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Biomedical subjects

K Welte

Publications and source records attributed to K Welte.

At least 163 records · Page 9Linked to original sources

Expansion of activated T-lymphocytes in patients treated with recombinant interleukin 2.

Recombinant interleukin 2 (rIL 2, Cetus) was administered in escalating doses to 30 patients with advanced malignancy, including 14 patients with the epidemic form of Kaposi's sarcoma, in 2 week treatment cycles as a 6 h i.v. infusion for 10 doses. The maximum tolerated dose was 2 X 10(6) U/m2, with dose-limiting toxicity consisting of fever, diarrhea, and thrombocytopenia. At a well-tolerated dose of 1 X 10(6) U/m2, serum levels of rIL 2 of 30 U/ml were maintained for the duration of the infusion. Such concentrations sustain IL 2-dependent T cell growth in vitro. We observed a significant lymphocytosis in patients receiving 1 X 10(6) U/m2 of rIL 2 following 2 weeks of treatment (p = 0.0035). The expanded T cell pool was polyclonal, as demonstrated by increases in both T4+ and T8+ T cell subsets, and activated, with statistically significant increases in IL 2 receptor (p = 0.043), in the absence of transferrin receptor induction. Proliferating cells were not detected in peripheral blood using flow cytometry. Except for alpha-interferon, no other lymphokines (beta- and gamma-interferon, tumor necrosis factor) were present in serum during treatment. Reversible rises in anti-rIL 2 IgG antibodies occurred, as measured using an enzyme-linked immunosorbent assay. No changes were observed in the T cell mitogenic response to OKT3 and phytohemagglutinin, and no enhancement of cytotoxicity against natural killer-sensitive and resistant targets developed as a consequence of treatment. Except for a partial response in a patient with a myelodysplastic syndrome, no antitumor activity was observed. The in vivo expansion of T cells with the capacity to respond to rIL 2 with enhanced in vitro cytotoxicity against tumor targets provides impetus to ongoing trials exploring different routes and schedules of administration of rIL 2.

Adult↗

Recombinant human granulocyte colony-stimulating factor: effects on normal and leukemic myeloid cells.

Experiments were conducted to isolate and characterize the gene and gene product of a human hematopoietic colony-stimulating factor with pluripotent biological activities. This factor has the ability to induce differentiation of a murine myelomonocytic leukemia cell line WEHI-3B(D+) and cells from patients with newly diagnosed acute nonlymphocytic leukemia (ANLL). A complementary DNA copy of the gene encoding a pluripotent human granulocyte colony-stimulating factor (hG-CSF) was cloned and expressed in Escherichia coli. The recombinant form of hG-CSF is capable of supporting neutrophil proliferation in a CFU-GM assay. In addition, recombinant hG-CSF can support early erythroid colonies and mixed colony formation. Competitive binding studies done with 125I-labeled hG-CSF and cell samples from two patients with newly diagnosed human leukemias as well as WEHI-3B(D+) cells showed that one of the human leukemias (ANLL, classified as M4) and the WEHI-3B(D+) cells have receptors for hG-CSF. Furthermore, the murine WEHI-3B(D+) cells and human leukemic cells classified as M2, M3, and M4 were induced by recombinant hG-CSF to undergo terminal differentiation to macrophages and granulocytes. The secreted form of the protein produced by the bladder carcinoma cell line 5637 was found to be O-glycosylated and to have a molecular weight of 19,600.

Animals↗

Fc receptors on monocytes cause OKT3-treated lymphocytes to internalize T3 and to secrete IL-2.

