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Biomedical subjects

P Höcker

Publications and source records attributed to P Höcker.

At least 19 recordsLinked to original sources

Microangiopathy following allogeneic marrow transplantation. Association with cyclosporine and methylprednisolone for graft-versus-host disease prophylaxis.

A microangiopathic syndrome was observed in 3 of 14 (21%) patients receiving cyclosporine and methylprednisolone (CSA-MP) for graft-versus-host disease (GVHD) prophylaxis between January 1991 and June 1992 at our center. The syndrome consisted of neurological abnormalities, arterial hypertension, intravascular hemolysis with red cell fragmentation, and a drop in platelet counts after allogeneic bone marrow transplantation (BMT) for hematological malignancy, and it occurred around day 50 after BMT. Treatment with plasma exchanges against fresh-frozen plasma resulted in a decrease of serum lactate dehydrogenase and an improvement of neurological symptoms. We compared CSA-MP patients retrospectively with patients who had received cyclosporine and methotrexate (CSA-MTX) for GVHD prophylaxis (n = 70) at our institution. All patients in both groups engrafted. Day 100 survival (80% vs. 79%) and transplant-related mortality (16% vs. 14%) were identical in the two groups. CSA-MP patients had significantly more acute GVHD II-IV (57% vs. 17%, P < 0.01). Arterial hypertension (P < 0.01) and neurological symptoms (P < 0.01) were significantly more frequent in the CSA-MP group. The 11 asymptomatic CSA-MP patients had significantly higher lactate dehydrogenase levels (P < 0.01) and lower platelet counts (P < 0.01) at 40, 60, and 100 days after BMT, which suggests the presence of a subclinical form of microangiopathy. Significantly higher plasma levels of von Willebrand factor antigen in CSA-MP patients on day 50 after BMT (P < 0.05) and absence of large von Willebrand factor multimers on gel electrophoresis in 4 of 13 (31%) CSA-MP patients compared with 0 of 14 (0%) CSA-MTX patients (P < 0.01) further suggest profound endothelial damage in patients receiving CSA-MP for GVHD prophylaxis.

Adult

[The value of sequential CD 34 measurement for carrying out stem cell pheresis].

The recent significant improvement in disease-free survival in patients with certain haematological malignancies is due to high-dose chemotherapy and subsequent autologous bone marrow and/or stem cell transplantation. The proliferation and egression of stem cells into the peripheral blood must first be stimulated by defined chemotherapy and/or by administration of cytokines. However, the increase of circulating stem cells in peripheral blood is limited to only a few days. By immunologically analysing white blood cells for the expression of the surface antigen CD 34 it is possible to calculate the numbers of haematopoietic progenitor cells. Thus, besides monitoring haematopoietic recovery, the estimation of CD34+ cells in the peripheral blood can be used to indicate the optimal time point for stem cell collection. Two to four stem cell pheresis (one per day) may then yield sufficient stem cells to enable the safe and rapid reconstitution of haematopoiesis following supralethal chemotherapy.

Antigens, CD

[Mobilization of circulating hematopoietic stem cells by granulocyte colony stimulating factor after chemotherapy in multiple myeloma].

Due to the relatively low tumour cell contamination of peripheral blood in patients with multiple myeloma, autologous transplantation of circulating stem cells may have theoretical advantages over autologous bone marrow transplantation. In four patients with multiple myeloma who where considered potential candidates for autologous stem cell transplantation G-CSF (600 micrograms/day) was administered following chemotherapy in order to maximally increase the number of circulating progenitor cells during haematopoietic rebound and to facilitate progenitor cell harvest by leukapheresis. In two previously untreated patients the administration of G-CSF following chemotherapy according to the UVA protocol (ultralan, vincristine, adriamycin) greatly increased circulating haematopoietic stem cells from 247 to 7552 CFU-GM/ml in patient 1 and from 173 to 6361 CFU-GM/ml in patient 2, which by far exceeded the increase in progenitor cells following chemotherapy alone, namely only to 594 and 317 CFU-GM/ml in patient 1 and patient 2, respectively. In two repeatedly pretreated patients, the combination of UVA and G-CSF was much less effective. Progenitor cells increased from 144 to 735 CFU-GM/ml in patient 3 and only from 222 to 232 CFU-GM/ml in patient 4. In both cases, however, mobilization of haematopoietic progenitor cells by G-CSF following cyclophosphamide (50 and 70 mg/kg body weight, respectively) led to much higher CFU-GM peak values (5324 in patient 3 and 2245 in patient 4), thus allowing an adequate harvest of mononuclear cells and CD 34+ cell numbers to achieve, in all probability, the prompt and complete reconstitution of haematopoiesis in case of transplantation.(ABSTRACT TRUNCATED AT 250 WORDS)

