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Biomedical subjects

J Vilcek

Publications and source records attributed to J Vilcek.

At least 109 records · Page 6Linked to original sources

Interferon-gamma enhances target cell sensitivity to monocyte killing.

The mechanism of human peripheral blood monocyte-mediated cytotoxicity was investigated using the HT-29 human colon adenocarcinoma line, A673 human rhabdomyosarcoma line, and A375 human melanoma line as target cells. Pretreatment of these target cells with 100 U/ml of recombinant human interferon (IFN)-gamma for 48 hr increased their susceptibility to monocyte killing. Increased susceptibility to the lytic action was particularly pronounced at low effector/target cell ratios. Unlike IFN-gamma human IFN-alpha did not potentiate monocyte cytotoxicity, and pretreatment of HT-29 with IFN-alpha also had virtually no effect on their susceptibility to monocyte killing. However, IFN-gamma appeared to prime either monocytes or target cells to become responsive to IFN-alpha. Our data suggest that IFN-gamma can promote the killing of tumor cells by monocytes through two separate actions, one on the monocyte and one on the target cell.

Adenocarcinoma↗

Interferon-gamma enhances expression of cellular receptors for tumor necrosis factor.

Incubation of several human tumor cell lines with human interferon-gamma (IFN-gamma) increased the specific binding of subsequently added 125I-labeled recombinant human tumor necrosis factor (TNF). A similar increase in TNF binding was seen in murine L929 cells after incubation with murine IFN-gamma, but not after incubation with human IFN-gamma. Increased TNF binding to cells incubated with IFN-gamma was due to an increase in the number of TNF receptors, with no demonstrable change in binding affinity. In one out of two human cell lines tested, IFN-alpha and IFN-beta also produced increased TNF binding, albeit with a lower efficacy than IFN-gamma. A maximal increase in TNF binding was seen after about 6 to 12 hr of incubation with IFN. Increased TNF binding due to enhanced TNF receptor expression may contribute to the enhancement of TNF cytotoxicity seen in some tumor cell lines after INF treatment. Modulation of TNF receptor expression by IFN may also influence other biological activities of TNF.

Adenocarcinoma↗

Fibroblast growth enhancing activity of tumor necrosis factor and its relationship to other polypeptide growth factors.

Tumor necrosis factor (TNF) is a monocyte-derived protein cytotoxic or cytostatic for some tumor cell lines. Here we show that highly purified E. coli-derived recombinant human TNF stimulated the growth of human FS-4 diploid fibroblasts. Stimulation of cell growth was demonstrable at a TNF concentration of 10 pg/ml (3 X 10(-13) M). Maximal stimulation was attained at TNF concentrations of 10 ng/ml (3 X 10(-10) M) or higher. Growth-stimulatory activity of TNF was inhibited by an mAb neutralizing the cytotoxic activity of TNF. Growth stimulation was not inhibited by another mAb specific for TNF, lacking neutralizing activity for the cytotoxic activity of TNF. Growth stimulation by TNF was more marked and more sustained in the presence of greater than or equal to 10% FCS than in medium with less than or equal to 5% FCS. Addition of TNF to confluent FS-4 cultures also produced a marked stimulation of cell growth in the presence of fresh FCS, while a much less marked stimulation was seen in the absence of FCS. Stimulation of confluent cultures by TNF in serum-free medium was enhanced by insulin, suggesting that insulin or insulin-like growth factor(s) in the serum can act synergistically with TNF in producing growth stimulation. While the growth-stimulatory effects of TNF and insulin were synergistic, the actions of TNF and epidermal growth factor (EGF) were less than additive, suggesting that TNF and EGF may activate identical or similar pathways. We conclude that stimulation of cell growth is probably a physiological function of TNF, and that the cytotoxic and cytostatic actions of TNF may be the result of an anomalous growth signal transduction in neoplastic cells lacking the constraints of normal growth control mechanisms.

Cell Cycle↗

Defective gamma-interferon production in peripheral blood leukocytes of patients with acute tuberculosis.