Monocytes cause OKT3-treated T cells to secrete IL-2 and to lose cell surface T3. We have studied the fate of the "lost" T3. Immunofluorescence microscopy on permeabilized cells showed that monocytes induce T cells to internalize T3. Furthermore, experiments with radioiodinated T cells showed that the internalized T3 was not degraded and exhibited an unaltered polypeptide composition for at least 16 hr. The role of Fc receptors in inducing internalization was also investigated. Fc receptors were depleted from monocytes by allowing the phagocytes to spread on immune complexes. Such depleted monocytes exhibit a fourfold reduction in their ability to promote both internalization of T3 and production of IL-2. A comparable reduction is seen if F(ab')2 fragments of OKT3 were employed in place of intact IgG. Furthermore, monocyte Fc receptors that have been blocked by heat-aggregated human IgG also show much reduced capability for induction of OKT3-mediated T-cell proliferation. We therefore conclude that Fc receptors bind to the Fc domain of OKT3 and thereby cause OKT3-treated T cells to internalize T3 and become activated.

Antibodies, Monoclonal↗

Human pluripotent hemopoietic colony stimulating factor: activities on human and murine cells.

Human pluripotent colony stimulating factor (Pluripoietin) was shown to act synergistically with human pluripotent alpha-like colony-stimulating activity (Pluripoietin-alpha) supporting the proliferation and differentiation of human CFU-GM progenitor cells in vitro, increasing colony size and numbers. In addition, Pluripoietin enhanced cytotoxic activity of mature human neutrophil granulocytes in an antibody-dependent cellular cytotoxicity assay. Biological activities of Pluripoietin known so far suggest great potentials for clinical use. Preclinical in vivo studies of Pluripoietin in different disease situations may be feasible in mice, because Pluripoietin is active on granulocyte precursors and on a variety of other murine cells.

Animals↗

Pluripoietin alpha: a second human hematopoietic colony-stimulating factor produced by the human bladder carcinoma cell line 5637.

We have identified a factor constitutively produced by the human bladder carcinoma cell line 5637, which has the following capacities: to induce the differentiation of the human promyelocytic leukemic cell line HL-60; to induce the expression of chemotactic peptide receptors in leukemic cells as well as in normal peripheral blood granulocytes; to function as a chemoattractant for neutrophils as well as, under certain conditions, inhibiting their migration; to support the growth of eosinophil and granulocyte/macrophage progenitors, which is maximal when scored at day 14; and to support the growth of human mixed pluripotent progenitors and erythroid bursts from normal human bone marrow. This factor has a molecular size of 32 kDa by gel filtration and 16.5 kDa by NaDodSO4/PAGE. We have termed this factor pluripoietin alpha.

Bone Marrow Cells↗

Effects of recombinant human tumor necrosis factor alpha, recombinant human gamma-interferon, and prostaglandin E on colony formation of human hematopoietic progenitor cells stimulated by natural human pluripotent colony-stimulating factor, pluripoietin alpha, and recombinant erythropoietin in serum-free cultures.

The influences of pure human pluripotent colony-stimulating factor, highly purified pluripoietin alpha, pure recombinant human tumor necrosis factor alpha, pure recombinant human gamma-interferon, and natural prostaglandin E1 (PGE1) were evaluated on colony formation of multipotential and erythroid progenitor cells in the presence of recombinant erythropoietin and hemin and on colony formation of granulocyte-macrophage progenitors in normal human marrow cultured in the presence or absence of serum. Serum was replaced by bovine serum albumin, iron-saturated transferrin, cholesterol, and calcium chloride. Increasing concentrations of pluripotent colony-stimulating factor and pluripoietin alpha stimulated increasing numbers of colonies from nonadherent low-density T-lymphocyte-depleted cells in the absence and presence of serum. Growth was usually greater in the presence of serum and on a unit basis pluripoietin alpha was more active than pluripotent colony-stimulating factor. Recombinant human tumor necrosis factor alpha and recombinant human gamma-interferon suppressed colony formation colony forming unit-granulocyte-macrophage, burst forming unit-erythroid, and colony forming unit-granulocyte-erythroid-macrophage-megakaryocyte; PGE1 suppressed colony formation by colony-forming unit-granulocyte-macrophage, stimulated colony formation by burst forming unit-erythroid, and had no effects on colony formation by colony forming unit-granulocyte-erythroid-macrophage-megakaryocyte in both serum-containing and serum-free medium. The PGE1 enhancing effects on erythroid colony formation required T-lymphocytes. Thus, results are similar using serum-containing and serum-free cultures of human bone marrow cells and serum-free defined culture medium can be used to study the mechanism of action of purified natural and recombinant growth and suppressor molecules in vitro.