Antigens, CD

Potentiation of GM-CSF or G-CSF induced mobilization of circulating progenitor cells by pretreatment with IL-3 and harvest by apheresis.

Recombinant human colony-stimulating factors (CSFs) are increasingly used for mobilizing progenitor cells in the peripheral blood (PB). 7 patients were treated with GM-CSF or G-CSF at a dose of 5 micrograms/kg/d for 5 days and after a treatment free interval received another cycle of the same cytokine after pretreatment with IL-3. Pretreatment with 5 micrograms/kg/d of IL-3 for 7 days did not mobilize by itself but significantly potentiated GM-CSF or G-CSF induced mobilization of PB progenitor cells in all 5 patients tested. As compared to the mobilization capacity of GM-CSF or G-CSF alone, 7 day IL-3 pretreatment potentiated maximum values of CFU-GM by 3.7-6.3 fold in patients receiving GM-CSF (n = 2) and by 1.8-3.3 fold in patients receiving G-CSF leading to a 10-23 fold increase in numbers of circulating CFU-GM by the combination IL-3/GM-CSF, and a 26-101 fold increase by IL-3/G-CSF, respectively. Stem cell apheresis in patients treated with IL-3 + G-CSF or GM-CSF yielded enough PB-stem cells to ensure complete engraftment after ablative chemotherapy.

Blood Component Removal

Antigenic analysis of human haemopoietic progenitor cells expressing the growth factor receptor c-kit.

The cell surface molecule encoded by the protooncogene c-kit has recently been identified as the receptor for a growth factor variously termed stem cell factor (SCF), mast cell growth factor or steel factor. Using the c-kit antibody 17F11 we analysed, in triple staining experiments, the surface molecule profile and scatter characteristics of c-kit+CD34+ human haemopoietic progenitor cells. In 10 normal bone marrow samples we found 19-51% of CD34+ bone marrow progenitor cells to coexpress c-kit. These c-kit+CD34+ bone marrow cells turned out to represent a phenotypically heterogeneous population. A considerable proportion coexpressed CD33 (52 +/- 23%), and/or CD71 (62 +/- 26) antigens, marker molecules previously shown to be expressed by committed in vitro colony forming cells but not by their precursors. In line with a relatively differentiated phenotype c-kit+CD34+ cells also gave rise to on average higher forward and right-angle light scattering signals. The proportions of CD38 and/or HLA-D expressing cells were similar in the c-kit+ and in the c-kit- subsets of CD34+ progenitor cells. Coexpression of CD19 was found to be less frequent in the c-kit+ (4 +/- 5%) as compared to the c-kit- (17 +/- 14%) fraction of CD34+ cells. CD7+ CD34+ bone marrow cells were hardly detectable and their numbers too low to allow further subdivision in c-kit+ and c-kit- subsets.

Antigens, CD

Treatment of infant leukemia with busulfan, cyclophosphamide +/- etoposide and bone marrow transplantation.

