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Biomedical subjects

J R David

Publications and source records attributed to J R David.

At least 109 records · Page 6Linked to original sources

Recombinant human granulocyte/macrophage colony-stimulating factor activates intracellular killing of Leishmania donovani by human monocyte-derived macrophages.

Recombinant granulocyte/macrophage colony-stimulating factor (rGM-CSF) obtained from cloned complementary Mo cell DNA and expressed in COS-1 cells activates cultured peripheral blood monocyte-derived macrophages in vitro to become cytotoxic for intracellular L. donovani. The antileishmanial effect of rGM-CSF, which can be completely neutralized by anti-rGM-CSF antiserum, is maximal after 36 h preincubation with the cultured macrophages, compared with that of rIFN-gamma, which reaches its maximum at 72 h of preincubation. The antileishmanial effect of GM-CSF as well as IFN-gamma is independent of detectable amounts of LPS and is not augmented by the addition of 10 or 50 ng/ml of LPS. Simultaneous administration of suboptimal doses of rGM-CSF and rIFN-gamma to monocyte-derived macrophages results in greater antileishmanial activity by these cells than administration of either lymphokine alone, although no enhancement of antileishmanial activity is observed when optimal doses of these two lymphokines are applied together.

Animals↗

Characterization of a factor from the U937 cell line that enhances the toxicity of human eosinophils to Schistosoma mansoni larvae.

A factor produced by lipopolysaccharide-stimulated human monocytes, monocyte-derived eosinophil cytotoxicity-enhancing factor (M-ECEF), increases the ability of human eosinophils to kill larvae of Schistosoma mansoni. In order to purify this monokine, a continuous cell line was sought as a generator of source material. It was found that high titers of an ECEF-like activity could be obtained from the U937 cell line cultured in serum-free medium. Production of this activity was optimal when cells were cultured with PMA for 2 days and were further treated with LPS for 2 days. PMA and LPS alone did not enhance eosinophil cytotoxicity and could be separated completely from U937-ECEF activity by reversed-phase HPLC. Thus, the activity was not due to carry-over of these two stimuli. U937-ECEF was compared with M-ECEF by a number of analytical methods. ECEF from both sources was resistant to several denaturing treatments but was sensitive to proteases or to reduction and alkylation. U937-ECEF exhibited activity profiles similar, if not identical, to those of M-ECEF when subjected to molecular sizing HPLC in the presence of 8 M urea, isoelectric focusing, and reversed-phase HPLC. The activity has apparent m.w. of 17,000 and 32,000, isoelectric points ranging from 3.8 to 5.1, and one or more reversed-phase HPLC retention times, depending on the method of sample preparation. These results demonstrate certain physical characteristics of M-ECEF, show that the U937 cell line is an appropriate source for the purification of M-ECEF, and provide information that will allow the design of a purification strategy. Although it appears that tumor necrosis factor (TNF) or a TNF-like molecule is a component of M-ECEF, a major component of M-ECEF is different from TNF as judged by the 1) physical characteristics of M-ECEF, 2) low direct toxicity of M-ECEF to L929 cells, 3) comparative stability of M-ECEF to heat treatment, and 4) inability of an anti-TNF monoclonal antibody to remove M-ECEF activity.

Cell Line↗

Contrasting patterns of geographic variation in the cosmopolitan sibling species Drosophila melanogaster and Drosophila simulans.

An electrophoretic study was carried out to compare the geographic pattern of genetic variation in Drosophila simulans with that of its sibling species, Drosophila melanogaster. An identical set of 32 gene-protein loci was studied in four geographically distant populations of D. simulans and two populations of D. melanogaster, all originating from Europe and Africa. The comparison yielded the following results: tropical populations of D. simulans were, in terms of the number of unique alleles, average heterozygosity per locus, and percentage of loci polymorphic, more variable than conspecific-temperate populations; some loci in both species showed interpopulation differences in allele frequencies that suggest latitudinal clines; and temperate-tropical genetic differentiation between populations was much less in D. simulans than in D. melanogaster. Similar differences between these two species have previously been shown for chromosomal, quantitative, physiological, and middle-repetitive DNA variation. Estimates of Nm (number of migrants per generation) from the spatial distribution of rare alleles suggest that both species have similar levels of interpopulation gene flow. These observations lead us to propose two competing hypotheses: the low level of geographic differentiation in D. simulans is due to its evolutionarily recent worldwide colonization and, alternatively, D. simulans has a narrower niche than D. melanogaster. Geographic variation data on different genetic elements (e.g., mitochondrial DNA, two-dimensional proteins, etc.) are required before these hypotheses can be adequately tested.

