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Mediators of immune complex-induced aggregation of polymorphonuclear neutrophils. I. C5a anaphylatoxin, neutrophil cationic proteins and their cleavage fragments.

This study reports the results of in vitro investigations on the aggregation of polymorphonuclear neutrophils (PMN) induced by the C5a anaphylatoxin complement component as well as the cationic proteins (CP), which are released by challenging PMN with immune complexes (IC). The carboxy-peptidase-derived des-Arg fragments of CP and C5a; CPi and C5ai, inactive in terms of anaphylactic and chemotactic activity, nevertheless showed a more potent ability to aggregate PMN than CP and C5a. The process of PMN aggregation required metabolic energy and divalent cations, Ca++ and Mg++. The microtubular system and the subplasmalemmal microfilaments appeared to be of critical importance. Electron microscopic studies on aggregates of PMN obtained on stimulation with CP, C5a, CPi and C5ai showed parallel tracts of variable length of cell membranes at the points where cells were in contact with each other.

Anaphylatoxins↗

C3a-induced lysosomal enzyme secretion from human neutrophils: lack of inhibition by f met-leu-phe antagonists and inhibition by arachidonic acid antagonists.

C3a-induced lysosomal enzyme secretion from human peripheral neutrophils in a noncytolytic, dose-dependent (10-100 microgram/ml) process. Release of both primary and secondary granule constituents occurred when neutrophils were exposed to C3a plus cytochalasin B, however, C3 alone induced limited release of lysozyme. A competitive antagonist of the formyl-peptide receptor on neutrophils, t boc (phe-leu) 2-phe, did not block the release induced by C3a. Arachidonic acid antagonists, nordihydroguaiaretic acid and quercetin caused dose-dependent inhibition of release induced by C3a plus cytochalasin B, however, lysozyme release induced by C3a in the absence of cytochalasin B was minimally affected. Indomethacin at high concentration (greater than 10(-5) M) had similar inhibitory effects.

Anaphylatoxins↗

Morphological changes in human polymorphonuclear leukocytes induced by C3a in the presence and absence of cytochalasin B.

Treatment of human peripheral polymorphonuclear leukocytes(PMNs) with C3a leads to profound changes in cell morphology, along with the limited secretion of lysozyme. Simultaneous addition of C3a and cytochalasin B enhances the release of lysosomal enzymes and renders the cell morphology similar to that seen when either C5a or n-formyl peptides are added to PMNs in the presence of cytochalasin B. The morphological response of PMNs treated with C3a is considerably more heterogeneous than that induced by either C5a or n-formyl-methionyl-leucyl-phenylalanine, indicating that some, but not all, PMNs have receptors for C3a.

Cell Membrane↗

New developments in immunopathology with special reference to complement and immune complexes.

The last few years have seen rapid advances in our understanding of immune phenomena, and these are now being translated into a new understanding of immunopathology. This paper reviews a number of areas where important new knowledge has been gained in the area of complement and immune complexes as a cause of disease. An understanding of the role of the metabolism of complement proteins has led to an understanding of how these proteins interact with receptors to cause phagocytosis. New understanding of the lysis-producing steps has led to new diagnostic tests for complement-induced damage as well as new knowledge of how complement functions to kill microorganisms. New methods for purifying anaphylatoxins have made these proteins available for study in man. A model of serum sickness in man has allowed for the more detailed understanding of how immune complexes cause disease and has led to the appreciation of new clinical signs of immune-complex-mediated disease in man.

Antigen-Antibody Complex↗

Indomethacin enhances in vitro histamine release induced by anti-IgE and Ca-ionophore but inhibits C5a-induced release reactions from basophils of atopics and normals.

Preincubation of peripheral leukocytes from atopics and normals significantly enhanced histamine release induced by anti-IgE and calcium ionophore. On the other hand, there was a significant inhibition (ca. 40%) of C5a-induced histamine release by indomethacin both in atopics and controls. In the group of patients with atopic eczema, anti-IgE-induced histamine release was significantly higher than in controls both without and with indomethacin.

