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Biomedical subjects

M B Ranke

Publications and source records attributed to M B Ranke.

At least 73 records · Page 4Linked to original sources

Effects of a third intensification block of chemotherapy on bone and collagen turnover, insulin-like growth factor I, its binding proteins and short-term growth in children with acute lymphoblastic leukaemia.

Children with acute lymphoblastic leukaemia (ALL) have reduced bone turnover caused by the disease itself and early intensive chemotherapy, but the effects of later chemotherapy using different drug combinations are uncertain. We report here a longitudinal study on 9 children with ALL randomised to receive an additional third intensification block of chemotherapy, compared with 9 children receiving continuing chemotherapy over the same period. During third intensification, bone alkaline phosphatase, procollagen type I C-terminal propeptide, the carboxyterminal propeptide of type I collagen, procollagen type III N-terminal propeptide and lower leg length all decreased in response to dexamethasone, then returned to (but not beyond) baseline levels after dexamethasone was stopped and other drugs started. These changes were unrelated to circulating insulin-like growth factor (IGF)-I, IGF binding protein (IGFBP)-3 or IGFBP-2. In all children, bone alkaline phosphatase remained below the population mean throughout. We conclude that dexamethasone decreased bone and soft tissue turnover, probably through direct effects on target tissues. The postdexamethasone phase of third intensification and continuing chemotherapy had no major deleterious effect on collagen turnover, but there was evidence of continuing suboptimal bone mineralisation.

Adolescent↗

Longitudinal gonadal function after bone marrow transplantation for acute lymphoblastic leukemia during childhood.

Total body irradiation and high-dose chemotherapy, applied as a preparatory regimen for bone marrow transplantation (BMT) in children with acute lymphoblastic leukemia (ALL), are particularly hazardous to the gonads and, in addition, can impair hypothalamo pituitary-gonadal control. Longitudinal data on pubertal development and gonadal function in these patients are limited. Twenty-one ALL patients (15 males, 6 females) who had successfully undergone allogeneic BMT before puberty (age at BMT: 3.4-12.3 yr) were followed up in University Children's Hospital, Tübingen, Germany over 2 (minimum) to 14 (maximum) years. Tanner development scores, serum testosterone and estradiol, basal follicle-stimulating hormone (FSH) and luteinizing hormone (LH) were analyzed. During pubertal age, the levels of FSH and LH rose consecutively, resulting in noticeably elevated serum concentrations in 100% and 89%, respectively, of boys older than 14 years and in 75% and 75%, respectively, of girls older than 13 years. Nevertheless, pubertal development has been normal in all patients except in one boy and two girls who required substitution with sexual steroids, as timely puberty (i.e. boys < 14 years, girls < 13 years) did not start. In males with normal puberty, testosterone levels, however, were found to be low-normal. In conclusion, after BMT preceded by total body irradiation for childhood ALL, gonadal function is impaired. Even if normal pubertal development occurs, deficiencies in long-term endocrine function cannot be ruled out. In view of the high FSH levels, the prognosis for fertility is doubtful.

Adolescent↗

Reduced human growth hormone (hGH) bioactivity without a defect of the GH-1 gene in three patients with rhGH responsive growth failure.

