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Biomedical subjects

R Moqbel

Publications and source records attributed to R Moqbel.

At least 109 records · Page 6Linked to original sources

Effects of nedocromil sodium (Tilade) on the activation of human eosinophils and neutrophils and the release of histamine from mast cells.

The ability of nedocromil sodium, a new anti-inflammatory agent for the treatment of asthma, to inhibit activation of human eosinophils and neutrophils in vitro, has been studied using an adherence reaction (the "rosette" technique) as well as a cytotoxicity assay. We have also investigated the capacity of nedocromil sodium to inhibit IgE-dependent histamine release from human lung mast cells. The drug was a potent inhibitor (IC50 approx 5 x 10(-9)M) of fMLP-induced enhancement of eosinophil and neutrophil complement (C3b) and IgG (Fc) rosettes. There was also a comparable inhibition of enhancement, by fMLP, of eosinophil and neutrophil cytotoxicity (for complement-coated schistosomula of Schistosoma mansoni). Although nedocromil sodium also inhibited histamine release from human lung mast cells in a dose-dependent fashion its activity was relatively weak (IC30 5 x 10(-6)M) compared to its effect on granulocytes. These experiments support the view that the principal mode of action of nedocromil sodium is its capacity to inhibit the activation of inflammatory cells.

Anti-Inflammatory Agents, Non-Steroidal↗

A T-lymphocyte-derived factor that enhances IgG-dependent release of leukotriene B4 (LTB4) from human neutrophils.

We describe a human blood mononuclear cell (MNC)-derived leukotriene release enhancing factor (LREF) which significantly increased IgG-dependent leukotriene B4 (LTB4) generation by neutrophils. MNCs incubated with phytohaemagglutinin (PHA) or anti-CD3 monoclonal antibody and PHA-stimulated ER+ lymphocytes produced a 150-350% increase in LTB4 generation from IgG-stimulated neutrophils. With PHA, maximal activity was observed 48 hr after culture in serum-free medium. LREF was relatively stable when exposed to low pH (pH 2) or heat (56 degrees, 60 min). Following progressive purification by gel filtration (FPLC, Superose 12) and chromatofocusing (FPLC, Mono P) LREF was associated with proteins of molecular weight of 35-40 kD and a pI of 5.1-5.5. Partially purified LREF did not contain detectable amounts of interleukin 2 (IL-2) or interferon-gamma (IFN-gamma). Although high concentrations of recombinant granulocyte-macrophage colony stimulating factor (rGM-CSF) (greater than 2 ng/ml) and recombinant tumour necrosis factor (rTNF) (greater than 100 U/ml) gave a slight (60%) enhancement of LTB4 generation, this was considerably less than that of partially purified LREF (350%). Our results suggest that human lymphocyte-derived LREF may play a role in the amplification of inflammatory reactions involving sensitized lymphocytes, neutrophils and lipid mediators.

Humans↗

Functional evidence for a monoclonal antibody that binds to the human IL-4 receptor.

The complex pleiotropic effects of the T-cell derived lymphokine interleukin-4 (IL-4) are becoming increasingly well documented; however, functional studies have been hampered by the lack of reagents directed against the receptor for this factor. In this report, we present data which suggest that the monoclonal antibody MR6 binds to the human interleukin-4 receptor (IL-4R). Addition of MR6 to cultures of T cells proliferating in response to IL-4 inhibited this response in a dose-dependent fashion, giving total inhibition at 10 micrograms/ml. Similarly, the IL-4-dependent production of specific antigen-induced IgE by B-cell populations was completely abrogated by MR6. Flow cytometric studies of the modulation of cell surface molecules after T-cell activation suggest that expression of the molecule detected by MR6 (p145-MR6) correlates inversely with that of the interleukin-2 receptor (IL-2R). These data, together with the previously determined molecular weight and tissue distribution of this molecule, strongly indicate that MR6 binds to the human IL-4R.

Antibodies, Monoclonal↗

Disodium cromoglycate inhibits activation of human inflammatory cells in vitro.