Bone Marrow Cells↗

Biological activities of a human pluripotent hemopoietic colony stimulating factor on normal and leukemic cells.

We studied the biological effects of pluripoietin, a human pluripotent hemopoietic colony-stimulating factor (CSF) purified from the 5637 bladder carcinoma cell line. We found that this human CSF appears to be a unique hemopoietic growth factor, differing from interleukin 3 (IL-3) by virtue of its leukemia differentiating activity in mouse and man, and from mouse granulocyte CSF, which does have differentiation-inducing activity, but lacks pluripoietic activity. In addition, differences from IL-3 were observed in cross-species activity on normal and leukemic cells.

Animals↗

Biochemical characterization and purification of human B cell stimulatory factor (BSF).

B cell stimulatory factor (BSF) activity was generated over a period of five days by phytohemagglutinin-stimulated E rosette-positive peripheral blood lymphocytes. This activity was subjected to a multistep purification procedure including ammonium sulfate precipitation, anion-exchange chromatography, gel filtration, procion red-agarose chromatography and reverse phase high performance liquid chromatography (RP-HPLC). The last purification step dissected BSF activity into two active fractions, one corresponded to the interleukin 2 (IL 2) activity whereas the other active fraction was free of IL 2 activity. Preparative isoelectric focusing analysis defined isoelectric points of pH 7.2 for both BSF and IL 2. Molecular weight analysis of BSF was carried out by preparative sodium dodecyl sulfate-polyacrylamide gel electrophoresis analysis. BSF activity was eluted from gel strips corresponding to a molecular mass of 16 and 17 kDa. The 16-kDa fraction was free of IL 2 activity whereas the 17-kDa fraction overlapped with IL 2. Since recombinant IL 2 was capable of exhibiting significant BSF activity in anti-IgM or Staphylococcus aureus Cowan strain I-dependent assay systems, it cannot be excluded that IL 2 itself is a BSF. Nevertheless these studies demonstrate the existence of a BSF free of IL 2 activity.

Antibodies, Anti-Idiotypic↗

Purification and biochemical characterization of human pluripotent hematopoietic colony-stimulating factor.

Pluripotent hematopoietic colony-stimulating factor (pluripotent CSF), a protein that is constitutively produced by the human bladder carcinoma cell line 5637, has been purified from low serum (0.2% fetal calf serum)-containing conditioned medium. The purification involved sequential ammonium sulfate precipitation, ion-exchange chromatography, gel filtration, and reversed-phase high-performance liquid chromatography. The purified protein has a molecular weight of 18,000 in NaDodSO4/polyacrylamide gel electrophoresis, both by the silver staining technique and by elution of biological activity from a corresponding gel slice, and has an isoelectric point of 5.5. Pluripotent CSF supports the growth of human mixed colonies, granulocyte-macrophage colonies, and early erythroid colonies and induces differentiation of the human promyelocytic leukemic cell line HL-60 and the murine myelomonocytic leukemic cell line WEHI-3B (D+). The specific activity of the purified pluripotent CSF in the granulocyte-macrophage colony assay is 1.5 X 10(8) units/mg of protein.

Biological Assay↗

Production of and in vitro response to interleukin 2 in the acquired immunodeficiency syndrome.

