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E Gebauer

Publications and source records attributed to E Gebauer.

44 records · Page 3Linked to original sources

[Clinical use of thrombopoietin (c-Mpl Ligand)].

INTRODUCTION: Results in clinical use of thrombopoietin have been published later than of other hematopoietic growth factors, because until recently the research was the least understood aspect of blood cell development. Reasons for this time gap were numerous, from inconvenient methods for measurement of thrombopoietin activity, to difficulties of its chemical purification. It is claimed recently that the understanding of platelet production has been profoundly advanced by the recombinant-gene synthesis and characterization of c-Mpl ligand (Megakaryocyte Growth and Development Factor), a substance which strongly enhances the proliferation of megakaryocytic line and the production of platelets. In this paper, some historical facts and biology of thrombopoietin are briefly discussed as well as the recent of the clinical use of thrombopoietin. THE HISTORY OF RESEARCH AND PRODUCTION OF THROMBOPOIETIN: The concept that the platelet production is underlying humoral regulation was first promoted by a group of Hungarian authors and they also named that humoral regulator--thrombopoietin. Further research followed in several countries including our own, and the initial studies proved that the serum of thrombocytopenic animals induced proliferation and maturation of megakaryocytic cell line and thrombocytosis in the peripheral blood of recipient animals. Later, when in vitro techniques were developed, it was shown that this humoral regulator has also a colony stimulating activity on megakaryocytic precursors. During the following two decades, studies of megakarycytopoiesis supported the hypothesis that two types of factors are involved in platelet production: early acting--megakaryocyte colony stimulating factors (Meg-CSF), and late acting--megakaryocyte potentiators, first of all thrombopoietin (TPO). However, extensive attempts on the purification of substances that either stimulate megakaryocyte development or augment platelet production failed to yield a homogeneous protein adequate for protein sequencing and cDNA cloning, the usual route which led to the production of other hematopoietic growth factors. Furthermore, a large number of other cytokines were described that possessed activity in various assays of megakaryocyte development. In spite of great number of accumulated data, it seemed in early 1990s that the production of a distinct, clinically useful lineage specific thrombopoietin will not be soon possible to achieve. The breakthrough occurred in 1994, when four groups of investigators published simultaneously their successful results on production of c-Mpl ligand, a substance which specifically binds to the Mpl receptors on megakaryocytes and has a very potent thrombocytopoietic effect. This production is based on genetic engineering and two companies (Kirin and Amgen) are already able to produce recombinant human thrombopoietin in large amounts, for clinical use. Although this substance is not commercially available yet, it passed the preclinical and clinical trials whose results are presented here. RESULTS OF THE PRECLINICAL TRIALS OF RECOMBINANT THROMBOPOIETIN: The chemical structure of human recombinant thrombopoietin (rTPO) is well defined, it is a glycoprotein consisting of 353 amino acids and molecular weight of 30 kD. The biologic actions of this molecule are in vitro: stimulation of megakaryocyte colony forming, endoreduplication of chromosomes and megakaryocyte maturation, and in vivo: increase of the number of progenitors and of megakaryocytes in the bone marrow, and an extensive elevation of platelet count in the peripheral blood 4-7 days after its application. Also, in synergism with other pluripotent cytokines, it can stimulate the proliferation of other progenitors including CD34+ stem cells. Based on these data it is considered that c-Mpl ligand is the main physiological humoral regulator of thrombocytopoiesis, having the biological actions both of MegCSF and TPO.

Animals↗

[Malignant ovarian tumors in childhood and adolescence in Novi Sad (1946-1989)].

In the period from 1946-1989, at the Department of Gynecology and Obstetrics University of Novi Sad, 79 ovarian tumors in children and adolescents were registered. There were 10 (12.6%) malignant tumours. The most common were dysgerminoma and carcinoma (total 6-7.6%). The treatment depended on the extent of the disease at the time of diagnosis (surgery, irradiation, chemotherapy or combination).

Adolescent↗

[Intravenous immunoglobulin in the treatment of infections in children with acute leukemias].