Animals↗

Leishmaniasis in Brazil: XXIII. The identification of Leishmania braziliensis braziliensis in wild-caught neotropical sandflies using monoclonal antibodies.

Using the indirect immunofluorescence test natural flagellate infections of wild-caught sandflies, from the Serra dos Carajás region of Pará State, Brazil, were identified by sequentially staining smears made from the infected flies with monoclonal antibodies. With normal methods of isolation 30% of the infections were identifiable, but when monoclonal antibodies specific to Leishmania braziliensis braziliensis were used a further 26% were identified. The staining of organisms in smears of natural infections was different from that seen with culture forms and with forms from experimentally infected wild flies. A monoclonal antibody previously thought to be specific for Leishmania did not react with culture forms of Endotrypanum, but did react with those of monoxenous insect parasites.

Animals↗

Amylase gene duplication: an ancestral trait in the Drosophila melanogaster species subgroup.

Electrophoretic polymorphism of amylases was studied in 45 geographic populations of the two cosmopolitan sibling species, D. melanogaster and D. simulans, and in one to three populations or strains of six other species in the D. melanogaster subgroup. Two species, D. erecta and D. orena, for which only a few strains were available were monomorphic. In the other species 2 or 3 amylase variants were identified while in D. melanogaster, 12 electrophoretic variants were characterized. Altogether 17 different amylase isozymes have been observed. The contrast in the level of polymorphism between D. melanogaster and the other species cannot be explained simply by the occurrence of a duplication in the former species. Genetic analysis demonstrated the existence of a duplication in at least 4 other species, namely D. simulans, D. mauritiana, D. yakuba, and D. teissieri. It is therefore suggested that the duplication occurred in a common ancestor and the phylogenetic implications of these observations are discussed.

Amylases↗

In vivo and in vitro characterization of murine T-cell clones reactive to Mycobacterium tuberculosis.

Seventeen helper T-cell clones were derived by stimulating lymph node cells from sensitized C57BL/6 mice with Mycobacterium tuberculosis H37Ra, M. tuberculosis H37Rv, or purified protein derivative. Most clones cross-reacted with Mycobacterium bovis BCG, H37Ra, H37Rv, and purified protein derivative. However, four clones were able to differentiate H37Rv from H37Ra, or BCG from H37Ra and H37Rv. In addition, four other T-cell clones recognized recombinant antigens of 19 and 65 kilodaltons isolated from a genomic expression library of M. tuberculosis by using monoclonal antibodies. All clones were Ia restricted and had the Thy-1.2+ Lyt-1+ L3T4+ Lyt-2- phenotype. On stimulation with antigen, all of the clones tested secreted interleukin-2 and gamma interferon but not B-cell stimulatory factor 1. All of the clones tested induced an antigen-specific delayed-type hypersensitivity response upon local cell transfer, although the magnitude of this response differed markedly among clones.

Animals↗

Identification and distribution of New World Leishmania species characterized by serodeme analysis using monoclonal antibodies.