BACKGROUND: A GH deficiency-like phenotype with normal or high hGH secretion, pathologically low IGF-I serum levels, and catch-up growth under treatment with recombinant hGH is suggestive of the presence of biologically inactive hGH syndrome, whose presumably heterogenous molecular basis is substantially unknown. DESIGN: Serum samples from patients who fulfilled the above criteria and from controls with idiopathic short stature were measured by polyclonal hGH-RIA, Nb2 rat lymphoma proliferation assay, and hGH immunofunctional assay (IFA). If assays were suggestive of the presence of bioinactive GH, mutational analysis of the hGH-1 gene was performed. PATIENTS: Three patients were selected because of clinical and biochemical evidence. At the time of diagnosis mean age was 3.4 (2.2, 3.5, 4.5) years, mean height -3.5 (-2.8, -3.6, -4.2) SD score (SDS) and mean growth rate -1.5 (-1.4, -1.5, -1.6) SDS. Mean IGF-I serum levels were -1.9 (-0.7, -2.4, -2.5) SDS and mean IGFBP-3 serum levels -1.2 (-1.1, -1.2, -1.2) SDS. Stimulated and spontaneous GH peaks measured by a polyclonal radioimmunoassay were all above 14 microg/l. GHBP serum levels were normal, and antihGH antibodies were not detected. Therapy with rhGH was effective in causing catch-up growth of the three children with an initial mean growth rate of + 2.9 (+ 1.7, + 2.1, + 5.0) SDS, and normalization of IGF-I (mean: -0.66 SDS: -1.8, - 1.2, + 1.1 SDS) and IGFBP-3 serum levels (mean: + 0.81 SDS: -0.2, + 0.8, + 1.8 SDS). RESULTS: In comparison to controls, the patients' serum hGH levels were much lower when measured by Nb2 rat lymphoma cell proliferation bioassay (mean: -2.3 SDS, range: -1.7- -4.1) and by the immunofunctional assay (IFA) (-1.5 SDS, range: -0.2- -3.1) than by RIA. Retesting of two of the three patients including an one year break of therapy confirmed the rhGH dependence of growth in spite of normal endogenous GH secretion. Radioactive direct sequencing of both strands of PCR-amplified genomic DNA and cDNA excluded a GH-1 gene mutation in all three children. CONCLUSION: Mutations of the GH-1 gene are probably not the main genetic defect in children with biologically inactive hGH syndrome. Posttranslational processing of hGH might reduce the biological activity of the normal translation product.

Antibodies↗

Growth response to rhIGF-I 80 microg/kg twice daily in children with growth hormone insensitivity syndrome: relationship to severity of clinical phenotype.

BACKGROUND: rhIGF-I has been used effectively to promote growth in growth hormone insensitivity syndrome (GHIS) in doses ranging from 40 microg/kg twice daily to 150-200 microg/kg once daily. It appears that the dose of 80 microg/kg twice daily s.c. may induce an equivalent response to higher doses with less side-effects. OBJECTIVE: To study the efficacy and safety of rhIGF-I, 80 microg/kg twice daily s.c., in children with GHIS and to analyse the relationship of growth response to severity of phenotype. PATIENTS AND DESIGN: Eleven prepubertal children (3 females, 8 males) with GHIS; basal GH > 2.5 microg/l, IGF-I < 50 microg/l, IGFBP-3 < - 2SD; were treated with IGF-I 80 microg/kg twice daily in a multi-centre study. The baseline characteristics of these patients were as follows (mean +/- SD): age, 7.5 +/- 2.5 years (range, 2.5-11.7 years), bone age (Tanner-Whitehouse - 2 RUS), 5.2 +/- 2.4 years (range, 2.3-9.1 years), mean height SDS, - 5.6 +/- 1.6 (range, - 3.1 to - 8.1), height velocity (HV), 3.1 +/- 1.1 cm/year (range, 1.9-4.9 cm/year). Height, HV, weight, skinfold thickness, puberty stage and bone age were measured at baseline and 6 monthly for 2 years. RESULTS: During the first 12 months of IGF-I therapy, the mean +/- SD HV was 7.7 +/- 1.6 cm/year (range, 6.1-11.2 cm/year), the mean +/- SD increase in HV was 4.7 +/- 2.1 cm/year (range, 1.7-8.8 cm/year) and the mean +/- SD progression of bone age was 1.9 +/- 1.0 years (range, 0.8-3.8 years). Pre-treatment height SDS at the start of IGF-I therapy correlated positively with pretreatment serum IGFBP-3 SDS levels (r = 0.85; P < 0.01). There was a significant inverse correlation between gain in height SDS and pre-treatment height SDS (r = - 0.76; P < 0.01). During the 2nd 12 months of therapy, mean HV was 7.0 +/- 3.4 cm/year (range 3.8-12.4) change in height SDS from 12 to 24 months was not significantly correlated with pre-treatment height SDS. Subscapular skinfold SDS decreased significantly (P < 0.05) during the study period, whereas there was no significant change in body mass index and triceps skinfold thickness SDS. Adverse events reported in the patient group included headache (2 patients), hypoglycaemia (2 patients), papilloedema (transient, 1 patient), lipohypertrophy (5 patients) and tonsillectomy/adenoidectomy (2 patients). CONCLUSION: This study reveals that IGF-I treatment at a dose of 80 microg/kg twice daily is effective in patients with growth hormone insensitivity syndrome. During the first 12 months of therapy, there was a significant inverse relationship between growth response to IGF-I therapy and the severity of the phenotype of growth hormone insensitivity syndrome, as measured by height SDS, at the start of therapy. Patients with a more severe clinical phenotype of growth hormone insensitivity syndrome, who also had most severe IGFBP-3 deficiency, responded better than those who were more mildly affected. An analogous situation has been shown to be the case in GH-deficient patients treated with hGH.

