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Biomedical subjects

S Burdach

Publications and source records attributed to S Burdach.

At least 91 records · Page 5Linked to original sources

Expression of the CEA gene family members NCA-50/90 and NCA-160 (CD66) in childhood acute lymphoblastic leukemias (ALLs) and in cell lines of B-cell origin.

The carcinoembryonic antigen (CEA) and the classical non-specific cross-reacting antigens (NCAs) belong to the CEA gene family which is part of the immunoglobulin superfamily. In normal hematopoiesis, CEA gene family members (CGMs) have only been reported on cells of myeloid and monocytic origin. In the present study, we analyzed 62 childhood acute lymphoblastic leukemias (ALLs) and seven surface immunoglobulin positive (sig+) B-cell lines for the expression of the CEA family members CEA, NCA-50/90, NCA-95, NCA-160, CGM1 and CGM7. We demonstrated that members of the CEA family were present in 76% of childhood ALLs of B- and T-cell origin. In ALLs of B-cell origin, 82% of the samples expressed at least one CEA subgroup member: 38% NCA-50/90 (CD66c), 31% NCA-160 (CD66a), and 13% both. Six of seven B-cell lines solely expressed NCA-160. In seven ALL of T-cell origin, sole NCA-160 expression was present in 29% of the cases. CEA and CGM1 were not expressed in childhood ALLs or in the sIg+ B-cell lines. In 15 ALLs and seven B-cell lines which could be analyzed for CGM7 expression, the antigen was not detected. NCA-95 was not expressed in 91% of the B-lineage ALLs, in T-lineage ALLs and in the B-cell lines. However, five B-lineage ALLs showed conflicting data on the binding patterns of two, on leukocytes specifically NCA-95 recognizing antibodies suggesting either expression of unknown forms of NCA-95 or NCA-50/90 or of a yet unknown member of the CEA family in these ALL cells. The expression of CEA subgroup members in childhood ALL cells might have prognostic impacts, as an inverse correlation exists between NCA expression on leukemic blasts and the risk factor white blood count at diagnosis.

Adolescent↗

Comparison of auto versus allografting as consolidation of primary treatments in advanced neuroblastoma over one year of age at diagnosis: report from the European Group for Bone Marrow Transplantation.

A case control study was performed to investigate the potential advantage of allogeneic bone marrow transplantation in advanced or poorly responding neuroblastoma first remission patients using the European BMT Solid Tumor Registry. Seventeen allogeneic and 34 autologous bone marrow transplantation (BMT) cases were matched based on a number of prognostic factors including age, sex, prior treatment duration, pre-graft response status and bone and BM involvement before BMT. Only single BMT procedures are included. The median age at diagnosis was 47 months (range 18-113 months). The median follow-up time since BMT is 58 months (range 13-133 months). The only significant prognostic factor within the allogeneic BMT (p = 0.012) and autologous BMT groups (p = 0.025) was residual skeletal disease before BMT, detected by mIBG in 86% of the cases. However, the progression-free survival was not significantly different: 35% and 41% at 2 years, respectively. Only half of the allogeneic BMT patients had developed graft-versus-host disease (GVHD): 7 of 9 grade I-II and only 2 of 9 grade IV. The median donor age was very young with 74 months (range 20-240 months) and 10 of 17 were sex matched. Thus absence of GVHD risk factors in young children could be the major obstacle in achieving an anti-tumor effect with allogeneic BMT in neuroblastoma.

Bone Marrow Transplantation↗

Interferon gamma and tumour necrosis factor alpha induce a synergistic antiproliferative response in human Ewing's sarcoma cells in vitro.