To test the hypothesis that deficient interleukin 2 (IL-2) secretion may underlie the impaired capacity of T cells from patients with Acquired Immunodeficiency Syndrome (AIDS) and the AIDS-related complex (ARC) to generate the macrophage-activating lymphokine, gamma interferon (IFN-gamma), we used five specific microbial antigens to examine IL-2 production. Mononuclear cells from only one of 32 (3%) AIDS patients secreted normal levels of IL-2, and 21 (66%) failed to produce any detectable IL-2. For 36 ARC patients, IL-2 generation was normal in nine (25%) and absent in 11 (31%). Given these results, recombinant (r) IL-2 was tested for its capacity to stimulate or enhance IFN-gamma production. rIL-2 (10 U/ml) alone stimulated cells from controls, ARC, and AIDS patients to secrete 93 +/- 25, 99 +/- 33, and 7 +/- 3 U/ml of IFN-gamma, respectively. rIL 2 (10 U/ml) plus antigen induced no change in mean IFN-gamma levels for controls, a 4.4-fold increase for 17 AIDS patients (16 +/- 16 vs. 71 +/- 21 U/ml), and a 7.2-fold increase (18 +/- 5 vs. 130 +/- 27 U/ml) for 19 ARC patients with abnormal IFN-gamma generation to antigen alone. Individual responses indicated that six of the 17 (35%) AIDS patients with opportunistic infections and 12 of the 19 (63%) with ARC were apparent responders to 10-100 U/ml of rIL-2. These results (a) document profound impairment in antigen-induced IL-2 secretion by AIDS and ARC T cells, (b) indicate that, in vitro, mononuclear cells from certain patients can respond to rIL-2 with enhanced IFN-gamma production, and thus (c) suggest that in selected patients rIL-2 might have a potentially beneficial therapeutic (AIDS) or prophylactic (ARC) effect against opportunistic infections.

Acquired Immunodeficiency Syndrome↗

A 64,000 dalton matrix protein of human cytomegalovirus induces in vitro immune responses similar to those of whole viral antigen.

Human cytomegalovirus contains approximately 30 to 35 structural polypeptides. Although antibodies to several of these proteins are made during natural infection, their relationship to T cell recognition of this virus and subsequent control of infection is poorly understood. We have purified one of these proteins (HCMVgp64) that is found in abundance in infected cell lysates in order to delineate the relationship of single viral proteins to the immune response caused by the virus. HCMVgp64 induced T cell reactivity only in individuals with serologic evidence of past infection. In addition, HCMVgp64 elicited similar in vitro immune reactions as the whole virus including T cell proliferation, interleukin 2 production, and receptor expression as well as interferon production. These studies suggest that single proteins of HCMV such as HCMVgp64 are capable of inducing T cell responses and may be important in the development of immune reactivity to HCMV.

Antigens, Viral↗

Distinct differentiation-inducing activities of gamma-interferon and cytokine factors acting on the human promyelocytic leukemia cell line HL-60.

The human promyelocytic leukemia cell line HL-60 and monoblastic leukemia cell line U937 undergo differentiation when induced by lymphokine and cytokine preparations. Growth inhibition, acquisition of immunoglobulin Fc receptors, increased expression of monocyte-related surface antigens, and an increase in lysosomal enzyme contents accompany maturation induced by gamma-interferon and other cytokine factors tested. Additionally, increased receptors for chemotactic peptide (fMLPR), increased hydrogen peroxide release in response to phorbol myristic acetate stimulation, and the release of prostaglandins (PGE2 and 6-keto-PGF1a) follow exposure to lymphokine and cell line sources of myeloid colony-stimulating activity (CSA). Gamma-Interferon (gamma-IFN) induced fMLPR in HL-60 (only at 1000 units/ml) but not in U937. Additionally, gamma-IFN did not induce prostaglandin release in either cell line. These myeloid colony-stimulating activity-associated differentiation-inducing factors were obtained from the human hepatoma++ cell line SK-Hep and bladder carcinoma cell line 5637, which were free of interferon activity. The 2-day phytohemagglutinin-induced lymphokine contained no detectable CSA and was a good source of differentiation activity. A simple, rapid assay for a new human CSA with pluripotent hematopoietic stimulating activity (pluripoietin) is described based on stimulation of [3H]glucosamine incorporation. Cell line conditioned media containing pluripoietin, purified pluripoietin, and gamma-IFN are active in this assay. These myeloid leukemia cell line differentiation factors are thus different from interferon and conventional CSA. These results suggest that endogenous human cytokines may have a role in the differentiation of leukemic as well as normal myeloid cells.

Antibodies, Monoclonal↗