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Biomedical subjects

Karl Welte

Publications and source records attributed to Karl Welte.

At least 37 records · Page 2Linked to original sources

Thiopurine methyltransferase (TPMT) genotype and early treatment response to mercaptopurine in childhood acute lymphoblastic leukemia.

CONTEXT: Early response to multiagent chemotherapy, including mercaptopurine, as measured by minimal residual disease is an important prognostic factor for children with acute lymphoblastic leukemia (ALL). Thiopurine methyltransferase (TPMT) is involved in the metabolism of mercaptopurine and subject to genetic polymorphism, with heterozygous individuals having intermediate and homozygous mutant individuals having very low TPMT activity. OBJECTIVE: To assess the association of TPMT genotype with minimal residual disease load before and after treatment with mercaptopurine in the early treatment course of childhood ALL. DESIGN, SETTING, AND PATIENTS: TPMT genotyping of childhood ALL patients (n = 814) in Germany consecutively enrolled in the ALL-BFM (Berlin-Frankfurt-Münster) 2000 study from October 1999 to September 2002. Minimal residual disease was analyzed on treatment days 33 and 78 for risk-adapted treatment stratification. A 4-week cycle of mercaptopurine was administered between these 2 minimal residual disease measurements. Patients (n = 4) homozygous for a mutant TPMT allele, and consequently deficient in TPMT activity, were treated with reduced doses of mercaptopurine and, therefore, not included in the analyses. MAIN OUTCOME MEASURES: Minimal residual disease load before (day 33) and after (day 78) mercaptopurine treatment. Loads smaller than 10(-4) were defined as negative. RESULTS: Patients (n = 55) heterozygous for allelic variants of TPMT conferring lower enzyme activity had a significantly lower rate of minimal residual disease positivity (9.1%) compared with patients (n = 755) with homozygous wild-type alleles (22.8%) on day 78 (P = .02). This translated into a 2.9-fold reduction in risk for patients with wild-type heterozygous alleles (relative risk, 0.34; 95% confidence interval, 0.13-0.86). CONCLUSIONS: TPMT genotype has a substantial impact on minimal residual disease after administration of mercaptopurine in the early course of childhood ALL, most likely through modulation of mercaptopurine dose intensity. Our findings support a role for minimal residual disease analyses in the assessment of genotype-phenotype associations in multiagent chemotherapeutic trials.

Adolescent↗

The transcriptional repressor Gfi1 controls STAT3-dependent dendritic cell development and function.

The mechanisms controlling the differentiation of dendritic cells (DCs) remain largely unknown. Using a transcriptional profiling approach, we identified Gfi1 as a novel critical transcription factor in DC differentiation. Gfi1-/- mice showed a global reduction of myeloid and lymphoid DCs in all lymphoid organs whereas epidermal Langerhans cells were enhanced in number. In vivo, Gfi1-/- DCs showed striking phenotypic and functional alterations such as defective maturation and increased cytokine production. In vitro, Gfi1-/- hematopoietic progenitor cells were unable to develop into DCs. Instead, they differentiated into macrophages, suggesting that Gfi1 is a critical modulator of DC versus macrophage development. Analysis of hematopoietic chimeras and retrovirus-reconstituted hematopoietic progenitor cells established a cell autonomous and nonredundant role for Gfi1 in DC development. The developmental defect of Gfi1-/- progenitor cells was associated with decreased STAT3 activation. In conclusion, we have identified Gfi1 as a critical transcription factor that controls DC versus macrophage development and dissociates DC maturation and activation.

Animals↗

Multiple spleen and liver abscesses due to Yersinia enterocolitica septicemia in a child with congenital sideroblastic anemia.

In patients with iron overload, opportunistic infections are an underestimated risk. Yersinia enterocolitica is a rare organism to be isolated in this setting. The authors report a case of disseminated Y. enterocolitica sepsis in a 5-year-old boy with sideroblastic anemia. Ultrasound examination revealed massive ascites, a pseudo-appendicitis, and hypoechogenic lesions corresponding to abscess formations in the liver and spleen. The initial antibiotic therapy consisted of cefotaxime, gentamicin, and metronidazole, but only treatment with ciprofloxacin and meropenem led to defervescence and clinical stabilization. The risk of developing uncommon infections in patients with iron overload should be acknowledged by all physicians, and the relevance of ultrasound examination is emphasized. In this case, only a detailed history revealed that several days before the onset of diarrhea, the child was feeding a deer; this is how infection was probably acquired.

