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T Espevik

Publications and source records attributed to T Espevik.

At least 109 records · Page 6Linked to original sources

Expression of receptors for tumor necrosis factor in human placenta at term.

The biological effects of tumor necrosis factor (TNF) are mediated through its interaction with high affinity receptors on target cells. Secretion of soluble cytokine receptors has been suggested as a mechanism of regulating cytokine activity in vivo. In a previous study we detected soluble TNF receptors (TNFRs) in amniotic fluid and urine samples from pregnant women, suggesting that secretion of soluble TNFRs may provide a mechanism for protection of the fetus against TNF action during pregnancy. In the present study, TNFR containing cells in cryostat sections from normal placentas at term were evaluated by monoclonal antibodies against the 55 kD--and the 75 kD TNFR in an indirect immunofluorescence technique. The 55 kD TNFR was expressed by the villous syncytiotrophoblasts, by vascular endothelial cells, by some decidual cells and by occasional cells in the placental stroma. Staining for the 75 kD TNFR was confined to the vascular endothelial cells, a relatively small number of stromal cells and decidual cells, whereas the villous syncytiotrophoblasts were negative. The abundant expression of TNFRs in placental tissue suggests: 1. That a considerable number of the placental cells are receptive to the regulatory activities of TNF; 2. That placental cells may be the cellular origin of soluble TNFRs secreted during pregnancy.

Antibodies, Monoclonal↗

Effects of IL-7 and IL-2 on highly enriched CD56+ natural killer cells. A comparative study.

IL-7 has been shown to induce low levels of lymphokine-activated killer cell (LAK) activity in bulk PBMC populations. We report here that immunomagnetically purified CD56+ cells from peripheral blood generated high LAK activity in response to IL-7. The LAK activity induced by IL-7 was comparable to, or slightly lower than, the LAK activity induced by IL-2. When analyzing cells from the same donor, no detectable LAK-generating effect of IL-7 was registered in the PBMC population, in contrast to a substantial effect in the CD56+ population. IL-2 induced 8- to 15-fold higher proliferative activity in CD56+ cells, relative to IL-7. At suboptimal concentrations of IL-2, IL-7 had a synergistic effect on the proliferation. IL-2-neutralizing antibodies did not abrogate the IL-7-induced proliferation or LAK generation. Both IL-7 and IL-2 induced comparable levels of 75-kDa TNFR expression, whereas IL-2R alpha expression was higher in IL-7-stimulated CD56+ cells. Low levels of TNF were produced in response to IL-7 at day 5, as opposed to a 50-fold higher TNF production in response to IL-2. No IL-2 or IL-6 production was detected. Our data indicate that IL-7 has profound and direct effects on CD56+ cells.

Antigens, CD↗

Development of immunoassays for the detection of soluble tumour necrosis factor receptors.

Immunoassays were established for the detection of the 55 kDa and 75 kDa tumour necrosis factor receptor (TNFR) fragments present in urine. The immunoassays were based on pairs of monoclonal TNFR antibodies directed against different epitopes of the 55 kDa and 75 kDa TNFRs. The immunoassays were judged to be specific for unoccupied TNFR since the signals were inhibited by adding recombinant human or murine TNF-alpha, and to a lesser extent by rTNF-beta (LT). Other cytokines such as IL-1 beta, IL-2 or rIFN-gamma did not affect the signal. In a preliminary screening it was found that urines from febrile patients contained higher amounts of 55 kDa and 75 kDa TNFR fragments than did urine from non-febrile individuals. The immunoassays could be used to monitor the purification of the two types of TNFR from the same febrile urine. Furthermore, the sensitivity and the speed of the assay could be increased by the use of magnetic beads as a solid support in the assay.

Fever↗

Involvement of the 55- and 75-kDa tumor necrosis factor receptors in the generation of lymphokine-activated killer cell activity and proliferation of natural killer cells.

