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Assessment of complement activation in clinical samples. Comparison of immunochemical and functional measurements of complement components with quantitation of activation fragments.

We have compared functional and immunochemical measurements of complement components with assays measuring the generation of activation fragments, for the assessment of classical pathway activation in vitro and in vivo. The generation of the C3a, C3b/C3bi cleavage fragments of C3, and of the C4d cleavage fragment of C4 measured by ELISA and RIA, was correlated with the decrease in total complement hemolytic activity (CH50) and in functional activity of C3 and C4 in normal human serum in which the classical pathway had been activated with aggregated IgG. The decrease in CH50 in in vitro activated serum was also correlated with the generation of C5a and soluble SC5b-9 complexes. In contrast, no or little increase in the concentration of C3a, C3b/C3bi and C4d was observed in plasma samples from patients with low CH50 and with low levels of immunochemical C3 and C4, indicating that fragment quantitation assays provide no information on the presence and extent of complement activation in vivo. Analysis of samples from patients expressing the four C4 genes and patients having one or two C4 null alleles indicated that a ratio of hemolytic C4 to C2 > or = 1 was indicative of complement activation without C4 deficiency, whereas a ratio below 1 was indicative of C4 deficiency with or without classical pathway consumption. Classical pathway activation and C4 deficiency in clinical samples are best predicted by the concomitant assessment of immunochemical levels of C3 and C4 and hemolytic levels of C4, C2 and C3.

Complement Activation↗

Expression of hemolytically active human complement component C1r proenzyme in insect cells using a baculovirus vector.

The gene of human C1r has been expressed in a baculovirus-insect-cell system via the pAc373 transplacement vector. The full-length cDNA copy was inserted into the pAc373 vector downstream from the strong polyhedrin promoter of the baculovirus, Autographa californica nuclear polyhedrosis virus (AcNPV). Spodoptera frugiperda cells were cotransfected with the resultant plasmid, pAcC1r, and the wild-type AcNPV DNA. Recombinant viruses, which drove the expression of C1r protein, were selected by plaque morphology and ELISA. Insect cells infected with the recombinant virus produced and secreted human C1r protein, at a level of 1-2 mg/l of medium. The expressed C1r was isolated from the medium by chromatofocusing. On reducing gels only a single Coomassie-staining band was observed, and this band migrated at 80-83 kD characteristic of the unactivated C1r proenzyme. Its identification as C1r was immunologically confirmed on Western blots. C1 reconstituted from purified C1r expressed in insect cells together with human C1q and C1s proved biologically active in a hemolytic assay. Thus, the baculovirus-insect-cell system is capable of expressing and secreting a sophisticated, multifunctional human complement subcomponent in its biologically activatable form.

Animals↗

Serum and blister fluid anticomplementary activity in pemphigus and bullous pemphigoid. Sucrose density gradient studies.

By sucrose density gradient ultracentrifugation and standard hemolytic complement assays, complement fixing activity of about 19 S and greater was found in blister fluids of one patient with pemphigus and three of five patients with bullous pemphigoid. Control blister fluids, including experimentally induced blisters, lacked such activity. Complement fixing activity was apparent, however, in 6 of 10 pemphigus sera and in two of five bullous pemphigoid sera tested. The material present in both pemphigus and bullous pemphigoid appears to activate the classical complement pathway.

Antigen-Antibody Complex↗

Human corneal extract enhances serum complement activity.

PURPOSE: The concomitant presence of complement-activation products in the cornea during inflammation is well described. The present study was undertaken to analyze the complement activity of normal human corneal tissue and to assess the presence of complement-modulating activities. METHODS: Human corneal tissue was extracted in veronal-buffered saline. The overall complement (C) activity of the human corneal extract (HCE) and the effect of HCE on serum C-activity were investigated using a hemolytic assay. Anion-exchange chromatography and gel filtration were applied for biochemical analysis of HCE. Monoclonal anti-human C3 was used to detect corneal C3 and to remove C3 from HCE by immunoadsorption. RESULTS: It was found that C-activity of HCE was less than 200 U/g tissue. Experiments to test whether HCE exhibited inhibitory activity led to an unexpected result: When added to human serum dilutions, HCE caused a significant, dose-dependent increase of C-activity. Pretreatment of HCE at 56 degrees C abolished the effect. Analysis of HCE by anion-exchange chromatography revealed two C-enhancing peaks. One peak was identified as C3 whereas the identity of the other protein peak remained unknown. CONCLUSIONS: Results indicate that the human cornea contains an as yet unidentified heat sensitive factor(s) able to enhance complement activity of serum. It is postulated that this factor(s) may play an important role in corneal physiology and pathology.