Production of interferon (IFN)-gamma by peripheral blood leukocytes (PBL) was examined in cultures of unseparated fresh whole blood exposed to phytohemagglutinin (PHA), concanavalin A (Con A), or pokeweed mitogen (PWM). The yield of IFN-gamma was measured by a newly developed immunoradiometric assay. Nine of 14 patients with acute pulmonary tuberculosis (TB) showed a depressed IFN-gamma response to Con A and/or PWM. Only four of these TB patients also showed a depressed IFN-gamma response to PHA. Stimulation of the patients' PBL cultures with PHA in the presence of exogenous interleukin 2 (IL 2) produced normal IFN-gamma yields in all but the most severely depressed patients. PBL cultures of TB patients with defective IFN-gamma production in response to mitogenic lectins also produced less IFN-gamma after stimulation with tuberculin PPD. Although some patients showed a moderate degree of lymphopenia, their OKT4/T8 lymphocyte ratios were mostly normal or close to normal, with the notable exception of one TB patient who has been diagnosed to have the acquired immune deficiency syndrome (AIDS).

Adult↗

Characterization and affinity crosslinking of receptors for tumor necrosis factor on human cells.

Receptors for tumor necrosis factor (TNF) were characterized in the U-937 human histiocytic lymphoma cell line with the aid of highly purified recombinant human TNF, radiolabeled with 125I. Saturation binding to specific cell surface receptors occurred with less than 15% nonspecific binding. Analysis of the equilibrium binding data obtained at 4 degrees C revealed a single class of noninteracting binding sites. The mean number of binding sites per cell was calculated to be 12,000, and the apparent dissociation constant (Kd) was 2 X 10(-10) M. Crosslinking of 125I-TNF to the cell surface receptor with disuccinimidyl suberate, followed by NaDodSO4-polyacrylamide gel electrophoresis of the cell lysate, revealed a TNF-receptor complex with a molecular weight of approximately 100,000. Binding to concanavalin A-Sepharose suggested that the TNF receptor is a glycoprotein.

Cell Line↗

Modulation of lymphocyte proliferation and immunoglobulin synthesis by interferon-gamma and "type I" interferons.

Interferon (IFN)-alpha and IFN-beta ("type I" IFNs), but not IFN-gamma reduced phytohemagglutinin- or pokeweed mitogen (PWM)-induced proliferation in cultures of human mononuclear leukocytes. Proliferation induced by specific antigens (tuberculin PPD or tetanus toxoid) or by exogenous interleukin 2 (IL-2) was strongly inhibited by type I IFNs and, to a lesser extent, by IFN-gamma as well. Inhibition of proliferation in mitogen-stimulated cultures was not due to a reduced production of IL-2 or to an inhibition of IL-2 receptor expression. Type I IFNs inhibited immunoglobulin (Ig) production in PWM-stimulated unseparated mononuclear cells, whereas IFN-gamma enhanced Ig production in such cultures. In cultures of purified B cells type I IFNs caused a stimulation of Ig production and this B-cell differentiation factor (BCDF)-like activity of IFNs was synergistically enhanced in the presence of IL-2. IFN-gamma produced less BCDF-like activity than type I IFNs. These results show that in some instances type I IFNs can be more potent in affecting functions of cells of the immune system than IFN-gamma.

Antibody Formation↗

Two molecular weight forms of human 2',5'-oligoadenylate synthetase have different activation requirements.

Ion-exchange and gel filtration chromatography were used to purify partially a 33,000-dalton (33 kD) 2',5'-oligoadenylate synthetase and a 110,000-dalton (110 kD) 2',5'-oligoadenylate synthetase from HeLa cells treated with alpha-interferon (IFN-alpha). The 33-kD enzyme was optimally activated only when double-stranded RNA was added in 100 to 1000-fold excess of the concentration activating the 110-kD enzyme. Certain double- or triple-stranded RNAs, which were observed to activate the 110-kD enzyme, failed to activate the 33-kD enzyme, even when added at high concentration. The 110-kD enzyme manifested an alkaline pH optimum of 7.5 or more and the 33-kD enzyme an acidic pH optimum of 6.0 or less. The results suggest that intracellular activation of the two forms of 2',5'-oligoadenylate synthetase may occur under markedly different conditions.