Infections are a common cause of complications in the course of applying highly aggressive combined cytotoxic therapy in children suffering from acute leukemias (ALL and ANLL). The effect of adjuvant therapy of intravenous immunoglobulins (IVIG) was investigated in cases of infections of children with ALL and ANLL (24 with IVIG and 24 without this therapy) according to the system of matched pairs. The polyvalent functionally intact monomeric i.v. immunoglobulin "Endobulin" Immuno, 100 mg/kg was applied in infections--febrile episodes combined, if possible, with an aimed antibiotic therapy. It was established that children with the intravenous immunoglobulin therapy had had statistically significantly less febrile episodes (p < 0.01), as well as less febrile days (p < 0.05). Although the acquired results speak in favor of this therapeutic possibility when applying this supportive therapy which is getting more and more important, authors made a conclusion that the final estimate of the value of this therapy remains open and requires further investigations.

Adolescent↗

[Clinical use of granulocyte colony stimulating-factors (GM-CSF and G-CSF].

Humoral regulation of granulocytopoiesis was proven 30 years ago by discovery of factors which stimulate production of granulocyte colonies (CSF-colony stimulating factors), while clinical utilization of recombinant human colony stimulating factors (rhGM-CSF and rh-CSF) is present for the last 10 years. On the basis of this, today we have a lot of experience in regard to indications, modes and results of their clinical utilization. Clinical utilization of CSF is divided into three fields: treatment of the neutropenic syndrome, utilization in oncologic patients and in bone marrow transplantation. The best results have been achieved in neutropenic syndrome therapy, both chronic (congenital, cyclic and idiopathic neutropenia, aplastic anemia and myelodysplastic syndrome) and acute (granulocytopenia drug induced, postirradiation neutropenia). In oncologic patients it is used to eliminate neutropenia which occurs after cytostatic therapy with standard doses or high dose cytostatic therapy with better effects on the tumor, but with myeloablation. Granulocyte colony-stimulating factor is also used for stimulating fast granulocytopoiesis in autologous or allogeneic bone marrow transplantation, in unsatisfactory transplants especially. In recent years it has been used for mobilization of progenitor CD34+ cells in the donor in order to perform their transplantation, especially in treatment of chronic myeloid leukemia. At our institution G-CSF has been successfully used in 17 patients.

Bone Marrow Transplantation↗

[Problems and perspectives in child health care].

Health care protection of children in Vojvodina is of particular importance regarding the negative natural birth rate. In spite of difficult economic situation, health care of children in Vojvodina is permanently carried out and would be significantly better in quality if the education of subspecialized personnel, space facilities, technological innovations, computerization and continuous education were available. Introduction of microanalytic laboratory techniques is essential for monitoring of prematures. Propagation of natural nutrition is an obligation of pediatricians. Respiratory diseases are still on the top of morbidity pyramid but tuberculosis is evidently in increase. An important health care problem is the expansion of allergic diseases. The progressive incidence of insulin-dependent diabetes is also evident. The spheres of juvenile gynecological endocrinology and andrology are still underdeveloped and that also applies to adolescent medicine. Toxicology remains an ongoing problem in pediatrics due to an increased number of accidental poisoning. Pediatricians-gastroenterologists are lacking while paediatric hepatology should be brought into more advanced state. Bone marrow and stem cells transplantation is in the responsibility of the Centre for haematology and oncology. Nephrology department lacks children's haemodialysis, ultrasound biopsy of kidneys, urodynamic analyses and new staff facilities. The increased number of survivals in case of children with with sequeles inevitably asks for better development of rehabilitation, prolonged treatment and teamwork. Intensive care and therapy department requires new staff and high technology capacities. Development of children's surgery department inevitably means the reconstruction of space facilities, modern equipment and new subspecializations. Preventive outpatient service is performed through systematic examinations. ultrasound diagnostics of hips, auditive screening and educational program activities related to addiction and veneral diseases. Genetic health of the population is supremely covered by the Center for Medical Genetics, with the tendenca for development of molecular genetics. It is necessary to develop rehabilitation service, prolonged treatment and teamwork. Diagnostic of convulsive conditions should be advanced with more refined diagnostic methods.

Child↗

[Idiopathic thrombocytopenic purpura in children].