Anemia, Sideroblastic↗

Heterogeneous expression pattern of pro- and anti-apoptotic factors in myeloid progenitor cells of patients with severe congenital neutropenia treated with granulocyte colony-stimulating factor.

Apoptosis is accelerated in the myeloid progenitor cells of patients with severe congenital neutropenia (CN). Granulocyte colony-stimulating factor (G-CSF) increases neutrophil numbers in most CN patients. The effect of G-CSF on apoptosis in CN was analysed by apoptosis rate and expression of anti- and pro-apoptotic factors. G-CSF-treated patients showed higher apoptosis frequency, lower expression of bcl-2 and bcl-xL, but higher expression of bfl-1/A1 and mcl-1. Caspase 9 was highly expressed in patients and controls after G-CSF administration. Thus, G-CSF acts on apoptosis regulation, but additional mechanisms leading to the increase of neutrophil numbers must be assumed.

Adult↗

Congenital amegakaryocytic thrombocytopenia: a retrospective clinical analysis of 20 patients.

Congenital amegakaryocytic thrombocytopenia (CAMT) is a rare bone marrow failure syndrome characterised by isolated thrombocytopenia because of ineffective megakaryocytopoiesis at birth. In the last 10 years, we collected data from 20 patients diagnosed with CAMT based on a severe thrombocytopenia since birth and absent or markedly decreased numbers of megakaryocytes in the bone marrow. Fanconi's anaemia and thrombocytopenia absent radii syndrome were ruled out for all patients. We retrospectively compared the clinical courses, laboratory findings and treatment outcome. Development of pancytopenia was observed in 14 of the patients, only one patient presented with an isolated thrombocytopenia over a period of over 14 years. One boy died from bleeding complications. We defined two groups of patients according to the course of platelet counts during the first year of life, which also differed in the course of development of pancytopenia. Physical anomalies in addition to haematopoiesis were found in a number of patients: two children presented with cardiac defects, six with growth abnormalities, and four with retardation of psychomotor development. Fifteen patients were treated with haematopoietic stem cell transplantation, four of whom died of transplantation-related events.

Consanguinity↗

Thrombopoietin regulates differentiation of rhesus monkey embryonic stem cells to hematopoietic cells.

Thrombopoietin (TPO) is the primary regulator of megakaryocyte and platelet production in vitro and in vivo. It supports also survival and proliferation of hematopoietic stem cells. The TPO receptor, c-mpl, is a member of the protooncogene family. Our studies focused on the effect of TPO on proliferation and differentiation of rhesus monkey embryonic stem cells to hematopoietic cells. The rationale of the present investigations was the finding that patients with congenital amegakaryocytic thrombocytopenia (CAMT) reveal c-mpl mutations leading to the development of pancytopenia, suggesting that c-mpl is expressed in early hematopoiesis. Here we demonstrate that rhesus monkey embryonic stem (ES) cells are capable of differentiating into uncommitted progenitor cells, including hemangioblasts (hematopoietic and endothelial precursor cells). The combination of TPO and vascular endothelial growth factor (VEGF) significantly increases the number of hemangioblasts and promotes even differentiation to CD34(+) hematopoietic progenitor cells (up to 8%). In addition, analysis of gene expression during hemangioblast development demonstrates that TPO is capable of increasing the mRNA expression of the VEGF receptor (VEGFR) and its own receptor (c-mpl). The in vitro differentiation of rhesus monkey ES cells provides an opportunity to better understand the mechanism of TPO function in the early stage of hematopoietic development from ES cells to mature hematopoietic cells.

Animals↗

GSTP1 and MDR1 genotypes and central nervous system relapse in childhood acute lymphoblastic leukemia.

The probability of event-free survival of childhood acute lymphoblastic leukemia (ALL) approaches 80% or more with the use of modern multiagent chemotherapeutic regimens. One major contribution to this success has been reduction of the rate of central nervous system (CNS) relapses to less than 5%. However, heterogeneity is observed with regard to the incidence of CNS relapse in homogenously treated patient populations. One potential explanation for this heterogeneity is variation in the genetic background of these populations. Glutathione S-transferase P1 and P-glycoprotein are implicated in resistance to a variety of chemotherapeutic agents and have been localized to the blood-brain barrier. In a matched case-control study, we investigated the associations between CNS relapse in childhood ALL and the presence of phenotypically relevant single nucleotide polymorphisms within the GSTP1 (codon 105 and 114) and MDR1 genes (ABCB1; coding for Pgp; exon 26, C3435T). Significant reductions in risk of CNS relapse were observed for patients homozygous for the GSTP1 Val105 allele as well as for patients with the MDR1 3435T/T or C/T genotype. For both genotypes, the effect was restricted to patients at intermediate or high risk of treatment failure. These results suggested a modulating role for host genetic variation in the development of CNS relapse in childhood ALL treated according to Berlin-Frankfurt-Münster protocols.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Distinct gene expression profiles determine molecular treatment response in childhood acute lymphoblastic leukemia.