Adolescent↗

Adhesion of guinea pig polymorphonuclear leukocytes to autologous aortic strips: influence of chemotactic factors and of pharmacological agents which affect arachidonic acid metabolism.

In superfusion experiments, the complement peptide C5a-desArg and the leukotriene B4 (LTB4) enhanced adhesion of guinea pig polymorphonuclear leukocytes to autologous aortic strips (threshold at about 10(-8) M, maximal effects at 10(-7) M). C5a-desArg acted primarily by stimulation of the leukocytes: pretreatment of them with the peptide abolished their response by deactivation, whereas pretreatment of the endothelium did not affect adhesion. However, the endothelium obviously cooperated in the response: enhanced adhesion was obtained only when the leukocytes were exposed to C5a-desArg while in contact with the endothelium. The cooperation is most probably due to release of arachidonic acid from endothelium and formation of lipoxygenase products (LTB4?) therefrom by the stimulated leukocytes. Incubation of leukocytes with nordihydroguaiaretic acid or with relatively high concentrations of indomethacin--both known to inhibit lipoxygenases-- lowered the effect of C5a-desArg, but not that of LTB4 nor the spontaneous adhesion. On the other hand, the stable prostacyclin analogue ZK 36 374 decreased C5a-desArg-induced adhesion, while pretreatment of the aortic strips with indomethacin increased it. These results suggest that endogenous prostacyclin may also play a role in this system by reducing adhesion.

Animals↗

Anaphylatoxin-induced neutrophil chemotaxis and aggregation. Limited aggregation and specific desensitization induced by human C3a and synthetic C3a octapeptides.

Human neutrophil aggregation was induced by highly purified human C3a and chemically synthetic COOH-terminal peptides of C3a (C3a-8R; Ala-Ala-Ala-Leu-Gly-Leu-Ala-Arg) in a dose-dependent manner and was 40% of human C5a-induced aggregation at each optimal concentration. In contrast to C5a and formyl-Met-Leu-Phe (f-MLP), C3a and C3a-8R showed little chemotactic activity. Specific desensitization of neutrophil aggregation was observed with C3a, C3a-8R, C5a and f-MLP, but not with C3a-des-Arg-7R, indicating that the human neutrophil has C3a-specific binding sites which are different from C5a and f-MLP receptors. An additive effect on aggregation was observed at suboptimal concentrations of C5a (1 X 10(-8) M) and C3a (1 X 10(-6) M) or C3a-8R (1 X 10(-5) M). These studies suggest that a subpopulation of human neutrophils have specific binding sites for C3a and C3a may work cooperatively with C5a during the process of neutrophil activation by increasing aggregation and lysosomal enzyme release.

Anaphylatoxins↗

Human C5a induces a substantial histamine release in human basophils but not in tissue mast cells.

The histamine-releasing effect of human C5a was compared with that of concanavalin A in blood basophils and isolated adenoidal mast cells from the same donors. In basophils, C5a (10 ng/ml) induced a significant histamine release (7.5 +/- 2.1%, corrected value). In isolated adenoidal mast cells C5a had only a marginal effect (2% histamine release), although the cells responded markedly to concanavalin A stimulation (about 13% release). The results support the view that the heterogeneity of mast cells and basophils is also reflected in the expression of anaphylatoxin receptors on their surface.

Adenoids↗

C5a-induced bronchoconstriction: absence of a role of circulating white blood cells and platelets.

C5a causes an intense bronchoconstriction when injected intravenously into the guinea pig. The present study was designed to determine if circulating white blood cells or platelets were important target cells for the induction of bronchoconstriction on intravenous injection of C5a. To accomplish this, we examined the effect of C5a on numbers of circulating cells as well as the effect of depletion of various circulating cell populations on C5a-induced bronchoconstriction. Intravenous injection of C5a caused a precipitous drop in circulating granulocytes which preceded the maximum bronchoconstrictor response. The levels of circulating platelets and mononuclear cells were unchanged by intravenous injection of C5a. Depletion of either white blood cells or platelets did not significantly alter either the maximum bronchoconstrictor response to C5a or the time course of the response. Thus, these studies suggest that C5a-induced bronchoconstriction in the guinea pig is not dependent on an interaction of C5a with circulating white blood cells or platelets.

