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H Gadner

Publications and source records attributed to H Gadner.

At least 163 records · Page 9Linked to original sources

EWS/FLI-1 antagonists induce growth inhibition of Ewing tumor cells in vitro.

Among primitive neuroectodermal tumors, Ewing tumors are characterized by a gene rearrangement recombining the 5'-EWS gene portion with one of two ETS-related proto-oncogenes, FLI-1 or ERG, in roughly 90 and 10% of cases, respectively. We attempted to antagonize EWS/FLI-1 function in Ewing tumor cell lines. As a control, a cell line derived from another small round cell tumor of neuroectodermal origin, neuroblastoma, was used. This cell line was found to express almost identical patterns of ETS proteins except for EWS/FLI-1 and a novel, ELF-related gene product. Stable expression of antisense EWS/FLI-1 cDNA resulted in decreased endogenous EWS/FLI-1 RNA levels and growth reduction of ET cells but not of neuroblastoma cells. DNA-binding FLI-1 derivatives localizing to the nucleus in which the 5'-EWS regulatory domain was replaced by bacterial beta-galactosidase dominantly modulated transcriptional transactivation from a degenerate ETS-binding motif. Transient transfection of these dominant-negative recombinants resulted in a significant decrease in the relative number of mitoses in four Ewing tumor cell lines tested but not in the neuroblastoma cell line. The presented evidence for modulation of tumor cell proliferation by EWS/FLI-1 antagonists suggests a causal role for EWS/FLI-1-mediated gene activation in the malignant transformation of the enigmatic Ewing tumor-precursor cell.

Blotting, Northern↗

Characterization of hematopoietic stem cells.

On the basis of density-separated mononuclear cells isolated from bone marrow, peripheral blood, and cord blood, we have repeatedly shown good correlation between two-color flow cytometric (FACS) CD34 analysis and colony formation in the clonogenic assay. We have analyzed the distributions of CD34 subpopulations in these three stem cell sources using patients' and donors' bone marrow biopsies (n = 196), cord blood samples from full-term deliveries (n = 14), and peripheral blood from patients mobilized by chemotherapy and/or cytokine treatment (n = 258). Irrespective of absolute cell counts, the mean (+/- SD) proportions of CD34+ cells were clearly higher in bone marrow (5.6 +/- 4.6% of mononuclear cells) than in peripheral blood (1.9 +/- 2.6) and cord blood (1.7 +/- 2.6). However, two-color FACS analyses revealed significant differences among these cell sources with regard to their distribution of CD34 subpopulations: B-cell progenitors coexpressing CD34 and CD19, at considerable concentrations of > 0.5%, were only found in bone marrow (mean 30 +/- 24.3% of CD34+ mononuclear cells, median 28.7%, minimum 0%, maximum 83.3%). In addition, CD34+ cells in S/G2M phase were never detected in peripheral blood or cord blood, but only in bone marrow at a concentration of 10-15% of CD34+ mononuclear cells. On the other hand, the proportions of relatively immature myeloid progenitors, as characterized by not expressing CD45RA and by higher clonogenic capacity, were significantly higher in cord blood (76.7 +/- 17.2) and peripheral blood (58.2 +/- 17.5) than in bone marrow (26.4 +/- 16.7). These data were confirmed by analysis of apheresis products and of progenitors positively selected from different cell sources, and they may explain why, in autologous transplantations of analogous amounts of CD34+ cells, peripheral blood is superior to bone marrow. We conclude from our results that if successful transplantation and timely recovery depend on the number of CD34+ cells transplanted, the mean amount of stem cells required is 1.4- (for myeloid cells) or 2.2-fold (for early myeloid cells) higher for bone marrow than for peripheral blood.

Antibodies, Monoclonal↗

Autologous bone-marrow transplants compared with chemotherapy for children with acute lymphoblastic leukaemia in a second remission: a matched-pair analysis. The Berlin-Frankfurt-Münster Study Group.

