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Complement activation by the alternative pathway is modified in renal failure: the role of factor D.

Factor D, an essential enzyme of the alternative pathway (AP) of complement, is eliminated by the kidney, and its plasma concentration increases 10-fold in end-stage renal disease (ESRD). The purpose of this study was to analyze the consequences of factor D accumulation. A number of in vitro assays were used to analyze AP activation in normal human serum (NHS), in normal serum supplemented with purified factor D to 10-fold its normal concentration (10 x D), and in sera of patients with ESRD. When compared with NHS, in 10 x D: 1) Spontaneous fluid-phase activation of complement at 37 degrees C was greatly increased as measured by C3 cleavage, 2) The lysis of rabbit erythrocytes, a function of the AP, was accelerated, 3) More C3 fragments bound to cuprophane membranes and to immune precipitates; both reactions were accompanied by the formation of more C5a, 4) Complement mediated solubilization of antigen-antibody precipitates was enhanced. Sera of patients with ESRD behaved similarly to 10 x D in all assays used, i.e., enhanced AP function, although complement activation measured in these assays varied widely from one individual to another. Thus, the elevated factor D concentration observed in renal failure might have important pathophysiological consequences, some of which could be detrimental (e.g., C5a produced during hemodialysis), while others might be beneficial, e.g., solubilization of immune precipitates.

Aged↗

Characterization of the enhanced susceptibility of paroxysmal nocturnal hemoglobinuria erythrocytes to complement-mediated hemolysis initiated by cobra venom factor.

When whole serum C is activated by cobra venom factor complexes (CoFBb), paroxysmal nocturnal hemoglobinuria (PNH) III E (the most C-sensitive type) are hemolyzed, but normal and PNH II E (the intermediately sensitive type) are not. Previous studies have shown that after exposure to CoFBb and serum, PNH III E bind relatively large amounts of the trimolecular C complex, C5b67, whereas normal and PNH II E bind virtually none. In the studies reported herein, we have observed that when normal and PNH III E are incubated with isolated C5, C6, and 125I-C7 in the presence CoFBb, the normal E bind more C5b-7 than the PNH cells. When C7-deficient serum is included in the reaction mixture, however, the PNH E are once again observed to bind much greater amounts of C5b-7. These observations suggest that plasma and membrane factors act in concert to restrict the assembly of the trimolecular C5b-7 complex on human E. PNH III E appear to be deficient in the membrane component of this inhibitory system.

Animals↗

[Elimination of immune complexes: role of complement].

For many years it has been considered that complement does not modify the immune elimination of antigen-antibody complexes. However, recent studies suggest that complement contributes to the normal processing of immune complexes: (1) complement activation modifies the structure of the immune complex lattice and produces soluble complexes, (2) erythrocytes bind complement reacted complexes and deliver them to the fixed macrophage system. The clinical association between inherited complement deficiency and immune complex mediated diseases also suggests a role for complement in the physiological elimination of complexes.

Antigen-Antibody Complex↗

Expression of specific binding sites on Candida with functional and antigenic characteristics of human complement receptors.

Receptors for C3 degradation fragments (CR1, CR2, and CR3) are present on many human cells including phagocytes and lymphoid cells and may be critical in the attachment of invading microorganisms. In these studies Candida were found to mimic the human CR by binding erythrocytes coated with specific human C3 fragments. Yeast forms of Candida species were adhered to glass slides and were allowed to germinate. Sheep erythrocytes (E) were coated with IgM (EA) and human complement components to prepare EA, EAC14, EAC3b, EAC3bi, and EAC3d. These test cells were then examined for adherence to the organism. Antibodies to human CR1, CR2, and CR3 were used to evaluate their potential for blocking adherence of the test erythrocytes to Candida. Fluorescein-labeled antibodies to human complement receptors were also used to characterize the binding sites. EAC3bi and EAC3d, but not E, EA, or EAC14, bound extensively to the germ tubes and pseudohyphae of Candida albicans and C. stellatoidea. EAC3b bound infrequently. Other Candida species, generally considered less pathogenic, bound significantly fewer specific test erythrocytes than C. albicans. Monoclonal antibodies to human CR1 and CR3 (3D9, 1B4, C511, 2B6, anti-B2, Mo1, and anti-Mac-1), in general, did not block adherence of test erythrocytes. Blocking of adherence of EAC3bi and EAC3d test erythrocytes coated with small quantities of C3 fragments occurred with high concentrations of monoclonal (anti-CR2) HB-5 and polyclonal (anti-CR2) anti-GP 140. Immunofluorescence studies demonstrated binding of Mo-1 to the germinated forms of the organism, whereas binding of the other antibodies was not seen. These studies suggest a surface constituent on the organism similar to CR on human cells. Additional studies are necessary to further define the molecular nature of the binding site. The ability of organisms to mimic human CR may be more generalized than previously known and may serve as a mechanism for modification of the inflammatory and immune response.

