Search PubMed⌕ Search

Biomedical subjects

J R Gamble

Publications and source records attributed to J R Gamble.

At least 73 records · Page 4Linked to original sources

Regulation of human monocyte adherence by granulocyte-macrophage colony-stimulating factor.

Recombinant human granulocyte-macrophage colony-stimulating factor (GM-CSF) was found to increase the adherence of purified peripheral blood monocytes to plastic surfaces and to monolayers of human umbilical vein endothelial cells. With plastic surfaces as a model 9-hr culture with GM-CSF was necessary for enhancement, and maximum levels were obtained after 24-hr stimulation. GM-CSF-stimulated adherence must require new RNA and protein synthesis because actinomycin D and cycloheximide abolished existing adherence and prevented further monocyte attachment. Interestingly, shorter incubations (1-2 hr) with cycloheximide increased adherence, suggesting a labile inhibitor. Formaldehyde fixation of monocytes but not of human vein endothelial cells abolished adherence, indicating the need for actively metabolizing monocytes. Thus, a hemopoietic growth factor, responsible for the proliferation and differentiation of monocytes, can also alter their adhesive characteristics. These observations may have important implications in pathological situations and in the in vivo use of GM-CSF.

Biological Factors↗

Endothelial adhesiveness for blood neutrophils is inhibited by transforming growth factor-beta.

Adhesion of blood cells to endothelial cells is an essential component of all inflammatory responses. The capacity of the endothelium to support adhesion of neutrophils is increased by cytokines such as tumor necrosis factor-alpha, interleukin-1, and endotoxin. Another cytokine, transforming growth factor-beta (TGF-beta), was a strong inhibitor of basalneutrophil adhesion and also decreased the adhesive response of endothelial cells to tumor necrosis factor-alpha (TNF-alpha). The ability of cells to respond to TGF-beta was related to the duration of culture of endothelial cells after explantation from umbilical veins. TGF-beta is likely to serve an anti-inflammatory role at sites of blood vessel injury undergoing active endothelial regeneration.

Cell Adhesion↗

A new assay for the measurement of the attachment of neutrophils and other cell types to endothelial cells.

A microassay for the detection of cellular adherence to monolayers of cultured human vascular endothelium has been developed that utilises the uptake by cells of the vital stain, Rose Bengal. Changes in the optical density as a result of increased attachment give an accurate measurement of the extent of cellular adherence. The assay utilises small numbers of endothelial cells to obtain confluent monolayers, is rapid (results available within 1.5 h from commencement), allows large numbers of investigations to be performed at the one time, eliminates the requirement for 51chromium or 111indium-labelled cells, and allows a wide variety of cell types including neutrophils, monocytes, eosinophils, lymphocytes and melanoma cells to be studied. Optimal concentrations of cells, fetal calf serum, of incubation and washing media, methods of removal of unattached cells and morphological assessment of the human umbilical vein endothelial cells are detailed. We report here the methodology of this new adherence assay with special reference to neutrophils using a range of stimulators that may regulate their attachment to endothelium.

Cell Adhesion↗

Nuclear proteins interacting with the promoter region of the human granulocyte/macrophage colony-stimulating factor gene.

The gene for human granulocyte/macrophage colony-stimulating factor (GM-CSF) is expressed in a tissue-specific as well as an activation-dependent manner. The interaction of nuclear proteins with the promoter region of the GM-CSF gene that is likely to be responsible for this pattern of GM-CSF expression was investigated. We show that nuclear proteins interact with DNA fragments from the GM-CSF promoter in a cell-specific manner. A region spanning two cytokine-specific sequences, cytokine 1 (CK-1, 5' GAGATTCCAC 3') and cytokine 2 (CK-2, 5' TCAGGTA 3') bound two nuclear proteins [nuclear factor (NF)-GMa and NF-GMb] from GM-CSF-expressing cells in gel retardation assays. NF-GMb was inducible with phorbol 12-myristate 13-acetate and accompanied induction of GM-CSF message. NF-GMb was absent in cell lines not producing GM-CSF, some of which had other distinct binding proteins. NF-GMa and NF-GMb eluted from a heparin-Sepharose column at 0.3 and 0.6 M KCl, respectively. We hypothesize that the sequences CK-1 and CK-2 bind specific proteins and regulate GM-CSF transcription.

Base Sequence↗

Nedocromil sodium and cromolyn (sodium cromoglycate) selectively inhibit antibody-dependent granulocyte-mediated cytotoxicity.

