-uterine growth retardation (n = 3). Pituitary height (PHT) was measured and hypoplasia was assumed when PHT was < -2 SDS. An ectopic posterior pituitary with missing stalk and a hypoplastic anterior pituitary was present in 12 (57%) SIGHD cases, 12 (92%) MPHD cases and 1 patient from the NC group. An isolated hypoplastic anterior pituitary was observed in 15%-33% of the other groups. PHT (mm; mean, SD) in MPHD (1.7 +/- 0.5) was lower than in SIGHD (2.7 +/- 1.0, P < 0.05), with PHT of both groups being lower than in all the other groups (3.8 +/- 0.9, P < 0.0001). PHT SDS correlates with IGF-I SDS (r = 0.48, P < 0.0001), IGFBP-3 SDS (r = 0.46, P < 0.0001) and the highest peaks in tests of GH stimulation and GH spontaneous secretion (r = 0.36, P < 0.0001). In contrast to all the other groups, no correlation with age was observed in MPHD and SIGHD. Breech delivery was recorded in up to 26% of patients in all seven groups. Surprisingly, only 1 out of 23 patients with an ectopic posterior pituitary was born by breech delivery, suggesting that ectopia of the posterior lobe is not necessarily related to breech delivery. CONCLUSION: PHT is significantly correlated with GH secretion in several types of short stature. Patients with ectopic posterior pituitary, missing stalk and hypoplastic anterior pituitary either suffer from SIGHD or MPHD, and this anatomical defect is not necessarily related to breech delivery.

Adolescent↗