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Gc-globulin (vitamin D-binding protein) enhances the neutrophil chemotactic activity of C5a and C5a des Arg.

Several serum proteins have been shown to be important in modulating leukocyte chemotaxis and inflammation. We investigated the possibility that the multifunctional serum protein Gc-globulin (vitamin D-binding protein) may also enhance the neutrophil chemotactic activity of complement-derived peptides. Purified Gc-globulin by itself did not induce chemotaxis of human neutrophils. However, as little as 0.01 nM Gc-globulin greatly enhanced the neutrophil chemotactic activity of C5a and its derivative, C5a des Arg over a wide concentration range. The effect was most pronounced at nonchemotactic doses of C5a (0.01 nM) and C5a des Arg (1 nM). Gc-globulin was unable to augment the neutrophil chemotactic activity of FMLP and leukotriene B4. This enhancing activity was not due to a nonspecific effect of anionic proteins since other purified serum proteins, of similar size and charge as Gc-globulin (alpha 1 acid glycoprotein, alpha 2 HS glycoprotein, alpha 2 histidine-rich glycoprotein), could not increase the chemotactic activity of C5a des Arg. Serum depleted of Gc-globulin by immunoaffinity chromatography totally lacked chemotactic enhancing activity for C5a des Arg. Gc-globulin-depleted serum activated with zymosan also had significantly less chemotactic activity than control- (sham-depleted) activated serum. Finally, radioiodinated C5a or C5a des Arg formed a 1:1 complex with purified Gc-globulin when analyzed by gel filtration chromatography. These results indicate that Gc-globulin is the major chemotactic enhancing factor in serum and may function as an up-regulator of the chemotactic activity of C5-derived peptides.

Anaphylatoxins↗

Complement-induced equine neutrophil adhesiveness and aggregation.

Equine neutrophils (PMN) were isolated from citrated normal blood by density gradient separation on Ficoll-Hypaque to greater than 96% purity and 98% viability and an average of 3.78 x 10(7) PMN/ml. The agonist C5a des Arg was used in serial dilutions of whole zymosan-activated equine plasma (ZAP) or was partially purified from ZAP by column chromatography. Purified equine PMN exhibited rapid aggregation following incubation with C5a des Arg which was further dependent on the availability of divalent cations, especially Mg++. The microfilament disruptive agent cytochalasin B (5 micrograms/50 microliters) greatly augmented aggregation responses to C5a des Arg. Subaggregating doses of C5a des Arg promoted PMN adhesiveness as assayed on 0.5 x 10 cm borosilicate glass columns containing a 2.0 cm bed of Sephadex G-25. This C5a des Arg-induced increased adhesiveness was inhibitable by prior incubation of the PMN with either non-steroidal (0.065 M phenylbutazone) or steroidal (0.005 M dexamethasone) anti-inflammatory agents. Ultrastructural studies correlated well with functional assays and revealed marked organelle-free lamellipodia formation without PMN-PMN contact at subaggregating doses of the agonist and progressive PMN-PMN contact at aggregating doses. Equine PMN are responsive to C5a des Arg, and induced adhesiveness responses can be manipulated by anti-inflammatory agents.

Animals↗

Effect of psoralen + ultraviolet-A on the chemotactic activity of polymorphonuclear neutrophils towards anaphylatoxin C5a des Arg.

It was shown that psoralen + UV-A inhibits the chemotactic activity of polymorphonuclear neutrophils towards anaphylatoxin C5a des Arg. This reaction required oxygen and there is a high possibility that the active oxygen species was in a singlet state. Oxygen did not act directly on C5a des Arg, but rather produced oxidized psoralen which inhibited C5a des Arg activity. The effect was dependent on the concentration and types of psoralen and on the UV-A dose. Among the psoralens, the inhibitory effect of 4,5',8-trimethylpsoralen was the strongest, followed by 8-methoxypsoralen and 3-carbethoxypsoralen and finally 4,4',6-trimethylangelicin. Psoralen + UV-A failed to inhibit the chemotactic activity towards chemotactants other than anaphylatoxin C5a such as casein, the cultured filtrate of E. coli, platelet-activating factor, leukotriene B4, 5-hydroxy-6,8,11,14-eicosatetraenoic acid and 12-L-hydroxy-5,8,10,14-eicosatetraenoic acid.

