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Bovine IgM: does it fix guinea pig complement in the absence of bovine complement components?

Purified bovine isotypes IgM, IgG1, IgG2, and IgA (secretory), affinity purified with Brucella abortus, were tested in a complement fixation test (CFT) for their ability to activate guinea pig complement directly or in the presence of 'normal' bovine serum. Only IgG1 fixed guinea pig complement in the direct test and approximately 250 ng of antibody was required to activate 50% of 3 CH50 units with a standard amount of antigen. Addition of 'normal' bovine serum as an additional source of complement resulted in activation of guinea pig complement by IgM, IgG2 and secretory IgA at levels of approximately 1200, 700 and 2250 ng, respectively for 50% of 3 CH50 units. Addition of 'normal' bovine serum did not enhance complement activation by bovine IgG1.

Animals

Effect of sulfones on complement deposition in dermatitis herpetiformis and on complement-mediated guinea-pig reactions.

The role of complement and the mechanism of sulfone action in dermatitis herpetiformis (DH) have not yet been established; prior studies have presented conflicting data regarding the effect of sulfones on complement activation and deposition. Thirty-eight DH patients were studied. Twenty-four of 25 perilesional skin biopsies and 50 of 67 normal-appearing skin biopsies showed the third component of complement (C3) deposited in areas corresponding to those of IgA deposition. Nine of 10 patients with bound C3 in normal-appearing and perilesional skin during periods of active disease continued to have C3 in normal-appearing skin when treatment with sulfones kept them completely free of lesions for 2 to 8 weeks. When either Hartley-strain or C4-deficient guinea pigs were given up to 150 mg/kg sulfoxone (a water-soluble sulfone) intraperitoneally for 8 days before elicitation of active Arthus, reverse passive Arthrus reactions, or Forssman shock, there was no difference in time course, character, or intensity of reactions when compared to saline-treated control animals. We were therefore unable to demonstrate any effect of sulfones on complement deposition in DH skin or on complement activation in classical or alternate complement pathway-mediated guinea-pig reactions.

Animals

Role of antibody and complement in the immune clearance and destruction of erythrocytes. I. In vivo effects of IgG and IgM complement-fixing sites.

A model which permits evaluation in molecular terms of the role of antibody and of complement in the immune destruction of erythrocytes was established in the guinea pig. IgM and IgG immunoglobulins were isolated from rabbit anti-guinea pig erythrocyte antisera and were used to sensitize (51)Cr-labeled guinea pig erythrocytes. The average number of complement-fixing sites per erythrocyte formed by antibody was determined for each of the various preparations by the Cla fixation and transfer test. The rate of clearance and of organ localization was determined for cells sensitized with either IgM or IgG antibodies, and dose-response curves were established in normal guinea pigs and guinea pigs with a genetically controlled, complete absence of the fourth component of complement (C4). At least 60 complement-fixing sites per cell were required for accelerated clearance of IgM-sensitized erythrocytes. The bulk of cells with IgM sites were cleared by the liver within 5 min after injection and were then slowly returned to the circulation where they survived normally. There was no accelerated clearance whatsoever of IgM-sensitized erythrocytes in C4-deficient guinea pigs. As few as 1.4 IgG complement-fixing sites per cell resulted in decreased erythrocyte survival. There was no evidence of immediate tissue sequestration and release. Progressive trapping and destruction of erythrocytes by the spleen was responsible for most of the clearance of IgG-sensitized cells. Clearance of IgG-sensitized cells was markedly impaired in guinea pigs with C4 deficiency; however, there was some decrease over normal survival. The data indicate that IgG and IgM antibodies interact with complement in vivo by mechanisms which are qualitatively or quantitatively different and produce different biologic effects.

Anemia, Hemolytic

Complement-independent adherence of Escherichia coli to complement receptors in vitro.