Antibodies, Monoclonal↗

Membrane complement receptor type three (CR3) has lectin-like properties analogous to bovine conglutinin as functions as a receptor for zymosan and rabbit erythrocytes as well as a receptor for iC3b.

Human leukocyte complement receptor type three (CR3) was shown to be lectin-like and to resemble bovine serum conglutinin (K) in that it bound to both iC3b and unopsonized yeast (Saccharomyces cerevisiae), and was inhibited by EDTA or N-acetyl-D-glucosamine (NADG). CR3 and K also bound to zymosan (Z), a yeast cell wall extract that contains primarily polysaccharide and no detectable protein. However, structural differences and the absence of K on bovine phagocytes indicated that CR3 was not the human homologue of bovine K. Phagocytic and respiratory responses to unopsonized Z were CR3 dependent because they were inhibited by monoclonal antibodies specific for the alpha-chain of CR3 and did not occur with phagocytes from patients with a genetic deficiency of CR3. The binding of CR3 to Z did not require opsonization of the Z with neutrophil-secreted C3, as Z binding and responses were not inhibited by Fab anti-C3. In addition, CR3-dependent binding of yeast occurred with neutrophils from which protein secretion was blocked by fixation with paraformaldehyde. Rabbit erythrocytes (RaE) also bound weakly to neutrophil CR3 and triggered ingestion. Anti-CR3 not only blocked the binding and ingestion of RaE but also blocked selectively the ingestion of RaEC3b without affecting the strong binding mediated by CR1. Even though sheep E and sheep EC3b were not ingested by neutrophils, a weak binding of CR3 to sheep E was suggested by the finding of 20 to 40% inhibition of sheep EAIgG ingestion by anti-CR3. Such inhibition was only observed in buffers that allowed activity of the CR3 binding site and not in buffers containing either EDTA or NADG. An apparently contradictory finding was that the weak CR3-dependent binding of Z triggered neutrophil ingestion and a superoxide burst, whereas the avid CR3-dependent binding of sheep EC3bi did not induce significant ingestion or a respiratory burst. Blocking studies with monoclonal antibodies specific for different epitopes of the alpha-chain of CR3 suggested that this might result from the presence of two distinct binding sites in CR3: one site for fixed iC3b that did not trigger functions, and a second function-triggering site for Z that did not bind to fixed iC3b.

Animals↗

[Articular manifestations in patients with Reiter's syndrome].

The polyetiology, the discrepancies in the initial manifestations, polymorphism in the course and the possibility of the ephemerality or absence of ocular, uro-genital and skin-mucosal manifestations create jointly the preconditions for a frequent diagnostic error in Reiter syndrome. The study confirmed the thesis that the diagnostic characteristics including the articular symptomatics are among the most striking ones. Synovial-arthritis and the involvement of the soft tissues are accompanied by disorders in the immune system with increased number of early T-lymphocytes, of Fc Gd and complement (C3b)-receptor lymphocytes and of spontaneously blast-transformed cells. The rheumatological process is characterized by proportionately accumulation of 99m Tc-pertechnetate and 99m Tc-pyrophosphate in the affected articular structures, with asymmetry of affection, with predilection and maximal capture of the radiopharmaceutical in the feet. The radioisotope information is on scanty alterations in the spine and sacroiliac joints. The complex study facilitates the timely diagnosis of the disease.

Adolescent↗

[Clinico-laboratory, immunologic and radionuclide joint indices in psoriatic arthropathy].

A juxtaposition between the clinical-laboratory, immunologic and radionucleotide articular parameters was performed in 50 patients with psoriatic arthropathy, distributed according to the incidence of X-ray manifestations. The late and moderate changes in ESK, leukocytes, fibrinogen, DPA and phosphatasemia do not characterize the severity of the disease. A tendency to hyperuricemia and hypercalcemia is established in the period of arthralgia before the X-ray image for bone-tissue damage. The genetic HLA-B27 predetermination plays a certain role for the more frequent involvement of the spine and sacroiliac joints in the pathological process. The disturbances in the immune system are manifested with increased number of early T-lymphocytes, FcG-receptor lymphocytes, complement (C3b)--receptor lymphocytes and spontaneously blast-transformed cells. The increasing IgG content correlates with the accumulation of macromorphological X-ray images and with the index of mineral metabolism from the articular study with 99MTc-pyrophosphate. The changes in the pertechnetium index for articular vascularization are quantitatively insignificant and do not allow the joining of the psoriatic arthropathy to the group of primary synoviarthritis. The accumulation of technetium pyrophosphate in the articular structures is asymmetric, focal and precedes the changes in the X-ray image.

Adult↗

Hemolytic activity of leukemic sera: the role of complement and sucrose.