Airway Resistance↗

The significance of complement activation in the pathogenesis of hypersensitivity pneumonitis: sequential changes of complement components and chemotactic activities in bronchoalveolar lavage fluids.

Hypersensitivity pneumonitis (HP) is believed to be induced by immunological mechanisms, the details of which remain to be clarified. While a role for cellular immunity is accepted in the pathogenesis of HP, several clinical observations also suggest a role for immune-complex-mediated lung injury. We have previously demonstrated the presence of chemotactic factors for polymorphonuclear cells (PMNs) in bronchoalveolar lavage (BAL) fluids of acutely ill patients with the summer type of HP found in Japan. The present study correlated chemotactic factors for PMNs with the level of C5a des Arg in BAL fluids obtained from patients with summer type HP. Furthermore, this study demonstrated that PMNs were increased in BAL fluids obtained after 2 days of avoidance of exposure to the presumptive causative agent. The percentage of PMNs in the BAL increased in proportion to the activity of the chemotactic factors. Finally, leukotriene B4 was not detected in concentrated BAL or supernatant fluids of cultured macrophages. These results suggest that complement activation in the respiratory tract may occur as the early event in the pathogenesis of HP.

Alveolitis, Extrinsic Allergic↗

C5a-induced histamine release. Species specificity.

C5a has long been known to cause histamine release from isolated perfused guinea pig lung, isolated human basophils, rat and guinea pig mast cells, and guinea pig skin. The purpose of the present study was to compare the ability of guinea pig C5a to cause histamine release from lung fragments of dog, rabbit and rat with that released from guinea pig lung fragments. In addition, C5a-induced histamine release from the skin of the guinea pig, rabbit, and rat was investigated by examining antihistamine inhibition of C5a-induced vascular permeability changes. Guinea pig C5a caused a concentration-related release of histamine from guinea pig lung fragments with only minimal amounts of histamine being released from dog, rat, and rabbit lung fragments over the same concentration range. Guinea pig C5a also caused increased vascular permeability in guinea pig skin which was markedly inhibited by H1 antagonists. In rabbit skin, guinea pig C5a increased vascular permeability in the presence of PGE2 but the vascular leakage was unaffected by antihistamines. Rat skin was virtually unresponsive to C5a with or without PGE2. This data emphasize the differences between reactivity of species to C5a and the danger of extrapolating results obtained in one animal species to models employed with another species.

Animals↗

Decreased releasability of basophils from patients with cold urticaria after cold exposure.

Histamine release from peripheral blood basophils challenged with C5a, f-met-peptides and calcium ionophore was studied in patients with cold urticaria before and after exposure to low environmental temperatures. Compared to healthy controls, stimulated mediator release before cold exposure was increased in 7 of 11 patients. When challenged by cold exposure mediator release from in vitro-stimulated basophils was decreased. This decrease was more pronounced after stimulation with receptor-mediated stimuli (e.g. C5a) as compared to receptor-unrelated stimuli, e.g. calcium ionophore. In 4 of 11 patients stimulated mediator release before cold exposure was moderately increased. Also after cold exposure only a weak decrease of stimulated histamine release was seen. Levels of activated complement components (C3a) before and after cold exposure failed to provide evidence for complement activation in vivo. Also the number of circulating basophils as well as their cellular histamine content remained normal after cold exposure. The results show that in these patients release of histamine is altered before and after cold exposure. These changes in basophil responsiveness are not due to complement activation in vivo.

Basophils↗

Effect of the late complement components C5b-9 and of platelet-derived growth factor on the prostaglandin release of human synovial fibroblast-like cells.

We examined the prostaglandin E (PGE) synthesis of cultured adherent synovial fibroblast-like cells (SFC) from patients with osteoarthritis (OA) in the noninflammatory state as well as with rheumatoid arthritis (RA). In cells from RA patients the spontaneous PGE release was generally higher compared to that of OA patients, but decreased fast with time in culture. After cell passage, similar PGE baseline levels were seen in cells of the two patient groups. The cells could then be stimulated by the terminal complement components C5b-9 or C5b-8. PGE synthesis was also stimulated by the platelet-derived growth factor (PDGF), interleukin-1 (IL-1), or lipopolysaccharide (LPS). The amount of PGE synthesis after incubation with PDGF, LPS and IL-1 was comparable to that released after C5b-9. Thus, like other inflammatory mediators C5b-9 and PDGF trigger the increased PGE production by SFC and thus may participate in the development of synovial inflammation and contribute to the pathogenesis of RA.