Treatment resistance, as indicated by the presence of high levels of minimal residual disease (MRD) after induction therapy and induction consolidation, is associated with a poor prognosis in childhood acute lymphoblastic leukemia (ALL). We hypothesized that treatment resistance is an intrinsic feature of ALL cells reflected in the gene expression pattern and that resistance to chemotherapy can be predicted before treatment. To test these hypotheses, gene expression signatures of ALL samples with high MRD load were compared with those of samples without measurable MRD during treatment. We identified 54 genes that clearly distinguished resistant from sensitive ALL samples. Genes with low expression in resistant samples were predominantly associated with cell-cycle progression and apoptosis, suggesting that impaired cell proliferation and apoptosis are involved in treatment resistance. Prediction analysis using randomly selected samples as a training set and the remaining samples as a test set revealed an accuracy of 84%. We conclude that resistance to chemotherapy seems at least in part to be an intrinsic feature of ALL cells. Because treatment response could be predicted with high accuracy, gene expression profiling could become a clinically relevant tool for treatment stratification in the early course of childhood ALL.

Adolescent↗

Down-regulation of BRCA1 in chronic pancreatitis and sporadic pancreatic adenocarcinoma.

PURPOSE: BRCA1 and BRCA2 are considered to be breast cancer susceptibility genes that may also contribute to pancreatic cancer development because family studies revealed mutation carriers to have an increased risk of developing pancreatic cancer. However, as demonstrated for breast and ovarian cancer, inactivation of BRCA in sporadic diseases is based on alteration in gene expression or functional alteration. EXPERIMENTAL DESIGN: To study a potential correlation of BRCA1 and BRCA2 to chronic pancreatitis and development of sporadic pancreatic adenocarcinoma, we have analyzed the expression of these genes by quantitative PCR and performed immunohistochemical analyses in normal pancreatic tissues, chronic pancreatitis, and pancreatic cancer specimens. RESULTS: BRCA1 expression was down-regulated in chronic alcoholic pancreatitis, in particular on the RNA level. Furthermore, our data indicate suppressed BRCA1 expression in pancreatic cancer on both the RNA and protein levels. Quantitative analysis of BRCA1 protein expression demonstrated regular staining in 50% of tumor specimens tested and reduced staining in 50% of tumor specimens tested. Correlation with the clinical outcome revealed a significantly better 1-year overall survival for patients with BRCA1-regular as compared with BRCA1-reduced or BRCA1-absent tumors. In contrast, no substantial differences in BRCA2 expression were found in chronic pancreatitis and pancreatic cancer samples. CONCLUSIONS: Our data demonstrate alteration of BRCA1 expression in chronic pancreatitis and sporadic pancreatic adenocarcinoma. We, for the first time, provide evidence for a role of BRCA1 in pancreatic carcinogenesis of noninherited tumors and for clinical outcome.

Adenocarcinoma↗

NQO1 C609T polymorphism in distinct entities of pediatric hematologic neoplasms.

BACKGROUND AND OBJECTIVES: NAD(P)H:quinone oxidoreductase 1 (NQO1) is an enzyme that protects cells against mutagenicity from free radicals and toxic oxygen metabolites. The gene coding for NQO1 is subject to a genetic polymorphism at nucleotide position 609 (C-->T) of the human NQO1 cDNA. Heterozygous individuals (C/T) have intermediate activity and homozygotes for the variant allele (T/T) are deficient in NQO1 activity. In previous studies, genotypes conferring lower NQO1 activity have been associated with an increased risk of acute leukemia, particularly infant leukemia carrying MLL/AF4 fusion genes. In the present study, we investigated this association in our population and extended the analysis to other subgroups of pediatric hematologic neoplasms characterized by specific fusion genes. DESIGN AND METHODS: We genotyped 138 patients with childhood acute lymphoblastic leukemia (ALL) carrying distinct fusion genes (MLL/AF4=35; BCR/ABL=31; TEL/AML1=72), 71 cases of pediatric sporadic Burkitt's lymphoma and 190 healthy control individuals for the NQO1 C609T polymorphism. RESULTS: When compared to the healthy control group, only children with Burkitt's lymphoma significantly more often had NQO1 genotypes associated with lower NQO1 activity (odds ratio, 1.81; p=0.036), predominantly at a younger age (< 9 years at diagnosis: odds ratio, 3.02; p=0.003). INTERPRETATION AND CONCLUSIONS: Our results suggest that in our population the NQO1 C609T polymorphism does not confer an increased risk of the investigated entities of childhood ALL. However, there may be a modulating role for NQO1 in the pathogenesis of pediatric sporadic Burkitt's lymphoma.

