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Biomedical subjects

J R Frey

Publications and source records attributed to J R Frey.

At least 37 records · Page 2Linked to original sources

Efficient purification of recombinant human tumor necrosis factor beta from Escherichia coli yields biologically active protein with a trimeric structure that binds to both tumor necrosis factor receptors.

A fast and efficient method for medium scale purification of recombinant human tumor necrosis factor beta (rTNF-beta) from Escherichia coli cells is described. The purified rTNF-beta displayed biological activity similar to rTNF-alpha in a WEHI 164 cell cytotoxicity assay. The titration curve of rTNF-beta and elution profiles of rTNF-beta in gel filtration experiments were different from those of rTNF-alpha. However, light scattering and ultra-centrifugation studies showed that both cytokines have trimeric structures in solution at 0.5 mg/ml, with minor differences in the distribution of nontrimeric species. rTNF-beta bound to purified 55- and 75-kDa TNF receptors with high affinity. The binding of rTNF-beta to either receptor was analyzed on Scatchard plots and compared with that of rTNF-alpha.

Binding, Competitive↗

The principal tumor necrosis factor receptor in monocyte cytotoxicity is on the effector cell, not on the target cell.

Several tumor target cell lines, prototypically K562 cells, are resistant to lysis by recombinant tumor necrosis factor (TNF alpha) but are killed by monocytes expressing membrane-associated TNF, suggesting that membrane TNF could account for monocyte-mediated cytotoxicity. Formaldehyde-fixed monocytes or extracted monocyte membrane fragments are cytotoxic to K562 target cells. Treatment of monocytes with interferon-gamma (IFN-gamma) increases cytotoxicity by live and fixed cells or by extracted monocyte membranes. Both TNF and TNF receptors are detectable on monocyte membranes by FACS analysis, and the levels of each are modulated by treatment with IFN-gamma. Cytotoxicity can be inhibited by either anti-TNF or anti-TNF receptor antibodies. Incubation of effector cells with exogenous soluble TNF prior to fixation or membrane preparation increases their cytotoxicity. In contrast, incubation of the target cells with exogenous TNF neither increases nor decreases killing by effector cell membrane fragments or intact effector cells. The data suggest that the TNF receptors on the effector cell, but not on the target cell, play a crucial role in TNF-mediated cytotoxicity.

Cytotoxicity, Immunologic↗

Cell surface tumor necrosis factor (TNF) accounts for monocyte- and lymphocyte-mediated killing of TNF-resistant target cells.

WEHI164 cells are susceptible to cytotoxicity by soluble recombinant or monocyte-derived TNF alpha, as well as to cell-mediated cytotoxicity by monocytes or lymphocytes. In contrast, K562 cells are resistant to lysis by soluble recombinant or natural TNF alpha, but are killed by monocyte or lymphocyte effector cells. Cell-mediated cytotoxicity against both target cell lines is enhanced by treatment of monocyte effector cells with recombinant interferon gamma or lymphocyte effector cells with interleukin-2. However, treatment of monocytes with LPS, or of lymphocytes with PHA, although inducing secretion of soluble TNF alpha in the medium, does not increase cell-mediated cytotoxicity. Anti-TNF alpha neutralizing antibodies partially inhibit monocyte- as well as lymphocyte-mediated cytotoxicity against WEHI164 and K562 cells. Formaldehyde-fixed effector cells are cytotoxic to both target cell lines. Cytotoxicity by fixed effector cells can be inhibited by anti-TNF alpha antibodies. The extent of cell-mediated cytotoxicity induced by treatment of effector cells with stimulators prior to fixation corresponds to the expression of TNF on monocyte membranes, but not to the titers of secreted TNF. The data suggest that membrane-associated TNF alpha may be a mechanism of human monocyte- as well as lymphocyte-mediated cytotoxicity, regardless of whether the target cells are sensitive or insensitive to soluble TNF.

Animals↗

Recombinant interferons or interleukin-2 increase cytotoxicity by human monocytes and NK cells.

Human peripheral blood monocytes and NK cell enriched lymphocytes were purified by counterflow centrifugal elutriation. The cell populations were characterized by surface marker analysis using monoclonal antibodies. A variety of molecules were found to be capable of activating monocytes and NK cells to enhanced tumoricidal activity. Tumoricidal activity was evaluated using a colorimetric microassay. Numbers of tumor cell targets surviving exposure to monocytes or NK cells were calculated by computer analysis of colorimetric data derived by target cell-dependent dye reduction. The results indicated that monocyte effector cells were cytotoxic to the NK sensitive K562 cell line and to the monocyte sensitive TU5 line. Depletion of NK contaminants from the monocyte population by complement mediated cytolysis did not affect the capacity of the monocytes to kill either target. Monocyte mediated cytotoxicity was enhanced by treatment of the monocytes with recombinant IFN-alpha, IFN-beta, or IFN-tau; each in a dose-dependent manner. Simultaneous treatment of monocytes with IFN-alpha and IFN-tau resulted in additive but not synergistic effects. NK cell cytotoxicity was enhanced by treatment with IL-2 or IFN-tau. Enhancement of monocyte and NK cell cytotoxicity by IFN or IL-2 was dependent upon the time in culture of the effector cells, the duration of the effector phase, and the effector to target cell ratio. IFN or IL-2 treatment alone did not reduce target cell viability. The results suggest that monocytes as well as NK cells are capable of providing a natural defence against neoplasia, that monocytes can kill NK targets and NK cells can kill monocyte targets, and that these cytotoxic activities are enhanced by IFN or IL-2.

Cell Line↗

Analysis of ring-shaped nucleoli in serially sectioned human lymphocytes.

Serial section analysis has demonstrated that ring-shaped nucleoli of mature human lymphocytes are spherical structures consisting of a peripheral ribonucleoprotein shell that surrounds one large fibrillar center. The shell exhibits usually one or, less frequently, two openings. The fibrillar center is in contact with the nucleoplasm and perinucleolar condensed chromatin, which frequently appears as a pedicle-like structure. Several chromocenters are associated with the ring-shaped nucleolus.

Cell Nucleolus↗

Helper T-cell-replacing factors and T-cell-growth factors produced by concanavalin A-stimulated and pokeweed mitogen-stimulated mouse spleen cells.

Variables affecting helper factor induction by two T-cell mitogens, concanavalin A (Con A) and pokeweed mitogen (PWM), were examined. It was found that both factors are capable of reconstituting T-cell-dependent antibody response as well as enhancing mitogen-stimulated thymocyte proliferation. Detectable factor production is obtained within 6-12 h of culture; Con A factor production reaches a peak usually around 24 h, while no factor activity is detectable after 72 h of culture period. PWM factor production persists throughout 72 h of culture. Con A factor production can be rescued at culture periods beyond 24 or 48 h by using supraoptimal Con A doses. Con A factor, if incubated at 37 degrees C under cell-free conditions in a serum-free medium, shows a rapid rate of decay; in the presence of cells the decay is considerably reduced.

Animals↗