In this study we investigated the expression of the 55 kDa (p55) and the 75 kDa (p75) TNF receptors in CD56+ NK cells and their role in NK and lymphokine-activated killer cells cell functions. By using mAb against the p55 and p75 TNF-R, NK cells were found to express both p55 and p75 upon activation, and both receptors were involved in the generation of lymphokine-activated killer cells activity. Proliferative activity of IL-2 stimulated NK cells was inhibited by anti-TNF-alpha mAb, indicating that endogenously produced TNF-alpha is important for optimal proliferation of NK cells. Furthermore, addition of rTNF-alpha increased the IL-2-induced proliferation of NK cells. mAb to p55 and p75 inhibited the IL-2-induced proliferation indicating that both TNF-R are involved in mediating this effect.

Antibodies, Monoclonal↗

Immunomagnetic isolation of NK and LAK cells.

The present study describes the immunomagnetic isolation of human natural killer (NK) and lymphokine activated killer (LAK) cells. Antibodies against CD56 and sheep anti-mouse IgG-coated magnetic monodisperse particles (Dynabeads M-450) were used for the positive isolation of CD56+ cells from unstimulated mononuclear cells (PBMC). A highly enriched population of CD56+ cells (less than or equal to 3% contaminating cells) was obtained with this method. The cellular yield of CD56+ cells was high (5.3% of the unseparated PBMC). The CD56+ cells remained unactivated after separation and preserved their functional characteristics, as measured by cytotoxic activity against the NK sensitive K562 cells. Incubating the CD56+ cells with IL-2 resulted in high LAK activity, as measured by cytotoxic activity against Daudi cells. Large numbers of functionally active CD56+ cells were obtained from IL-2 stimulated lymphocytes using anti-CD56 coated Dynabeads 450. A further enrichment of effector cells with LAK activity was accomplished by depleting the CD56+ cells for T-cells by anti-CD3 coated Dynabeads M450. The immunomagnetic isolation technique described was easy to perform, did not require expensive equipment and yielded NK and LAK cells of satisfactory purity.

Antigens, Differentiation, T-Lymphocyte↗

Independent regulation of 55-kDa and 75-kDa tumor necrosis factor receptors during activation of human peripheral blood B lymphocytes.

We have studied the expression of two different tumor necrosis factor receptors (TNFR; 55 kDa and 75 kDa) on resting and activated human peripheral blood B lymphocytes using specific monoclonal antibodies (mAb). Flow cytometric analysis revealed that most resting B cells expressed small amounts of the 75-kDa TNFR, and that the 75-kDa TNFR was markedly up-regulated upon stimulation with anti-mu or Staphylococcus aureus Cowan strain I (SAC). In contrast, the expression of the 55-kDa TNFR was low on resting as well as on activated cells. B cell activation was accompanied by an increased binding of biotinylated TNF-alpha, and this binding could be blocked by preincubation by utr-1 (anti-75-kDa TNRF), but not the htr (anti-55-kDa TNFR) antibodies. Notably, a number of cytokines tested (interleukin 1 to 8, interferon-gamma, TNF-alpha and -beta) did not influence the expression of either the 75-kDa or the 55-kDa TNFR when given to resting B cells. Moreover, phorbol 12-myristate 13-acetate led to an early, marked down-regulation of the 75-kDa TNFR expression, followed by a later modest increase after greater than 24 h. In contrast to other cell systems where htr mAb have been found either to mimic or to inhibit TNF action, htr mAb had insignificant effects in assays for restimulation of preactivated B cells. However, utr-1 markedly inhibited the TNF-beta but only partly inhibited the TNF-alpha-induced proliferation. Taken together, our data suggest that changes in 75-kDa protein expression is responsible for the increased TNFR expression on activated vs. resting peripheral blood B cells and that this protein also may play an important functional role.

Antibodies, Monoclonal↗

Induction of cytokine production from human monocytes stimulated with alginate.