Adolescent↗

Severe chronic neutropenia: treatment and follow-up of patients in the Severe Chronic Neutropenia International Registry.

Severe chronic neutropenia (SCN) is defined as an absolute neutrophil (ANC) of less than 0.5 x 10(9)/L, lasting for months or years. Congenital, cyclic, and idiopathic neutropenia are principal categories of SCN. Since 1994, the Severe Chronic Neutropenia International Registry (SCNIR) has collected data to monitor the clinical course, treatments, and disease outcomes for SCN patients. This report summarizes data for 853 patients, almost all treated with daily or alternate-day recombinant human granulocyte colony-stimulating factor (G-CSF or Filgrastim). G-CSF treatment increased the ANC overall from 0.34 x 10(9)/L +/- 0.018 pre-treatment to 3.70 x 10(9)/L +/- 0.18 during the first year of treatment. For most patients, the responses were durable with patients remaining on the same dose of G-CSF for many years. Long-term hematological observations showed stable mean leukocyte and neutrophil counts and gradually increasing hemoglobin levels. Thrombocytopenia developed in 4% of patients. As of January 1, 2000, myelodysplasia (MDS) or acute myelogenous leukemia (AML) has occurred in 35 of 387 patients with congenital neutropenia with a cumulative risk of 13% after 8 years of G-CSF treatment. This event occurred without a predictable relationship to the duration or dose of G-CSF treatment. No patients with cyclic or idiopathic neutropenia developed MDS or AML. Other important adverse events included hepatomegaly, osteoporosis, vasculitis, glomerulonephritis, and deaths in 4 of 14 cases requiring splenectomy. Growth and development and the outcome of pregnancy appeared to be unaffected by G-CSF treatment. These data indicate that congenital, cyclic, and idiopathic neutropenia can be effectively treated with long-term G-CSF. The risk of leukemia, osteoporosis, other potentially adverse events, and pregnancy outcome need to be further evaluated with continuing long-term observations.

Adolescent↗

Expression and structural analysis of glucocorticoid receptor isoform gamma in human leukaemia cells using an isoform-specific real-time polymerase chain reaction approach.

Glucocorticoids are broadly used for chemotherapy in childhood acute lymphoblastic leukaemia (ALL). The intracellular effects of glucocorticoids are mediated through the glucocorticoid receptor. The human glucocorticoid receptor gamma isoform (hGR-gamma) differs from the main isoform (hGR-alpha) by an additional amino acid within the DNA binding domain of the receptor protein. This may decrease hGR-alpha-mediated transcriptional activation. The importance of hGR-gamma expression in childhood ALL is unknown. To evaluate hGR-gamma mRNA expression levels, a real-time polymerase chain reaction (PCR)-based approach, allowing the selective amplification of hGR-gamma, was developed and optimized. We were able to demonstrate target selectivity of hGR-gamma amplification using sequence-specific primers. Studying the structure of the 3' end of hGR-gamma, a combination of this isoform with other hGR isoforms could be demonstrated. Using analysis of hGR-gamma-specific amplification in comparison with the expression of hGR-total (all isoforms) in leukaemic blasts from patients with either a good response to prednisone (PGR) or poor-prednisone response (PPR) in vivo, relative hGR-gamma expression was observed to be lower in cells from patients with PGR compared with PPR, in particular after 10 h of dexamethasone stimulation. These data were correlated with cell survival, demonstrating a more pronounced induction of apoptosis in cells from patients with PGR as compared with PPR.

Apoptosis↗

Protein expression of the glucocorticoid receptor in childhood acute lymphoblastic leukemia.