Recent clinical studies indicate that disodium cromoglycate (DSCG) may have a direct effect on inflammatory cells because the drug reversed various changes in leukocyte function, such as increased membrane-receptor expression and enhanced cytotoxic capacity observed in peripheral white blood cells from subjects with asthma undergoing allergen-inhalation challenge. In the present study, we have demonstrated that DSCG, at low concentrations (a concentration of drug required to produce 50% inhibition, approximately 10(-8) mol/L) and in a time-dependent fashion, directly inhibited the activation in vitro of human neutrophils, eosinophils, and monocytes. Peripheral blood leukocytes were incubated with the synthetic chemoattractant, formyl-methionyl-leucyl-phenylalanine (at an optimal concentration of 10(-8) mol/L), and activation was assessed by measuring increases in the percentages of complement and IgG (Fc) rosettes as well as the enhanced capacity of these cells to kill target organisms (schistosomula of Schistosoma mansoni). DSCG at a concentration of 10(-7) mol/L totally inhibited both the formyl-methionyl-leucyl-phenylalanine-induced enhancement of complement and IgG rosettes, as well as increased schistosomular killing. These observations indicate that DSCG directly inhibits the secretory properties of inflammatory cells and that in turn might have important implications in modulating mechanisms contributing to the inflammatory component of asthma and allergic disease. It may also help to explain why compounds with considerably greater mast cell stabilizing properties than DSCG have been so disappointing when they are evaluated clinically.

Cromolyn Sodium↗

Leukotriene B4 generation by human neutrophils following IgG-dependent stimulation.

It has previously been shown that human neutrophils generate substantial quantities of LTB4 when stimulated with the calcium ionophore, A23187, or with unopsonized zymosan. We now report that normal human neutrophils produced substantial quantities of LTB4 (measured by radioimmunoassay and validated by RP-HPLC) when incubated with large non-phagocytosable IgG-coated beads (Sepharose 4B). LTB4 was identified in both the extra and intracellular compartments. The production of LTB4 was dependent upon the number of IgG-coated particles and the concentration of IgG bound to the beads. Release was maximal after a 15-30 min incubation time and was enhanced by prior activation of the neutrophils with the synthetic bacterial product f-met-leu-phe. Comparable LTB4 production was also observed when neutrophils were incubated with antigen (Aspergillus fumigatus)-coated beads sensitized with purified IgG obtained from the sera of patients with allergic bronchopulmonary aspergillosis. These results suggest a further mechanism by which neutrophils may be activated to produce inflammatory mediators in the tissues.

Antigens, Fungal↗

Chemotactic factor-induced low density neutrophils express enhanced complement (CR1 and CR3) receptors and increased complement-dependent cytotoxicity.

We have studied chemotactic factor-induced 'complement receptor enhancement' to determine whether changes in receptor expression and complement-dependent cytotoxicity were associated with alterations in cell density. Ficoll-Paque separated normal human neutrophils (greater than 90%), when further fractionated on discontinuous metrizamide (MTZ) gradients (18, 19, 20, 21, 22, 23% MTZ), consistently gave two major bands at the 20/21% and 21/22% interfaces. Incubation with the synthetic chemotactic peptide, N-formyl-methionyl-leucyl-phenylalanine (fMLP (10(-8) M)), converted virtually all neutrophils to low density cells sedimenting on MTZ at the 18/19% and 19/20% interfaces. There was a time-dependent change of density after fMLP-stimulation which was maximal at 30 min, with cells reverting towards normal density by 60 min. Control unstimulated cells did not alter their density at any of the time points examined. Activated, low density neutrophils had increased expression of CR1 and CR3 (as shown by flow cytometry and the uptake of 125I-F(ab')2 monoclonal anti-CR1 antibody (E11)). These cells also showed enhanced cytotoxic capacity in vitro for helminthic targets (schistosomula of Schistosoma mansoni) opsonized with autologous complement. There were highly significant correlations between cell density and anti-CR1 uptake (P less than 0.001), and between schistosomular killing and change in density (P less than 0.001). Increased CR1 expression also correlated with enhanced helminthicidal capacity of neutrophils (P less than 0.001). Complement dependent cytotoxicity was partially reduced after treatment of cells with anti-human CR1 and/or CR3 antibodies, but only in the presence of a second antibody. These findings indicate that chemotactic factor-induced complement receptor enhancement of human neutrophils is associated with a decrease in cell density and increased complement-dependent cytotoxicity (CTX).

Animals↗

Release of leukotrienes during rapid expulsion of Trichinella spiralis from immune rats.