It is unclear how best to treat children with acute lymphoblastic leukaemia (ALL) who are in a second remission. Treatment with bone-marrow transplants from HLA-identical siblings results in a statistically greater likelihood of leukaemia-free survival than does chemotherapy. Less than 25% of relapsed patients are able to benefit from this therapy due to a lack of matching donors; chemoradiotherapy or autologous BMT are considered for the rest. We compared treatment results for children who underwent autologous BMT with those who had chemotherapy. All patients were registered between 1983-94 in the multicentre trials. We selected groups of patients by matching variables associated with treatment outcome and duration of second remission. 52 matched-pairs were studied. The probability of event-free survival at 9 years was 0.32 (SD 0.07) for patients receiving chemotherapy versus 0.26 (SD 0.07) for patients who underwent autologous BMT. For two groups--children with prognostic factors indicating high risk of relapse and those with factors indicating lower risk--the outcome from transplantation did not differ significantly from that of chemotherapy: no advantage of autologous BMT over chemotherapy as post-induction treatment for children with ALL in a second remission could be detected with regard to event-free survival. Because autologous BMT has been used as the final step of treatment it is possible that its relative ineffectiveness has been due to the lack of continuation therapy after transplant. Attempts should be made to complement autologous BMT by subsequent immunotherapy, molecular biotherapy, chemotherapy, or a combination of these.

Adolescent↗

Heterogeneity of the T-cell receptor delta gene indicating subclone formation in acute precursor B-cell leukemias.

Precursor B-cell acute lymphoblastic leukemias (B-ALLs) have been shown to be oligoclonal at the Ig heavy-chain (IgH) gene level in up to 40% of cases by Southern blot hybridization. In contrast, oligoclonality as deduced from diversity of T-cell receptor (TcR)-delta gene rearrangements of the immature types (ie, V delta 2-D delta 3, D delta 2-D delta 3) has not been reported, so far. We detected oligoclonality characterized by the coexistence of different junctional regions of identical V delta 2-D delta 3 rearrangements in four childhood precursor B-ALLs. No variation was found in the IgH gene status. Therefore, we define these populations as subclones. Two leukemias displayed the variants in an unequal proportion. In the other two leukemias, for which similar quantities of the coexisting rearrangements were detected, single cell-nuclei polymerase chain reaction (PCR) showed two separate leukemic populations. Subclone formation could not be demonstrated by Southern blot hybridization, but was detectable after PCR amplification of the V delta 2-D delta 3 rearrangement and separation by polyacrylamide gel electrophoresis. The variants arose independently from each other, as deduced from their individual sequences. Using subclone-specific oligonucleotides for hybridization to amplified DNA obtained at diagnosis and during follow-up from bone marrow samples, we demonstrate, (1) specificity of all subclone-deduced probes, (2) that one residual leukemic cell can be detected in 10(4) to 10(5) normal mononuclear cells in a semiquantitative assay, and (3) that none of the subclones persisted after induction therapy. We propose that in a leukemic cell population, TcR-delta gene diversity arises after rearrangements of the IgH genes resulting in apparent clonality at the IgH gene level. However, cells are oligoclonal, if the TcR-delta gene rearrangements are considered. As various subclones may respond differently to chemotherapy, they may hamper the detection of minimal residual disease. Therefore, we use all subclone-specific oligonucleotides for hybridization to amplified DNA from follow-up samples.

Base Sequence↗

Purification of human basophils and mast cells by multistep separation technique and mAb to CDw17 and CD117/c-kit.