Infants with acute leukemia have a poor chance of being cured by conventional chemotherapy. We therefore treated cases of infant leukemia with high dose chemotherapy followed by bone marrow transplantation (BMT). Six suffered from acute leukemia and one from refractory anemia with excess of blasts (RAEB-t). The conditioning regimen consisted of busulfan (BU) and cyclophosphamide (CY), and was intensified by adding etoposide (VP) in four cases. At the time of BMT the children were 4, 5, 12, 13, 13, 14, and 20 months old. Three children were autografted, three received HLA-identical marrow from a sibling donor, and one child received matched unrelated donor marrow. All five children who were grafted in complete (CR) or partial remission (PR) are alive and well in CR 7, 13, 24, 37, and 46 months after allogeneic (two patients) or autologous (three patients) BMT, and 13, 17, 29, 42, and 53 months after initial diagnosis. The child with RAEB-t and the one transplanted in second chemotherapy-resistant relapse of acute non-lymphoblastic leukemia relapsed at 7 and 17 months respectively. The chemotherapy regimen was well tolerated. BU-CY-VP is a promising alternative treatment to regimens including total body irradiation for very young children suffering from acute leukemia.

Bone Marrow Transplantation

[Autologous bone marrow transplantation in children with acute leukemia or non-Hodgkin's lymphoma].

More than 95% of children with acute lymphoblastic leukemia (ALL) achieve complete remission with conventional chemotherapy and 60 to 70% are cured. In contrast, only 70 to 80% of children with acute myeloid leukemia (AML) achieve remission and 30 to 40% are cured. In acute leukemia, ALL and AML, high initial white blood cell counts, poor initial response to therapy, certain structural chromosomal abnormalities, and diagnosis under 1 year of age indicate an increased risk of relapse. Prognosis is poor in children, who relapse during treatment. If no bone marrow donor is available, high dose chemo(radio)therapy and autologous stem cell rescue can be applied in these children to consolidate second remission. Furthermore, autologous bone marrow transplantation may be used to consolidate first remission of individual children, who suffer from acute leukemia with high risk criteria. 19 children with a median age of 8 years (0.5 to 19 years) underwent high dose chemo(radio)therapy and autologous bone marrow and/or blood derived stem cell rescue. 11 suffered from ALL, 4 had AML, and 4 suffered from Non Hodgkin's lymphoma (NHL). 7/13 children (54%), who were in first or second remission after early relapse, are alive in continued remission for median 24 months (9 to 44) after autografting. Children in more advanced stage of disease had no benefit from high dose therapy and autologous stem cell rescue.

Adolescent

[Collection and transfusion of peripheral blood stem cells].

Harvesting of peripheral blood stem cells (PBSC) by cytapheresis was performed in 57 patients, who underwent chemotherapy. The best yields were obtained when the leukocyte count was above 1 x 10(9)/l and the platelet count was raised above 80 x 10(9)/l. Using a Haemonetics V-50 or a Baxter CS-3000, 374 PBSC-aphereses were performed with a median of six aphereses per patient. The median number of PBSC (CFU-GM) retransfused in 22 patients who received PBSC for hematological reconstitution only was 3.26 x 10(4)/kg. For 22 patients who received autologous bone marrow plus BPSC, the median number of retransfused PBSC was 2.14 x 10(4)/kg. Myeloid engraftment was achieved in all patients, but megakaryopoiesis was delayed when the number of PBSC was less than 5.0 x 10(4)/kg. The results demonstrate that harvesting of a sufficient number of PBSC after chemotherapy is feasible but further measures like the use of rh GM-CSF will be necessary to reduce apheresis procedures and to obtain high yields to ensure rapid and complete engraftment.

Blood Cell Count

[The role of blood banks in bone marrow transplantation].

The transfusion service (TS) plays an important role in bone marrow transplantation (BMT). Many of the techniques and methods employed are also used in the daily work of a TS like tissue typing, apheresis techniques, handling of blood and its components under sterile conditions. In the pretransplantation phase the TS is responsible for the typing of recipient and presumptive donors, harvesting of autologous blood and selection of appropriate blood components. During BMT the TS can perform bone marrow harvesting, depletion of red cells in case of ABO-incompatibility and bone marrow manipulation when T-cell depletion or purging procedures are considered. Peripheral stem cell harvest by apheresis is also best performed by the TS experienced in such techniques. Storage of hematopoietic cells in liquid nitrogen and thawing are also techniques already used in most of the transfusion services. Post BMT, the support with blood components, irradiated and almost free of white cells to avoid TA-GVH and CMV-infection, is a major job of the TS. These facts demonstrate that a well organized transfusion service is a 'conditio sine qua non' for successful BMT.