Rapid expulsion of the nematode Trichinella spiralis from immune rats is associated with an increase in volume of intestinal exudate and the presence of large numbers of tissue mucosal mast cells (MMC) and eosinophils. We have measured the concentrations of leukotrienes (LT) C4 (LTC4) and B4 (LTB4) in gut perfusates and mucosal homogenates at 30 min, 1, 3, 6 and 20 hr after challenge with larvae. Leukotrienes were identified by radioimmunoassay (RIA) combined with reverse-phase high-pressure liquid chromatography (RP-HPLC). There were significant elevations at 30 min and 1 hr in the concentrations of LTC4 in the perfusates from the gut of challenged immune rats compared to controls (infected unchallenged and uninfected naive rats). Similar increases in immunoreactive LTC4 and LTB4 were observed in mucosal homogenates from the gut of immune challenged animals. A second peak of LTB4 was also observed at 20 hr in both immune and naive challenged rats. There were also elevations in serum concentration of the MMC-associated specific serine protease, rat mast cell protease II (RMCPII). Since LTC4 causes smooth muscle contraction, increased vascular permeability and stimulation of mucus hypersecretion, and LTB4 recruits and activates inflammatory cells, leukotrienes may participate in the process of rapid expulsion of T. spiralis.

Animals↗

Enteral and systemic release of leukotrienes during anaphylaxis of Nippostrongylus brasiliensis-primed rats.

Rats with acquired immunity to the intestinal nematode Nippostrongylus brasiliensis develop anaphylaxis after i.v. challenge with an extract of worm antigen, with the small intestine being the primary shock organ. In the present study we have shown that these events were associated with significant elevations in intestinal and plasma concentrations of leukotrienes LTB4 and LTC4. The changes were observed in immune rats over 10-, 30-, and 60-min intervals after antigen challenge but were absent in control animals. These lipid mediators were identified both in the perfusate of the gut lumen, which contained large quantities of mucus, and in homogenates of intestinal tissue. In addition, significant elevations in the concentrations of plasma LTB4 and LTC4 were detected in immune challenged rats but not in controls. Leukotrienes were identified by radioimmunoassay and validated by reverse-phase high-performance liquid chromatography (RP-HPLC). RP-HPLC analysis of SRS-A leukotrienes in immune challenged rats indicated that LTC4 was the predominant sulfidopeptide leukotriene at 10 min, with almost complete biodegradation to LTD4 and LTE4 within 30 min. Infected rats also had significant increases in the numbers of intestinal mucosal mast cells (MMC) and eosinophils. Evidence of MMC activation during anaphylaxis was obtained by showing significant elevations of intestinal and systemic concentrations of their exclusive serine enzyme, rat mast cell proteinase II (RMCPII). Thus, the release of substantial amounts of leukotrienes in the gut and plasma of N. brasiliensis-primed rats after interaction with worm antigens suggests that these potent mediators may play an important role in allergic-type hypersensitivity known to occur during immune reactions against parasitic helminths.

Anaphylaxis↗

Helminth-induced intestinal inflammation.

Gastrointestinal inflammation is a prominent feature of protective reactions in animals immune against helminths. Infiltration into the inflamed mucosa of various cells and their subsequent activation result in the elaboration of an array of pharmacologically and biologically active substances. The release of mediators is also associated with alterations in the epithelial layer. Furthermore, increased smooth muscle reactivity and enhanced secretory function of the mucosal tissue contribute to the development of an unfavourable environment and lead to worm expulsion. Mediators elaborated from inflammatory cells, whether associated with cell granules (i.e., preformed) or de novo-generated from membrane phospholipids, possess a number of potent vasoactive and spasmogenic properties which may contribute to events leading to worm elimination. The lipoxygenase metabolites of arachidonic acid (leukotrienes) derived from cell membranes probably contribute to the state of intestinal hypersensitivity against helminths. The measurement of elevated levels of these lipid mediators following worm challenge of immune, but not control, rats suggests that leukotrienes may play a role in amplifying and augmenting the inflammatory process associated with worm expulsion.

Animals↗

Effect of disodium cromoglycate on activation of human eosinophils and neutrophils following reversed (anti-IgE) anaphylaxis.