Alginates are polysaccharides with gel-forming properties composed of 1,4-linked beta-D-mannuronic acid (M), alpha-L-guluronic acid (G), and alternating (MG) blocks. Alginate can be used as a matrix for implanted cells in vivo. In this study, we have examined the ability of alginates and their components to stimulate human monocytes to produce tumor necrosis factor-alpha, interleukin-6, and interleukin-1. Alginates stimulated the monocytes to produce high levels of all three cytokines. Low G alginates were approximately 10 times more potent in inducing cytokine production compared with high G alginates. The M-blocks and the MG-blocks, but not the G-blocks, stimulated the cytokine production. The results demonstrate that the mannuronic acid residues are the active cytokine inducers in alginates.

Alginates↗

Current understanding of the pathogenesis of gram-negative shock.

There is increasing evidence that gram-negative bacteria via endotoxin induce the excessive production of inflammatory cytokines, which are active in the pathogenesis of septic shock, multiorgan failure, and ARDS. In animals the injection of TNF induces pathophysiologic and histopathologic changes that are characteristic of the septic shock syndrome, and in patients there is a close association between levels of TNF and the severity of the shock. IL-1 and IFN-gamma markedly potentiate the toxic TNF effects in animal experiments. IL-6 is frequently released into serum during septic shock, and its levels are associated with the severity of the shock. The cytokine is probably not directly involved in the pathogenesis of the shock but may contribute to fever, neutrophilia, and production of acute-phase proteins. Endothelial cells and neutrophils are important target cells for the cytokines in mediation of septic shock and late complications. Underlying conditions like cancer, trauma, burns, and other kinds of stress may alter the induction mechanism of the cytokines and the susceptibility of the organism. The pathogenetic significance of TNF and other cytokines in different categories of septic shock remains to be clarified.

Animals↗

A rapid and sensitive immunoassay for tumor necrosis factor using magnetic monodisperse polymer particles.

A sensitive and rapid immunoassay for the detection of tumor necrosis factor (TNF) has been developed. Magnetic monodisperse polymer particles (M-280 Dynabeads) used as solid phase material, were coated with a neutralizing mouse monoclonal antibody to TNF. The coated Dynabeads were shown to have a more rapid binding capacity for recombinant (r) TNF as compared to standard immunowells coated with antibodies to TNF. The amount of TNF bound to the Dynabeads was quantified using either a polyclonal antibody to TNF or a mouse monoclonal antibody to TNF. The antibodies used for detection were either labelled with 125I or peroxidase. The linear assay range for the TNF standard curve was form 62 to 4000 pg/ml, and the assay time was less than 60 min. The sensitivity could be increased 5-8-fold by increasing the sample volume from 0.1 to 2 ml.

Antibodies, Monoclonal↗

Binding and regulation of cellular functions by monoclonal antibodies against human tumor necrosis factor receptors.

The present study was undertaken to further characterize the interaction of monoclonal antibodies (mAbs) against tumor necrosis factor (TNF) receptors with different targets, and to assess their ability to influence TNF effects on U937 and human endothelial cell (HEC) functions. Actions of recombinant TNF-alpha on U937 and HEC were effectively inhibited by Htr-5 and Utr-1, and to a greater extent by a combination of both mAbs. These observations indicate that TNF interaction with antigenically different components of membrane receptors (p55 and p75) represents a crucial step in transduction of signals for TNF toxicity against U937 and TNF activation of HEC functions.

Antibodies, Monoclonal↗

Characterization of binding and biological effects of monoclonal antibodies against a human tumor necrosis factor receptor.