Body Height↗

Final height in idiopathic growth hormone deficiency: the KIGS experience. KIGS International Board.

Final height was evaluated in 369 patients with idiopathic growth hormone deficiency (IGHD) enrolled in KIGS--the Pharmacia & Upjohn International Growth Database. At the start of growth hormone (GH) therapy, the patients were 9.8 years of age, their mid-parental height SDS was -0.8, and their height SDS was -3.1. Of the 369 patients, 50% had multiple hormone deficiencies, and puberty was induced in 31%. Patients were 18 years of age at completion of GH therapy, and had received GH at a dose of 0.49 IU/kg/week (0.16 mg/kg/week), with a mean of 5.2 injections/week for 8.1 years. Final height SDS was -1.5, final minus initial height SDS was 1.7 and final minus mid-parental height SDS was -0.5. A Swedish subgroup (n = 69) received conventional GH therapy throughout at 0.65 IU/kg/week (0.22 mg/kg/week), with seven injections/week for a mean of 9.4 years. These patients achieved their genetic potential (final minus mid-parental height SDS, 0.03), with a normal final height SDS of -0.3. For the total group, the following variables were associated with final height: mid-parental height SDS (r = 0.62), injection frequency (r = 0.37), duration of GH treatment (r = 0.28), peak stimulated GH concentration (r = -0.25), age (r = -0.19) (all p < 0.001) and height velocity SDS in the first year of treatment (r = 0.20, p = 0.004). In conclusion, genetic potential, expressed as the mid-parental height, is the variable with the greatest identified influence on final height during GH treatment in IGHD. Current GH regimens will lead to a normal height and attainment of mid-parental height. However, higher dose, individualized GH regimens are likely to be necessary for patients with IGHD who are disadvantaged at the time of commencing GH therapy, such as those with short parents, those whose treatment began in late childhood or adolescence and those with less severe GHD.

Adolescent↗

Short-term increments of insulin-like growth factor I (IGF-I) and IGF-binding protein-3 predict the growth response to growth hormone (GH) therapy in GH-sensitive children.

The present study included a cohort of 42 children aged between 1.7 and 15.4 years, who presented with short stature and growth failure. Basal and generated serum levels of insulin-like growth factor-I (IGF-I) and IGF-binding protein-3 (IGFBP-3), measured in an IGF generation test following four or seven daily injections of growth hormone (GH), 0.1 IU/kg (0.033 mg/kg), were analysed in these patients. The growth response to 1 year of GH treatment, 0.6 IU/kg/week (0.2 mg/kg/week), was also investigated. Median height velocity of these patients increased from -1.6 SDS (range, -4.6 to -0.3 SDS) to 3.3 SDS (range, -0.2 to 7.1 SDS) after 1 year of GH treatment, and median height SDS increased by 0.7 SDS (range, 0.1 to 2.2 SDS). Strong correlations were observed between basal and generated IGF-I and IGFBP-3 levels. The increase in IGFBP-3 levels in response to GH in the generation test was a strong predictor of the growth response to GH therapy. All the patients in the present study could be differentiated from patients with GH insensitivity syndrome (GHIS) using the criteria of a diagnostic scoring system for GHIS. The most valuable parameters were the increases in IGF-I and IGFBP-3 levels in the generation test, which excluded 95.2% of the patients from a diagnosis of GHIS.

Adolescent↗

Predicting the response to recombinant human growth hormone in Turner syndrome: KIGS models. KIGS International Board. Kabi International Growth Study.