Chemotaxis, Leukocyte↗

In vitro activation of human complement by nitrogen bubbles.

Complement activation may be responsible for some of the symptoms of decompression sickness. In the present study, complement activation was studied by exposing human sera with or without red blood cells to nitrogen bubbles. Nitrogen bubbles activated human complement as measured by generation of the fluid-phase, complement-split product C5a des Arg. In addition, we found that complement activation continued after exposure to bubbles was stopped. This continued complement activation may explain the failure of recompression treatment in some patients. Complement activation induced by nitrogen bubbles in human sera was enhanced when red cells were present. Red cells may be able to provide a stable membrane surface on which complement activation by bubbles can occur more efficiently. Complement activation by nitrogen bubbles in serum also led to the binding of activated C3 to red cells. Quantitation of bystander red-cell-bound C3d may allow the assessment of complement activation occurring by nitrogen bubbles in individuals undergoing decompression.

Complement Activation↗

Protein synthesis dependent and independent mechanisms of neutrophil emigration. Different mechanisms of inflammation in rabbits induced by interleukin-1, tumor necrosis factor alpha or endotoxin versus leukocyte chemoattractants.

Inflammation constitutes the body's principal mode of defense against infection and other harmful agents. Neutrophil leukocytes are the primary effector cells in this process. The role of protein synthesis in neutrophil emigration into acute inflammatory lesions was examined. Local intradermal injections of actinomycin D, cycloheximide or puromycin could inhibit in a dose- and time-dependent manner neutrophil emigration induced by interleukin-1, tumor necrosis factor alpha or endotoxin, but not by the leukocyte chemoattractants C5a des arg (zymosan-activated plasma), n-formyl-methionyl-leucyl-phenylalanine or leukotriene B4. Maximal inhibition, measured at the time of peak emigration, was greater than 90%. The onset of neutrophil emigration induced by the cytokines or by endotoxin was delayed by 30 to 60 minutes in comparison to the leukocyte chemoattractants. These results demonstrate at least two mechanisms of neutrophil emigration: one with a slower onset and dependence on local RNA transcription and translation and the other rapid in onset and independent of protein synthesis.

Animals↗

Inflammatory properties of human C5a and C5a des Arg/ in mast cell-depleted human skin.

C5a and its degradation product, C5a des Arg, elicit immediate cutaneous inflammatory reactions after intradermal injection. Histologically, these reactions are characterized by neutrophil-rich leukocytic infiltrates, leukocytoclasis, edema, and dermal mast cell degranulation. It has not been possible to assess in vivo the relative contributions of resident mast cells and circulating leukocytes to this reaction because the accumulation of leukocytes and degranulation of mast cells occur simultaneously after injection of these anaphylatoxins. To assess the role of mast cells in these inflammatory reactions, we have examined the reactivity of human skin selectively depleted of dermal mast cells by local corticosteroid treatment. Corticosteroid-treated skin became virtually devoid of dermal mast cells within 4-6 wk as assessed by light microscopy, immunofluorescence with fluorescein-conjugated avidin, or electron microscopy. Mast cell-depleted skin demonstrated normal vasopermeability and vasodilatory responsiveness to intradermal injection of histamine, but the reactivity of these sites to the mast cell secretagogue, morphine, was absent. Moreover, no clinical reactions were detectable in mast cell-depleted human skin after intradermal challenge with 50 ng of either C5a or C5a des Arg, despite the fact that biopsies of these sites revealed substantial, neutrophil-rich infiltrates. These infiltrates were qualitatively and quantitatively identical to C5a or C5a des Arg-induced infiltrates in mast cell replete skin. This experimental approach in vivo has allowed the independent analysis of the anaphylactogenic and chemoattractant activities of human C5a and C5a des Arg in human skin, demonstrated the importance of dermal mast cells in these clinical responses, and shown that leukocytes can accumulate at these injection sites directly in response to these mediators.

Adrenal Cortex Hormones↗

Rabbit leukocytes activated by C5a des Arg and N-formyl-methionyl-leucyl-phenylalanine promote endothelial prostacyclin production. Evidence for a role of hydrogen peroxide.

