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J Le

Publications and source records attributed to J Le.

At least 91 records · Page 5Linked to original sources

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↗

Effects of using liver fractions from different mammals, including man, on results of mutagenicity assays in Salmonella typhimurium.

Twenty chemicals, including 16 aromatic amines, were studied in the Salmonella/mammalian-microsome mutagenicity test using the bacterial strains TA100 and TA98 to compare the activation potential of liver preparations from several mammalian species. The hepatic post-mitochondrial supernatants (S-9 fractions) of rat, mouse, hamster, dog, monkey and man were used for metabolic activation. Striking quantitative and even qualitative differences were apparent in the capacity of the different preparations to activate the compounds to mutagens. All compounds that gave positive results in the Ames test when activated with a liver preparation from Aroclor-pretreated rats were also identified as mutagens when tested in the presence of S-9 from one or more other species. Four substituted anilines, however, were converted to mutagenic metabolites only in the presence of a post-mitochondrial fraction of hamster liver. Three human carcinogens, 2-aminoanthracene, benzidine and cyclophosphamide were detected as mutagens under various experimental conditions, including metabolic activation by human or monkey liver S-9. There were no qualitative differences in the mutagenic responses obtained in assays with human and monkey liver S-9.

Amines↗

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↗

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↗

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↗

Three molecular weight forms of natural human interferon-gamma revealed by immunoprecipitation with monoclonal antibody.

Immune interferon (IFN-gamma), endogenously labeled with [35S]methionine, was produced in human peripheral blood lymphocyte cultures stimulated with 12-O-tetradecanoylphorbol-13-acetate and phytohemagglutinin. 35S-IFN-gamma, immunoprecipitated from the crude culture fluid with a monoclonal antibody, was resolved by sodium dodecyl sulfate-polyacrylamide gel electrophoresis into three monomeric forms with molecular weights of 25,000, 20,000, and 15,500, which we designate IFN-gamma I, II, and III, respectively. IFN-gamma I was the most, and IFN-gamma III the least, abundant in both immunoprecipitated 35S-IFN-gamma and chromatographically purified IFN-gamma preparations. Changes in the molecular size of the monomeric forms after glycosidase treatment suggested that IFN-gamma I contains more carbohydrate than IFN-gamma II, and that IFN-gamma III may not be glycosylated at all. Hence, the differences in the carbohydrate contents are likely to be the major cause of the molecular size heterogeneity of IFN-gamma I, II, and III.

Antibodies, Monoclonal↗

Interrelationships of human interferon-gamma with lymphotoxin and monocyte cytotoxin.

Crude preparations of interferon (IFN)-gamma derived from human peripheral blood leukocyte (PBL) cultures induced with 12-O-tetra-decanoylphorbol-13-acetate (TPA) and phytohemagglutinin (PHA) were more cytotoxic to HeLa cells than partially purified nautral or highly purified recombinant human IFN-gamma preparations. Conditioned media from PBL cultures contained, in addition to IFN-gamma, a mixture of cytotoxins, including classic lymphocyte-derived lymphotoxin (LT), and a TPA-induced cytotoxic activity produced by the adherent cell population (presumably monocytes). These two types of cytotoxins, indistinguishable in the mouse L929 cell LT assay, could be differentiated by an antiserum prepared against LT derived from the B lymphoblastoid cell line RPMI 1788. This antiserum neutralized lymphocyte-derived classic LT but failed to neutralize the activity of the monocyte-derived cytotoxin. Processing of conditioned media by sequential chromatography on silicic acid, Con A-Sepharose, and DEAE-Sephacel failed to separate IFN-gamma from the LT activity. However, this procedure did remove the monocyte-derived cytotoxic activity present in the original starting material, leaving predominantly classic LT. This LT showed a slightly basic isoelectric point (pI 7.6) which partially overlapped the more basic pI range of IFN-gamma. The two lymphokine activities also could not be completely separated by fast protein liquid chromatography or molecular sieve chromatography. LT in these partially purified preparations was associated with a protein having an apparent molecular weight of 58,000 on gel filtration. This form dissociated partially into a 20,000 mol wt species after denaturation with 0.1% NaDodSO4. IFN-gamma could be selectively removed from preparations containing both IFN-gamma and LT with the aid of monoclonal antibody to IFN-gamma. The addition of purified LT to purified E. coli-derived recombinant human IFN-gamma resulted in a marked synergistic enhancement of cytotoxicity for HeLa cells.

Antibodies, Monoclonal↗

Use of monoclonal antibodies as sensitive and specific probes for biologically active human gamma-interferon.

Mouse monoclonal antibodies B1 and B3 are specific for natural and Escherichia coli-derived recombinant human gamma-interferon (IFN-gamma). The two antibodies recognize different epitopes of the IFN-gamma molecule and do not compete with each other's binding. We have used these two antibodies to construct a solid-phase, sandwich immunoradiometric assay for human IFN-gamma. Purified antibody B1 was coated on polystyrene beads (0.64 cm in diameter) and used as the solid-phase immunoadsorbent and antibody B3 was labeled with 125I and used as tracer. This assay can be completed in about 4 hr and is capable of detecting IFN-gamma levels in human serum or tissue culture fluids as low as 0.1 NIH reference unit/ml. Recombinant human IFN-gamma derived from E. coli was detectable at a concentration of 0.02 ng/ml. The assay appears to be specific for the biologically active forms of IFN-gamma, since after exposure to pH 2, 37 degrees C, or 56 degrees C, biological activity and reactivity in the immunoradiometric assay decreased in parallel. The immunoradiometric assay can be employed for the analysis of the structural characteristics of the human IFN-gamma molecule.

