PubMed HealthSearch

Biomedical subjects

C Bender-Götze

Publications and source records attributed to C Bender-Götze.

At least 19 recordsLinked to original sources

High-dose consolidation with local radiation and bone marrow rescue in patients with advanced neuroblastoma.

Twenty-six children with advanced neuroblastoma were consolidated with cisplatin, BCNU, etoposide, melphalan, 21 Gy of local radiotherapy, and bone marrow rescue in a multicenter study. All patients were over 1 year of age at diagnosis. Twenty-two patients were treated in first complete or partial remission and four in second complete or partial remission. Hematologic rescue was autologous (n = 23), allogeneic (n = 2), or syngeneic (n = 1). Extrahematological toxicity involved primarily the gastrointestinal mucosa. Among five fatal toxicities, three included intestinal hemorrhage. Fourteen patients relapsed after BMT, four of them at the primary site. Seven children survive progression-free after 16-56 months. These results are essentially not different from a single-center study with the same protocol or from other published studies. The value of megatherapy for patients with advanced neuroblastoma or for a subgroup of them can only be established on a larger number of patients than most national trials accrue.

Antineoplastic Combined Chemotherapy Protocols

Detection of neuron-specific gamma-enolase messenger ribonucleic acid in normal human leukocytes by polymerase chain reaction amplification with nested primers.

BACKGROUND: NNE (non-neuronal alpha-enolase) is a glycolytic enzyme detected in most tissues. NSE (neuron-specific gamma-enolase) is detected in normal neurons and tumors such as neuroblastoma. Staining with antibodies against NSE is therefore used to detect neuroblastoma cells invading bone marrow. Since staining of normal leukocytes has been reported we asked whether bona fide NSE is in fact expressed in normal blood and marrow. EXPERIMENTAL DESIGN: We designed nested coding region specific primers for NSE and NNE and, after reverse transcription of mRNA, we amplified the coding region between these primers in a semi-nested polymerase chain reaction. In order to distinguish both iso-mRNAs from each other, we amplified a long (1,047 bp) template in a first round of 30 cycles with primers specific for NNE or NSE. One percent of this product was used in a second round of 30 cycles in which both sense primers and two nested anti-sense primers of alternate specificities yielding shorter products of discernible sizes (768 bp or 619 bp) were added together in the same reaction tube. With this combination of four primers, only that shorter product was amplified to visibility, the specificity of which was homologous to the template produced in the first 30 cycles. Restriction enzyme digestion of the amplified products was used to verify this polymerase chain reaction-based approach for the distinction of isoforms of RNA. RESULTS: This semi-nested polymerase chain reaction clearly allows for the distinction of mRNA for NNE or NSE and shows the presence of transcripts for NSE in normal human leukocytes from blood and bone marrow. CONCLUSIONS: This method exploiting short stretches of nucleotide differences in the coding regions for priming can more generally be applied to the distinction of all isoforms of RNA where nested specific primers can be designed. However, the presence of NSE specific transcripts in normal human leukocytes invalidates the use of this highly sensitive method as a disease marker in neuroblastoma.

Base Sequence

[Human genetics and transplantation].

Transplantations represent an important element of treatment in end-stage chronic disease both inborn (mostly genetic) and acquired (degenerative, neoplastic). They are supposed to establish durable coexistence of cells with different genetic origin (in most cases). This union is contradictory to immunological properties of the tissues involved and can only succeed in case of sufficient histocompatibility to be identified by the diagnostic tests of immunogenetics. This review discusses the current approach used in choosing the most appropriate donor for an individual patient, and in monitoring the maintenance of "chimerism" established by the transplantation focussing on bone marrow transplantation. Initially a general outline of indications for organ transplantation is given with emphasis laid on genetic disorders as the outlook of conservative treatments in inborn diseases is generally very poor.

Bone Marrow Transplantation

[Juvenile chronic leukemia and chronic myelomonocytic leukemia. Experiences with bone marrow transplantation in childhood in 5 cases].

Chronic leukemias of early childhood (JCML/CMML) are rare malignant diseases for which effective regimens of chemotherapy have not been established. However, some of these patients may be cured by BMT. We report on 4 children with JCML and one child with CMML undergoing BMT from HLA-identical siblings and from matched unrelated donors. 3 of 5 patients are disease-free 9 to 37 months post BMT. According to our observations an effective reduction of blastic cells before BMT seems to be necessary for a sustained remission of these diseases. This reduction can be reached by intensive chemotherapy and by splenectomy before BMT. Moreover, we stress the need for total body irradiation (TBI) during BMT in order to eradicate residual malignant cells.

Blood Cell Count

Allogeneic bone marrow transplantation for childhood acute lymphoblastic leukemia in second remission after intensive primary and relapse therapy according to the BFM- and CoALL-protocols: results of the German Cooperative Study.