In sera of patients with acute myeloblastic leukemia (AML), hemolytic activity can be demonstrated in vitro in the presence of sucrose. To investigate the nature and the mode of action of this hemolytic activity, serum samples from 24 patients with AML were studied by incubation of normal human erythrocytes together with patient serum in the presence of sucrose at low ionic strength (inverse sucrose hemolysis test, ISHT). Fifty-five percent of the serum samples collected during the active stage of the disease gave a hemolysis rate of greater than 4%, whereas in remission only 15% of the samples lysed erythrocytes. Substitution of raffinose, lactose, or polyethylene glycol 400 for sucrose resulted in an almost complete failure of hemolysis under standard conditions, indicating a minor role of the low ionic strength in the ISHT. Heat inactivation, preincubation with inulin, and addition of EDTA, Mg2+-EGTA, or heparin completely abolished hemolytic activities of AML sera when the incubation was carried out for 30 minutes (standard conditions of the ISHT). A prolongation of the incubation time resulted in delayed hemolysis only with the Mg2+-EGTA-treated AML sera. The kinetics of this hemolysis by Mg2+-EGTA-treated AML sera were similar to those of normal human serum in the presence or absence of Mg2+-EGTA. Hemolysis was also obtained by performing the ISHT with normal sera and erythrocytes preincubated with AML sera. These observations suggest a mediation of membrane modification of normal human erythrocytes by AML sera in the presence of sucrose, resulting in an activation of the classical pathway of complement.

Adult↗

Production of C3 nephritic factor by cultured lymphocytes derived from a patient with partial lipodystrophy.

C3 nephritic factor (C3 NeF) has been found mainly in the sera of patients with membranoproliferative glomerulonephritis (MPGN) and partial lipodystrophy (PLD). We examined whether peripheral blood mononuclear cells (PBMC) from a patient with PLD could produce C3 NeF. We investigated the in vitro immunoglobulin synthesis of PBMC with mitogen. We further studied the C3bBb stabilizing activity and undertook agglutination assays of the IgG obtained from the culture supernatants. The patient IgG was able to agglutinate only EAC4b3bBb cells and none of the other intermediate cells. We this demonstrated that C3 NeF could be produced in vitro by PBMC derived from a patient with PLD.

Child↗

Mechanisms of loss of human neutrophil chemotaxis following thermal injury.

The increased susceptibility to infection of patients with thermal injury is related to loss of host defense, which is reflected, in part, by the temporal loss of chemotactic function of leukocytic phagocytes. Our studies of patient neutrophils to define the mechanism of this phenomenon involved evaluation of both random and chemotactic migratory functions of patient neutrophils, measurement of receptors for chemotactic ligands, and measurement of receptors mediating substrate adherence of the cells. Measurements of migratory functions were made using the under-agarose technique and measurements of receptor expression were accomplished by flow cytometry using fluorescein-labeled ligand or receptor-specific antibody. We conclude that loss of chemotaxis in response to C5a/C5adesArg is the results of down-regulation of receptors for C5a and of reduced motility, and that loss of chemotaxis in response to the tripeptide FMLP is the result of reduced motility alone. Measurements of changes in the expression of "adherence" (iC3b) receptors revealed that up-regulation occurs early and can be sustained for weeks after injury. These results are taken to suggest that either hyper- or hypo-adherence could explain the loss of random migratory function observed for patient cells. Evidence of auto-oxidative alteration of cytoskeletal elements, to produce loss of random migratory function, also is reviewed. Considering the evidence for activation of the complement cascade after thermal injury C5a and C5adesArg are likely primary factors in effecting the down-regulation of C5a receptors, stimulation of secretion to mobilize iC3b receptors, and stimulation of respiration to auto-oxidize cell components. Such evidence of injury-mediated complement activation included data derived from application of a novel immunoassay for iC3b.

Burns↗

Clinical applications of crossed immunoelectrophoresis to the study of complement activation.

The purpose of our study was to set up a reliable method for the measurement of complement activation by adapting the method of crossed immunoelectrophoresis. We utilised anti C3 antiserum and barbitone buffer, containing sufficient EDTA to prevent in vitro activation of complement. We studied 44 patients undergoing open heart surgery, with cardiopulmonary bypass (CPB) by the analysis of plasma samples taken during the operation, and also samples of plasma and dialysate effluent from patients with end stage renal failure undergoing continuous ambulatory peritoneal dialysis (CAPD). Measurements were also carried out on stored blood, aged serum and serum treated with varying doses of lipopolysaccharide (LPS). Complement activation occurs in 95% of patients during CPB with levels ranging from less than 4.5% to 11.3% of total C3, but there was no detectable activation in any pre-bypass sample. Negligible complement activation occurs in the plasma of CAPD patients, but the dialysate effluent gave results from undetectable levels to 31.7%, in the absence of clinical peritonitis. Variable in vitro complement activation occurs in aged serum, but it was not detectable in stored blood. Serum treated with LPS showed levels of activation directly proportional to the dose of LPS and measurable at a level of 0.1 microgram/ml of serum. The method had a coefficient of variation of 4.5%, and provides a reliable way of measuring complement activation in clinical situations such as cardiopulmonary bypass and peritoneal dialysis.

Cardiopulmonary Bypass↗