Chromatography, Gel↗

A protamine filter for extracorporeal heparin removal. Development, testing, blood compatibility evaluation, and future direction.

The authors previously developed a filter device containing immobilized protamine (termed "protamine filter") that could be used to remove heparin during extracorporeal perfusion. In vivo studies involving dogs showed that the protamine filter removed more than 50% of heparin from the animals' blood circuit in less than 20 min. In addition, the use of the protamine filter did not elicit statistically significant protamine induced hemodynamic and thrombocytopenic responses. Biocompatibility of the protamine filter was also evaluated, with the focus on its effect on the coagulation cascade, the complement system, and the blood antithrombin III levels. Results showed that heparin adsorbed to the protamine coated surface retained 20% of its original activated partial thromboplastin time activity, rendering the coated surface antithrombotic. Activation of the coagulation system by the protamine coated membrane and the untreated cellulose membrane, as measured by the elevation of prothrombin fragment F1 + 2 levels, was statistically identical. The CH50 hemolytic assay showed that the protamine coated membrane produced a reduction of 1.2 +/- 0.8% of the total complement levels, as compared to 9.4 +/- 1.6% by the untreated membrane. In addition, the change in C3a des Arginine levels after 30 min of circulation was 1.5 +/- 0.2 mg/ml by the protamine filter, as compared to 2.1 +/- 0.1 mg/ml by the untreated membrane. Unlike native heparin that would bind with antithrombin, heparin adsorbed on the protamine coated surface was devoid of such activity, and produced no depletion of circulating antithrombin. Because of the limited capacity of the protamine filter, the future system is envisioned to consist of two filters; while one filter is removing heparin the other will be regenerated. With a recently developed heparin sensor, it should be possible to design a sensor directed, biofeedback, two filter heparin removal system.

Adsorption↗

Complement inhibition with soluble complement receptor type 1 in cardiopulmonary bypass.

Although complement activation during cardiopulmonary bypass (CPB) is well documented, its pathogenic role in postperfusion organ injury is unproven. In this study, soluble human complement receptor type 1 (sCR1), a potent inhibitor of complement activation, was used to determine the contribution of complement activation to pulmonary injury in a porcine model of CPB. In vitro experiments demonstrated that sCR1 inhibits both classic and alternative complement pathways in the pig. Seven control piglets and 6 piglets treated with sCR1 (12 mg/kg intravenously) underwent 2 hours of hypothermic (28 degrees C) CPB followed by 2 hours of observation. In control piglets, total hemolytic complement activity and functional activities of C3 and C5 declined to 61.3%, 67.8%, and 61.4% of prebypass values, respectively, after 2 hours of CPB. Plasma from animals treated with sCR1 had virtually no hemolytic activity (total hemolytic complement activity < 5% of baseline), demonstrating effective complement inhibition. Similar degrees of neutropenia developed in the two groups during CPB, and there was no difference in post-CPB lung tissue myeloperoxidase level. Two hours after CPB, pulmonary vascular resistance increased 338% in control piglets but only 147% in piglets pretreated with sCR1 (p < 0.05); the alveolar-arterial gradient was not significantly different between controls (331 +/- 52 mm Hg) and piglets receiving sCR1 (290 +/- 85 mm Hg). Histologic examination revealed similar degrees of pulmonary edema in both groups. These data constitute direct evidence that complement activation plays a pathogenic role in lung injury after CPB.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Interactions of human complement component C3 with factor B and with complement receptors type 1 (CR1, CD35) and type 3 (CR3, CD11b/CD18) involve an acidic sequence at the N-terminus of C3 alpha'-chain.

