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Biomedical subjects

F Herrmann

Publications and source records attributed to F Herrmann.

At least 73 records · Page 4Linked to original sources

Recombinant human interleukin-3 in patients with hematopoietic failure.

Nine patients with bone marrow failure and prolonged severe cytopenias were treated with recombinant human interleukin-3 (rhIL-3) at doses ranging from 30 micrograms/m2 to 500 micrograms/m2. rhIL-3 was administered in a subcutaneous bolus injection daily for 15 days. Platelet counts increased by a mean of 6-fold (range: 1.3- to 14.3-fold) in five out of eight evaluable patients. Reticulocyte counts increased 2.9-fold in three patients, and neutrophil counts increased by a mean of 3.1-fold in all eight patients. Platelet transfusions could be discontinued after treatment with rhIL-3 in two out of three evaluable transfusion-dependent patients. Only mild side effects, mainly fever and headache, were observed. These results indicate that rhIL-3 functions as a multilineage hematopoietic growth factor in vivo in patients with secondary bone marrow failure.

Adult

Medullary histiocytosis following treatment of severe aplastic anemia with recombinant human interleukin-3 in combination with antilymphocyte globulin, cyclosporin A, and methylprednisolone.

This case report describes the clinical use of recombinant human interleukin-3 as adjunct to immunosuppressive therapy with antilymphocyte globulin, cyclosporin A, and methylprednisolone for refractory severe aplastic anemia. Hematopoietic response to treatment was moderate and peripheral blood counts (neutrophils, eosinophils, monocytes, reticulocytes) increased only slightly. Unexpectedly, during the time of interleukin-3 administration a substantial bone marrow infiltration by macrophages became detectable, consistent with the diagnosis of medullary histiocytosis, that may have prevented recovery of normal hematopoiesis in this patient. This observation may indicate the need for careful use of interleukin-3 in patients with drug-induced immunodeficiency.

Adult

Interleukin-6 in clinical medicine.

This article covers the basic biological functions of interleukin-6 (IL-6) in man. Three major topics are addressed more closely: the involvement of IL-6 in various disease states, particularly those of hematopoietic origin; the diagnostic usefulness of IL-6 measurements in biological fluids; the possible use of IL-6, IL-6 antagonists or IL-6 derivatives as therapeutic means.

Antineoplastic Agents

Phase I trial of recombinant human tumour necrosis factor alpha in patients with advanced malignancy.

A phase I clinical trial was conducted with recombinant human tumour necrosis factor alpha (rhTNF-alpha) in 62 patients with advanced malignancy refractory to previous standard therapy. rhTNF-alpha was given as a 30 min infusion twice a day at 6 h intervals. A total of 10 different dose levels was escalated in cohorts of 6 patients ranging from 2.5 to 200 micrograms/m2 twice a day for 5 days every second week for a total of 8 weeks followed by a 4-week observation period. Major side-effects of TNF-alpha therapy, seen in almost all patients studied, were fever and chills. As dose-limiting side-effects hypotension and liver toxicity were recorded in 4 of 5 patients treated with 200 micrograms/m2 twice a day. Pharmacokinetic studies revealed a TNF-alpha serum half-life of 13 to 25 min, a dose-dependent decrease in TNF clearance, and a dose-dependent increase in the area under the time/concentration curve. No anti-TNF-alpha antibodies could be detected, except in 1 patient. Tumour response to TNF treatment was poor. Only in 3 of 57 evaluable patients was partial tumour regression observed.

Adolescent

Hemopoietins in clinical oncology.