Arthritis, Rheumatoid↗

S-protein/vitronectin interaction with the C5b and the C8 of the complement membrane attack complex.

S-protein/vitronectin participates in the regulation of complement-mediated lysis by incorporating into the membrane attack complex C5b-9. Subsequently, soluble SC5b-7 and SC5b-9 macromolecules are not inserted into the membrane lipid bilayer nor induce lytic pore formation. Using a dot blot binding assay, it was determined that soluble S-protein/vitronectin interacted with immobilized C5b and C8 among the five separately immobilized components (C5b, C6, C7, C8, C9) of the membrane attack complex. Those interactions imply a new model of the formation of the complement membrane attack complex and its regulation by S-protein/vitronectin.

Animals↗

Identification of two endogenous neutrophil-activating peptides in psoriatic skin and inflammatory cells: C5ades arg and NAP.

Migration of polymorphonuclear leukocytes (PMN) into the upper layers of involved epidermis represents a characteristic feature of psoriasis. By analysis of psoriatic scale material we were able to identify two potent proinflammatory peptides, which are present in the upper epidermis from psoriatic lesions. Both factors (C5ades arg and NAP) show strong chemotactic activity for human neutrophils in vitro as well as in vivo. Whereas C5ades arg is a known mediator activated by either alternative or classical activation of the complement cascade, NAP represents a newly detected peptide with a molecular weight of 8,000 daltons which is produced by a variety of cells participating in the psoriatic tissue reaction.

Cell Movement↗

The properties of human C5a anaphylatoxin. The significance of C5a formation during hemodialysis.

Human C5a anaphylatoxin is a potent bioactive molecule that possesses both spasmogenic and leukocyte-related properties. As such, it normally serves as a local mediator of the acute inflammatory response. Additionally, C5a, through its actions of mononuclear phagocytes, may act to bridge the gap in the acute-chronic inflammatory continuum. While these properties are critical to normal host defense mechanisms, it is now apparent that this anaphylatoxin and/or its des-Arg74 derivative, may exert significant systemic effects that are manifest as cardiopulmonary abnormalities and intravascular activation of granulocytes. Knowledge of these properties is critically important for understanding the clinical sequelae exhibited by patients undergoing extracorporeal circulation since we now know that both hemodialysis and cardiopulmonary bypass [28-30] procedures promote intravascular complement activation and C5a formation. Viewed in this context, it seems reasonable to postulate that many of the immediate and delayed responses to extracorporeal circulation might be mediated by C5a formed in the extracorporeal circuit (table IV). For example, it is now recognized that a few particularly susceptible patients display adverse reactions during the initial phases of hemodialysis. The symptoms of this so-called 'first-use syndrome' may range from severe urticaria and angioedema to life-threatening bronchospasm, hypotension, and cardiopulmonary collapse. Some investigators have presented data which suggest that complement-derived products may be causative of these symptoms in some patients [31]. While this hypothesis remains to be confirmed, present evidence clearly demonstrates that C5a alone may produce many of the observed phenomena. In addition to the acute effects produced by C5a, both our own basic studies and the clinical investigations presented by others at this conference suggest that the long-term effects of repeated C5a exposure in the dialyzed patient may be considerable. Thus, there has been a great deal of interest in the role of complement-derived mediators as initiators of leukocyte degranulation and toxic oxygen radical production and an exploration of the significance of these events in the eventual development of chronic pulmonary fibrosis in the dialyzed patient. Similarly, the effects of repeated exposure to IL-1 that has been postulated to occur as a result of C5a triggering of monocytes during dialysis is currently an active area of investigation.(ABSTRACT TRUNCATED AT 400 WORDS)

Anaphylatoxins↗