Immunological release of histamine and lipid mediators is known to occur when basophils, contained in whole blood human leucocytes, are incubated with anti-IgE (reversed anaphylaxis). In the present study we show that IgE-dependent stimulation of basophils was associated with activation of bystander eosinophils and neutrophils, as assessed by enhanced complement (C3b) and IgG (Fc) rosettes, and increased cytotoxicity for complement-coated schistosomula of Schistosoma mansoni. These changes in eosinophil and neutrophil function were totally inhibited in a dose-dependent fashion by prior incubation with disodium cromoglycate (DSCG). In all in vitro systems examined, complete inhibition of enhancement was observed with concentrations as low as 10(-7) moles/l. In contrast, DSCG had no effect on histamine release, or the percentage of rosettes or cytotoxicity prior to anti-IgE stimulation. These results suggest that DSCG inhibits activation of inflammatory cells consequent to an IgE-dependent stimulus.

Anaphylaxis↗

The requirements for transferrin-dependent adherence of human granulocytes to pollen grains.

Human granulocyte/pollen binding protein (GPBP), previously identified as serum transferrin, promoted prolonged firm adherence of neutrophils to Timothy grass pollen. Some characteristics of this adherence reaction are reported. GPBP-induced binding was time-, temperature- and concentration-dependent. Maximal adherence was observed by 2 h and was only slightly decreased at 18 h. The optimal temperature for adherence was 37 degrees C. Concentrations of GPBP as low as 1.25 microgram/ml gave significantly greater binding than the albumin or lactoferrin control. Eosinophils, monocytes and lymphocytes did not appear to participate in GPBP-induced pollen binding reactions at concentrations up to 300 micrograms/ml. In the presence of GPBP, neutrophils adhered to a range of grass, weed and tree pollens. These included timothy, meadow, false oat, rye, giant and short ragweed, plantain, silver birch and ash. GPBP did not facilitate the adherence of granulocytes to inert particles of similar size such as Sephadex beads and agarose. The adherence was Mg++- but not Ca++-dependent and was not inhibited by a monoclonal antibody to the transferrin receptor (OKT9). Transferrin/GPBP did not bind to either neutrophils or pollen grains. A purified commercial transferrin reacted in all respects like GPBP in these pollen binding studies. These observations indicate that GPBP/transferrin-induced adherence of granulocytes to pollen grains is a hitherto unrecognized property of transferrin which appears unrelated to iron transport or the conventional transferrin receptor.

Antibodies, Monoclonal↗

Enhancement of leukocyte cytotoxicity after exercise-induced asthma.

We have previously shown that there were elevations of neutrophil chemotactic activity (NCA) and increases in the percentages of neutrophil and monocyte complement rosettes after exercise-induced asthma (EIA). These observations suggested that leukocyte activation may occur after EIA, possibly as a result of the release of mast-cell-associated mediators. In the present study, we have attempted to establish whether neutrophils and monocytes are functionally altered after EIA as assessed by changes in their cytotoxic capacity. Cytotoxicity was assessed by a direct visual killing assay using opsonized (complement-coated) schistosomula of Schistosoma mansoni as target organisms. Neutrophils and mononuclear cells obtained from 8 patients after exercise-induced asthma (EIA+ve) had increased cytotoxicity for opsonized schistosomula for as long as 60 min after exercise. These changes were preceded by elevations in the concentrations of serum high molecular weight NCA (which were maximal at 10 min after exercise). In asthmatic patients who did not develop exercise-induced asthma (EIA-ve), no significant increases in neutrophil or mononuclear cell killing of schistosomula, or serum NCA concentrations, were observed. There was a highly significant correlation (p less than 0.001) between the reduction in FEV1 and the increases in neutrophil cytotoxicity. In 5 EIA+ve patients, administration of disodium cromoglycate (cromolyn) prior to the exercise task inhibited both the enhancement in neutrophil and mononuclear cell cytotoxicity, as well as the elevations in circulating NCA and the reductions in FEV1.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Platelet-activating factor. A potent chemotactic and chemokinetic factor for human eosinophils.