Despite major advances in supportive care, neutropenic infections and thrombopenic bleedings remain major lethal treatment- and disease-related complications in patients with malignancy. Moreover, complications of platelet (Plt) and erythrocyte transfusion therapy have become a cause of great concern and shortages of homologous blood products are a constant problem. Suggestions that the application of recombinant human hemopoietins may provide an alternative treatment modality in this patient population is currently being evaluated in clinical trials. Erythropoietin (EPO) has been shown to be effective in the treatment of anemia in patients with bone marrow, infiltrating low-grade non-Hodgkin's lymphoma, multiple myeloma, and in some patients with myelodysplastic syndrome. Preliminary data suggest that subcutaneous administration of EPO results in a higher slope of increasing erythropoietic parameters compared to intravenous administration. Protective effects on normal erythropoiesis have been attributed to EPO in patients receiving chemotherapy. The finding of EPO receptors on megakaryocytes supports the clinical observation of increased Plt production associated with decreased bleeding and transfusion frequencies in a substantial number of patients receiving EPO. Clinical trials with granulocyte-macrophage (GM-CSF) and granulocyte colony stimulating factor (G-CSF) have reached phase III trials. Both factors show high efficacy to shorten or improve neutropenia related to chemotherapy, bone marrow transplant, or underlying disease. Mechanisms responsible for mucosa protection and improved healing of mucositis observed with both factors remain undetermined yet phase I/II evaluation of IL-3 shows multilineage hemopoietic responses including myeloid, erythroid, and megakaryocyte lineages. Possible anti-cancer effects of hemopoietins achieved by direct action or by increased chemotherapy intensity are currently under investigation.

Animals

Clinical effects of recombinant human interleukin-3.

Interleukin-3 (IL-3) is a glycoprotein belonging to the hematopoietic growth factor family that in preclinical in vitro and in vivo studies has exhibited a multilineage activity. Phase I/II trials with recombinant human IL-3 (rhIL-3) expressed in yeast are being done in patients with advanced malignancies as well as in patients with bone marrow failure states. Subcutaneous administration of rhIL-3 at dosages between 30 and 500 micrograms/m2 for 15 consecutive days has resulted in a dose-dependent increase in platelet counts as well as in a substantial increase in the number of circulating neutrophils, eosinophils, monocytes, and lymphocytes in patients with advanced malignancies but normal hematopoiesis. Erythropoiesis is less stimulated with an increase in hemoglobin concentration only in a minority of patients. In patients with secondary hematopoietic failure due to prolonged chemo-/radiotherapy or bone marrow infiltration by tumor cells, treatment with rhIL-3 leads to a clinically significant restoration of hematopoiesis, especially of thrombopoiesis and granulopoiesis. rhIL-3 has also been shown to improve neutrophil and platelet counts in patients with myelodysplastic syndromes, while improvement of hematopoiesis is rarely observed in patients with severe aplastic anemia with the presently used treatment schedules. Adverse effects of rhIL-3 are minor at the clinically used dosages and include fever, bone pain, headache, and stiffness of the neck. Transient thrombocytopenia has been observed in a few patients with myelodysplastic syndrome or aplastic anemia treated at dosages of 250-500 micrograms/m2. rhIL-3 is a multilineage hematopoietic cytokine with promising effects on platelet and neutrophil counts and special usefulness in patients with secondary hematopoietic failure.

Anemia, Aplastic

Adding more fluid to wheat bran has no significant effects on intestinal functions of healthy subjects.

To regulate intestinal transit, increased fluid intake, along with fiber is recommended. Considering the usually large volumes of intestinal secretion, this advice is questionable. To demonstrate the effects of adding fluid to fiber, 11 volunteers ingested 15 g of wheat bran twice a day, randomly given without or with 600 mL of additional fluid. Stool weight and frequency were similarly increased in the two settings. Gastric emptying was delayed by bran only when bran was given without additional fluid. Orocecal transit showed no significant changes. Whole gut transit was slightly more accelerated with added fluid (20.6 vs. 13.5%). No test showed significant differences in direct comparison of bran and bran with additional fluid. We conclude that in healthy persons, such effects of wheat bran as acceleration of transit and increase in stool weight and frequency do not depend on an additional intake of fluid.

Adult

Regulation of M-CSF expression by M-CSF: role of protein kinase C and transcription factor NF kappa B.