Fifty-one children between 26 and 214 months of age (median, 100 months) with acute lymphoblastic leukemia (ALL) were grafted in second remission from HLA-identical sibling donors (except for two patients who were grafted with a marrow with 1 antigen-mismatch). Initial treatment and relapse therapy were similar in all patients according to the BFM- and CoALL-protocols (front line: 38 patients according to BFM-protocols and 13 patients according to CoALL-protocols; relapse: 12 patients in study ALL-REZ-BFM 83, 17 in ALL-REZ-BFM 85, 20 in ALL-REZ-BFM 87, and two in ALL-REZ-BFM 90). The conditioning regimens were different, consisting of cyclophosphamide (CY) total body irradiation (TBI) plus (n = 27), VP-16-TBI (n = 23), and CY-TBI and ARA-C (n = 1). Three patients had a second graft after conditioning with CY-TBI for the first transplantation. The second ablative regimen consisted of CY plus VP-16 in the first patient and CY plus busulfan in the two other patients, one of whom relapsed again. All patients but three had bone marrow (BM), either isolated or combined, relapses. Twenty-nine of the patients are in continuous complete remission (CCR), ranging from 1 to 67 months after transplantation with a median time of 30 months. One patient was lost to follow-up in continuous remission. Nine patients died from treatment-related complications (infections and graft-versus-host disease) and 12 patients suffered a leukemic relapse; three of them received a second graft and two are in CCR. Kaplan-Meier analysis yields an event-free survival (EFS) of 0.52 +/- 0.08. The probability of a 7-year relapse-free interval (RFI) is 0.68 +/- 0.08. EFS for patients with late relapses is 0.47 +/- 0.12 and for patients with early relapses 0.56 +/- 0.1. The RFI for patients with late relapses is 0.65 +/- 0.12 and for patients with early relapses 0.69 +/- 0.11. There is a nonsignificant trend towards superior results for patients grafted after conditioning with VP-16 plus TBI. When all patients who are not in CCR at day +125 (which is the median interval between relapse diagnosis and BM transplantation [BMT]) are excluded from the chemotherapy results, there is no significant difference between the results of BMT and chemotherapy for late relapses. On the other hand, there is a significant advantage between chemotherapy and BMT for early relapses over chemotherapy (P less than or equal to .01).

Adolescent

Recovery of monocytes after bone marrow transplantation--rapid reappearance of tumor necrosis factor alpha and interleukin 6 production.

After bone marrow transplantation many T-lymphocyte functions, including the production of cytokines (CK), such as interleukin 2, are severely depressed for months. The monocyte-derived cytokines tumor necrosis factor alpha and interleukin 6 are molecules central to immune functions. Moreover, they may be involved in graft-versus-host disease and in graft-versus-leukemia reaction. Hence, we have studied the reappearance of these CKs after BMT by analyzing whole blood cultures stimulated in vitro with lipopolysaccharide for 6 hr, followed by testing for the secretion of TNF in the WEHI 164/actinomycin D cytotoxicity bioassay and for IL-6 in the 7 TD 1 proliferation assay. We performed sequential studies in 6 children who were transplanted for aplastic anemia or leukemia with allogeneic bone marrow. We found that the production of both CKs can be induced as early as 10-14 days post BMT at the very beginning of engraftment, indicating that the regenerating monocyte system is recovering rapidly after BMT. Depletion and neutralization experiments confirmed that monocytes are the cellular source of the LPS-induced CK secretion after BMT. Control levels were reached 3 to 4 weeks post BMT. When analyzing the endotoxin-induced CK production in a larger panel of BMT patients after complete reconstitution, we could not detect any impact of acute or chronic GvHD, or of allogeneic or autologous BMT, nor did treatment with cyclosporine A (CsA) show any suppressive effect. Thus, our data show that the CK production of the monocyte/macrophage lineage is quite resistant to factors that do influence other cell lineages of the immune system during BMT. The coincident appearance of monocyte-derived cytokines and of GvHD suggests a role for these cytokines in GvHD in man.

Adolescent

Late effects of allogeneic bone marrow transplantation in children.

Late sequelae of bone marrow transplantation (BMT) include growth impairment, gonadal failure, cataract formation, neurological and pulmonary complications, nephropathy, hepatic dysfunction, development of secondary malignancies, chronic graft-vs.-host disease, and psychosocial stress. Lifelong follow-up after BMT is required to detect late sequelae.

Antineoplastic Agents

Late complications after allogeneic bone marrow transplantation for leukaemia.