Prostacyclin (PGI2) production by an intact endothelial cell layer on the surface of isolated rabbit aortas was investigated in the presence of chemoattractants (C5a des Arg, FMLP, LTB4, PAF) and autologous blood leukocytes. Leukocytes themselves did not produce detectable amounts of PGI2, nor did they alter basal endothelial PGI2 formation. In the absence of leukocytes, C5a des Arg (but not FMLP, LTB4 or PAF) produced a direct and dose-dependent stimulation of PGI2 release from endothelial cells. This effect was greatly enhanced when C5a des Arg and leukocytes were incubated together on the endothelium. Similar results were obtained on co-incubation of endothelium and leukocytes with FMLP and to a lesser extent with LTB4 and PAF. Experiments with superoxide dismutase and catalase suggest that release of H2O2 may partly explain the stimulatory activity of leukocytes in the presence of chemoattractants. The effect of aspirin treatment of the endothelial cells in enhancing leukocyte adherence induced by C5a des Arg suggests that local PGI2 production by vascular endothelium may provide a natural defence mechanism by attenuating cell-cell interactions.

Animals↗

Complement activation and anaphylatoxin (C3a and C5a) formation in preeclampsia and by amniotic fluid.

The aim of this study was to determine whether the biologically active complement peptides C3a and C5a are formed in pregnancy and whether amniotic fluid can activate complement. C3a and C5a are formed when complement is activated. They increase smooth-muscle contraction, vascular permeability, and histamine release from mast cells and basophils. Thirty pregnant women were studied, 16 with uncomplicated and 14 with preeclamptic pregnancies. The plasma C3a and C5a concentrations before delivery were significantly higher in the preeclamptic than in the normal group. The concentrations returned to normal within 1 week. Plasma, serum, and amniotic fluid from 12 pregnant women (eight uncomplicated and four preeclamptic pregnancies) were drawn in connection with delivery. Amniotic fluid was incubated in fresh autologous serum at 37C for 15 minutes. A dose-dependent formation of C3a and C5a was registered with increasing amounts of amniotic fluid.

Adult↗

Endotoxin-induced shock in the rat. A role for C5a.

Administration of endotoxin from gram-negative bacteria to rats results in systemic hypotension, an increased hematocrit, and decreased numbers of circulating leukocytes (polymorphonuclear), monocytes, and platelets. These potentially lethal physiologic changes may be partially attributed to complement activation and generation of anaphylatoxins by the endotoxin (LPS). We demonstrated an elevation in the plasma levels of both C3a and C5a in LPS-treated rats. Injection of 5 micrograms C5ades Arg (rat) into rats produced effects similar to those induced by LPS, including decreased mean arterial pressure (systemic hypotension) and decreased numbers of circulating polymorphonuclear leukocytes, monocytes, and platelets. Unlike the response to LPS, C5a did not increase the hematocrit, indicating little effect on vascular permeability at the doses used. When LPS-treated animals were pretreated with F(ab')2 fragments of rabbit anti-rat C5a, no changes were measured in the circulating cell counts compared with LPS alone; however a significant improvement in the mean arterial pressure and a decrease in hematocrit was observed. We conclude that LPS-induced (septic) shock in the rat may result, in part, from the effects of complement activation and particularly from the generation of C5a. The influence of C5a on the LPS effect in the rat appears to enhance both the hypotensive (mean arterial pressure) and vascular permeability (hematocrit) responses. These results appear to support and confirm earlier observations that anti-human C5a increased survival in a septic-shock monkey model by eliminating circulating C5a and presumably thereby reducing the effects of endotoxin on blood pressure. Our results demonstrate that C5a plays a significant role in the hemodynamic changes associated with endotoxin-induced shock. Neutralization of C5a with specific antibodies may reduce the hypotensive response to endotoxin sufficiently to prevent lethal septic shock both in animals and in man.

Anaphylatoxins↗

Complement activation and vascular injury in systemic lupus erythematosus.