BACKGROUND AND OBJECTIVES: Early treatment response is a strong predictor for treatment outcome in childhood acute lymphoblastic leukemia (ALL), treated within the protocols of the Berlin-Frankfurt-Münster (BFM) study group. In the ALL-BFM trials, early treatment response is assessed by in vivo response to glucocorticoids (prednisone response), the molecular background of which is unknown. Initial in vivo resistance to glucocorticoid (GC) treatment in childhood ALL (prednisone-poor response) is associated with a dramatically shorter event-free survival than that found in GC-sensitive patients (prednisone-good responders). The intracellular effects of glucocorticoids are mediated by the glucocorticoid receptor (GR). The protein expression of the GR has been linked to in vivo and in vitro GC resistance in various diseases treated with GC. However, existing data are conflicting. RESULTS DESIGN AND METHODS: We performed a case-control study for prednisone response to investigate the association of in vivo GC resistance and GR protein expression in childhood ALL. GR expression was assessed using Western blot technology. RESULTS: The median relative GR protein expression of all patients was 0.87. Overall, we did not find different GR protein expression in PPR and PGR patients. GR protein expression was 0.91 in PGR patients versus 0.85 in PPR ones of in vivo GC resistance and GR expression. INTERPRETATION AND CONCLUSIONS: We conclude that the expression of GR is of minor importance for in vivo GC resistance in childhood ALL.

Adolescent↗

Congenital neutropenias.

The term congenital neutropenia (CN) has been used for a group of hematologic disorders characterized by severe neutropenia with absolute neutrophil counts (ANC) below 0.5 x 10(9)/L associated with increased susceptibility to bacterial infections. This group of diseases includes primary bone marrow failure syndromes with isolated neutropenias and neutropenias associated with metabolic or immunologic disorders or with a complex syndrome. To avoid confusion, we prefer using the term CN only for the most severe disorder among this group: severe neutropenia characterized by an early stage maturation arrest of myelopoiesis leading to bacterial infections from early infancy. This disease has originally been described as Kostmann syndrome with an autosomal recessive inheritance. Recent pathogenetic investigations have demonstrated that this clinical phenotype includes also autosomal dominant and sporadic cases with different point mutations in the neutrophil elastase gene in a subgroup of patients. Data on over 400 patients with CN collected by the Severe Chronic Neutropenia International Registry demonstrate that independent from the CN-subtype more than 90% of these patients respond to recombinant human granulocyte-colony stimulating factor (rHuG-CSF filgrastim, lenograstim) with ANC that can be maintained around 1.0 x 10(9)/L. Adverse events include mild splenomegaly, moderate thrombocytopenia, osteoporosis and malignant transformation into myelodysplastic syndrome/leukemia. Development of additional genetic aberrations, e.g., G-CSF-receptor gene mutations, monosomy 7 or ras mutations during the course of the disease indicate an underlying genetic instability leading to an increased risk of malignant transformation. If and how G-CSF treatment impacts on these adverse events remains unclear since there are no historical controls for comparison. Hematopoietic stem cell transplantation is still the only available treatment for patients refractory to G-CSF treatment.

Bone Marrow Diseases↗

Kostmann syndrome and severe congenital neutropenia.

Congenital neutropenia (CN) includes hematologic disorders characterized by severe neutropenia with an absolute neutrophil count (ANC) below 0.5 x 10(9)/L associated with severe systemic bacterial infections from early infancy. One subtype of CN, Kostmann syndrome, was originally described as an autosomal-recessive disorder, characterized by early-stage maturation arrest of myelopoiesis. Autosomal-dominant and sporadic cases have also been reported. Recent studies on the genetic bases of CN have detected different inherited or spontaneous point mutations in the neutrophil elastase gene. Development of additional genetic defects during the course of disease, such as granulocyte colony-stimulating factor (G-CSF)-receptor gene mutations and cytogenetic aberrations, indicates an underlying genetic instability. Data on more than 300 patients with CN collected by the Severe Chronic Neutropenia International Registry (SCNIR) since 1994 demonstrate that, independent of the CN subtype, more than 90% of patients respond to recombinant human (rHu)G-CSF with ANCs that can be maintained at approximately 1.0 x 10(9)/L. Adverse events include mild splenomegaly, moderate thrombocytopenia, osteoporosis, and malignant transformation into myelodysplasia (MDS)/leukemia. If and how rHuG-CSF treatment impacts on these adverse events remains unclear since there are no historical controls for comparison. Hematopoietic stem cell transplantation (HSCT) is still the only available treatment for patients refractory to rHuG-CSF treatment.

Cytogenetic Analysis↗