Blood Banks

Unusually long survival after autografting in second partial remission of translocation t(4;11) acute infant leukemia.

About 70% of children with acute lymphoblastic leukemia may be cured by conventional chemotherapy. The prognosis is considerably worse in infant leukemia with a translocation t(4;11). We report an infant with a diagnosis of cytochemically undifferentiated acute hybrid leukemia (pre pre B-ALL coexpressing one myelomonocytic marker) and t(4;11). Initial clinical presentation and the course of the disease were typical for t(4;11) acute leukemia. After an early hematologic relapse intensive chemotherapy resulted only in a second partial remission 7 months after initial diagnosis. Subsequent bone marrow transplantation with 16 mg/kg busulfan and 200 mg/kg cyclophosphamide followed by the infusion of autologous purged bone marrow resulted in a continuous second remission which has lasted 46 months so far.

Antineoplastic Combined Chemotherapy Protocols

Is treatment intensification by adding etoposide and carboplatin to fractionated total body irradiation and melphalan acceptable in children with solid tumors with respect to toxicity?

Conventional chemotherapy results in high mortality rates in patients with solid tumors involving the bones or the bone marrow. High dose melphalan (MEL) with or without total body irradiation followed by bone marrow transplantation (BMT) has prolonged survival, but curative potential has remained disappointing. In order to improve survival 20 children with generalized or relapsed solid tumors (neuroblastoma, peripheral neuroectodermal tumor, Ewing's sarcoma, rhabdomyosarcoma) underwent autologous (n = 16) or allogeneic (n = 4) BMT. The myeloablative regimen consisted of 12 Gy fractionated total body irradiation (FTBI) and high dose MEL. In 12 of these patients this regimen was intensified by giving 60 mg/kg etoposide (1800 mg/m2 VP), and 1.5 g/m2 carboplatin (CBDCA) was added in seven of these 12 patients. The intensification of FTBI and MEL by adding VP and CBDCA was followed by acceptable toxicity. Acute liver toxicity in 15/20 patients (75%) and acute renal toxicity in 17/20 patients (85%) did not exceed WHO grade 1. The use of the conditioning regimen FTBI-MEL-VP-CBDCA during first chemotherapy response is a promising approach in treatment of children suffering from generalized solid tumors.

Adolescent

[Supportive therapy with blood components].

An overview about the recent state of the supportive therapy with blood components in the treatment of leukemia is given. The 1st part is devoted to the procurement of blood components and the techniques of preparation and storage are described. The 2nd part includes the side effects of blood components like alloimmunization, graft-versus-host disease and CMV-transmission and discusses the possibilities of prohibition. The 3rd part deals with the dosage of the single blood components and how to judge the efficacy of transfusion. In the last part the indications for the single blood donor components are described and therapeutical strategies are outlined.

Blood Component Transfusion

Erythropoietin treatment of anemia associated with multiple myeloma.

Anemia is a common complication of multiple myeloma. It resolves early in the disease if chemotherapy induces a complete remission, but persists if the disease progresses, causing disabling symptoms and often requiring blood transfusions. We treated 13 patients with myeloma-associated anemia by administering recombinant human erythropoietin three times a week for six months. Eleven patients (85 percent) had steady increases in hemoglobin levels and eventual correction of the anemia. Their symptoms of anemia subsided, and they reported a heightened sense of well-being. No patient had any adverse side effects, particularly episodes of hypertension. Monitoring of the serum M component showed a predominantly stable tumor load without apparent interaction between the underlying disease and the response to erythropoietin therapy. The number of erythroid burst-forming units in the bone marrow and peripheral blood and the level of erythropoiesis in bone marrow smears increased significantly during therapy. Pretreatment serum levels of erythropoietin were higher in the patients who did not respond and in those who required more than two months of treatment before they responded. Serum iron, ferritin, and transferrin concentrations reflected responses to treatment. We conclude that recombinant human erythropoietin is a promising therapeutic tool for treating myeloma-associated anemia.

Aged

[Hemolyzing antibodies to markers of the P blood factor system as a problem in blood transfusion and pregnancy. With reference to serology, biochemistry and genetics].