Five hundred thirty stocks of Leishmania isolated from human and domestic and wild reservoir hosts, representing a wide geographic distribution of endemic foci of American cutaneous (ACL) and visceral leishmaniases (AVL) were characterized and identified at species and/or subspecies levels based on their reactivity to a cross-panel of specific monoclonal antibodies using a radioimmune binding assay. This study confirms and extends our preliminary results on the high specificity of some of these monoclonals for the L. braziliensis, L. mexicana, and L. donovani complexes. This study also demonstrates the relative stability of these molecular markers and the general usefulness of the method for parasite identification. Two hundred ninety-two of 420 isolates of ACL were classified as members of the L. braziliensis complex. Two hundred twenty-seven were L. b. braziliensis; these showed the widest geographical distribution (Brazil: Amazonas, Bahia, Ceara, Espirito Santo, Goias, Minas Gerais, Para, Paraiba, Rio de Janeiro, and Sao Paulo; Honduras: Santa Barbara and Yoko; Peru: Ancash, Piura, and Ucayali; and Venezuela: Cojedes, Distrito Federal, Lara, Portuguesa, Vale Hondo, Yaracuy, and Zulia). Forty-one stocks were identified as L. b. guyanensis (from North Brazil: Amazonas, Amapa, Para, and Rondonia). Twenty-one stocks were identified as L. b. panamensis (from Costa Rica: Alajuela, Guanacasten, Limon, Puntarenas, and San Jose; and Honduras: El Paraiso, and Olancho). Out of 128 isolates classified as members of the L. mexicana complex, 74 were differentiated as L. m. amazonensis (from Bolivia; Brazil: Amazonas, Bahia, Ceara, Goias, Maranhao, Mato Grosso do Norte, and Para; Peru: Pasco Forest and Van Humboldt; and Venezuela: Carabobo, Guarico, and Merida). Forty-four stocks were identified as L. m. venezuelensis (from Venezuela: Lara). Six stocks were L. m. mexicana (from Belize; and Mexico: Campeche [corrected] and Quintana Roo, Yucatan). One hundred ten isolates from AVL were identified as L. donovani chagasi (from Brazil: Bahia, Ceara, Maranhao, Minas Gerais, Mato Grosso do Sul, Piaui, Rio de Janeiro, and Sergipe; and Honduras: Valle). The implications of these results with respect to both the clinical and epidemiological data (including the detection of seven unusual characterized stocks) are discussed.

Antibodies, Monoclonal↗

Enhancement of human eosinophil cytotoxicity and leukotriene synthesis by biosynthetic (recombinant) granulocyte-macrophage colony-stimulating factor.

Culture medium conditioned by activated human T lymphocytes enhances the in vitro cytotoxicity of purified human eosinophils toward Schistosoma mansoni larvae, suggesting the existence of a mechanism for T lymphocyte regulation of eosinophil function. Here we show that purified biosynthetic (recombinant) human T lymphocyte granulocyte-macrophage colony-stimulating factor (GM-CSF) enhanced markedly two eosinophil functions: cytotoxicity toward schistosomula by a mean of 676%, and calcium ionophore A23187-induced generation of leukotriene C4 (LTC4) by a mean of 135%. Augmentation of each eosinophil function by GM-CSF was time- and dose-dependent, with a dose-response relationship at concentrations between 1 and 20 pM. Tumor necrosis factor (TNF) enhanced eosinophil cytotoxicity with slower kinetics, a different dose-dependence relationship, and to a lower maximum, as compared with GM-CSF. There was no detectable effect of TNF on calcium ionophore A23187-induced generation of LTC4. The effect of GM-CSF on arachidonic acid metabolism to LTC4 reached a plateau with 60 min of incubation before stimulation with ionophore, and was characterized by an initial augmentation of the intracellular level of LTC4 and a subsequent increment in extracellular LTC4. Thus, GM-CSF can serve as a mediator for T lymphocyte regulation of functions of mature eosinophils. It is also the first defined macromolecule known to enhance metabolism of membrane-derived arachidonic acid via the 5-lipoxygenase pathway.

Calcimycin↗

Enhancement by monokines of leukotriene generation by human eosinophils and neutrophils stimulated with calcium ionophore A23187.