Macrophage-colony-stimulating factor (M-CSF), also referred to as CSF-1, regulates the survival, growth, differentiation and functional activity of monocytes by binding to a single class of high-affinity cell surface receptors, known to be the product of the c-fms protooncogene. The detection of both M-CSF and c-fms expression by cells of the monocyte lineage has suggested that M-CSF may act by an autocrine mechanism. Interestingly, it has been shown that M-CSF can induce the expression of its own gene. Although sensitivity to M-CSF can be modulated by regulation of receptor expression and function, M-CSF responsiveness is largely determined at a postreceptor level. To date, little is known about the intracellular pathway of M-CSF signal transduction. We have therefore investigated the changes in protein kinase C (PKC) activity upon exposure of monocytes to M-CSF. We show that M-CSF activates and translocates PKC. Inhibition of PKC by the isoquinoline derivative H7 abolishes induction of M-CSF by M-CSF. Furthermore, activation of PKC was pertussis-toxin-sensitive and was associated with the detection of an NF kappa B protein in nuclear extracts of M-CSF-induced blood monocytes but not in monocytes exposed to medium treatment only. The results suggest that M-CSF induction of M-CSF involves G proteins, PKC and NF kappa B.

Base Sequence

Hematopoietic growth factors: interactions and regulation of production.

Hematopoietic growth factors are the major regulatory molecules supporting constitutive and inducible hematopoiesis. Molecular biology techniques have led to the identification and cloning of a series of hematopoietic growth factor genes, and the synthesis of large amounts of these molecules has facilitated investigations or their physiological functions and the network of their interactions. The present article focuses on the role of hematopoietic growth factors, growth-factor-synergizing factors, and growth-factor-releasing factors in the regulation of proliferation, differentiation, and functional activation of hematopoietic stem cells and lineage-committed progenitor cells. Cellular sources of growth factors, signal transduction pathways involved in their gene activation and transcriptional and posttranscriptional mechanisms that govern regulation of expression of these genes are also detailed.

Animals

Clonal analysis of CD4+/CD8+ T cells in a patient with aplastic anemia.

T cell clones were established from peripheral blood of a patient with severe aplastic anemia. 8 of 18 individual clonal T cell populations stably coexpressed CD4 and CD8 molecules, a phenotype characteristic for thymocytes and a minor subpopulation of circulating T lymphocytes. Analysis of T cell receptor genes revealed identical rearrangements of T cell receptor beta chain genes, suggesting clonality of these T cells. CD4+/CD8+ T cells clones were found to be efficiently cytotoxic towards autologous lymphoblasts. Autocytotoxicity could be blocked by a CD3 MAb, a MAb specific for monomorphic MHC class II determinants, and particularly, by an MHC-DP-specific MAb, suggesting specificity for autologous DP molecules. Perhaps more important, CD4+/CD8+ T cell clones inhibited differentiation of autologous progenitor enriched bone marrow cells in vitro by a direct cell-mediated mechanism. These data suggest that circulating cytotoxic CD4+/CD8+ T cell clones specific for autologous MHC-DP determinants may be involved in hematopoietic failure in some cases of aplastic anemia.

Adult

Biologic effects of recombinant human interleukin-3 in vivo.

The biologic in vivo effects of recombinant human interleukin-3 (rhIL-3) were assessed in a phase I clinical study of 30 patients with advanced malignancy. On day 1 rhIL-3 was administered by a single intravenous (IV) bolus injection, followed by subcutaneous (SC) injections once daily from day 2 to 15; at least three patients were treated at each dose level (60, 125, 250, and 500 micrograms/m2). A transient decrease of eosinophil and monocyte counts was observed immediately after IV injection of rhIL-3, whereas the neutrophil count remained unaffected. Total WBC counts and neutrophil counts increased dose dependently up to threefold, whereas a 10-fold to 50-fold rise was observed in levels of circulating eosinophils and basophils. Platelet counts increased up to twofold. Patients developed moderate increases of serum levels of soluble interleukin-2 receptors, beta 2-microglobin, and immunoglobulin M (IgM), and of the acute phase reactants, C-reactive protein (CRP), fibrinogen, and haptoglobin. An increase in interleukin-6 (IL-6) serum levels was detected in patients treated by IV bolus rhIL-3. The serum half-life of IV injected rhIL-3 was 20 +/- 3 minutes; after SC administration, 210 +/- 15 minutes. Administration of rhIL-3 was generally well tolerated, with mild fever, headache, and local reactions at the injection site being the most frequent side effects. The primary course of the underlying malignant diseases was not significantly altered by administration of rhIL-3. The results indicate that rhIL-3 acts in vivo as a multilineage hematopoietic growth factor and a weak inflammatory mediator that may be used successfully to improve states of hematopoietic failure.