Nedocromil sodium and cromolyn (sodium cromoglycate) are prophylactic agents in asthma which were initially found to be inhibitors of mast cell activation. Recent evidence has suggested that their effects on granulocyte-mediated reactions may contribute to their therapeutic effects. Recombinant human granulocyte-macrophage colony-stimulating factor (GM-CSF) and tumor necrosis factor (TNF) enhance the activity of granulocytes in antibody-dependent cell-mediated cytotoxicity (ADCC). Preincubation of purified neutrophils or eosinophils with nedocromil sodium or cromolyn partially inhibited their ability to mediate ADCC when stimulated by GM-CSF or TNF. Preincubation with nedocromil sodium did not alter the ability of neutrophils to produce superoxide or release lysozyme in response to soluble or phagocytic stimuli, and GM-CSF-enhanced superoxide production triggered by chemotactic peptide was not altered in such drug-treated neutrophils. After nedocromil sodium treatment, neutrophils showed no consistent changes in TNF-stimulated adherence to either plastic culture wells or umbilical vein endothelium. These findings demonstrate that nedocromil sodium and cromolyn directly and selectively affect the function of granulocytes in vitro. While drug-treated granulocytes were impaired in immune-directed cytotoxicity stimulated by GM-CSF or TNF, activation of other granulocyte functions by the same stimuli was intact.

Antibody-Dependent Cell Cytotoxicity↗

The effects of recombinant tumour necrosis factor (cachectin) on metabolism in isolated rat adipocyte, hepatocyte and muscle preparations.

Tumour necrosis factor (TNF) did not stimulate lipolysis in isolated rat adipocytes, though preincubation with TNF increased adrenaline-stimulated fatty acid release. Glycogenolysis, gluconeogenesis and ketogenesis in isolated rat hepatocytes were not influenced by TNF in short-term (30-60 min) incubations. TNF stimulated 14CO2 production from [U-14C]glucose in rat hemidiaphragm preparations, but lactate production and alanine release were not significantly altered. It is concluded that TNF does not regulate short-term metabolism in adipocytes, hepatocytes and muscle preparations in the manner of a catabolic hormone.

Adipose Tissue↗

Stimulation of proliferation, differentiation, and function of human cells by primate interleukin 3.

Cloned gibbon interleukin 3 (gIL-3) was found to stimulate the proliferation and differentiation of human bone marrow cells to produce day-14 granulocyte, macrophage, granulocyte-macrophage, and eosinophil colonies in semisolid agar. In the presence of normal human plasma, gIL-3 stimulated megakaryocytes. In methylcellulose cultures, it stimulated erythroid colonies in the presence, but not in the absence, of erythropoietin. When mature human leukocytes were used, gIL-3 stimulated the function of purified mature eosinophils as measured by the capacity to kill antibody-coated target cells, to produce superoxide anions, and to phagocytize opsonized yeast particles in a manner similar to recombinant human granulocyte-macrophage colony-stimulating factor. In contrast, gIL-3 did not significantly stimulate any of the neutrophil functions tested, whereas human recombinant granulocyte-macrophage colony-stimulating factor was active in these assays. Among cytokines that are active on human hematopoietic cells, gIL-3 thus has a distinct set of functions and may predict the range of actions of the human molecule.

Animals↗

Stimulation of neutrophils by tumor necrosis factor.

Human recombinant tumor necrosis factor (TNF) was shown to be a weak direct stimulus of the neutrophil respiratory burst and degranulation. The stimulation, as measured by iodination, H2O2 production, and lysozyme release, was considerably increased by the presence of unopsonized zymosan in the reaction mixture, an effect which was associated with the increased ingestion of the zymosan. TNF does not act as an opsonin but, rather, reacts with the neutrophil to increase its phagocytic activity. TNF-dependent phagocytosis, as measured indirectly by iodination, is inhibited by monoclonal antibodies (Mab) 60.1 and 60.3, which recognize different epitopes on the C3bi receptor/adherence-promoting surface glycoprotein of neutrophils. Other neutrophil stimulants, namely N-formyl-methionyl-leucyl-phenylalanine, the Ca2+ ionophore A23187, and phorbol myristic acetate, also increase iodination in the presence of zymosan; as with TNF, the effect of these stimulants is inhibited by Mab 60.1 and 60.3, whereas, in contrast to that of TNF, their stimulation of iodination is unaffected by an Mab directed against TNF. TNF may be a natural stimulant of neutrophils which promotes adherence to endothelial cells and to particles, leading to increased phagocytosis, respiratory burst activity, and degranulation.

Cytoplasmic Granules↗

Recombinant human granulocyte-macrophage colony-stimulating factor stimulates in vitro mature human neutrophil and eosinophil function, surface receptor expression, and survival.