Three different antibodies against a human TNF receptor (htr-1, htr-5, and htr-9) have been examined for their binding pattern to U937 cells and ability to mimic TNF-alpha activity in U937 cells, Fs4 fibroblasts, and human endothelial cells. Flow cytometric analysis revealed that htr-5 and htr-9 bound specifically to a TNF receptor on U937 cells that could be blocked by pretreatment with rTNF-alpha. Pretreatment of U937 cells with rTNF-beta blocked the binding of htr-9, but to a lesser extent htr-5 binding. Pretreatment with htr-5 inhibited the binding of htr-9 to U937 cells while pretreatment with htr-9 did not inhibit htr-5 binding. These results indicate that htr-5 and htr-9 recognize distinct but overlapping epitopes of a human TNF receptor on U937 cells and that htr-5 may be close to a TNF-alpha-specific domain of the binding site. Pretreatment with htr-5 or htr-9 only minimally reduced binding of BrTNF-alpha to U937 cells; however, these antibodies were much more effective in inhibiting BrTNF-alpha binding to HL-60 cells. Furthermore, it was found that htr-1 and htr-9, but not htr-5, had TNF-alpha activity on U937 cells, Fs4 fibroblasts, and endothelial cells and that the TNF-alpha activity induced by htr-9 was completely inhibited by htr-5. However, the cytotoxic activity of TNF-alpha was only partially inhibited by htr-5 on U937 cells while htr-5 had no effect on TNF-alpha activity on Fs4 cells. The data suggest that a common epitope is involved in inducing TNF-alpha activity in three different cell systems.

Antibodies, Monoclonal↗

Regulation of interleukin-2 and interleukin-6 production from T-cells: involvement of interleukin-1 beta and transforming growth factor-beta.

The effect of recombinant (r) interleukin-1 beta (rIL-1 beta) and transforming growth factor-beta (TGF-beta) on the production of interleukin-2 (IL-2) and interleukin-6 (IL-6) from an antigen-specific (LBRM-33-1A5) and an antigen-nonspecific (EL-4-NOB-1) T-cell line was investigated. rIL-1 beta induced the production of IL-2 and IL-6 from EL-4-NOB-1 cells in a dose-related manner. The LBRM-33-1A5 cells required phytohemagglutinin (PHA) in addition to rIL-1 beta in order to produce IL-2 and IL-6. IL-2 production was found to precede IL-6 production in both cell lines. No IL-2 or IL-6 production was observed by adding r murine tumor necrosis factor-alpha or r murine interferon gamma to the cells. The presence of 1 ng/ml TGF-beta reduced IL-2 and IL-6 production from both T-cell lines by more than 80%. The inhibition of IL-2 and IL-6 production was still evident by a concentration as low as 10 pg/ml of TGF-beta. rIL-1 beta and PHA also stimulated murine thymocytes to produce IL-6 which was inhibited up to 85% in the presence of 1 ng/ml TGF-beta. Taken together these results suggest that TGF-beta may suppress immune responses by inhibiting the endogenous production of IL-2 and IL-6.

Animals↗

Local production of tumor necrosis factor alpha, interleukin 1, and interleukin 6 in meningococcal meningitis. Relation to the inflammatory response.

We examined the cerebrospinal fluid (CF) taken on admission from 60 patients with infections caused by Neisseria meningitidis for presence of TNF-alpha, IL-1, and IL-6. TNF-alpha was detected in CF in 55 and 19% (p = 0.03), IL-1 in 50 and 15% (p = 0.05), and IL-6 in 98 and 100% of patients with meningitis and septic shock/bacteremia, respectively. The median IL-6 concentration in CF in patients with meningitis was 154 ng/ml, and in patients with septic shock/bacteremia it was 42 ng/ml (p = 0.001). The level of LPS in CF correlated with the level of TNF-alpha (r = 0.91, p less than 0.001), but not with the level of IL-1 and IL-6. CF levels of TNF-alpha, IL-1, and IL-6 correlated with each other (r = 0.34-0.54, p less than 0.01), with the protein concentration (r = 0.34-0.62, p less than 0.01) and inversely with the CF/blood glucose ratio (r = -0.34 to -0.67, p less than 0.01). Only the Il-6 level correlated with the leukocyte count (r = 0.37, p less than 0.01). In rabbits TNF-alpha, IL-1, and IL-6 activities sequentially appeared in CF within 3 h of injection of meningococcal LPS or viable meningococci, whereas the main infiltration of granulocytes started after 4 h. TNF-alpha was detected in serum at concentrations less than 1/100 of those in CF after administration of LPS into the subarachnoid space, and conversely, TNF-alpha was detected in CF at concentrations 1/100 of those in serum after intravenous injection of LPS. The results demonstrate that TNF-alpha, IL-1, and IL-6 are sequentially produced in the initial phase of the local inflammatory response caused by meningococci, and that the subarachnoid space and systemic circulation are separate compartments with respect to production of TNF-alpha, IL-1, and IL-6.