Late effects of bone marrow transplantation are of clinical concern as more patients survive the early phase after transplantation and remain free of their original disease. Late effects express themselves as structural or functional impairment of organs or tissues or as neoplastic growth secondary to the primary treatment. Non-neoplastic late effects affect growth and development of children, endocrine and reproductive function, and the function of eyes, lungs, kidneys and other organs. Secondary neoplasms comprise malignant lymphoma and leukaemia, many of them in donor cells, that occur early after transplantation. The incidence of solid tumours is increased years after transplantation. At present the risk of secondary neoplasms after transplantation appears not to be different from that of intensive chemoradiotherapy without transplantation. In contrast to conventional chemoradiotherapy secondary malignancies of the host's haemopoiesis are rare due to the myeloablative conditioning. The incidence of solid tumours may increase as more patients survive more than a decade after transplantation.

Antineoplastic Agents

Bone marrow transplantation in childhood leukaemia--experience and strategies in the Federal Republic of Germany.

BMT has gained its place in the treatment of childhood leukaemia. Nevertheless, there are still many questions open. In acute lymphoblastic leukaemia children should normally be grafted in 2nd remission (CR). Some high risk cases, however, should probably be grafted in 1st CR. It is not clear whether children with late relapses benefit more from BMT than from renewed chemotherapy. Children with a relapse during maintenance therapy, however, have a better survival rate with BMT. In acute nonlymphoblastic leukaemia certain high risk patients should be grafted in 1st CR but it has still to be shown that BMT is superior to chemotherapy in such cases. It is not clear whether children with a relapse following intensive chemotherapy (such as the BFM-protocols) will benefit from BMT at all. In chronic myelocytic leukaemia, BMT in chronic phase should be performed. Thus, for the first time cure has become possible for this disease. Waiting for acceleration or even the occurrence of a blast crisis decreases the chance of survival after BMT dramatically. Since complications of BMT such as graft-versus-host reaction or severe infections are less frequent in children, relapses remain the main problem after BMT in childhood leukaemia.

Bone Marrow Transplantation

Bone marrow transplantation for the treatment of leukaemia-results of the Munich Cooperative Group.

This report summarizes the results of marrow transplantation from HLA-identical siblings and syngeneic twins for treatment of acute myelogenous leukaemia, chronic myelogenous leukaemia, acute lymphoblastic and undifferentiated leukaemia from 1975 until December 1986. Three conditioning regimens and treatment of the marrow graft in vitro with absorbed antithymocyte globulin or the monoclonal antibody "Campath 1" for prophylaxis of graft-versus-host disease (GVHD) have been studied and analyzed retrospectively. The regimen of total body irradiation in large fractions of 4 Gy and of cyclosphosphamide (200 mg/kg) has achieved the most favorable results. Inactivation of T-cells by treatment of the marrow "in vitro" has decreased the severity of GVHD without improving survival. The antileukaemic effect of the graft may be important for control of the disease and may be improved by better immunosuppression of the recipient.

Adolescent

Improved survival following HLA-incompatible bone marrow transplantation. Munich Cooperative Group of Bone Marrow Transplantation.

In most centers allogeneic bone marrow transplantation is restricted to patients with HLA-identical siblings as donors. We have transplanted 16 patients with marrow of donors other than HLA-identical siblings. Seven patients were grafted in the years 1978 until 1984. Six died of transplant complications and one of recurrent leukemia. More recently 9 patients were transplanted following an improved immunosuppressive conditioning treatment derived from experimental studies in dogs. Four are alive and in continuous remission between more than 2 months and 2 years. 5 patients died, 3 from fungal infections, one from recurrent leukaemia and one early from endothelial leakage syndrome. Our results indicate that intensified immunosuppressive conditioning may improve the results of marrow transplantation from HLA-haploidentical donors.

Adolescent

Myeloablative conditioning for marrow transplantation in myelodysplastic syndromes and paroxysmal nocturnal haemoglobinuria.

Paroxysmal nocturnal haemoglobinuria (PNH) and myelodysplastic syndromes (MDS) are disorders of pluripotent stem cells resulting in haematopoietic insufficiency which can be cured by marrow transplantation. The extent of myeloablative conditioning necessary for elimination of the non-malignant and premalignant clones is not known. We report our results of marrow transplantation with and without myeloablative conditioning in two patients with PNH and seven patients with MDS. Conditioning was not used in a patient with PNH and a monozygotic twin as donor. In this patient the disease remained unchanged. Myeloablative treatment with busulphan (BUS) in addition to immunosuppression with cyclophosphamide (CY) was used for conditioning in a patient with PNH and a 2-year-old boy with chronic myelomonocytic leukaemia (CMML). Fractionated total body irradiation (FTBI) and CY was used in six patients with refractory anaemia with excess of blasts (RAEB) and RAEB in leukaemic transformation (RAEB-T). Haematopoiesis was fully restored in all patients conditioned with myeloablative treatment except for a patient in leukaemic transformation with myelofibrosis and a HLA-DR-incompatible donor. Chimerism was complete in all patients except for the 2-year-old boy conditioned with BUS and CY. Our results and those reviewed in the literature indicate that myeloablative conditioning with either BUS or FTBI is advantageous for marrow transplantation in PNH and MDS.

Adult