The deposition of immune complexes within blood vessel walls results in the potential for complement activation and the release of chemotactic factors, such as fragments of C5 (C5fr). The generation of C5fr results in the intravascular aggregation of neutrophils with subsequent leukostatic occlusion of the pulmonary arterioles. The generation of C5fr may contribute to the pathogenesis of adult respiratory distress syndrome and other diseases. Studies were undertaken to determine the role of circulating complement derived peptides and intravascular neutrophil activation in systemic lupus erythematosus.

Antigen-Antibody Complex↗

Fast deactivation of guinea-pig isolated ileum to C5adesArg: a possible cyclic AMP-dependent mechanism.

The fast component of deactivation of guinea-pig isolated ileum to the spasmogenic action of the complement peptide C5adesArg was further differentiated from the slow component which had been previously analysed (Damerau et al., 1985a, b). Fast deactivation differs from the slow component in the following characteristics: (a) it is unspecific in that it is also induced by C3a, another complement peptide, (b) it depends on the spasmogenic effect of the peptides, and (c) it does not occur at 16 degrees C. In contrast to the slow component, in which the deactivation is thought to be caused by blockade of C5a receptors, fast deactivation seems to be due to a transient increase of intracellular cyclic AMP evoked by C5adesArg and C3a; it is prevented by GDP beta S (5 X 10(-4) M) which blocks activation of adenylate cyclase, and prolonged by agents which sustain cyclic AMP elevations, namely 5 X 10(-4) M theophylline and 5 X 10(-4) M) GTP gamma S.

Animals↗

Modified cellulosic dialyzer membranes: an investigative tool in thrombogenicity studies.

We have previously demonstrated that chemical modification of cellulosic membranes with dimethyl-amino-ethyl (DEAE) groups significantly improves membrane properties in terms of biocompatibility. Here, we show that DEAE substitution also alters the membrane's thrombogenic properties, and cellulosic membranes with various amounts of DEAE substitution were produced. Clinical dialyzers were constructed using two experimental membrane materials: modified cellulose-low (MC-low) and MC-high; standard unsubstituted cellulose was used as a control. Six patients were treated for a period of 3 weeks with each type of dialyzer and a heparin dose of less than 6000 IU/treatment. MC-low exhibited less extracorporeal beta-thromboglobulin and thromboxane B2 release than MC-high or Cuprophan. In addition, residual blood volume after clinical use was lower in the MC-low type. MC-low and MC-high induced less complement activation than Cuprophan, as characterized by extracorporeal C5a and C3a plasma concentrations (75% less C5a generation and 50 to 70% less C3a generation than unsubstituted cellulose).

Cellulose↗

Complement activation and the toxicity of stroma-free hemoglobin solutions in primates.

The toxicity of hemoglobin solutions was studied in the context of their ability to activate serum complement (C). Three bovine polymerized hemoglobin solutions (BPHSs) with different degrees of purity were used for experiments in vitro and in vivo. BPHS-1 contained bacterial endotoxins (E) (5 EU/ml) and stromal phospholipids (PLs) (1.2 mg/dl), BPHS-2 contained only PLs (2.0 mg/dl), while BPHS-3 was completely free of both contaminants. C-activation was studied by the direct measurement of C3a, C4a, and C5a des Arg fragments, using commercially available RIA kits. During 1 hour of incubation with fresh monkey plasma, BPHS-1 and -2 activated both pathways of C, while BPHS-3 caused no activation of any factor. In vivo, Hb solutions were used to replace one-third of blood volume in three groups of six Coebus monkeys each, while fresh homologous plasma was used in a control group of four animals. Impure solutions activated the alternative pathway of C and caused significant reactions of the circulating blood (thrombocytopenia, leukopenia, and disseminated intravascular coagulation) associated with multiorgan dysfunction (cardiac arrhythmias, hypoxemia, reduction of renal clearance of endogenous creatinine, and elevation of liver enzyme SGPT). The pure solution neither activated C nor caused any reaction in the circulating blood. However, it caused a moderate degree of direct tissue injury, evidenced by transient reduction of creatinine clearance and elevation of SGPT. These observations suggest that impure and pure Hb solutions carry separate mechanisms of toxicity. Complement, activated by toxic impurities, plays an active role in the toxicity of impure solutions. C-activation in vitro could be used as a screening test of biocompatibility.

Animals↗