Three human cell lines derived from Ewing's sarcoma (RM-82, VH-64, and WE-68) were investigated to establish the influence of recombinant human interferon gamma (rhIFN gamma) and tumour necrosis factor alpha (rhTNF alpha) on cell proliferation and survival and to characterize IFN gamma and TNF alpha receptor expression. Incorporation of [3H]thymidine into cells was inhibited by rhIFN gamma after 24 h of incubation. Half-maximal inhibition was observed with 10-80 U/ml rhIFN gamma. A maximal effect (50%-70% inhibition of cell proliferation) was achieved by treatment of cells with 250 U/ml rhIFN gamma. The influence of rhTNF alpha on proliferation was found to differ among cell lines and varied with the concentration and the duration of exposure of cells to this cytokine. In WE-68 and VH-64 cells [3H]thymidine incorporation was not affected by rhTNF alpha up to 2000 U/ml after 96 h of incubation, whereas in RM-82 cells the incorporation was inhibited by 35% after 48 h of incubation with 100 U/ml rhTNF alpha. However, all cell lines showed a synergistic antiproliferative response to the combination of rhIFN gamma and rhTNF alpha after 24 h of incubation. The human recombinant cytokines interleukin(IL)-1 alpha, IL-1 beta, IL-2, IL-3, IL-4, IL-6 and granulocyte/macrophage-colony-stimulating factor, tested alone and in combination with rhIFN gamma and rhTNF alpha, had no influence on cell proliferation. Binding studies in the cell lines with 125I-rhIFN gamma revealed a dissociation constant (Kd) of 160-306 pM and approximately 8000-13,500 receptors/cell. Binding experiments with 125I-rhTNF alpha indicated 430-1250 receptors/cell with Kd ranging from 13 pM to 162 pM. These data indicate that, among various cytokines, only IFN and TNF alpha are capable of potently reducing Ewing's sarcoma cell growth in vitro. Our data suggest that IFN alone or in combination with TNF alpha may be useful in the design of novel strategies in Ewing's sarcoma therapy.

Antineoplastic Combined Chemotherapy Protocols↗

Activity of C1 esterase inhibitor in patients with vascular leak syndrome after bone marrow transplantation.

Vascular-leak syndrome (VLS) is a common complication in the first 3 weeks after bone marrow transplantation (BMT). The patients present with weight gain, generalized edema, ascites, pericardial or pleural effusions, tachycardia, arterial hypotonia, and/or pre-renal failure. The aim of our study was to investigate the role of the complement system in VLS. The protein concentrations of C3 and C4 were studied by immunodiffusion, and total hemolytic complement activity was studied by assessment of CH50. C1 esterase inhibitor (C1 Inh), the major inhibitor of the classical pathway of complement, was assessed by a functional test. Activation of complement was assessed by C4d (a C4 activation product). Twelve patients were followed prospectively from start of conditioning therapy to day +21 after bone marrow transplantation. Eight of 12 patients did not develop VLS. These patients had an increase of C3 between day +9 and day +13 (range: 1.3- to 1.5-fold, median: 1.4-fold), C4 (range: 1.3- to 1.9-fold, median: 1.4-fold), CH50 (range: 1.3- to 1.6-fold, median: 1.4-fold), and C1 Inh (range: 1.2- to 1.5-fold, median: 1.3-fold). Four of 12 patients developed VLS. C1 Inh activity was decreased to 0.60- to 0.80-fold. This decrease began 2-6 days prior to clinical diagnosis of VLS (n = 3), or at onset of VLS (n = 1). Patients with VLS showed elevated C4d concentrations (up to 2.4 mg/dl, upper normal threshold value: 0.9 mg/dl). Patients with VLS reveal an activated state of the complement system which is accompanied by a reduced activity of C1 Inh. Insufficient control of complement activation may contribute to VLS in patients after BMT.

Adolescent↗

Glycogen storage disease type Ib: infectious complications and measures for prevention.

A patient with glycogen storage disease (GSD) type Ib, neutrophenia, chronic inflammatory bowel disease and recurrent abscesses was treated with recombinant human granulocyte-macrophage colony stimulating factor (GM-CSF). GM-CSF (and also granulocyte colony stimulating factor) therapy markedly increased the neutrophil counts and reduced the frequency of infections and inflammation. We conclude that myeloid growth factors are effective for the treatment and prevention of acute infections and chronic inflammatory complications in patients with GSD Ib.

Abscess↗

Impact of megatherapy on survival after relapse from stage 4 neuroblastoma in patients over 1 year of age at diagnosis: a report from the European Group for Bone Marrow Transplantation.