Basophils and mast cells represent distinct cell lineages within the hemopoietic system. Based on the unique cell surface antigen profile of both cells, we have established methods which allow the reproducible purification to homogeneity (> 99%) of normal human basophil granulocytes from the peripheral blood and of mast cells from human dispersed tissues. Basophils (n = 9) were purified by current counterflow elutriation followed by depletion of monocytes with CD14 mAb conjugated to magnetic beads, and subsequent cell sorting for CD217+ cells. Basophil purity was 99.5 +/- 0.4% (range 98.7-99.9%). Mast cells were obtained from lung (n = 6), uterus (n = 1), mastocytosis bone marrow (n = 2), and human foreskin (n = 2). Mast cells were purified by collagenase digestion followed by current counterflow elutriation and sorting with CD117/c-kit mAb. Mast cell purity was 99.4 +/- 0.7% (range: 97.5-99.9%). Purified cells were more than 90% viable and were able to release histamine on induction with IgE plus anti-IgE. Furthermore, the PCR technique could be applied on pure cells and confirmed expression of high affinity IgE receptor (Fc epsilon R1) alpha chain mRNA. Thus, by combining isolation techniques including elutriation, magnetic cell depletion and cell sorting with mAb, functionally intact normal human basophils and mast cells can be enriched to homogeneity.

Antibodies, Monoclonal↗

High nm23-H1/NDPK-A expression in Ewing tumors: paradoxical immunohistochemical reactivity and lack of prognostic significance.

Expression of nm23-H1/NDPK-A has been reported to correlate inversely with metastasizing potential of rodent experimental cells and some human tumors. In the search for reliable molecular prognostic indicators for Ewing tumors (ET), a group of aggressive presumably neuroectodermal malignancies in children and adolescents, we studied nm23-H1/NDPK-A expression. Northern-blot and RT-PCR analyses were employed to semi-quantificatively measure nm23-H1 mRNA levels in ET cell lines and tissue extracts. A panel of monoclonal antibodies (MAbs) were used to evaluate protein abundance by Western blotting and immunohistochemistry. The nm23-H1/NDPK-A gene was also investigated on the DNA level to define possible genomic alterations. Our results revealed neither nm23-H1 allelic loss nor gene amplification and failed to show any significant variation in nm23-H1 mRNA or NDPK-A protein levels of primary or metastatic ET. NDPK-A protein levels were high and comparable to those of MCF-7 breast-cancer cells and to aggressive stage-IV neuroblastoma cell lines. nm23-H2/NDPK-B expression in ET was slightly more variable but generally lower than in MCF-7 cells. In the immunohistochemical analysis, however, discrepancies in the reactivity patterns with different antibodies were observed. Differential sensitivity to various fixation methods and heat treatment pointed to a structurally polymorphic NDPK-A protein. nm23-H1 expression studies using immunohistochemistry for prognostic counselling should thus be interpreted with caution.

Adolescent↗

Detection of tumour cells in peripheral blood and bone marrow from Ewing tumour patients by RT-PCR.

The Ewing family of tumours (ET) is characterised at the cytogenetic level by unique chromosome 22 rearrangements. The breakpoints have been cloned and were shown to fuse the EWS gene on chromosome 22 to one of two closely related ETS proto-oncogenes, FLI-I or ERG, which reside on chromosomes II and 21, respectively. The rearrangement results in the expression of chimaeric transcripts, which can be identified by means of reverse transcriptase-polymerase chain reaction (RT-PCR). We applied this method for the monitoring of ET cells circulating in the peripheral blood or infiltrating the bone marrow. The presence of tumour cells could be detected with a sensitivity of I in I x 10(6) nucleated cells. When samples were kept at 4 degrees C, tumour cells could still be identified after 48 hr of storage. Positive RT-PCR signals originated from intact ET cells rather than from free RNA released by ruptured tumour cells. We analysed peripheral blood, bone marrow samples and peripheral blood stem cell collections from 16 ET patients. At diagnosis, bone marrow specimens collected from 6 patients and I peripheral blood specimen tested positive for EWS chimaeric RNA. During therapy tumour cells were detected in bone marrow aspirations obtained from 2 patients. Our results show that ET cells infiltrating the bone marrow or circulating in peripheral blood can be identified by RT-PCR. The clinical implications for the presence of ET cells in samples detected by RT-PCR at diagnosis and during therapy requires further evaluation.