We studied adherence to human cells by a strain of Escherichia coli. Adherence to erythrocytes was assessed directly by phase-contrast microscopy and indirectly by hemagglutination; adherence to peripheral blood leukocytes, using radiolabeled bacteria and subsequent determination of leukocyte-associated radioactivity; and adherence to renal glomeruli, by microscopy of fluoresceinated bacteria and of Gram-stained nonfluoresceinated bacteria. In serum-free systems, E. coli of this strain adhered to human erythrocytes, which have surface receptors for the third component of complement (C3), but not to erythrocytes from species lacking this receptor. 1 mM trypan blue, a reagent that inhibits complement receptor function, inhibited adherence to human erythrocytes, as well as adherence to leukocytes and glomeruli. Preincubation of erythrocytes and leukocytes with complement-coated zymosan particles partially blocked subsequent bacterial adherence. Incubation of human erythrocytes with aging human serum, with trypsin-cleaved C3, or with C3 cleaved by the classical pathway convertase (EAC142)-all of which treatments deposited C3 on the erythrocyte surface, presumably at C3 receptors-inhibited subsequent E. coli adherence. Finally, incubation of E. coli with rabbit antiserum to human C3 blocked adherence to erythrocytes.Bacterial hemagglutination and erythrocyte adherence were not inhibited by mannose in concentrations up to 2.5%. And this strain of E. coli did not adhere to or agglutinate guinea pig erythrocytes, the usual test particle used for demonstration of common pili. Finally, electron microscopy of adherent bacteria showed only rare surface pili. In contrast, adherence to and agglutination of guinea pig erythrocytes by a stock piliated E. coli was inhibited by mannose but not by trypan blue. We conclude that organisms of this strain of E. coli adhere to human erythrocytes, leukocytes, and glomeruli at complement receptors. Complement is not required for this interaction. Adherence apparently involves a C3-like structure on the bacterial surface, but bacterial surface pili play no role. The physiological or pathological role of this adherence is not apparent, but study of this phenomenon may elucidate functions of complement receptors on various cells.

Animals

Erysipelas arthritis in swine: concentrations of complement and third component of complement in synovia.

Concentrations of hemolytic complement and of 3rd component of complement were determined in serums and in synovia of normal and arthritic joints in swine affected with arthritis experimentally produced by the inoculation of Erysipelothrix rhusiopathiae. Mean concentrations of complement in arthritic joints were increased from 24.7 to 37.5 50% hemolytic units of complement per milliliter. Third component of complement, expressed as a percentage of the serum concentration, was increased from a mean of 16.9 (normal joint synovia) to a mean of 27.1 (arthritic joint synovia). Also, fast-migrating conversion products of 3rd component of complement were not detected in synovia from arthritic joints. These results are interpreted as indicating a relatively less important role for immune complexes in the pathogenesis of erysipelothrix arthritis than is described for rheumatoid arthritis in persons.

Animals

Complement and monocytes are essential for provoking glomerular injury in passive Heymann nephritis in rats. Terminal complement components are not the sole mediators of proteinuria.

Complement but not polymorphonuclear granulocytes (PMN) causes glomerular injury in passive Heymann nephritis in rats. We have now identified monocytes as another important mediator in this model. Passive Heymann nephritis was induced in Wistar rats by intravenous injection of sheep anti-rat Fx1A antiserum. Four groups (all receiving anti-rat Fx1A antiserum) were studied: (a) rats given normal sheep globulin (nephritic controls), (b) rats given sheep anti-rat PMN globulin (PMN-depleted), (c) rats given sheep anti-rat monocyte globulin (monocyte-depleted), (d) rats injected with cobra venom factor (complement-depleted). In vitro specificity controls for anti-cell antisera were made by cytotoxicity tests and inhibition of phagocytosis. In vivo specificity controls were performed in heterologous Masugi nephritis (PMN-dependent) and accelerated Masugi nephritis (monocyte-dependent). Complement and monocyte depletion significantly delayed the onset of proteinuria (p less than 0.001 versus nephritic controls on day 5), PMN depletion had no significant effect. Monocyte infiltration was seen in control nephritic rats, but monocyte depletion prevented this influx. In the monocyte-depleted group, no differences in glomerular deposition of C3, C9, and C5b-9 were seen in comparison to the nephritic control rats. Serum C3 levels were comparable in groups a, b, and c, the complement system was biologically active in the monocyte depleted-group (c), and the amount of anti-Fx1A antibody bound was the same in all groups. This shows that, besides complement, monocytes are required for induction of renal damage in passive Heymann nephritis. The concept of a sole role for complement in glomerular immune injury involving subepithelial immune deposits should be reconsidered.