PURPOSE: Relapse from stage 4 neuroblastoma usually carries a poor prognosis. A retrospective study using the European Bone Marrow Transplant (EBMT) Solid Tumor Registry was undertaken to define the role of megatherapy (MGT) in relapsed patients. PATIENTS AND METHODS: After relapse, 33 boys and 15 girls with previous stage 4 neuroblastoma received intensification by MGT followed by either autologous (n = 42) or allogeneic (n = 6) bone marrow rescue in 11 European institutions. The median age at diagnosis was 47 months (range, 14 to 134) and the median interval from diagnosis to relapse was 16 months (range, 4 to 94). Thirty patients had received only conventional-dose primary treatments (group A), whereas 18 patients had previously received intensification with MGT (group B). The median follow-up time of the total group is 95 months (range, 25 to 185). RESULTS: The actuarial overall survival rate at 2 years after MGT for relapse is 27% for group A and 0% for group B (P = .02). Three adverse, independent prognostic factors were confirmed by multivariate analysis using the Cox proportional hazards regression model: an interval of less than 12 months between diagnosis and relapse (P < .0001), nonresponding or untreated relapse (P = .0002), and previous MGT during primary treatments (P = .055). None of the other variables analyzed, such as sex, age, bone or bone marrow involvement at diagnosis or at relapse, and type of MGT at relapse, influenced outcome in this patient cohort. CONCLUSION: Responding patients who relapse more than 12 months from diagnosis who had not received previous MGT appear to benefit from consolidation MGT. Relapse patients who do not fulfill these criteria gain no advantage from this cost-intensive procedure and should be treated differently.

Actuarial Analysis↗

Myeloablative radiochemotherapy and hematopoietic stem-cell rescue in poor-prognosis Ewing's sarcoma.

PURPOSE: The prognosis of patients with multifocal primary and early or multiple relapsed Ewing's sarcoma is poor with conventional chemoradiotherapy and surgery. We evaluated the efficacy and feasibility of a myeloablative regimen administered as consolidation treatment for these patients. PATIENTS AND METHODS: The ablative regimens consisted of simultaneous radiochemotherapy: 12 Gy hyperfractionated total-body irradiation (TBI; two doses of 1.5 Gy for 4 days) plus fractionated high-dose melphalan (30 to 45 mg/m2 for 4 days) followed by high-dose etoposide (40 to 60 mg/kg) with or without carboplatin (900 to 1,500 mg/m2) (hyper-ME +/- C). These regimens were applied in a dose-escalation study that included 17 patients. All patients underwent remission induction chemotherapy and local treatment before myeloablative therapy. Seven patients had multifocal primary Ewing's sarcoma, and 10 had early or multiple relapse. We performed a matched-cohort analysis of the 17 grafted patients with 41 historic controls matched for sex, age, diagnosis, extent of disease, interval from diagnosis to transplant in the transplant group, and interval from diagnosis to relapse in the control group. RESULTS: The probability of relapse in the study patients is 52% at 6 years after the last event before transplantation. In the control group, the probability of relapse at 6 years was 98%. Eight of 17 treated patients are alive in complete remission at a median observation time of 49 months (range, 19 to 76) from the last event before transplantation. Probability of relapse-free survival in the study patients is 45% +/- 12% at 6 years after the last event before transplant, compared with 2% +/- 2% for the historic control group. CONCLUSION: Myeloblative therapy with hyper-ME +/- C radiochemotherapy can improve the prognosis of multifocal primary and early or multiple relapsing Ewing's sarcoma.

Adolescent↗

[Immunoglobulin therapy in patients after autologous and allogeneic bone marrow transplantation].

Following bone marrow transplantation many patients are suffering from an impaired immunoglobulin production. Treatment with intravenous immunoglobulin has significantly reduced the incidence of infections as well as severe graft-versus-host disease during the early posttransplant period. However, no complete protection of the patients has been achieved. According to our own observations, especially patients with a decreased production of IgM antibodies seem to have an increased risk of cytomegalovirus-induced pneumonitis. During the late posttransplant period, patients with IgG subclass deficiency are at risk of acquiring gram-positive infections. However, randomized studies investigating the effect of immunoglobulin treatment during the late posttransplant phase have not yet been conducted.

Bone Marrow Transplantation↗

Interleukin 6-induced differentiation of a human B cell line into IgM-secreting plasma cells is mediated by c-fos.

The role of the protooncogene c-fos in interleukin (IL) 6-induced B cell differentiation was assessed. Treatment of SKW 6.4 cells with IL 6 induced a transient and early stimulation of c-fos sense mRNA expression. The effect appeared within 30 min and returned to basal levels after 2 h. The addition of antisense oligonucleotides to c-fos significantly inhibited IL 6-induced IgM production by SKW 6.4 cells (p less than 0.001), whereas control oligonucleotides had no inhibitory effect. These results indicate that activation of c-fos is involved in IL 6-induced differentiation of SKW 6.4 cells into IgM-secreting cells.