2',5'-Oligoadenylate Synthetase↗

Accessory function of thymic and tonsillar dendritic cells in interferon gamma production by T lymphocytes.

Human dendritic cells (DC) were purified from tonsils and thymus by a three-step procedure. Over 85% of cells in the purified DC preparations were identified as DC based on their characteristic morphology, presence of HLA-DR, Pro-Iml and Pro-Im2 antigens, and absence of macrophage associated antigens OKM1 and OKM5. To study the accessory function of DC in IFN-gamma production, T lymphocytes and T4+ or T8+ subsets were purified from peripheral blood and tonsils. Addition of autologous or allogeneic tonsillar DC to cultures of purified T cells caused up to a fifteen-fold increase in phytohemagglutinin (PHA)-induced IFN-gamma production and up to a seven-fold augmentation of IFN-gamma induction by interleukin 2 (IL 2). Thymic DC also showed a similar potent accessory activity on IFN-gamma production with concanavalin A (Con A) or PHA. Marked enhancement of IFN-gamma production by T cells was seen in the presence of as little as 0.3% thymic DC.

Antibodies, Monoclonal↗

Characterization of human tumor necrosis factor produced by peripheral blood monocytes and its separation from lymphotoxin.

Cultures of human peripheral blood leukocytes (PBL) induced with phytohemagglutinin (PHA) and the phorbol ester 12-0-tetradecanoylphorbol 13-acetate (TPA) produced two types of cytotoxic proteins, indistinguishable in the in vitro assay employing murine L 929 cells as targets. One of these proteins had the antigenic and physicochemical properties of lymphotoxin (LT). We have identified the other cytotoxin as tumor necrosis factor (TNF), mainly on the basis of antigenic cross-reactivity demonstrated with antiserum to TNF, and also by its characteristic physicochemical properties and cell source. Unlike LT, PBL-derived TNF did not bind to Concanavalin A-Sepharose or to several other agglutinin-Sepharose columns specific for carbohydrate moieties common in glycoproteins. The molecular weight of native TNF determined by gel filtration was approximately 40,000 while SDS-PAGE revealed a single sharp peak of 16,500 +/- 500. When cultures of monocytes and lymphocytes separated by elutriation were stimulated with PHA and/or TPA, monocytes were the major source of TNF. In contrast, only lymphocytes produced LT. A mixture of antisera to TNF and LF neutralized all cytotoxicity of crude human lymphokine preparations for L 929 cells, suggesting that TNF and LT are either the only, or the major, cytotoxic proteins present in such crude lymphokine preparations demonstrable in this assay.

Cells, Cultured↗

Tumor necrosis factor: specific binding and internalization in sensitive and resistant cells.

Highly purified, Escherichia coli-derived recombinant human tumor necrosis factor (TNF) was labeled with 125I and employed to determine receptor binding, internalization, and intracellular degradation in murine L929 cells (highly sensitive to the cytotoxic action of TNF) and in diploid human FS-4 cells (resistant to TNF cytotoxicity). 125I-labeled TNF bound specifically to high-affinity receptors on both L929 and FS-4 cells. Scatchard analysis of the binding data indicated the presence of 2200 binding sites per L929 cell and 7500 binding sites per FS-4 cell. The calculated dissociation constants are 6.1 X 10(-10) M and 3.2 X 10(-10) M for L929 and FS-4 cells, respectively. In both L929 and FS-4 cells, incubation at 37 degrees C resulted in a rapid internalization of the bulk of the cell-bound TNF, followed by the appearance of trichloroacetic acid-soluble 125I radioactivity in the tissue culture medium, due to degradation of TNF. Degradation but not cellular uptake of TNF was inhibited in the presence of chloroquine (an inhibitor of lysosomal proteases) in both L929 and FS-4 cells, suggesting that degradation occurs intracellularly, probably within lysosomes. These results show that resistance of FS-4 cells to TNF cytotoxicity is not due to a lack of receptors or their inability to internalize and degrade TNF.

Animals↗

Monoclonal antibodies as structural probes for oligomeric human interferon-gamma.