Animals

Effects of transfected complement regulatory proteins, MCP, DAF, and MCP/DAE hybrid, on complement-mediated swine endothelial cell lysis.

We established several swine endothelial cell (SEC) lines, expressing human MCP (CD46), DAF (CD55), and MCP/DAF hybrid by transfection of cDNA, and assessed the function of these transfectant molecules on complement-mediated cell lysis as an in vitro hyperacute rejection model of swine to human discordant xenograft. Discordant organ xenografts are hyperacutely rejected by complement activation. Amelioration of complement-mediated lysis by these transfectant molecules was tested in each SEC line by lactate dehydrogenase assay. Naive swine endothelial cells were markedly damaged by human complement mainly via the classical pathway, activating only minimally the alternative pathway of human complement. Both MCP and DAF protected SEC from human complement attack in parallel with the expression density, with DAF being more effective than MCP. The MCP/DAF hybrid was more effective than MCP alone, and as effective as DAF in this system. The results suggest that the transfection of DAF or the MCP/DAF hybrid cDNA into organs to be transplanted could protect against hyperacute rejection.

Animals

Complement activation in septic baboons detected by neoepitope-specific assays for C3b/iC3b/C3c, C5a and the terminal C5b-9 complement complex (TCC).

We have investigated the cross-reactivity of various species in neoepitope-specific methods for quantification of human complement activation products. In contrast to most other species examined, baboon showed a substantial cross-reactivity supporting a high degree of homology between human and baboon complement. An assay for C3b, iC3b and C3c (MoAb bH6) showed moderately good reactivity, in contrast to a C3a assay which did not cross-react. Excellent reactivity was found for C5a using MoAbs C17/5 and G25/2. The reactivity of an established TCC assay (MoAb aE11 to a C9 neoepitope and polyclonal antibody to C5) was improved substantially by replacing the anti-C5 antibody with a new MoAb to C6 particularly selected on the basis of baboon cross-reactivity. Plasma samples from baboons receiving 2.5 x 10(9) and 1.0 x 10(10) live Escherichia coli bacteria/kg were examined with the assays described. In vivo complement activation with the lowest dose was moderate and kept under control, in contrast to the highest dose, where an uncontrolled increase in all activation products continued throughout the infusion period. These results support the hypothesis that sufficiently high amounts of endotoxin lead to uncontrolled activation of complement as seen in irreversible septic shock. The results are discussed with particular emphasis on activation of the terminal complement pathway.

Animals

Subnormal sensitivity of neutrophils to complement split product C5a in rheumatoid arthritis: relation to complement catabolism and disease extent.

The capacity of circulating neutrophils for activation by complement was studied in outpatients with classical or definite rheumatoid arthritis during treatment with dextropropoxyphene only. Analysis of dose-response in the Boyden chamber assay of chemotaxis showed that sensitivity to the potent, complement derived anaphylatoxin, C5a, was markedly decreased, especially in those patients with few joints involved. In contrast, peak response to C5a was within the normal range. Increased complement 3c split products in plasma of the patients suggested involvement of complement cascade reactions. Subnormal sensitivity of neutrophils to phlogistic mediators released by complement may tend to limit their recruitment and potentially tissue destroying secretion locally in rheumatoid arthritis.

Adult

Assessment of complement activation during extracorporeal circulation by measurement of complement split C3d.

The present report summarizes our previous experience with the effect of various dialyzer membranes on leukocyte count, plasma C3d and C5a/C5ades-Arg, and total hemolytic complement. A relationship between the formation of C5a/C5ades-Arg within the dialyzer and hemodialysis leukopenia was demonstrated by comparing different membranes. Arterial plasma C3d was found to be a useful cumulative marker of complement activation during hemodialysis. C3d was shown to be generated in the artificial kidney with kinetics resembling the formation of C5a/C5ades-Arg. Total hemolytic complement transitorily decreased with all membranes, but did not reflect dialyzer biocompatibility. It is suggested that determination of complement-split C3d outdates previous more elaborate estimates of complement activation during hemodialysis.