Antineoplastic Combined Chemotherapy Protocols↗

Diabetes insipidus in Langerhans cell histiocytosis: results from the DAL-HX 83 study.

Diabetes insipidus (DI) in Langerhans cell histiocytosis (LCH) is a common complication of unclear etiology. The incidence varies among different publications from 15% to 50%. In the prospective DAL-HX 83 study, 19 out of 199 patients (9.5%) registered with newly diagnosed LCH were diagnosed to have DI. All patients were stratified according to uniform criteria. One hundred and six patients with disseminated disease were treated with standardized polychemotherapy promptly after diagnosis. At the time of diagnosis of LCH, DI was already established in 8 out of 199 patients (4%). After diagnosis, DI occurred in only one out of the remaining 91 patients with localized disease (1%) and in 10 out of 100 remaining patients with disseminated disease (10%). In 8 patients, the onset of DI was associated with other signs of active LCH. The cumulative risk to develop DI after a median observation time of 5 years 3 months was 11%. Retrospective analysis of clinical features revealed multisystem involvement, skull and orbital lesions, and in particular intracranial extension from osseous lesions to constitute risk factors for DI. Magnetic resonance imaging studies (MRI) were available in 12 patients and showed abnormalities of the pituitary region in 10 children. In none of the patients with established DI was it reversed or ameliorated by any treatment. However, the rapid institution of systemic chemotherapy for disseminated disease seems to prevent the occurrence of DI and may be responsible for the low frequency of DI in the DAL-HX83 study.

Adolescent↗

Recombinant human granulocyte-macrophage colony-stimulating factor in septic neutropenic pediatric cancer patients: detection of circulating hematopoietic precursor cells correlates with rapid granulocyte recovery.

Cycling intensive chemotherapy currently used to treat pediatric solid tumors induces severe neutropenia. Prolonged neutropenia is a major risk factor for septic death which occurs in up to 5% of febrile or septic neutropenic episodes. We treated 18 neutropenic pediatric cancer patients (eight females, 10 males) during 30 febrile and/or septic episodes with single daily doses of E. coli-derived non-glycosylated recombinant human granulocyte-macrophage colony-stimulating factor (rh-GM-CSF, 5 micrograms per kg of body weight). The cytokine was administered for a median period of 6.5 days (2-12 days). Analysis of circulating hematopoietic progenitor cells was performed at day 1 (baseline) and day 5 of rh-GM-CSF treatment and included flow cytometric CD34 analysis as well as the methylcellulose-based clonogenic assay. Prompt hematopoietic recovery and resolution of septic problems was observed in all children. The counts of leukocytes (WBC), absolute neutrophils (ANC), and platelets (PLT) rose above 1,000/microL, 1,000/microL, and 50,000/microL within 4 days (0-9), 5.5 days (2-13), and 6 days (0-14), respectively. Faster granulocyte recovery and improved recruitment of circulating hemopoietic precursors was observed in children with detectable amounts (> 0.1%) of CD34-positive mononuclear cells prior to rh-GM-CSF treatment. We conclude that, to some extent, the efficacy of rh-GM-CSF treatment in neutropenic cancer patients is influenced by the hematopoietic recovery status on the progenitor cell level. Although they respond more slowly to the treatment, patients without circulating CD34-positive progenitor cells may gain most from growth factor therapy. Rh-GM-CSF can be safely administered to febrile and/or septic neutropenic children treated for cancer.

Adolescent↗

Early detection of minimal residual disease by reverse transcriptase polymerase chain reaction predicts relapse in acute promyelocytic leukemia.