The extremely rare phenotypes p, P1k and P2k (0.0005-0.0006%) of the blood group P system are usually found in consanguinous families. In the serum of these persons haemolytic antibodies with the specificity anti-PP1Pk and anti-P are found, causing severe haemolytic reactions after transfusion of incompatible blood. Because of their rarity it is difficult to find compatible blood donors. The antibodies are also associated with abortion early in pregnancy. Since 1948 at the "Institut für Blutgruppenserologie der Universität Wien" 4 persons of the phenotype p and 3 of the type P2k were observed in altogether 5 families. Two of them needed blood transfusions, the one p patient received p blood from her sister, who likewise gave blood to the other p patient. This latter patient additionally received three blood units which had been stored in liquid nitrogen and came from Austria and from the European bank of frozen blood in Amsterdam (Council of Europe). The pedigrees of three families with 5 probands out of the 7 observed cases could be reconstructed and showed consanguinity, partly some generations back. A genetic model valid at the moment for the biosynthetic pathway of the P antigens is demonstrated and the appropriate serological characteristics of the haemolytic antibodies are shown. The seven antibodies are partly IgG and partly IgM antibodies, optimally reacting using the indirect antiglobulin test or enzyme-treated red cells. The range of the antibody titres was between 1:8 and 1:1024. Absorption of Anti-PP1Pk sera with red cells of type P1 to get Anti-Pk and inhibition with hydatidcyst fluid and globoside to receive Anti-P and Anti-P1 + Pk, respectively were partly successful.

Abortion, Spontaneous

Capillary leak syndrome during low dose granulocyte-macrophage colony-stimulating factor (rh GM-CSF) treatment of a patient in a continuous febrile state.

A 20 years old man with peripheral primitive neuroectodermal tumor involving the bone marrow received 12 Gy fractionated total body irradiation, 140 mg/m2 melphalan, 1800 mg/m2 etoposide, and 1500 mg/m2 carboplatin for consolidation of first remission. Thereafter, 250 micrograms/m2/day recombinant human granulocyte-macrophage colony-stimulating factor (rh GM-CSF) (Behring Werke) were administered as continuous infusion 4 days after infusion of autologous bone marrow and peripheral stem cells to accelerate granulocyte reconstitution for control of a continued febrile state. The clinical picture of capillary leak syndrome developed with weight gain, pleural effusions and peripheral edema. The patient's condition stabilized after discontinuation of rh GM-CSF. Eight days later he died of invasive aspergillosis. The clinical course of our patient suggests a potentially fatal toxic effect of rh GM-CSF, even in low dose, in the setting of septicemia or fungemia.

Adult

Autologous rescue with blood-derived stem cells in a child with non-Hodgkin's lymphoma.

Autologous blood-derived stem cells were used for stem-cell rescue in a 5-year-old boy with chemotherapy-resistant B-Non-Hodgkin's lymphoma (B-NHL) involving bone marrow. The high dose chemoradiotherapy was carried out 5 months after initial diagnosis during partial remission. The preparative regimen consisted of 12 Gy fractionated, total-body irradiation (FTBI) before 60 mg/kg etoposide. There were 22.96 X 10(4)/kg body weight myeloid precursor cells, granulocyte-macrophage committed stem cells (CFU-GM) collected by intermittent blood flow separation with a Haemonetics 30R in two cytaphereses and stored in liquid nitrogen. Also 11, 82 X 10(4) CFU-GM/kg body weight were recovered and transfused after thawing. Rapid hematopoietic reconstitution ensued: Erythroid precursors were detected on day 9, 1 X 10(9)/L leucocytes were counted on day 11, and 0.5 X 10(9)/L granulocytes on day 13, respectively. The patient required 3 single-donor platelet transfusions, the last one on day 10. On day 17, 100 X 10(9)/L platelets were reached. A bone marrow aspirate on the same day showed good trilineage regeneration. The patient remained in complete remission 7 months after autografting with a normal stem cell content of the bone marrow and in the peripheral blood. On day 226, after stem cell infusion, a bone marrow relapse occurred.

Antineoplastic Combined Chemotherapy Protocols