Complement Activation

Plasma levels of complement components and complement haemolytic activity in protein-energy malnutrition.

The plasma levels of complement haemolytic activity (CH50) of some complement components and of C3d, a C3 breakdown product, were measured in fifty-nine African children with various types of protein-energy malnutrition (PEM) including kwashiorkor, before and during recovery. A significant decrease of CH50, C3, C9 and factor B was observed in PEM without a concomitant decrease of C4 and C5. Increased plasma levels of C3d were also found in PEM patients. Two mechanisms seem to be involved in the impairment of the complement system in PEM: (1) a decreased synthesis of at least C3 and C9 as suggested by a significant correlation between C3 or C9, levels and those of albumin and cholinesterase; (2) an increased catabolism of C3 possibly due to an activation of the alternative complement pathway, as suggested by the increased level of C3d and the decreased level of factor B which are significantly correlated with C3 levels but not with albumin levels. These data support the possible role of a relative complement deficiency upon the decreased resistance to infections observed in malnourished children.

Child, Preschool

Human peritoneal macrophages. Production in vitro of the active terminal complement components C5 to C9 and a functional alternative pathway of complement. Brief report.

Endotoxin-stimulated human peritoneal macrophages were cultured in serum-free medium with agarose beads. Monospecific antibodies to human C3c, C3g, C5, C6, C7, C8, C9 and to C9-neoantigen bound to the beads. This shows that activated C3 and the terminal complement complex (TCC), made from complement components C5 to C9, were generated on the beads. De novo synthesis was confirmed by agarose binding of tritium-labelled protein. Moreover, C3-derivatives and C9-neoantigen were detected on normal serum-treated agarose beads but not on beads kept in factor B-depleted or heat-inactivated sera, implying that an intact alternative complement pathway was required for our findings. The macrophages thus synthesize the active complement components of the alternative and terminal pathways in vitro.

Ascitic Fluid

Regulation of the complement cascade by soluble complement receptor type 1. Protective effect in experimental liver ischemia and reperfusion.

The complement cascade was inactivated in a model of rat liver ischemia with the purpose of studying the role of complement in tissue injury after ischemia and reperfusion. Soluble human complement receptor type 1 (sCR1) was administered either in a single dose of 25 mg/kg or in 2 doses of 50 mg/kg i.v. over 24 hr after vascular occlusion. Sham-operated rats, nontreated rats submitted to liver ischemia, and rats pretreated with cobra venom factor and submitted to liver ischemia were used as controls. This experiment consists of the temporary interruption of arterial and portal blood flow to the left lateral and medial lobes of the liver for 45 min, followed by a 24-hr period of follow-up after reperfusion. Liver blood flow and hemoglobin saturation were recorded for 1 hr after declamping, with statistically significant differences between the experimental groups and the untreated control group, which received liver ischemia (P < 0.001). At 24 hr, galactose elimination was assayed as a liver function test; it was significantly better in the sCR1-treated rats when compared with control rats submitted to ischemia (P < 0.01). Alanine aminotransferase levels were also significantly lower in the sCR1-treated rats at 6 and 24 hr (P < 0.05). Complement activity was reduced to 25% and 12.5% of normal rats with the respective doses of sCR1. Immunoperoxidase stainings for C3 and C9 were performed on liver sections; they showed endothelial deposits of C3 and C9 in the control group subjected to ischemia. Few C3 deposits were present in the sCR1 (25 mg/kg)-treated rats, but not in the cobra venom factor or sCR1 (50 mg/kg) groups. These results confirm that complement is inactivated by sCR1 with amelioration of reperfusion injury in the rat liver.

Animals

Characterization of complement activity in turkeys: evidence for classical and alternative complement pathways.

