Inflammatory proteins: chemical and biological aspects.
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To understand the relevance of allergens in generation of C3a, C4a, and C5a in normal human serum, we studied extracts of several allergens (house dust, house dust mite, Aspergillus fumigatus, and perennial ryegrass). Known complement activators zymosan and endotoxin were used as controls. Generation of C3a, C4a, and C5a (determined by radioimmunoassays) occurred with extracts of house dust and Aspergillus more than with house dust mite and ryegrass. Anaphylatoxins were produced both in dose and time-dependent fashions. Serum activated with house dust and Aspergillus extracts induced neutrophil aggregation when this serum was added to neutrophil suspensions. Less aggregation occurred when house dust mite and perennial ryegrass extract-activated sera were added to human neutrophils. We propose that some allergens may induce biologic responses by activation of sera and generation of anaphylatoxins as well as by IgE-mediated responses.
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A life-threatening pulmonary hypersensitivity reaction accompanied by profound leucopenia and transient hypocomplementaemia developed in a 73-year-old man after repair of an abdominal aortic aneurysm. A neutrophil-specific antibody, anti-NA2) was demonstrated by granulocyte immunofluorescence and microagglutination in one of the transfused donor units. In addition, activated complement component C5a was generated in vitro by incubation of the patient's serum with the aortic graft material. This severe clinical reaction may have resulted from the interaction of the transfused anti-NA2 antibody with complement activation induced by the aortic graft material.
C5a anaphylatoxin injected via implanted cannulae into the perifornical region of the hypothalamus stimulated eating in sated rats. C5a also attenuated carbamyl choline-induced drinking, and carbamyl choline inhibited C5a-induced eating, a mutual inhibition characteristic of the adrenergic-cholinergic interactions at this site. The increased food intake induced by C5a was also reversed by phentolamine, an alpha-adrenergic antagonist. Granulocytes infiltrating as a result of C5a-mediated leukotaxis did not arrive at the site in time to influence C5a activity. We propose that C5a in some way activates an alpha-adrenergic receptor system in the hypothalamus, and that anaphylatoxins could mediate neuropsychiatric symptoms sometimes associated with immune complex diseases affecting the central nervous system.
The effects of human serum IgA on human polymorphonuclear leukocyte (PMN) function were studied. In Boyden chambers, chemotactic migration against semipurified C5a as well as the formylated tripeptide FMLP was inhibited in the presence of IgA. Under such conditions, the release of superoxide anion was not changed. In addition, chemotaxis "under agarose" using the leading front evaluation remained unaltered in the presence of IgA despite IgA-induced aggregation of PMN and reduced density of migrating cells. Chemotaxis filters incubated with radiolabelled IgA demonstrated strong binding of IgA, and further, these IgA-pretreated filters impeded PMN migration. Incubation of PMN with IgA followed by subsequent washings did not affect chemotactic migration. These data show that filter binding of IgA is responsible for the inhibition of chemotactic PMN-migration in the Boyden chambers, most probably mediated by increased cell-substrate adhesion. Experiments using casein showed displacement of IgA by casein which enables PMN to fully respond to casein.
Macrophages are known to release reactive oxygen species (O2-, 1O2, H2O2, OH.) in response to various membrane stimuli. However, our studies show that phagocytic stimulation of macrophages is not necessarily accompanied by a stimulation of the oxidative burst. Whereas IgG-opsonized erythrocytes were capable to induce phagocytosis and a chemiluminescence response, both being dependent on the number of IgG bound per erythrocyte, C3b-bearing erythrocytes were well ingested but failed to induce any chemiluminescence reaction. Furthermore, stimulation of macrophages, via the Fc-receptors, seems to alter their functional state in regard to the activation of a receptor, which enables them to recognize membrane lesions on the target erythrocyte. The presence of IgG and membrane lesions, e.g. the C5b-9-complex of complement, induced a marked increase in chemiluminescence compared with stimulation by IgG-bearing particles alone. The augmented response of macrophages was at least in part due to an additional release of H2O2, which was not liberated in response to IgG-bearing erythrocytes. This "lesion recognizing receptor" in the macrophage membrane could not be activated by stimulation of C3b-receptors, indicating its functional linkage to the Fc-receptors.