The PML/RAR alpha fusion RNA can be detected in acute promyelocytic leukemia (APL), cytogenetically characterized by the translocation t(15;17). Our study included ten newly diagnosed patients with APL who were investigated during the course of their diseases using reverse transcription polymerase chain reaction (RT-PCR). At diagnosis, aberrant fragments with a size heterogeneity due to alternative spliced products were detected in all patients, we observed breakpoints within bcr3 (short type) in two patients and bcr1 and 2 breakpoints (long type) in eight patients. Treatment consisted of all-trans retinoic acid (ATRA) in all patients; six patients received simultaneous cytostatic therapy during remission induction. At the time of complete hematological remission (CR), only two patients showed a negative RT-PCR result; eight of the ten patients were still PCR positive when nested primers were used. Subsequently, eight patients received consolidation chemotherapy and became PCR negative. Seven of eight patients are in continuous complete remission (median remission duration: 21 months, range: 11+ -26+ months). One patient of the chemotherapy group became PCR positive after 4 months in complete remission and relapsed after 6 months. The remaining two patients who were treated only with ATRA relapsed, received induction chemotherapy, and are in second and third complete remission, respectively. In conclusion. PCR negativity can be achieved only by chemotherapeutic consolidation; patients treated with ATRA alone remain PCR positive. Relapse is always preceded by a positive PCR result. Surprisingly, also patients without measurable PML/RAR alpha-mRNA in sequential analyses after cytostatic treatment became PCR positive and experienced relapse.

Adult↗

First experience with prognostic factors in unselected neuroblastoma patients. The Austrian Neuroblastoma 87 Study.

Between January 1987 and December 1993, 117 patients were registered in the Austrian A-NB87 study. The male/female ratio was 1.18, with 50 patients below the age of 1 year at diagnosis. Patients were assigned to stage according to the result of primary surgery in localised disease. Age, ferritin and neuron specific enolase were used in addition in stage III disease for risk-adapted treatment. Adrenal or pelvic primary tumour sites were mainly associated (81%) with advanced disease. The median observation time of the study is 3.5 years. The overall survival at 3 years was excellent in low stage disease and IVs patients, i.e. 100% for stage I and IIA (20 patients), 92% in stage IVs (13 patients), 81% in stage IIIA (18 patients) and 69% in stage IIB (8 patients). Stage IV (38 patients) showed a survival rate of 51%, whereas stage IIB (10 patients) had the worst outcome in this study, i.e. 20%, due to treatment-related toxicity. Significant unfavourable prognostic factors were neuron specific enolase (NSE) > 100 ng/ml, ferritin > 300 micrograms/ml and amplified MYCN. This study achieved a better survival rate in stage IV patients and a subgroup of stage III in comparison to our previous study (Pädiatrie und Pädologie 1986, 21, 269) and gives the basis to further reduce treatment intensity in low-risk disease based on biological factors. However, prognosis for high-risk cases was still poor in spite of a very aggressive treatment concept.

Age Factors↗

Ewing tumor after treatment of Ki-1+ anaplastic large cell lymphoma. Therapy-associated secondary neoplasm or unrelated coincidence?

We report on a 20-year-old woman who developed a pelvic small round cell tumor with lung metastases 8 years after diagnosis and successful treatment for Ki-1-positive anaplastic large cell lymphoma (Ki-1+ ALCL) with histiocytic differentiation. Molecular genetic detection of EWS/FLI-1 fusion gene expression in the second tumor by RT-PCR unambiguously confirmed the histopathologic diagnosis of Ewing tumor (ET), whereas no evidence for the presence of this specific gene rearrangement was obtained in a retrospective analysis of the lymphoma tissue. In contrast, expression of a NPM/ALK chimeric gene was observed which was absent in the ET. Moreover, the lymphoma contained a monoallelic D delta 2-D delta 3 T-cell receptor gene rearrangement which was also absent in the ET. Thus, our histopathologic, immunohistochemical, and, in particular, molecular genetic studies support the notion that these tumors were most probably pathogenetically unrelated. Since this is the first report describing such an association between a non-Hodgkin's lymphoma and ET and, since the latter has only rarely been observed as a second malignant neoplasm, it remains a matter of speculation whether in this patient ET developed as a therapy-related secondary neoplasm or independently from the lymphoma as a consequence of either genetic tumor predisposition or mere accidental coincidence.