Monoclonal antibodies (MAb) B1 and B3, specific for human interferon-gamma (IFN-gamma) failed to immunoprecipitate heat-inactivated human IFN-gamma in solution. However, both MAb retained some reactivity with denatured IFN-gamma immobilized on vinyl plates. The two MAb have been employed in a sensitive immunoradiometric assay (IRMA). In this IRMA one MAb was bound to polystyrene beads and used as immunoadsorbent. The second MAb, labeled with 125I, was used as the tracer to quantitate the amount of IFN-gamma bound to the immobilized MAb. Addition of unlabeled MAb B1 did not inhibit the binding of 125I-labeled MAb B3 (and vice versa), indicating that the two MAb react with two different and nonoverlapping epitopes. Yet, when the same MAb was used in IRMA as both immunoadsorbent and tracer, the amount of labeled MAb bound to a given concentration of natural or E. coli-derived recombinant human IFN-gamma was very similar as with two different MAb, indicating that a single IFN-gamma molecule must have two or more identical binding sites for each of the two MAb. These findings show that biologically active natural and recombinant human IFN-gamma exist in oligomeric form.

Antibodies, Monoclonal↗

Cloning and expression of a novel variant of human interferon-gamma cDNA.

A cDNA library was prepared from the poly(A) mRNA isolated from human peripheral blood lymphocytes which were induced by combined treatment with phytohemagglutinin and a phorbol ester. Recombinant plasmids containing human interferon-gamma (HuIFN-gamma) cDNAs were identified by the oligonucleotide-hybridization method. Nucleotide sequence analysis showed that the nucleotide and amino-acid sequences of HuIFN-gamma cDNA in plasmid pIFN gamma-G4 differed from the published data at amino acid position 9 (CAA for glutamine versus AAA for lysine). The cDNA in plasmid pIFN gamma-G4 was expressed under control of the simian virus 40 early promoter in monkey COS cells and a biologically active HuIFN-gamma was secreted from the cells. The cDNA was also inserted into an expression vector carrying an E. coli tryptophan promoter and was expressed in E. coli. The results suggest that the conversion from lysine to glutamine at amino acid position 9 might not affect the specific activity of HuIFN-gamma.

Amino Acid Sequence↗

Regulation of IFN-gamma induction in human peripheral blood cells by exogenous and endogenously produced interleukin 2.

Interferon (IFN)-gamma production, stimulated by the addition of exogenous interleukin (IL) 2, T cell mitogens, or tuberculin purified protein derivative (PPD) was studied in cultures of separated human mononuclear cells or unseparated peripheral blood leukocytes (PBL). IFN-gamma was induced by the addition of IL 2 to cultures of otherwise unstimulated cells. The minimal concentration of exogenous IL 2 required to cause a reproducible stimulation of IFN-gamma was about 10 U/ml, i.e., approximately 50 times the minimal concentration required to stimulate proliferation in an IL 2-dependent murine cytotoxic T cell line. Approximately 500 to 1000 IL 2 U/ml were required to produce maximal stimulation of IFN-gamma production in otherwise unstimulated cultures. Monoclonal antibody anti-Tac, specific for an epitope associated with the IL 2 receptor (IL 2 R), inhibited IFN-gamma induction by exogenous IL 2 less strongly than induction by phytohemagglutinin (PHA) or concanavalin A (Con A). The highest degree of inhibition was exerted by anti-Tac on IFN-gamma production stimulated with PPD. Stimulation of IFN-gamma induction by exogenous IL 2 and the inhibitory action of anti-Tac on IFN-gamma production were also seen in cultures of irradiated (2000 R) cells. Treatment of cells with subinducing doses of Con A or phorbol myristate acetate increased IFN-gamma induction by exogenous IL 2. Taken together, the data suggest that endogenously generated IL 2 is a major mediator of IFN-gamma induction in PBL cultures stimulated with antigens or T cell mitogens.

Antibodies, Monoclonal↗

Therapeutic trial of interferon-gamma in patients with epidemic Kaposi's sarcoma.