A mathematical model for predicting the growth response in patients with Turner syndrome who received growth hormone (GH) therapy was developed by analysing data from KIGS, the Pharmacia & Upjohn International Growth Database. A model for year 1 of GH therapy explained 46% of the variability of the growth response, with GH dose being the most important of the predictors of height velocity. In years 2-4 of therapy, height velocity during the previous year was the most important predictor, suggesting that an individual's initial response to GH may determine the height outcome of treatment. Additional predictors of height velocity in years 1-4 of GH therapy included age (negative), weight SDS and additional treatment with oxandrolone. The predictions in all 4 years were highly accurate, as indicated by the low error SDs. However, relatively low predictive power (R) during years 2-4 of treatment suggests the models are missing other parameters that would explain more of the variability of the growth response. These growth prediction models could help clinicians to design individualized treatment regimens, provide realistic expectations of therapy outcomes, and adjust treatment on the basis of detected differences between observed and predicted height velocities.

Body Height↗

Screening for mutations in the promoter and the coding region of the IGFBP1 and IGFBP3 genes in Silver-Russell syndrome patients.

In the present study we sought to identify genetic variation in genes for insulin-like growth factor binding proteins 1 and 3 (IGFBP1, IGFBP3) in 7p12-13 which through alteration of protein function or level of expression might contribute to the manifestation of Silver-Russell syndrome. Genomic DNA samples from 49 Silver-Russell syndrome (SRS) patients and from unaffected controls were investigated by single-strand conformation analysis. Overlapping polymerase chain reaction fragments covered the whole coding sequences as well as the 5' untranslated region of the IGFBP1 and IGFBP3 genes. We detected 3 new polymorphisms in the transcribed sequence of IGFBP1, one amino acid polymorphism in exon 1 of IGFBP3 and four variants in its promotor region and in intron 1. They all occurred in similar frequencies in SRS patients and in controls. Thus, paternally inherited mutations in the promoter and coding regions of IGFBP1 and IGFBP3 genes play neither a major nor a minor role in the etiology of SRS. The newly detected polymorphisms in the coding region are powerful tools for analysis of imprinting status and for detection of possible changes in the imprinting patterns of the two genes.

Alleles↗

Long-term treatment of growth hormone insensitivity syndrome with IGF-I. Results of the European Multicentre Study. The Working Group on Growth Hormone Insensitivity Syndromes.

A total of 33 patients (17 female, 16 male) with Laron syndrome (n = 31) or hGH-1 gene (n = 2, type IA deletion) from 22 centres in 12 countries were enrolled in a study conducted by Pharmacia & Upjohn, Stockholm, which was designed to test the efficacy, in terms of growth promotion and safety, of IGF-I (Igef(TM)). The patients were treated with 40-120 microg/kg IGF-I s.c. twice daily after meals. After the study ended, the patients continued to be treated on an individual basis. The results of 17 patients, who were treated for 48 months or longer were available for the present analysis. Six patients were treated for up to 72 months. When treatment started, the mean age of these patients (8 female, 9 male) was 9.1 (3.7-13.5) years and mean height was -6.5 +/- 1.3 SDS. At the end of the observation period, the mean age of the 17 patients was 14.2 (9.1-17. 7) years and mean height was -4.9 +/- 1.9 SDS. All patients showed a significant increase in growth during the final year on IGF-I, with two of them reaching the age-corresponding 3rd centile. The total gain in height (DeltaHT) was 1.7 +/- 1.2 SDS. DeltaHT SDS correlated negatively with age at onset of treatment (R(2) = -0.78, p < 0.02). BMI was 0.6 +/- 1.8 SDS at start of treatment and 1.8 +/- 1.5 SDS at the end of observation. Total DeltaHT SDS correlated positively with total DeltaBMI SDS (R(2) = 0.59, p < 0.01). Long-term treatment of patients with GHIS thus proved to be effective in promoting growth. If treatment is started at an early age, there is considerable potential for achieving height normalisation. The treatment modalities need to be optimized with respect to the growth-promoting and metabolic effects of IFG-I.

Adolescent↗

Should we treat children with idiopathic short stature?