Human blood eosinophils and neutrophils that had been incubated with the supernatants of cultures of lipopolysaccharide (LPS)-stimulated blood mononuclear cells demonstrated respective enhanced abilities to produce immunoreactive leukotriene C4 (LTC4) and immunoreactive leukotriene B4 (LTB4) after activation by the calcium ionophore A23187. Under optimal conditions, the enhancing effect was observed with the eosinophils (n = 21) and the neutrophils (n = 14) from all but one donor of each type of granulocyte. Enhancement was maximum when granulocytes were preincubated with a 1/3 dilution of LPS-stimulated mononuclear cell culture supernatants for 1 to 2.5 min and were then stimulated with 2.5 microM ionophore for 1 to 2 min (neutrophils) or 15 min (eosinophils). Maximal enhancement ranged from 20 to 4500% for LTC4 generation by eosinophils (geometric mean, 87%) and from 30 to 1600% for LTB4 generation by neutrophils (geometric mean, 105%). There was no enhancement of leukotriene biosynthesis when the LPS-stimulated mononuclear cell culture supernatants and ionophore were added simultaneously to the granulocytes. The enhancing activity for LTC4 generation by eosinophils was removed by washing the cells after the addition of the LPS-stimulated mononuclear cell culture supernatants and before the introduction of ionophore. This enhancing activity was produced by Ig-, Leu-1- adherent blood mononuclear cells, which are presumed to be monocytes; supernatants of adherent cells augmented A23187-induced LTC4 generation by eosinophils from 21 to 2300% (geometric mean, 402%) in 11 experiments and LTB4 generation by neutrophils from 7 to 200% (geometric mean, 60%) in 10 experiments. There was an inverse correlation between the percent enhancement and the LTC4 levels produced by stimulated eosinophils in the absence of the monokine(s) (r = -0.79, p less than 0.01), but not between percent enhancement and the LTB4 levels generated by ionophore-activated neutrophils in the control buffer. The activity of the monocyte-derived enhancing material on each type of granulocyte was relatively heat stable. Enhancement of eosinophil production of LTC4 was associated with an acidic group of monocyte-derived molecules having isoelectric points of 4.2 to 4.3, 4.5 to 4.6, and 4.9, and exhibiting marked heterogeneity in size.(ABSTRACT TRUNCATED AT 400 WORDS)

Arachidonic Acid↗

A monoclonal antibody against migration inhibitory factor (MIF) obtained by immunization with MIF from the human lymphoblast cell line Mo.

A monoclonal antibody-secreting hybrid cell line, E7, was constructed from myeloma cells and spleen cells from BALB/c mice immunized with partially purified human MIF from culture fluid of the human T-lymphoblast cell line Mo. The hybrid cell line E7 was selected by screening hybridoma cultures for their capacity to adsorb added MIF activity when assayed together with rabbit anti-mouse IgG-coupled to protein A-Sepharose. The monoclonal antibody produced by the cloned hybridoma E7 also directly neutralized MIF activity from Mo cells and two species of MIF from the culture fluid of human peripheral blood lymphocytes, but did not neutralize IFN-gamma from Mo cells and from human peripheral blood lymphocytes. This antibody reacted also with a component in phytohemagglutinin preparations with an apparent molecular weight of 60,000; however, it did not react with the active tetramer of phytohemagglutinin.

Animals↗

Cloning of a developmentally regulated tegument antigen of Schistosoma mansoni.

We have cloned a gene encoding a 22.6 kDa antigen from a Schistosoma mansoni cDNA library. Northern blots indicate that transcription of this antigen occurs in adults and sporocysts but not in cercariae, eggs or in newly-transformed schistosomula. Immunoprecipitation and Western blotting with specific antisera indicate that the antigen is not detectable in the newly transformed schistosomulum but appears within 24 h of schistosomulum transformation. Indirect immunofluorescence of adult worms shows this protein to be located in the tegument.

Amino Acid Sequence↗

Tumor necrosis factor enhances eosinophil toxicity to Schistosoma mansoni larvae.

Tumor necrosis factor (TNF) is a monocyte product that kills or inhibits the growth of certain tumor cells. Its cell source and physical characteristics suggest that it is similar to a monokine, eosinophil-cytotoxicity-enhancing factor (M-ECEF), that activates human eosinophil toxicity to Schistosoma mansoni larvae. The availability of recombinant human TNF allowed us to test this possibility. The data show that TNF has no direct effect on the parasites but enhances eosinophil toxicity to the parasites in a dose-dependent fashion. This effect is specific for eosinophils and not neutrophils. TNF and the eosinophil-specific activity of TNF are coeluted with M-ECEF in reversed-phase HPLC. Further, M-ECEF activity in HPLC fractions is reduced by treatment with rabbit anti-TNF antibody and protein A-Sepharose. This demonstrates physical similarity and at least partial immunological identity of TNF and a fraction of M-ECEF. Thus, TNF can enhance eosinophil function and may constitute an important immunological regulatory mechanism. This effect should be considered when TNF is applied clinically.

Animals↗

Antigen-dependent heterogeneity of human migration inhibitory factor.