Complement activity in turkey serum was examined by using inhibitors or activators of mammalian complement. Hemolytic test systems using sheep red blood cells sensitized with specific antibody (SSRBC) and horse red blood cells (HRBC) were developed to measure residual complement activity of turkey sera treated with the various inhibitors or activators. Lysis of SSRBC was blocked by treatment with 6-mM EDTA, 10-mM ethylene glycol-bis-beta aminoethylether N,N,N',N' tetraacetic acid (EGTA), and carrageenan. In contrast, lysis of HRBC was blocked by 6-mM EDTA, but not by 10-mM EGTA or carrageenan. Addition of magnesium to EGTA-chelated serum facilitated the lysis of HRBC but not the lysis of SSRBC. Treatment of serum with zymosan at 1 mg/mL and inulin at 5 mg/mL depleted hemolytic activity against both SSRBC and HRBC, suggesting depletion of components common to both pathways. Differences in the hemolytic activities of sera against SSRBC and HRBC after treatment with the various complement inhibitors and activators demonstrate the presence of two complement pathways in turkeys.

Animals

Expression of the complement regulator factor C8 binding protein on human glomerular cells protects them from complement-mediated killing.

The complement-regulatory factor C8 binding protein (C8bp) was first identified on human erythrocyte membranes by its affinity for the complement component C8 and its ability to inhibit lysis by homologous complement. Cultured human glomerular mesangial or epithelial cells (GEC) expressed C8bp on the cell surface and in the cytoplasm. Following stimulation of the glomerular cells with interleukin 1 beta, C5b-9 or with endotoxin, a transient, protein synthesis-independent increase in C8bp surface expression was seen. Blocking of C8bp function with F(ab)2 fragment of an antibody to C8bp rendered GEC susceptible to complement-mediated killing, indicating that C8bp contributes to the cellular defense against complement attack.

Blood Proteins

Complement activation in fetuses: assessment by the levels of complement components and split products in cord blood.

The whole complement activity (CH50) and concentrations of components (C1q, C3, and C4) and C3 split product (C3d) were determined in the cord blood of 172 newborns between 16 and 42 weeks of gestation. Histological examination of their placentas revealed that the extent of complement activation was significantly higher in those with some degree of inflammation in the amnion than in those with normal amnion. The correlation between the complement levels and gestational age was higher in those with no amnionitis. In some cases the level of C3d at an early gestational age was as high as that in adults. The C3 activation system seems to be well developed even before week 25 of gestation. Among the complement components, C3d was the most sensitive indicator of placenta inflammation. As placenta inflammation may reflect intrauterine infection, the measurement of C3d levels may be of diagnostic value.

Adult

LambdacI mutants: intragenic complementation and complementation with a cI promoter mutant.

Complementation for the maintenance of lysogeny was studied by superinfecting lambdacIts lysogens at 34 degrees C. and then heating to 43 degrees C. With certain exceptions, ts mutants with defects in the left half of the repressor complemented ts mutants with defects in the right half to produce a less heat-labile repressor (Fig. 3). All cI amber mutants failed to complement cIts mutants. The cI mutant c50 complements all ts mutants. Mutations in Pre (cy) or genes cII and cIII do not significantly affect the expression of cI by a superinfecting lambda genome in an immune lysogen. Mutants with very heat-labile repressors failed to complement lambdacy42 for the establishment of lysogeny at elevated temperatures, while those with less heat-sensitive repressors apparently did complement cy. According to a suggested model, the left side of the cI product is concerned primarily with subunit aggregation, while operator binding is the function of the right side of the oligomer.

Coliphages

Deficiency of the fifth component of complement in mice with an inherited complement defect.

The inherited complement deficiency of certain inbred strains of mice was shown to be due to an isolated lack of the fifth component of complement. The protein MuB1 (or hc'), which is present in normal mouse serum but absent from the serum of complement-deficient mice, was shown to be immunochemically related to the fifth component of human complement (C'5). C'5 hemolytic activity was specifically inhibited in human serum by mouse anti-MuB1 and in normal mouse serum by mouse antiserum to human C'5. Highly purified human C'5 reconstituted the hemolytic activity of complement-deficient mouse serum. It was, therefore, concluded that he', or MuB1, constitutes the murine analogue of the fifth component of human complement. The MuB1 concentration in normal mouse serum was found to be subject to a sex-related variation. By quantitative precipitin analysis it was demonstrated that serum from male mice contains twice as much MuB1 as that of female mice. This difference in C'5 concentration was also detected by hemolytic assay. In addition, C'6 and C'7 were also found to be subject to sex-related variations.

Animals