Data for 26 patients with membranoproliferative glomerulonephritis, type I (MPGN I) and 22 with membranoproliferative glomerulonephritis, type III (MPGN III), as distinguished by glomerular ultrastructure, were analyzed to determine differences in presentation, complement perturbation, and glomerular morphology by light microscopy. MPGN III was detected with greater frequency by the chance discovery of hematuria and proteinuria in the otherwise healthy individual (MPGN III, 63%; MPGN I, 30%; P = .01) and never, in the absence of renal failure, presented with systemic symptoms such as ease of fatigue, weight loss, and pallor, as may patients with MPGN I. The more frequent detection of MPGN III by chance is evidence that its onset is insidious and that for long periods it produces no symptoms or signs. Glomerular proliferation is also less than in MPGN I. Further, in MPGN III, the complement perturbation and glomerular immunofluorescence give no evidence of classical pathway activation, for which there is abundant evidence in MPGN I. Even with severe hypocomplementemia in MPGN III, C3 nephritic factor, another cause of hypocomplementemia, is rarely detectable and then in very low concentration. The cause of the complement perturbation in MPGN III has so far escaped identification. Although these observations give evidence that MPGN III is distinct from MPGN I, there is compelling evidence from other studies that a predisposition to both types is inherited and that similar genetic factors are operative in the two types. Because their genetic basis appears to be the same, it must be concluded that despite their differences, types I and III are variants of the same disease.
The goal of these prospective studies was to determine the effect of different dialyzer membranes and dialysate composition on leukopenia and hypoxemia during hemodialysis with citrate anticoagulation. Significant early leukopenia was found with a cuprophane membrane, while a cellulose acetate membrane was associated with mild early leukopenia. Bath composition had no effect. Bicarbonate dialysate, compared with acetate, eliminated hypoxemia in cellulose acetate membranes and reduced its degree and duration with cuprophane. Membrane composition had no effect on hypoxemia during acetate dialysis. The findings indicate that leukopenia is directly and exclusively related to membrane composition while hypoxemia only relates in part to membrane effects. Serial determinations of complement components C3a and C5a showed significant increases in parallel with leukopenia during heparin anticoagulation, but the anaphylatoxin concentration changes were dissociated during dialysis with citrate anticoagulation. The concentrations of anaphylatoxins C3a and C5a appear not to be directly related to dialysis-induced leukopenia. The dissociation between anaphylatoxin concentrations and leukopenia may be related to changes in generation or unmasked changes in leukocyte response. Citrate anticoagulation may provide a useful probe for further studies on membrane-leukocyte interactions in vivo.
Recent trials have shown that recombinant tissue plasminogen activator (rt-PA) is an effective thrombolytic agent in patients with acute myocardial infarction. Because rt-PA converts plasminogen to plasmin, which is known to activate complement in vitro, we tested the hypothesis that rt-PA can induce in vivo activation of complement. Studies were performed in 12 patients with acute myocardial infarction. Six control patients had patent coronary arteries and did not receive rt-PA; these patients had normal values of the components of the complement system C4a (409 +/- 111 ng/ml) and C5a (8.8 +/- 1.8 ng/ml) with a slight elevation of C3a (204 +/- 6.6 ng/ml) in samples collected before coronary arteriography (253 +/- 25 minutes after onset of pain). After coronary arteriography, there was a slight decrease in the values of C4a (224 +/- 37 ng/ml), C5a (7.3 +/- 1.3 ng/ml) and C3a (164 +/- 35 ng/ml). The remaining six patients had complete coronary occlusion and received rt-PA (80 to 150 mg intravenously). In this treated group, before coronary arteriography the values of C4a (406 +/- 51.6 ng/ml) and C5a (8.1 +/- 1.9 ng/ml) were normal, and those of C3a were slightly elevated (250 +/- 76 ng/ml). All complement values obtained before rt-PA were similar to those in the untreated group. However, after administration of rt-PA (but before any angiographically detectable reperfusion), there was a striking increase in C4a (2,265 +/- 480 ng/ml; p less than 0.01), C3a (600 +/- 89 ng/ml; p less than 0.05) and C5a (30.0 +/- 4.5 ng/ml; p less than 0.05).(ABSTRACT TRUNCATED AT 250 WORDS)
A case of bronchospasm occurring after the termination of cardiopulmonary bypass is reported. The complement fractions C3a, C4a and C5a were measured before and right after CPB. Complement activation is not specific to CPB but may occur in any thoracotomy. The statistically significant increase in complement C3a without any pulmonary symptomatology has been reported by several authors. Complement activation cannot therefore be considered as the explanation of this bronchospasm.
The complement system provides a critical level of defense against bacterial invasion. Various microorganisms have evolved a variety of mechanisms to allow them to avoid complement lytic and opsonic activity. These range from the formation of factors that destroy activity of complement proteins to the evolution of surface structures that fail to bind, facilitate degradation of, or shed, complement proteins. The range of factors associated with bacterial complement resistance is reviewed here.