Platelet-activating factor (PAF-acether), an inflammatory mediator with a wide range of biological activities including neutrophil aggregation and chemotaxis, was studied for its effect on human eosinophil locomotion (chemotaxis and chemokinesis). Human eosinophils (25-95% purity) were obtained from donors with a variety of diseases associated with hypereosinophilia. PAF-acether elicited directional locomotion of eosinophils, in a time- and dose-dependent fashion, at concentrations from 10(-5) to 10(-8) M; lyso-PAF had minimal activity over the same dose range. Compared with PAF-acether, the eosinophil locomotory responsiveness of leukotriene B4 (LTB4), histamine, and the valyl- and alanyl-eosinophil chemotactic factor of anaphylaxis (ECF-A) tetrapeptides was negligible. Conversely, neutrophil responsiveness to PAF-acether (optimum 10(-6) M) was comparable in effect to LTB4 (optimum dose 10(-8) M). It was shown that PAF-acether elicited both chemotaxis and chemokinesis of eosinophils. Comparison of normal density and light density eosinophils revealed no qualitative difference in the response to PAF-acether and the other chemoattractants, although the light density cells seemed to demonstrate a greater degree of locomotion to PAF-acether and LTB4. Thus, PAF-acether appears to be a potent eosinophilotactic agent which may play a role in inflammatory reactions characterized by eosinophil infiltration.

Cell Movement↗

Enhanced granulocyte cytotoxicity by mediators derived from anti-IgE-stimulated human leucocytes.

Basophil-containing leucocyte fractions stimulated with an anti-human IgE, F(ab')2, generated histamine and the leukotrienes LTB4 and LTC4 with significant correlations between LTB4 and histamine (P less than 0.01; n = 26) and LTC4 and histamine release (P less than 0.001; n = 29) in the cell-free supernatants (SN). SN from these anti-IgE-treated cells enhanced the cytotoxicity of eosinophils and neutrophils (against complement-coated schistosomula of Schistosoma mansoni) in vitro. When SN were fractionated by reverse phase-high performance liquid chromatography (RP-HPLC), the enhancing activity for neutrophils was almost totally confined to fractions having LTB4 immunoreactivity (co-eluting as a single peak with the synthetic LTB4 marker). In contrast, the LTB4-containing fraction had minimal effects on eosinophil cytotoxicity, whereas synthetic histamine gave comparable enhancement to the unfractionated SN. The generation of LTs (but not histamine), as well as enhanced neutrophil cytotoxicity from basophil-containing leucocytes by anti-IgE treatment, was maximally inhibited by the 5-lipoxygenase inhibitors U-60, 257 and BW755C. Conversely, the cyclooxygenase inhibitor indomethacin did not significantly affect LT release, nor did it affect the subsequent cytotoxicity enhancing activity of SN from such cells. These results indicate that LTB4 and LTC4 are released from basophils, together with histamine, by IgE-dependent mechanisms, LTB4 enhances the cytotoxicity of bystander neutrophils, and histamine (and to a lesser extent, LTB4) augments eosinophil cytotoxicity.

Basophils↗

The effects of eosinophil activating factor on IgG-dependent sulphidopeptide leukotriene generation by human eosinophils.

Eosinophil activating factor (EAF) is a 40 kD protein released from cultured, unstimulated human monocytes which enhances the IgG-dependent eosinophil-mediated cytotoxicity of helminthic larvae. We have recently shown that eosinophils elaborate substantial quantities of leukotriene C4 (LTC4) during incubation with IgG-coated particles and now report that EAF, partially purified by sequential chromatography on Sephacryl S-200 and DEAE-cellulose, enhanced this IgG-dependent LTC4 production by human eosinophils in a dose- and time-dependent fashion. LTC4 production by normal density eosinophils, separated on discontinuous metrizamide gradients, was significantly increased after incubation with several dilutions of EAF (P less than 0.05), although an increase was not seen with low density cells. The enhancement was similar in degree to that seen when normal density eosinophils were activated with the bacterial analogue, f-met-leu-phe (fMLP). EAF produced a time-dependent increase in LTC4 which was significantly greater (P less than 0.01) than the control. Sulphidopeptide leukotriene (LT) generation was validated by reverse phase high pressure liquid chromatography (RP-HPLC). These results indicate that there is a firm association between monocytes, eosinophils and LTC4; an observation which may be of relevance to mechanisms in chronic asthma and related disorders, and in immune reactions against migrating helminthic larvae.

Dose-Response Relationship, Drug↗