A purified recombinant human granulocyte-macrophage colony stimulating factor (rH GM-CSF) was a powerful stimulator of mature human eosinophils and neutrophils. The purified rH GM-CSF enhanced the cytotoxic activity of neutrophils and eosinophils against antibody-coated targets, stimulated phagocytosis of serum-opsonized yeast by both cell types in a dose-dependent manner, and stimulated neutrophil-mediated iodination in the presence of zymosan. In addition, rH GM-CSF enhanced N-formylmethionylleucylphenylalanine(FMLP)-stimulated degranulation of Cytochalasin B pretreated neutrophils and FMLP-stimulated superoxide production. In contrast, rH GM-CSF did not promote adherence of granulocytes to endothelial cells or plastic surfaces. rH GM-CSF selectively enhanced the surface expression of granulocyte functional antigens 1 and 2, and the Mo1 antigen. rH GM-CSF induced morphological changes and enhanced the survival of both neutrophils and eosinophils by 6 and 9 h, respectively. These experiments show that granulocyte-macrophage colony stimulating factor can selectively stimulate mature granulocyte function.

Antibody-Dependent Cell Cytotoxicity↗

Stimulation of the adherence of neutrophils to umbilical vein endothelium by human recombinant tumor necrosis factor.

Recombinant human tumor necrosis factor (TNF) was found to enhance the adherence of human peripheral blood neutrophils to human umbilical vein endothelial (HUVE) cell monolayers in vitro. The enhancement was due to the effects both on neutrophils and HUVE cells. The effect on neutrophils was maximally induced within 5 min and did not require protein or RNA synthesis. By contrast, maximal effects on HUVE cells took 4 hr to develop and required de novo protein and RNA synthesis; however, exposure of HUVE cells to TNF for as little as 5 min was sufficient to initiate changes leading to maximal adherence of neutrophils at 4 hr. Both the effect on neutrophils and that on HUVE cells were blocked by a monoclonal antibody against TNF. TNF also rapidly induced an increased surface expression of neutrophil antigens recognized by monoclonal antibodies directed against epitopes of a glycoprotein required for optimum adherence and for complement component C3bi receptor (CR3) function. Thus, the mechanism of action of TNF may involve the regulation of expression of cell surface molecules. Our observations show that TNF induces a process central to the development of all inflammatory reactions and that both blood neutrophils and endothelial cells are targets of TNF action. The regulation of inflammatory reactions by TNF or antagonists of TNF has wide-ranging clinical implications.

Antibodies, Monoclonal↗

The induction of immunologic tolerance in newborn mice by spleen cells differing in H-2K or H-2D, but not "I-J," genotype.

Newborn mice of various strains belonging to the B10A series of recombinants received injections of spleen cells from adult donors to induce immunologic tolerance to antigens of the major histocompatibility complex (MHC). Donor-host combinations were chosen so as to provide differences at H-2K or H-2D, together with various portions of the Ia region. The experiments were predicated on the hypothesis that differences at "I-J" might be required for activation of suppressor cells--thus for the induction of the tolerant state. Tolerance was assessed both by skin grafting and by enumeration of antiallogeneic cytotoxic T lymphocyte precursors (CTL-P) through in vitro limiting-dilution cloning analysis. Host mice that differed from the donor strain only at H-2D, or at H-2K and H-2I-A, were rendered tolerant just as readily as those that differed at "I-J" plus H-2D or "I-J" plus H-2K and H-2I-A. The hypothesis that "I-J" differences are essential for tolerance induction was thus clearly negated.

Animals↗

Delayed hypersensitivity induced by anti-T-cell-line antisera is enhanced by pertussigen and not restricted by histocompatibility genes.

Anti-T-cell-line antisera were raised by repeatedly injecting mice with syngeneic, antigen-specific, delayed hypersensitivity (DH) inducing cells grown as continuous T-cell lines in vitro. Many of these antisera could induce antigen-specific DH responses which, in some cases, were rather slight. For example, the DH reaction to azobenzenearsonate induced in A/J mice by an A/J antiserum produced against the syngeneic azobenzenearsonate-specific cell line AA3 was only a weak response. Administration of pertussigen, a protein purified from Bordetella pertussis, markedly enhanced this response and prolonged its duration. Histologically the reaction showed the classical mononuclear infiltration of DH. It could be transferred to naive mice by lymph node cells that were anti-Thy-1.2 sensitive, and the transfer was restricted by genes of the major histocompatibility complex (MHC). The induction of DH by antiserum, however, was not influenced by MHC or non-MHC gene products.

Animals↗

Ly and Ia antigen phenotypes of T cells involved in delayed-type hypersensitivity and in suppression.

The Ly and Ia phenotypes of T lymphocytes involved in different functions were characterized by the use of specific antisera. T cells responsible for delayed-type hypersensitivity (DTH) and for helper functions were found to be Ly-1+,2- in contrast to cytotoxic T cells and T cells responsible for suppression of antibody responses which were Ly-1-,2+. Unlike some primed helper cells, T cells involved in DTH were Ia-. Suppressor cells in the system were Ia+.

Animals↗