Animals↗

Natural and recombinant Escherichia coli-derived interferon-gamma differ in their reactivity with monoclonal antibody.

Monoclonal antibody GIF-1 was found to neutralize human natural immune interferon (IFN-gamma), but not Escherichia coli-derived recombinant IFN-gamma. In addition, GIF-1 antibody failed to immunoprecipitate 125I-labeled recombinant IFN-gamma, whereas it precipitated natural IFN-gamma in a concentration-dependent manner. The lack of recognition of recombinant IFN-gamma by antibody GIF-1 may not be due to the absence of the oligosaccharide moiety in the molecules of recombinant IFN-gamma alone, because removal of carbohydrate from natural IFN-gamma by treatment with a mixture of glycosidases did not alter the selective binding of antibody, i.e., deglycosylated and untreated natural IFN-gamma were equally neutralized and immunoprecipitated by GIF-1 antibody. In addition, a minor monomeric component of natural IFN-gamma with the m.w. of 15,500, which apparently lacks carbohydrate, was also recognized by antibody GIF-1. These results suggest that the discriminative recognition of natural and recombinant IFN-gamma by monoclonal antibody GIF-1 may be due to a conformational difference at or near the active regions of natural and recombinant human IFN-gamma molecules.

Animals↗

Lymphokine production by human T cell hybridomas.

Human T cell hybridomas were generated by hybridization of SH9 cells, the 6-thioguanine-resistant variant of human T lymphoma Hut102-B2, with concanavalin A-stimulated human peripheral blood lymphocytes. The hybrid nature of the established cell lines was documented by the difference in D14S1 restriction fragment length polymorphism between SH9 and the hybridoma cell DNA, and by the expression of OKT11 antigen on hybrid cells. T cell growth factor, macrophage growth factor (MGF), and interferon (IFN) activities have been demonstrated in the supernatants of different hybrid cultures, but not in SH9 cell cultures. Substantial quantities of MGF were secreted by several hybrids including the L23 line. MGF activity was dose-dependent, heat-labile, and synergistic with indomethacin. High titers of IFN activity were found in the cultures of hybridoma L415 and its subclones. Neutralization with specific antisera showed the IFN synthesized by L415 clones was immune interferon (IFN-gamma). Like the parental SH9 line, all of the hybridomas producing these lymphokines exhibited a cell surface phenotype typical for helper T cells. The hybridoma system therefore shows potential for the study of various lymphokines produced by human helper T lymphocytes.

Cell Line↗

Activation of human monocyte cytotoxicity by natural and recombinant immune interferon.

Human T cell hybridomas were established by fusion of SH9 cells, the 6-thioguanine-resistant mutant line of human T lymphoma Hut 102-B2, with concanavalin A-stimulated human peripheral blood lymphocytes. Hybridoma line L38 produced a macrophage activating factor (MAF) with the ability to activate human peripheral blood monocytes to show enhanced cytotoxicity against human colon adenocarcinoma HT-29 cells in a 72-hr 125iododeoxyuridine-release assay. The L38 line was then cloned by the limiting dilution technique and two sublines, L38B and L38D, were found to produce high levels of MAF constitutively. Interferon activity was also detected in L38B and L38D supernatants. When interferon activity was neutralized with specific antiserum to purified human immune interferon (IFN-gamma), MAF activity was abrogated. To confirm that the MAF activity is indeed due to IFN-gamma, IFN-gamma was purified from the culture supernatant of another human T cell hybridoma, L265K2, a cell line known to produce high levels of IFN-gamma. Two highly purified IFN-gamma fractions with m.w. of 20,000 and 25,000, respectively, were obtained by NaDodSO4/polyacrylamide gel electrophoresis (SDS-PAGE). Similar fractions were obtained from IFN-gamma derived from human peripheral blood lymphocyte (PBL) cultures induced with 12-0-tetradecanoylphorbol-13-acetate (TPA) and phytohemagglutinin (PHA). In comparison, Escherichia coli-derived recombinant human IFN-gamma separated by SDS-PAGE yielded two major active fractions with m.w. of 17,000 and 34,000. With all three types of preparations, a close correlation was found between the presence of IFN-gamma activity demonstrable in an antiviral assay and MAF activity in individual fractions. Substantial quantitative differences were observed in the ability of various human IFN to activate monocytes. Although no MAF activity was detected with IFN-alpha and IFN-beta at concentrations up to 200 U/ml, both natural and recombinant IFN-gamma showed marked MAF activity at concentrations as low as 0.3 to 1 U/ml.

Antigens, Surface↗

Human T cell hybridomas secreting immune interferon.

Human T-cell hybridomas were established by hybridization of concanavalin A-stimulated human peripheral blood lymphocytes with a 6-thioguanine-resistant mutant cell line, designated SH9, derived by irradiation from a cloned human cutaneous T lymphoma line, Hut102-B2. High levels of interferon (IFN) were demonstrated in the supernatants of hybridoma L265 and its subclones. Whereas no IFN was detected in SH9 cell cultures, up to 1,330 units of IFN per ml were produced spontaneously by the hybrids. On induction with 12-omicron-tetradecanoylphorbol 13-acetate, IFN synthesis in hybridoma cultures was enhanced 8- to 16-fold. Neutralization with specific antisera and determination of antiviral activities in human and bovine cells showed that the IFN secreted by the hybridomas was immune IFN (IFN-gamma). Analysis of DNA content, karyotype, and cell surface phenotype, including T cell specific antigens and receptors, confirmed the T cell hybrid nature of L265 clones. No correlation was found in the hybridomas between IFN production and the expression of HTLV, a retrovirus released by Hut102-B2 and SH9 cells.

Gene Expression Regulation↗