Base Sequence↗

Non-Hodgkin's lymphomas of childhood and adolescence: results of a treatment stratified for biologic subtypes and stage--a report of the Berlin-Frankfurt-Münster Group.

PURPOSE: To prove the efficacy of a treatment stratified according to histology for children with non-Hodgkin's lymphoma (NHL), including acute B-cell leukemia (B-ALL). PATIENTS AND METHODS: From October 1986 to March 1990, 302 assessable patients, 0.6 to 17.8 years of age, with newly diagnosed NHL were enrolled onto study ALL/NHL-BFM 86. Fifty percent of patients had Burkitt-type lymphomas, including B-ALL; 24% had lymphoblastic lymphoma; 18% had diffuse large-cell lymphoma; and 8% had an NHL not further classified. Therapy group B included Burkitt's-type lymphomas, B-ALL, and most large-cell lymphomas including Ki-1 anaplastic large-cell lymphoma. Patients with stage I and II disease resected received three, while all others received six, 5-day therapy courses (dexamethasone, methotrexate [MTX] 0.5 g/m2 [5 g/m2 for stage IV and B-ALL], and intrathecal [IT] therapy in each course, plus ifosfamide, cytarabine, and etoposide alternating with cyclophosphamide and doxorubicin). Therapy for group non-B patients (lymphoblastic lymphoma and pleomorphic T-cell lymphoma [PTCL]) consisted of a Berlin-Frankfurt-Münster (BFM) acute lymphoblastic leukemia protocol, including cranial irradiation for advanced stage. Local therapy was restricted to patients with incomplete tumor regression. RESULTS: The probabilities of event-free survival (pEFS) at 7 years were 80% +/- 2% for the whole group, 81% +/- 3% for group B (n = 225), and 78% +/- 5% for group non-B (n = 77) with a follow-up duration of 3.6 to 7 years (median 5 years). Treatment results were comparable between NHL subtypes, except for PTCL, in which three of four patients suffered from relapse. Local disease manifestations were the most frequent site of failure. CONCLUSION: This therapy strategy provided patients of all NHL subtypes with an equally high chance to survive event-free, except patients with PTCL. With reduced systemic failure, local tumor control may become more important.

Adolescent↗

Use of quantitative polymerase chain reaction to monitor residual disease in chronic myelogenous leukemia during treatment with interferon.

Interferon-alpha (IFN-alpha) has become a widely used treatment modality in chronic myelogenous leukemia (CML) and was shown to induce complete hematologic responses in about 70% of the patients. In a minority of cases, complete suppression of the Philadelphia (Ph)-positive clone has been observed by cytogenetic investigation or by Southern blot analysis. In most instances, however, analyses by the highly sensitive two-step polymerase chain reaction (PCR) reveal the presence of residual leukemic cells despite continuous treatment. Since PCR positivity has not been associated with an increased risk of disease recurrence, the monitoring of cells carrying the characteristic BCR/ABL rearrangement by qualitative PCR may not facilitate early identification of patients who are likely to relapse. We have therefore employed a quantitative PCR technique to monitor the BCR/ABL mRNA expression levels during the course of treatment in an attempt to assess the response to IFN-alpha at the molecular level and to provide a basis for early detection of progressive disease. Twenty CML patients who received therapy with IFN-alpha in first chronic phase of the disease were enrolled in the study. In addition, we have monitored two CML patients treated with IFN-alpha for relapse after bone marrow transplantation. Thirteen patients who displayed decreasing, constant or fluctuating levels of BCR/ABL expression during an observation period of up to 4 years (mean 25 months) have remained in hematologic remission. Two patients showed an elevation in the marker gene expression upon discontinuation of treatment, but no further increase in BCR/ABL mRNA has been observed after reinitiation of therapy with IFN, and the patients have remained in hematologic remission. In seven patients, quantitative PCR (Q-PCR) analyses revealed increasing expression of the chimeric gene during treatment with IFN-alpha. In all seven cases, the detection of elevated BCR/ABL transcripts by quantitative PCR preceded signs of hematologic or cytogenetic disease progression by up to 8 months (median 6 months). Our data show that quantitative PCR analysis facilitates the monitoring of the response to IFN-alpha therapy and provides an effective diagnostic tool for the timely detection of recurrent disease. The employment of this technique greatly enhances the diagnostic possibilities in the management of chronic myelogenous leukemia.

