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D Hoelzer

Publications and source records attributed to D Hoelzer.

At least 253 records · Page 14Linked 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↗

High release of tumor necrosis factor alpha, interferon gamma and interleukin-6 by adherent lymphokine-activated killer cells phenotypically derived from T cells.

Adherent lymphokine-activated killer cells (A-LAK) are highly potent cytotoxic cells, which are shown to be derived not only from natural killer (NK)/K cells but phenotypically also from T cells. The generation and phenotypical and functional characterisation of these T-cell-derived A-LAK are described. In contrast to non-adherent cells (NA-LAK) and unseparated LAK (UN-LAK), these mostly CD3+ CD56+ CD8+ cells display a high degree of expansion following initial interleukin-2 (rIL-2) activation and further culturing in autologous conditioned medium. A comparison of cytotoxic activities of cultured cells reveals a significantly higher oncolytic ability of A-LAK cells against both K562 and Daudi cells than that of cultured controls of NA-LAK and UN-LAK. In addition, A-LAK are characterised by a marked endogenous cytokine release of interferon gamma, tumour necrosis factor alpha and IL-6 as well as by their shedding of p55 IL-2 receptor after exposure to IL-2. The results demonstrate A-LAK to be the lymphocyte subpopulation with the most cytotoxic activity and endogenous cytokine release after exposure to IL-2. The improvement of techniques for long-term cultures may be of interest for future therapeutic approaches.

Cell Adhesion↗

Effect of recombinant human transforming growth factor beta and tumor necrosis factor alpha on bone marrow progenitor cells of HIV-infected persons.

With progressive disease, the majority of patients with human immunodeficiency virus (HIV) infection develop bone marrow failure with anemia, leukopenia, and thrombocytopenia, the cause of which has not yet been clarified. Besides direct infection of bone marrow progenitor cells and immune-mediated cytolysis, the action of inhibitory cytokines, like transforming growth factor beta (TGF-beta) and tumor necrosis factor alpha (TNF-alpha), has to be discussed with regard to their pathophysiological role in HIV-induced bone marrow failure. Therefore, the influence of recombinant human TGF-beta and TNF-alpha on colony growth of pluripotent (CFU-GEMM), erythroid (BFU-E), and granulocyte-macrophage (CFU-GM) progenitor cells from the bone marrow of HIV-1-infected persons and normal controls was assessed in methylcellulose cultures. Both cytokines inhibited the colony formation of hematopoietic progenitor cells from HIV-positive persons. When added to unseparated bone marrow cells from HIV-infected persons and normal controls, the 50% inhibition (ID50) of BFU-E by TGF-beta occurred at 1.3 ng/ml and 3.7 ng/ml, respectively, while the ID50 of CFU-GM occurred at 15.5 ng/ml and 142.7 ng/ml. Concentrations of TNF-alpha, causing 50% inhibition of colony formation by bone marrow cells from HIV-infected or noninfected individuals were 6.3 U/ml and 17.0 U/ml for BFU-E, and 24.4 U/ml and greater than 3,000 U/ml for CFU-GM, respectively. The ID50 of the CFU-GEMM growth was below the lowest concentration of both cytokines tested. The suppressive effects were specifically abolished by antibodies against TGF-beta and TNF-alpha, thus confirming that the inhibitory activities were due to the cytokine preparation used.

Adult↗

TIBO R82913, a new HIV-1 inhibiting agent, does not inhibit hematopoietic progenitor cells.

In progressive stages of infection with human immunodeficiency virus type 1 (HIV-1), the majority of patients develop a pathophysiologically not yet completely explainable bone marrow failure with anemia, leukopenia, and thrombocytopenia. The clinically most widely used HIV-inhibiting antiviral drugs azidothymidine (AZT) and dideoxyinosine (ddI) frequently are hematotoxic to the host, resulting in dose reduction or discontinuation of antiviral therapy. In recent studies, a novel series of benzodiazepine derivatives highly active against HIV-1 was synthesized. These antiviral compounds have a much more favorable therapeutical index than the well-known 2'3'-dideoxyribosides, like AZT. In the experiments presented here, the authors investigated the most promising derivative R82913 [(+)-S-4,5,6,7-tetrahydro-9-chloro-5-methyl- 6-(3-methyl-2-butenyl)-imidazo[4,5,1-jk] [1,4]-benzodiazepin-2(1H)-thione] (TIBO) with regard to its toxicity on bone marrow-derived hematopoietic progenitor cells from six HIV-1+ and HIV- persons, respectively. In methylcellulose assays for hematopoietic colony growth any hematotoxic effects of R82913 in vitro were excluded, as both groups showed no difference of progenitor cell growth with or without the TIBO derivative, even at concentrations 6.7 x 10(4) times higher than the 50% inhibitory concentration for cytopathicity by HIV-1.