An epidemic form of Kaposi's sarcoma associated with the acquired immune deficiency syndrome has been recently described. Seven homosexual men with biopsy-documented epidemic Kaposi's sarcoma were treated with a human interferon-gamma preparation. All patients had generalized disease. Only one patient had received prior chemotherapy, and one other patient had recovered from a prior opportunistic infection. Interferon-gamma was administered in a dose of 500,000 U intramuscularly daily, with two 10-day induction courses, separated by a 2-week medication-free period. This was followed by maintenance therapy in the same dose twice weekly. Toxicities consisted of a flu-like illness with high fevers, shaking chills, myalgias, and arthralgias. There were no complete or partial responses. All patients exhibited disease progression, with a rapid progression of previously stable disease necessitating discontinuation of therapy in three patients. We conclude that low doses of this human interferon-gamma preparation are ineffective in epidemic Kaposi's sarcoma.

Adult↗

Cytolytic activity of interferon-gamma and its synergism with 5-fluorouracil.

Highly purified natural or recombinant human immune interferon (IFN-gamma) was found to be directly cytolytic to certain tumor cell lines in vitro. Out of 5 human tumor cell lines and one normal fibroblast line tested, the colon adenocarcinoma line HT-29 and the rhabdomyosarcoma line A673 were highly sensitive to cytolysis by interferon, as determined by 125I-iododeoxyuridine release in a 72 h microcytotoxicity assay. Cytolysis was marked at IFN-gamma concentrations of less than I U/ml, and it reached a near-maximal level at 6.4 U/ml. A synergistic cytolysis on HT-29 cells of IFN-gamma and 5-fluorouracil (5-FU) was observed at 5-FU concentrations ranging from 64 to 640 micrograms/ml. In contrast, no synergism was observed between IFN-gamma and mitomycin C. The direct cytolytic activity and synergistic cytolysis with 5-FU of the IFN-gamma preparations used in the present study were abolished completely by treatment with a neutralizing monoclonal antibody specific for human IFN-gamma.

Antibodies, Monoclonal↗

Lymphokine-mediated activation of human monocytes: neutralization by monoclonal antibody to interferon-gamma.

Purified natural and recombinant human immune interferon (IFN-gamma) were found to activate human monocytes from peripheral blood to exert enhanced cytotoxicity against human colon adenocarcinoma HT-29 cells. A marked monocyte activation was observed at low concentrations (1 and 10 U/ml) of IFN-gamma. Marked monocyte activation was also obtained with two lymphokine preparations, produced in peripheral blood mononuclear cell (PBM) cultures induced with phytohemagglutinin (PHA) or by combined stimulation with PHA and 12-O-tetradecanoylphorbol 13-acetate (TPA). The component responsible for macrophage activation in such lymphokine preparations in the past was considered to be "macrophage-activating factor" (MAF). When monoclonal antibody specifically neutralizing IFN-gamma was added to these lymphokine preparations, all MAF activity disappeared, indicating that IFN-gamma is the sole protein showing MAF activity in these preparations.

Antibodies, Monoclonal↗

Monoclonal antibodies to human immune interferon and their application for affinity chromatography.

Two IgG1/kappa class monoclonal antibodies specific for human immune interferon (IFN-gamma), designated B1 and B3, were developed. Specific binding of both monoclonal antibodies to natural or Escherichia coli-derived recombinant human IFN-gamma was demonstrated in a solid-phase radioimmunoassay or by immunoprecipitation. Antibody B3 showed potent neutralizing activity against both natural and recombinant IFN-gamma. Antibody B1, which showed neutralizing activity only when very high concentrations were employed, was used for preparing immunosorbents for affinity chromatography of IFN-gamma. When a highly purified preparation of 125I-labeled natural IFN-gamma was loaded onto the affinity column, all of the biological activity was retained on the column. The bulk of 125I-labeled IFN-gamma bound to the affinity column be eluted in biologically active form, suggesting that antibody B1 could be used for the purification of human IFN-gamma. Analysis of IFN-gamma eluted from the column by NaDodSO4/polyacrylamide gel electrophoresis (SDS-PAGE) indicated that both of the known molecular weight subspecies of IFN-gamma (25,000 and 20,000 MW), as well as the presumed dimer of 45,000 MW, were retained by the B1 antibody affinity column.

Animals↗