B-Lymphocytes↗

Biology and pharmacology of hematopoietic growth factors.

Several glycoproteins that control blood formation have recently been characterized. Through their overlapping, synergizing, and antagonistic effects, they regulate hematopoiesis in a highly differentiated network. Large scale production of these colony stimulating factors (CSFs) has been made available by recombinant DNA technology, and a series of clinical studies in a variety of indications has been finished. In general, the subcutaneous application seems to be superior to the intravenous injection and causes less toxicity. Erythropoietin has been shown to be a highly effective treatment for anemia in patients with chronic renal failure. Granulocyte colony stimulating factor and granulocyte-macrophage colony stimulating factor are capable of ameloriating the chemotherapy induced neutropenia, and to abbreviate the time span of myeloaplasia after bone marrow transplantation. The potentials of other colony stimulating factors like Interleukin 1 and Interleukin 3, and combination regimens of several CSFs will be discussed.

Animals↗

Molecular regulation of hematopoietic cytokines: implications and indications for clinical use in pediatric oncology.

Proliferation and differentiation of hematopoietic progenitor cells are regulated by a network of stimulatory and inhibitory cytokines. An understanding of the molecular mechanisms of growth control may provide a physiologic basis for the innovative therapy of bone marrow disorders. Among various accessory cells, bone marrow T lymphocytes are capable of stimulating, as well as inhibiting, hematopoietic progenitor cells. We have now elucidated molecular mechanisms regulating the differential expression of T cell genes encoding for the stimulatory and inhibitory hematopoietic programs. Stimulation of hematopoiesis requires granulocyte-macrophage colony stimulating factor (GM-CSF), whereas inhibition requires interferon-gamma (IF gamma). Both cytokines can be induced by interleukin-2 (IL2). The T cell IL2 receptor consists of a 75 kD chain (p75) mainly expressed on a subset of resting T cells and a 55 kD chain (p55) which is strongly expressed upon T cell activation. P55 and p75 associate on activated T cells to form a dimeric receptor molecule exhibiting high affinity for IL2. The p75 monomer has an intermediate affinity for IL2. Expression of p55 in the context of the high affinity IL2 receptor constitutes a requirement for T cell IFg release. In contrast, p75 alone is capable of mediating the production of GM-CSF. Thus, T cells may be capable of selective production of cytokines with specific effects in hematopoietic growth control. Utilizing a human peripheral blood leukocyte genomic library, we identified various clones containing the entire GM-CSF gene, including coding and regulatory regions. Cloning of the GM-CSF gene allowed clinical studies utilizing recombinant DNA-derived GM-CSF. Chemotherapy-induced neutropenia contributes to both complications of cytotoxic therapy as well as increased relapse incidence of underlying disease. In a prospective randomized study, we have demonstrated that GM-CSF abrogates neutropenia following aplasiogenic chemotherapy in children and adolescents with solid tumors, and that GM-CSF may reduce the duration of infectious episodes after cytotoxic therapy. Next, we escalated the cumulative doses of cytotoxic therapy in an ablative regimen followed by hematopoietic stem cell transplantation to treat patients with poor prognosis pediatric tumors. Morbidity of this highly toxic ablative regimen depends on the duration of myeloid aplasia. Median duration of aplasia following hyper-VAMP was 13 days with CM-CSF and 29 days without GM-CSF. In addition, we have employed p55 blocking monoclonal antibody for prevention of graft vs. host disease in bone marrow transplantation. The understanding of specific molecular mechanisms of hematopoietic immuno-regulation can thus be utilized to provide novel approaches to the treatment of bone marrow failure and cancer.

Adolescent↗

Granulocyte and granulocyte-macrophage colony-stimulating factors for treatment of neutropenia in glycogen storage disease type Ib.