Acquired Immunodeficiency Syndrome↗

Bone marrow findings after treatment with recombinant human interleukin-3.

In a phase I/II study, bone marrow biopsy specimens and aspirates of 20 patients with malignant tumors but normal bone marrow (n = 6), bone marrow failure resulting from chemotherapy (n = 4), myelodysplastic syndrome (n = 5), and aplastic anemia (n = 5) were evaluated before and after patients were treated with recombinant human interleukin-3 (rhIL-3). This cytokine proved to be an effective hematopoietic growth factor with only mild side effects. The rhIL-3 treatment led to increased overall bone marrow cellularity with trilinear stimulation of hematopoietic cells, except in most patients with aplastic anemia. In all patients, significant eosinophilia and, in some instances, bone marrow fibrosis developed. In addition to the increase in the number of circulating neutrophilic granulocytes, platelets, and reticulocytes, an increase of peripheral blood monocytes and lymphocytes was observed. The histologic and cytologic findings support the concept that rhIL-3 stimulates the proliferation and differentiation of pluripotent hematopoietic progenitor cells. It appears to be a safe and efficient therapeutic modality in patients with bone marrow failure. Additional clinical studies are needed to determine which patients will profit most from rhIL-3 treatment.

Adult↗

The role of GM-CSF, G-CSF, interleukin-3, and erythropoietin in myelodysplastic syndromes.

Hematopoietic growth factors are being used in patients with myelodysplastic syndromes with increasing frequency to reverse pancytopenia. Treatment with granulocyte-macrophage colony stimulating factor (GM-CSF) and granulocyte colony stimulating factor (G-CSF) has resulted in an increase in segmented neutrophil counts and a reduction in the infection rate, whereas a stimulatory effect on platelet count and hematocrit was uncommon. Progression to acute leukemia has been observed, but could have been due to the natural course of the disease. Combination therapy with GM-CSF and low-dose cytosine-arabinoside is being studied in clinical trials. Early results with interleukin-3 have demonstrated a stimulatory effect on neutrophil counts as well as on platelet counts. High doses of erythropoietin have only been successful in 10% of treated patients to improve erythropoiesis.

Clone Cells↗

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↗

How can disease-free survival of adult ALL patients with or without transplants be compared?

525 patients with acute lymphoblastic leukemia (ALL) between the ages of 15 and 44 were treated according to the German study protocol. 41 patients received HLA-identical sibling bone marrow transplants in first remission. Disease-free survival was compared in patients with transplants and patients who were intended for further chemotherapy. After adjusting for potential biases, prognostic profiles of the two groups could be determined, the impact of time-to-transplant bias estimated and similar patients compared after appropriate adjustments. The initial patient characteristics of both groups were quite comparable as was the treatment outcome. The three year probability of disease-free survival was 34% (95% confidence interval: 16% to 52%) in both groups after statistical adjustment.

Adolescent↗

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↗

Regulation of early hematopoiesis in serum-deprived cultures of mafosfamide-treated and untreated CD34-enriched bone marrow cells.

Our experiments have addressed the regulation of early hematopoietic progenitor cell expansion by interleukin 3 (IL-3) and interleukin 1 beta (IL-1 beta) and its modulation by bone marrow fibroblasts in vitro. In a two-stage assay utilizing serum-deprived (SD) presuspension cultures of CD34-enriched bone marrow (BM) cells followed by clonal cultures, absolute numbers of granulocyte-macrophage progenitor cells (day-14 granulocyte-macrophage colony-forming units [CFU-GM]) increased progressively to 164% and 204% of input levels after 12 days of culture in the presence of IL-3 alone or in combination with IL-1 beta, respectively. Multilineage (granulocyte erythrocyte macrophage megakaryocyte colony-forming units, CFU-GEMM) and erythroid (erythroid burst-forming units, BFU-E) progenitor cell numbers increased above or were maintained at input levels after 4 and 7 days of liquid culture in the presence of IL-3 and IL-3 plus IL-1 beta, respectively, but in contrast to granulocyte-macrophage colony-forming units (CFU-GM) they were essentially undetectable after 12 days of culture. Progenitors more primitive than colony-forming cells (pre-CFU) were assessed in SD-presuspension cultures of CD34-enriched BM cells purged with mafosfamide to eliminate base-line CFU-GM, CFU-GEMM, and BFU-E. Under these conditions and in the absence of stromal elements, CFU-GM but neither CFU-GEMM nor BFU-E developed in response to cytokines alone. In the additional presence of passaged bone marrow fibroblasts, however, IL-3 plus IL-1 beta and to a lesser degree IL-3 alone induced a pronounced amplification of BFU-E and CFU-GEMM, indicating that their development from a more primitive progenitor compartment requires growth activities in addition to IL-3 and IL-1 beta that are provided by marrow-derived stromal cells such as fibroblasts.