The use of growth hormone (GH) to treat short children who are clearly GH-deficient is now well accepted. However, GH treatment of short children who have no currently recognizable abnormalities in their GH-insulin-like growth factor I axis remains controversial. Whether such children with so-called idiopathic short stature (ISS) should be treated with GH was the subject of an international workshop held in St.-Paul-de-Vence, France, in April 1999. This article summarizes the issues discussed at the workshop, including the definition of ISS, ethical and health-economic aspects of treatment, results from clinical trials and surveillance studies, and the use of prediction models in aiding treatment decisions.

Body Height↗

Secretion of noncomplexed 'Big' (10-18 kD) forms of insulin-like growth factor-II by 12 soft tissue sarcoma cell lines.

The paraneoplastic production of pro-insulin-like growth factor-II (IGF-II) forms causes tumour hypoglycaemias and presumably also has an effect on tumour cell growth. We investigated the molecular weights of IGF-II forms and their ability to form complexes with IGF binding proteins (IGFBPs) in conditioned culture media (CM) from 12 paediatric soft tissue sarcoma (STS) cell lines and from two healthy fibroblast lines. Untreated CM were separated by size exclusion chromatography using biocompatible HPLC. Subsequently, IGF-II, IGFBP-2 and IGFBP-3 were determined in the HPLC fractions by specific RIAs. In the CM, IGF-II concentrations between 0.5 and 8.6 ng/10(6) cells were measured but no IGF-I was detectable. Parallel to this investigation, a high IGF-II mRNA level averaging 44.4 +/- 29.7% was measured by semi-quantitative RT-PCR. The STS cell lines secreted a higher proportion of big-IGF-II forms reaching 10-18 kD (10-33% of the total IGF-II secreted) compared to the healthy fibroblasts (2.5-5%). At the same time, the proportion of IGF-II bound with IGFBP in complexes of 35- 70 kD and 150 kD was reduced by up to 85% in CM from tumour cells. The tumour cell lines apparently secrete a different spectrum of IGF-II forms than healthy fibroblasts. The reduced ability to form complexes with IGFBP and the higher molecular weight of the IGF-II forms produced by the tumour cells indicate that these forms could in fact be the known tumour-associated pro-IGF-II forms. Due to these characteristics, the big-IGF-II forms probably have an altered biological effect on the tumour cells when compared to IGF-II.

Chromatography, Gel↗

Influence of IGF-I and cell density on MDR1 expression in the T-lymphoblastoid cell line CCRF-CEM.

The debate about a direct or indirect effect of GH and IGF-I on the recurrence of malignancy, especially in the case of rhGH therapy in patients with leukemia, is still going on. Recent studies suggested that IGF-I plays a role in drug resistance during anticancer therapy. This resistance to diverse cytotoxic drugs, named multidrug-resistance (MDR), is mainly due to high levels of P-glycoprotein (P-gp). The gene encoding this membrane-associated transporter protein was named MDR1, and increased levels of P-gp are linked to enhanced MDR1 mRNA expression. Our aim was to investigate a possible effect of rhIGF-I on MDR1 gene expression in vitro. We cultured the T-lymphoblastoid cell line CCRF-CEM with different rhIGF-I concentrations (0, 5, 20 and 50 ng/ml) in serum-free medium for 3 days. CCRF-CEM cells are drug-sensitive and express MDR1 at low levels. MDR1 mRNA expression was measured by semiquantitative RT-PCR using a competitive assay with a heterologous DNA construct. In addition, GAPDH mRNA was amplified as an internal control for RNA integrity. P-gp activity was determined by a flow cytometric assay measuring rhodamine 123 accumulation. Furthermore, cell proliferation was monitored in all experiments. Our data do not support an effect of rhIGF-I on MDR1 mRNA expression, P-gp activity or cell proliferation in the CCRF-CEM cell line. MDR1 mRNA levels were inversely correlated to cell density with high significance (p < 0.0001). In conclusion, multidrug resistance linked to P-gp is not induced by IGF-I in CCRF-CEM cells. At high density, CCRF-CEM cells downregulate MDR1 gene expression. Our experimental model provides a very useful tool for monitoring the influence of growth factors on multidrug resistance in vitro.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Variety in growth hormone determinations due to use of different immunoassays and to the interference of growth hormone-binding protein.