Adolescent↗

Interleukin 4 induces selective production of interleukin 6 from normal human B lymphocytes.

In this paper we have shown that extensively purified human B lymphocytes respond to IL-4 treatment with a marked production of IL-6. Addition of anti-mu potentiated the effect of IL-4 on IL-6 production. Other cytokines tested like TNF-alpha and-beta, IFN-gamma, IL-1, IL-2, and IL-5 did not induce IL-6 secretion when given to resting B cells. Although B cells generally also produced TNF-alpha and TNF-beta upon stimulation, IL-4 did not induce TNF secretion and seemingly had a specific effect on IL-6 production.

B-Lymphocytes↗

The complex pattern of cytokines in serum from patients with meningococcal septic shock. Association between interleukin 6, interleukin 1, and fatal outcome.

Serum samples from patients with meningococcal disease were examined for the presence of IL-6, TNF-alpha, and LPS. Median serum concentration of IL-6 was 1,000 times higher in patients with septic shock (189 ng/ml) than in patients with bacteriaemia, meningitis, or combined septic shock and meningitis. 11 of 21 patients with serum levels greater than 3.0 ng/ml died, whereas all 58 patients with serum levels at less than or equal to 3.0 ng/ml, survived. All four patients with serum IL-6 levels greater than 750 ng/ml, died. IL-1 was detected in serum from three patients who also had high serum levels of IL-6, TNF-alpha, and LPS, and rapidly fatal courses. IL-6 appeared to be released into serum later than TNF-alpha, and was detected in serum for up to 36 h. The half-life of IL-6 and TNF-alpha was calculated to be 103 +/- 27 min and 70 +/- 11 min, respectively. These data indicate that a complex pattern of cytokines exists in serum from patients with meningococcal septic shock, and that the release of IL-6 and IL-1, in addition to TNF-alpha, is associated with fatal outcome.

Humans↗

Cytokine regulation of interleukin 6 production by human endothelial cells.

The influence of recombinant (r) human tumor necrosis factor alpha (rTNF-alpha), r human interleukin 1 beta (rIL-1 beta), and r human interferon gamma (rIFN-gamma) on the production of interleukin 6 (IL-6) by human endothelial cells (HEC) was investigated. The addition of 1-100 U/ml of either rTNF-alpha or rIL-1 beta to cultures of HEC monolayers caused a dose-related increase in IL-6 production as detected after 24 hr of incubation. In contrast to rIL-1 beta and rTNF-alpha, the use of up to 1000 U/ml of rIFN-gamma caused only a moderate increase in IL-6 production. However, significantly greater quantities of IL-6 were produced by HEC monolayers subjected to 1000 U/ml of rIFN-gamma in combination with 1-100 U/ml of rTNF-alpha. Furthermore, the addition of graded concentrations of human transforming growth factor beta (TGF-beta) to cultures resulted in a dose-related inhibition of rIL-1 beta- and rTNF-alpha-induced IL-6 production by HEC. The results demonstrate that rIL-1 beta and rTNF-alpha share the ability to stimulate HEC for production of IL-6 and indicate that TGF-beta may act as an immunosuppressive agent, at least partially, through its ability to inhibit the action of TNF-alpha and IL-1 on endothelial cells.

Biological Factors↗