Human migration inhibitory factor (MIF) produced by peripheral blood mononuclear cells stimulated with purified protein derivative, tetanus toxoid, streptokinase-streptodornase, or Candida albicans antigen was analyzed by gel filtration and isoelectrofocusing. In all cases, supernatants harvested after a 24-hr exposure of the mononuclear cells to the antigen yielded only one MIF species with an isoelectric point of 5. In contrast, isoelectrofocusing of supernatants obtained from cells exposed to the antigen for an additional 24 hr demonstrated that different antigens induce the elaboration of different MIF species. Streptokinase-streptodornase and tetanus toxoid induced the production of one MIF species with an isoelectric point of 5 (pH 5-MIF). Stimulation of cells with Candida antigen elaborated a MIF species with an isoelectric point of 3 (pH 3-MIF). In contrast, stimulation of cells with purified protein derivative induced the production of both pH 3-MIF and pH 5-MIF.

Antigens↗

Generation of human hybridomas producing migration inhibitory factor (MIF) and of murine hybridomas secreting monoclonal antibodies to human MIF.

Human T-cell hybridomas were established by hybridization of concanavalin A (Con A)-stimulated human peripheral blood T lymphocytes with cells from a 6-thioguanine-resistant, aminopterin-sensitive mutant line designated CEM-WH4, derived from the continuously growing human T cell line, CEM. High levels of MIF activity were demonstrated in the supernatants of two hybridoma lines, T-CEMA and T-CEMB but not of CEM-WH4 when stimulated with phorbol myristate acetate and phytohemagglutinin. In comparison, MIF derived from Con A-stimulated peripheral blood mononuclear cells showed 100 times less activity. Upon isoelectrofocusing, MIF activity of T-CEMB was found exclusively between pH 4.6 and 5.3 whereas MIF derived from T-CEMA showed heterogeneity with a major peak of MIF recovered at pH 4.6-5.3 and a minor peak at pH 2.4-3.3. These molecules, however, were all found to have an apparent MW of 68,000 and were resistant to trypsin. Most of these characteristics are in accordance with second day pH 3- and pH 5-MIF derived from peripheral blood mononuclear cells. When spleen cells from BALB/c mice immunized with T-CEMB-MIF were used to fuse with NS-1 mouse myeloma cells, nine hybridomas secreting antibodies to human MIF were obtained. Clone D112 which demonstrated the highest MIF-neutralizing activity was found to neutralize MIF derived from T-CEMA, peripheral blood mononuclear cells, and a T cell line, Mo.

Animals↗

Glycolipid receptor for human migration inhibitory factor: fucose and sialic acid are important for the human monocyte response to migration inhibitory factor.

The role of carbohydrate in the interaction of human migration inhibitory factor (MIF) with human peripheral blood monocytes was investigated by studying the effects of different exoglycosidases on the cellular response to MIF. When monocytes were pretreated with neuraminidase, an exoglycosidase specific for sialic acid, they became unresponsive to MIF. Other glycosidases, such as beta-galactosidase and alpha-mannosidase, were inactive in this respect. The effect of neuraminidase was reversible since the response to MIF was restored to normal levels after 24 hr. In parallel studies, a glycolipid-enriched extract from U937 cells, a human macrophage-like cell line, known to enhance the monocyte response to MIF, lost this activity when treated with neuraminidase and alpha-L-fucosidase, but not with beta-galactosidase. This suggests the importance of terminal sialic acid and fucose residues for the interaction between monocyte membrane glycolipids and MIF.

Cell Line↗

Macrophage glycolipid receptors for human migration inhibitory factor (MIF): differentiated HL-60 cells exhibit MIF responsiveness and express surface glycolipids which both bind MIF and convert nonresponsive cells to responsiveness.

The human promyelocytic leukemia line HL-60 when treated with a phorbol diester (TPA) differentiates into cells (HL60-TPA) that respond to human migration inhibitory factor (MIF). Unresponsive HL-60 cells became responsive to MIF when preincubated with a glycolipid-enriched preparation extracted from HL60-TPA cells, human monocytes, human macrophage-like (U937) cell line, or with the purified glycolipid receptor for MIF from guinea pig peritoneal macrophages. Human blood monocytes exhibited an increased response to MIF when preincubated with glycolipids from HL60-TPA and U937 cells but not from HL-60 cells. Finally, glycolipids from HL60-TPA cells but not from HL-60 cells were able to reversibly bind MIF when covalently coupled to agarose. These studies suggest that TPA induces the differentiation of HL-60 cells into MIF-responsive cells through the expression of a glycolipid receptor for MIF.

Cell Differentiation↗