More than 30 years after their introduction, growth hormone (GH) immunoassays showed the poorest inter-laboratory agreement of the various hormone assays evaluated in 1998 by the UK National External Quality Assessment Scheme, in which different laboratories using different assays reported that analyses of identical samples differed two- to threefold in value. There is therefore an urgent requirement and desire within the scientific community, particularly within centres diagnosing and treating GH deficiency and acromegaly, to resolve this problem and to develop a GH assay(s) that measures solely all of the relevant components of circulating GH immunoreactivity. The main confounders in the estimation of GH levels (now that the use of GH standards other than that recommended by the World Health Organization has largely been eliminated) are GH heterogeneity, anti-GH antiserum binding site specificity and interference from circulating high-affinity GH-binding protein (GHBP). The effects of these factors are closely related. The present study investigates these factors, focussing on the influence of GHBP and antibody binding site specificity on various assays for GH. The findings lead the authors to suggest that a solution to the problem may be to develop a GH assay that measures specifically and solely all serum 22 kDa GH, as this is the major circulating fraction and carries the dominant GH bioactivity.

Artifacts↗

Dosing of growth hormone in growth hormone deficiency.

Growth hormone (GH) treatment of GH-deficient (GHD) children is to a certain extent standardized worldwide. Recombinant 22 kDa GH is injected once daily by the subcutaneous route, mostly in the evening. The amount of GH injected (calculated per kg body weight or body surface area, expressed in terms of IU or mg) in prepubertal children mimics the known production rate (approximately 0.02 mg [0. 06 IU]/kg body weight per day). However, there is a wide variation in dosage, the reasons for which are partly unknown and partly due to national traditions and regimes imposed by authorities regulating reimbursement. The situation during puberty is less standardized, with most clinicians still not increasing the dosage according to known production rates. The results of these approaches in terms of adult height outcome are not always satisfactory. In order to achieve optimal height development during childhood, puberty and adulthood, strategies must be developed to individualize GH dosing according to set therapeutical goals taking into account efficacy, safety and cost. The implementation of prediction algorithms will help us to reach these goals. In addition, other response variables will have to be monitored during treatment in order to correct for deficits resulting from GHD.

Adolescent↗

Limited proteolysis of the IGF binding protein-2 (IGFBP-2) by a specific serine protease activity in early breast milk.

IGF in milk possibly promote maturation of the gastrointestinal tract in newborns. We studied the composition of milk samples derived from 99 healthy women at regular intervals during a period beginning 3 d and ending 6 mo after birth. The concentrations measured by RIA on d 3 were 10.7+/-0.4 ng/mL for IGF-II, 1.9+/-0.1 ng/mL for IGF-I, 100+/-5 ng/mL for IGF binding protein-3 (IGFBP-3), and 2163+/-108 ng/mL for IGFBP-2. All factor concentrations decreased by up to 70% in the course of the 6 mo. The most striking finding was an IGFBP-2-specific protease activity. Protease assays performed by incubation of 125I-IGFBP-2 with milk yielded fragments of 14, 16, 23, and 25 kD. 125I-IGFBP-3 was not cleaved. Proteolysis occurred only in milk from mothers until 4 wk postpartum and could be visualized by immunoblots. Since the affinity of the fragments to 125I-IGF-II was low, they were not demonstrable by ligand blot. Inhibitor studies and pH optimizing classified the IGFBP-2 protease as an Me2(+)-dependent serine protease with a pH optimum of 7 to 8. The proteolytic activity of further milk proteins, known as IGFBP proteases, was analyzed. Epidermal growth factor receptor peptide and prostate-specific antigen did not cleave IGFBP-2, although the protease activity correlated (r = 0.84, p < 0.00003) with the prostate-specific antigen concentration in milk. The y-nerve growth factor cleaved 125I-IGFBP-2, but in a completely different manner than the milk protease. In conclusion, the IGFBP-2 protease in milk is most probably a kallikrein. The specific proteolysis of IGF/IGFBP-2 complexes may increase the biologic availability of IGF in early milk. This mechanism may promote growth of the maternal breast epithelium and maturation of the gastrointestinal tract of newborns.

Female↗