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↗

Curing leukemia.

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Acute Disease↗

Effects of recombinant human interleukin-3 on human hematopoietic progenitor and precursor cells in vivo.

DNA-synthesis rates and concentrations of bone marrow (BM) and peripheral blood (PB) progenitor cells were studied in 22 patients treated with recombinant human interleukin-3 (rhIL3) as part of a clinical phase I/II study. Recombinant hIL3 at doses of 60 to 500 micrograms/m2 was administered by subcutaneous bolus injection for 15 days to 13 patients with solid tumors and preserved hematopoietic function and to nine patients with bone marrow failure, including five with myelodysplastic syndromes. Following treatment with rhIL3, the percentage of actively cycling BM erythroid (BFU-E) and multilineage (CFU-GEMM) progenitors in patients with preserved hematopoietic function increased from 16% to 36% (P less than .05) and from 10% to 40% (P less than .01), respectively. The DNA-synthesis rates of early and late granulocyte macrophage progenitor cells increased from 11% to 26% (CFU-GM day 14; P less than .02) and from 13% to 30% (CFU-GM day 7; P less than .05). There was an increase in BM cellularity from 37% to 58%, and of the myeloid to erythroid ratio from 1.4 to 3.2, while the concentration of marrow progenitors on a per cell basis was unchanged or slightly decreased. The frequencies of blast cells in the BM were unchanged. Mean levels of PB CFU-GM day 14 and CFU-GEMM were 100% and 72% above baseline values after 7 days of rhIL3 but only 25% and 28% above initial levels at the end of treatment. Peripheral blood BFU-E were reduced in the majority of patients with normal marrow after both 7 and 15 days of rhIL3. No augmentation of circulating BFU-E and CFU-GEMM was seen in 5 patients with MDS who had few or no PB BFU-E or CFU-GEMM initially. Total leukocyte, neutrophil, and eosinophil counts increased significantly (P less than .01) in 21 of 22 patients with a peak response after a median of 13 days of rhIL3. While a small increase in reticulocytes was not accompanied by an elevation of the hemoglobin or hematocrit, platelet counts increased by 50% in patients with preserved marrow function. Thus, rhIL3 induces a multilineage response in vivo, apparently by stimulating proliferation of multipotential and lineage-restricted progenitors. It remains to be determined whether this is due to direct or indirect effects on the progenitor cells.

Adult↗

Effects of recombinant human interleukin-3 in patients with normal hematopoiesis and in patients with bone marrow failure.

In a phase I/II study, 19 patients with advanced tumors but normal hematopoiesis and nine patients with bone marrow failure and prolonged severe cytopenias were treated with recombinant human interleukin-3 (rhIL-3) to assess the toxicity and biological effects of this multipotential hematopoietic growth factor. Doses ranging from 30 micrograms/m2 to 500 micrograms/m2 were administered as subcutaneous bolus injection daily for 15 days. A dose-dependent increase in platelet counts ranging from 1.3-fold at 60 micrograms/m2 to 1.9-fold at 250 micrograms/m2 was induced by rhIL-3 in 15 of 18 evaluable patients with normal hematopoiesis. An increase in reticulocyte counts was observed in 14 patients. The blood leukocyte counts dose dependently increased 1.4- to 3.0-fold. In patients with bone marrow failure, platelet counts increased by a mean of sixfold (range, 1.3-fold to 14.3-fold) in five of eight evaluable patients. Reticulocyte counts increased 4.4-fold in six 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 of three transfusion-dependent patients. Only mild side effects, mainly fever, headache, and flushing, were observed. These results indicate that rhIL-3 functions as a multilineage hematopoietin in vivo in patients with normal bone marrow function and in patients with secondary bone marrow failure.

Adult↗