INTRODUCTION: Idiopathic (immune) thrombocytopenic purpura (ITP) is the most frequent hemorrhagic disease in children. It represents the acquired megakaryocytic thrombocytopenia with the shortened life of platelets because of immunologic damage (antibodies absorbed by platelets). In the case of this acquired hemorrhagic disorder, in spite of compensatory increased function of the bone marrow, there is a reduced number of platelets because of their increased destruction by the reticuloendothelial system (destructive thrombocytopenia). There are three forms of ITP: acute, chronic and intermittent. The acute form occurs in 80-90% of cases with bleeding episodes lasting a few days or weeks, but no longer than 6 months. The chronic form occurs in 10-15% of children, while the rarest-intermittent form is characterized by periods of normalization in regard to the number of platelets but also with relapse in intervals of 1-3 months. The disease is caused by an immunological disorder in the sense of an imbalanced immune response. Immunologic damages of platelets cause shortening of the opsonized platelets life span. The most frequent platelet opsonins are the immumoglobulin G (IgG) antibodies directed at the platelet membrane in the form of autoantibodies, alloantibodies or possibly absorbed antigen caused by microorganism infection or drug intake. CLINICAL MANIFESTATIONS: It is typical for the phenomenon of bleeding that it starts suddenly and without any other sign of illness. The most frequent acute form appears between the second and fourth year, and is characterized by seasonal occurrence usually after acute viral infections. Children older than 10 years of age, like adults, often have the chronic form associated with other immunologic disorders. The disease affects girls more often than boys (about three times more often) with moderate and constant increase of antiplatelet antibodies. Hemorrhagic manifestations include: petechiae, purpura, epistaxis, gastrointestinal and genitourinary bleeding. They depend on the grade of thrombocytopenia, although there is no strict correlation between the number of platelets and volume of bleeding. Low mortality of the acute ITP is almost exclusively due to intracranial hemorrhage. LABORATORY STUDIES: Thrombocytopenia represents a decrease in the number of blood platelets being a basic abnormality of the blood count. The half-life of platelets in ITP is shortened. Detection of antiplatelet antibodies is connected with technical difficulties, so they are established in about 30% of cases. Bleeding time is prolonged and so is the coagulum retraction which may be completely missed. The Rumpel-Leede test is positive. Clinical differentiation of drug-induced thrombocytopenia is not possible. However, other differential diagnostic possibilities are thrombotic-thrombocytopenic purpura and hemolytic-uremic syndrome. A child with aplastic anemia or acute leukemia, beside thrombocytopenia, has a characteristic finding of white and red blood cell count. Thrombocytopenia with absent radii syndrome is associated with skeletal system abnormalities. TREATMENT: New knowledge about the role of the immune system in ITP determines the modern therapeutic modalities. In cases of acute ITP in children, there are two therapeutic options or therapies of choice: corticosteroids and high doses of intravenous immunoglobulin. Immunosupressive therapy means anti Rh(D) immunoglobulin, cyclosporine, cytostatics, danazol, loaded platelets. In cases of distinctive hemorrhagic syndrome there are also indications for platelet transfusion. Nowadays splenectomy is more restricted, because one third of cases is unsuccessful, whereas plasmapheresis is rarely used in children because of possible complications. CONCLUSION: ITP is the most frequent hemorrhagic disease in children. The disease is basically caused by an immunologic disorder with platelet destruction due to increased immunoglobulin on their membrane. (ABSTRACT TRUNCATED)

Child↗

Effect of serum from thrombocytopenic patients on platelet count in blood of mice.

Estimation of the effect of sera obtained from patients suffering from several forms of megakaryocytic (immune) thrombocytopenia (19), and those with acute non-lymphoblastic leukemia (13), on the platelet count in the peripheral blood of mice was carried out. Several groups of mice were injected intravenously with 0.2 ml of patients' sera, and the platelet count was followed up for 10 days. A marked and highly significant decrease of platelet count in recipient mice was established even 6 hours after the application of both groups of patients' sera. In the control group of mice receiving pooled serum of healthy persons this decrease was not registered. It can be presumed with great probability that the mechanism of development of thrombocytopenia in both groups of patients is very similar: there is an extremely increased destruction of platelets in the peripheral blood in cases with immune thrombocytopenia by antibodies, and in cases with acute leukemias by antibodies and/or other cytotoxic substances. In further investigations the influence of thrombopoietin on this phenomenon will be tested.

Animals↗