Adult

In vivo effects of granulocyte-macrophage colony-stimulating factor and interleukin-3 on clonal and non-clonal cell populations in patients with clonal hematopoietic disorders.

Restriction fragment length polymorphisms (RFLP) of the X-chromosome genes phosphoglycerate kinase and hypoxanthine phosphoribosyl transferase were used in conjunction with cytogenetic analysis to study the clonality of hematopoiesis in four female patients with myelodysplastic syndromes, treated with either granulocyte-macrophage colony-stimulating factor (GM-CSF) or interleukin-3 (IL-3), and in one patient with essential thrombocythemia (ET) treated with IL-3. Both conventional karyotyping and X-inactivation analysis demonstrated the persistence of a monoclonal pattern of hematopoiesis in the two patients with refractory anemia (RA) treated either with GM-CSF or with IL-3. The partial restoration of non-clonal hematopoiesis was observed in one patient with RA and an excess of blasts following treatment with a combination of GM-CSF and low dose cytosine arabinoside. In a fourth patient with RA and in the patient with ET, treatment with IL-3 resulted in the complete restoration of a non-clonal pattern of peripheral blood cells. In contrast, the bone marrow cells remained monoclonal by Southern blot analysis in the patient with RA in whom it could be tested. Non-clonal lymphocytes appear to have been released into the peripheral blood in the two latter cases and are responsible for the non-clonal RFLP pattern. These results suggest that cytokine therapy may have diverse effects on hematopoiesis, including the release of residual normal cells into the peripheral blood.

Adult

[Is there a drug treatment approach for prevention and therapy of fat embolism syndrome?].

The pathogenesis of fat embolism has been subject to considerable debate ever since it was first described by Zenker in 1864. The clinical course, management and pathophysiology of a typical case are described. As no single causative factor has been implied in the development of fat embolism, its therapy and prevention primarily involves the adequate treatment of shock and of the underlying traumatic lesions.

Adult

Clinical use of recombinant human hematopoietic growth factors (GM-CSF, IL-3, EPO) in patients with myelodysplastic syndrome.

We have conducted several phase I/II clinical studies in a total of 65 MDS patients utilizing recombinant human hematopoietic growth factors including GM-CSF, IL-3, and EPO. Twenty-seven patients with MDS were treated with either continuous i.v. infusion or single daily s.c. injection of rhGM-CSF at dosages from 15 micrograms/m2 to 1000 micrograms/m2. All of them exhibited white cell responses during the treatment cycles, but no sustained rise in reticulocytes or platelets was recorded. In four of the patients, all with > or = 15% blast cells in the bone marrow, the percentage of circulating blast cells increased during treatment with rhGM-CSF (at dosages of 500 micrograms/m2 and 1000 micrograms/m2, respectively), although no leukemic conversion occurred. Of 9 patients treated so far with rhIL-3 at single daily s.c. dosages of 60 micrograms/m2, all exhibited white cell responses; 8 exhibited significant improved platelet and reticulocyte counts. Nineteen further patients received rhEPO for a period of 14 weeks by s.c. (10,000 U five times weekly) or i.v. bolus administration (150-450 U/kg). None of these patients experienced an increase in white cell and platelet counts. A significant increase of the reticulocyte count was recorded in 3 patients only. Another strategy involves the recruitment of leukemic cells into the cell cycle by hematopoietic growth factors followed by treatment with cycle-specific cytostatic agents. Therefore in 10 patients administration of rhGM-CSF (250 g/m2/day x 14, s.c.) was combined with Ara-C treatment (20 mg/m2/day x 14; s.c.). Initial results of this pilot study available in 5 patients indicated that this approach may control leukemic cell proliferation and may increase number of mature myeloid cells in both bone marrow and peripheral blood. A similar approach utilizing rhIL-3 in conjunction with Ara-C is on-going.

Blood Cell Count