Adult↗

Isolated extramedullary relapse in children with acute lymphoblastic leukemia: a comparison between treatment results of chemotherapy and bone marrow transplantation. BFM Relapse Study Group.

The purpose of this study was to determine the therapeutic efficacy of different treatment strategies, namely chemotherapy, allogeneic and autologous bone marrow transplantation (BMT), for extramedullary relapse of acute lymphoblastic leukemia (ALL) in children in second or subsequent remission. Between 1983 and 1993, 165 patients up to 19 years of age with extramedullary relapse of ALL were registered in the multicenter ALL-REZ BFM trials. One hundred and thirty four children received chemotherapy only; 17 children were grafted from HLA-identical sibling donors 152 days (46-392 days) after diagnosis of relapse, and 14 children underwent autologous BMT after a median time of 137 (range 23-300) days. Event-free survival (EFS) at 5 years was 0.47 +/- 0.05 for patients receiving chemotherapy: 0.76 +/- 0.07 for late, 0.33 +/- 0.08 for early and 0.33 +/- 0.07 for very early relapsed patients. Sixty five patients are in complete remission (CR), 61 patients relapsed, 5 died from therapy related complications, 2 patients in CR were lost to follow-up and one patient developed a second malignancy. For patients who had undergone BMT, EFS at 5 years was 0.36 +/- 0.10 without significant difference between autologous BMT (8 of 14 in CR, 6 relapsed) and allogeneic BMT (6 of 17 in CR, 4 died of acute toxicity, and 7 relapsed).(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

[The European experience with megadose therapy and autologous bone marrow transplantation in solid tumors with poor prognosis Ewing sarcoma, germ cell tumors and brain tumors)].

Since 1984 a total of 2085 patients with solid tumors have been registered in the European Bone Marrow Transplantation Registry for Solid Tumors (EBMT-STR). The major aim of this registry is to supply data by retrospective analysis for the innovation of prospective, randomized studies. 104 Ewing's sarcoma patients received megatherapy followed by autologous bone marrow transplantation (MGT/ABMT). The 2-year overall survival was 31% in 14 patients with multifocal disease in first complete remission (CR1) and was 37% for 15 patients in second CR (CR2). (6 patients with local disease in CR1 have been excluded.) These results are better than observed under conventional dose chemotherapy. 67 patients were grafted with measurable disease showing a response rate of 72%. The 2-year overall survival was 25% during primary treatments and 33% and 10% for sensitive and resistant relapses, respectively. 201 patients with germ cell tumors received MGT (combinations of platinum derivates, VP16, cyclophosphamide, ifosfamide) followed by ABMT. The overall survival at 5 years was 10% in refractory patients and 58% for 113 responding patients not in CR1 (i.e. first partial remission, CR2 and sensitive relapses). Based on these results and a French randomized trial a prospective, randomized study is underway comparing MGT versus conventional chemotherapy in chemosensitive patients. 219 adults with malignant brain gliomas underwent a program consisting of surgery, MGT (BCNU in the majority)/ABMT and radiotherapy. The overall survival at 3 years was 12%, the median survival was 11 months after ABMT. Life quality after ABMT was good, but no major improvement in terms of prolonged survival was achieved.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