Two children with glycogen storage disease type Ib associated with numerous recurrent bacterial infections as a result of neutropenia and neutrophil dysfunction were treated with recombinant human granulocyte colony-stimulating factor (G-CSF). One of the two patients was previously treated with recombinant human granulocyte-macrophage colony-stimulating factor (GM-CSF); therapy had to be discontinued because of severe local side effects. Both colony-stimulating factors at dosages of 3 and 8 micrograms/kg/per day, respectively, increased the average neutrophil counts from less than 300 cells/microliters to more than 1200 cells/microliters. Two subpopulations of neutrophils could be identified by their capacity to produce H2O2: one subpopulation generated H2O2 normally and a second was defective in H2O2 production. The doses of G-CSF effectively enhanced and maintained that subpopulation of neutrophils which produced normal amounts of H2O2. Moreover, these colony-stimulating factor-induced neutrophils demonstrated effective phagocytosis of zymosan particles and killing of staphylococci. Chemotaxis was decreased and could not be normalized by treatment with G-CSF. We conclude that maintenance treatment with G-CSF improved the quality of life in both patients: The number and severity of bacterial infections decreased markedly during treatment. Long-term treatment with G-CSF (12 and 10 months, respectively) was well tolerated, and no adverse clinical events were observed.

Adolescent↗

Differential regulation of lymphokine production by distinct subunits of the T cell interleukin 2 receptor.

Most biologic responses to IL-2 have been attributed to interaction of IL-2 with a high affinity receptor which consists of a heterodimer composed of two distinct IL-2-binding proteins (IL-2R alpha/IL-2R beta). However, both low affinity IL-2R alpha (55 kD) and intermediate affinity IL-2R beta (70-75 kD) also appear to be expressed independently on the cell surface. We investigated the receptor-specific regulatory effects of IL-2 on cytokine production in unstimulated and activated T cells. T cells were activated by stimulation of the antigen receptor complex with anti-CD3 mAb. IL-2 (10(2) U/ml, 1 nM) stimulation of resting cells resulted in a fivefold increase in GM-CSF release but in only minimal IFN-gamma release. IL-2 markedly augmented mRNA expression of GM-CSF but not IFN-gamma in unstimulated T cells. IL-2R beta mAb but not IL-2R alpha mAb decreased IL-2-induced GM-CSF release and mRNA expression from unstimulated T cells. IL-2 concentrations required for GM-CSF release from resting cells suggested ligand binding to an intermediate affinity receptor. GM-CSF and IFN-gamma release from activated T cells increased four- to fivefold in response to 1 nM IL-2 and IL-2 augmented both GM-CSF and IFN-gamma mRNA. IL-2R beta mAb but not IL-2R alpha mAb reduced GM-CSF release and mRNA expression in activated T cells stimulated with 1 nM IL-2. IL-2R alpha blockade markedly decreased IL-2-induced IFN-gamma release and mRNA expression from activated cells, while IL-2R beta blockade had little effect on IFN-gamma production in activated cells. IL-2R alpha blockade altered the affinity of the receptor mediating activated cell GM-CSF release from a high affinity to an intermediate affinity state. These studies indicate an independent role for IL-2R beta in mediating GM-CSF production from T cells. They also suggest that unstimulated and activated T cells, which express distinct IL-2 receptor moieties, mediate release of separate lymphokines and that different subunits of the IL-2 receptor may play an important role in the regulation of cytokine production.

Antibodies, Monoclonal↗

Defective interferon gamma production in neonatal T cells is independent of interleukin-2 receptor binding.

Newborns are more susceptible to fungal, viral, protozoan, and certain bacterial infections than adults. This susceptibility is due in part to a decreased interferon gamma (IF gamma) production. The present investigation focuses on the role of the IL-2 receptor in the deficient IF gamma production in neonatal T cells. IL-2-induced IF gamma production in unstimulated neonatal cord blood and adult peripheral T cells was comparable, but the IF gamma production in CD3-stimulated neonatal T cells was only 20% of the adult production. Neonatal and adult T cells showed no difference in the expression of the 55-kD alpha and 75-kD beta chains of the IL-2 receptor. Blocking of the 55-kD alpha chain of the IL2 receptor with TAC MAb resulted in a marginal reduction in IF gamma release from unstimulated or CD3-stimulated neonatal T cells cultured in the presence of IL-2. In contrast, blocking of the 55-kD alpha chain of the IL-2 receptor in adult T cells caused a 92% and 73% inhibition in IF gamma production in unstimulated and stimulated T cells, respectively. Blocking of the 75-kD beta chain of the IL-2 receptor with TU27 MAb had a marginal effect in both unstimulated and CD3-stimulated neonatal and adult lymphocytes. Binding studies with unstimulated cord blood T cells using [125I]-IL-2 showed a binding affinity that corresponded with the intermediate affinity IL-2 receptor. In CD3-stimulated cord blood T cells, a high-affinity receptor was found.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