Complement component C3 is a multifunctional protein that interacts with many different ligands and receptors. Several experimental approaches involving blocking Abs, proteolytic fragmentation, and synthetic peptides have been used to predict which regions in C3 are required for its various functions. We have used site-directed mutagenesis to alter specific residues in the C3 segments 730-739 and 933-942 that have been proposed to be required for the binding of factor B by C3, and have examined, within the context of the intact C3b molecule, the effect of these substitutions on the C3b-factor B interaction. Because it has been suggested that factor H and complement receptors type 1, 2, and 3 may recognize sites in C3 that partially or completely overlap those of factor B, the relevant proteolytic fragment of each mutant C3 was tested for its ability to interact with these molecules. This study clearly demonstrates that a segment near the N-terminus of the alpha'-chain, which contains the negatively charged residues 730DE and 736EE, is involved in the interactions of C3 proteolytic fragments with factor B and complement receptors type 1 and 3, but not type 2. Factor H cofactor activity was also partially affected by these mutations. In contrast, mutation of the 937KED triplet in the C3 933-942 segment had little or no effect on any of these activities.

Amino Acid Sequence↗

Purification and characterization of recombinant hamster tissue complement C1s.

Hamster complement C1s cDNA was inserted into expression plasmid BCMGSNeo, and transfected to SEA7 cells, A31 mouse fibroblasts transformed by polyoma virus. The transfectant secreted a large amount of recombinant C1s that was activated in the serum free culture medium and hydrolyzed acetyl-Gly-L-Lys-naphthyl ester (AGLNE). C1s was purified to a homogeneity from the culture medium of the transfectant by DEAE-Sephadex, Dymatrex orange A and size-exclusion HPLC. Purified hamster C1s consumed human complement in hemolytic assay and hydrolyzed gelatin in enzymography. To investigate the enzymic action of C1s at molecular levels, several antibodies were prepared against hamster C1s. One peptide (amino-acid residues 379-391) and two peptides (amino-acid residues 478-496 and 560-583) corresponding to the heavy and the light chain, respectively, were synthesized. The amino-acid sequences of these regions is not conserved between hamster and human C1s. Antibodies against these peptides were raised in rabbits. The anti-peptide antibodies bound specifically to hamster serum and recombinant C1s but not to human C1s. They inhibited the esterase activity of recombinant C1s to varying degrees depending on each antibody's binding site.

Amino Acid Sequence↗

Protamine-coated Cuprophan. A potential nonthrombogenic hemodialysis membrane with improved blood compatibility.

A protamine-coated Cuprophan hemodialysis membrane possessing improved blood compatibility was developed. Protamine was covalently immobilized onto the inner walls of the Cuprophan hollow fibers, using the cyanogen bromide (CNBr) activation method. Studies conducted with aqueous solutions indicated that the immobilization process did not introduce deterioration of the membrane mechanical and mass transfer properties; the permeability of several compounds through the protamine-coated membrane was unchanged. The modified membrane was rendered nonthrombogenic by the adsorption of heparin to the protamine-bound surfaces. Heparin adsorbed on the immobilized protamine retained about 20% of its initial anticoagulant activity. Preliminary studies using the hemolytic complement assay indicated that complement activation by the protamine-coated membrane was statistically far less than that by the untreated membrane.

Cellulose↗

Rapid, activity-guided isolation of sex-limited protein (Slp) from mouse serum by fractionated precipitation and high-performance liquid chromatography.

We have recently demonstrated that sex-limited protein (Slp) plays a key role in an EDTA-resistant mouse complement activation pathway. A rapid procedure, utilizing classical chromatography methods on an FPLC system, was developed for the isolation of functionally active Slp. The method is based on the fractionated precipitation of serum by polyethylene glycol 6000, followed by heparin Sepharose Cl-6B affinity chromatography, Mono Q anion exchange and Superose 12 gel filtration. The isolation of Slp was monitored by a hemolytic assay. The procedure resulted in the purification of Slp, which by SDS-PAGE gave a single band of M(r) 2000,000 under non-reducing conditions, and under reducing conditions three bands corresponding to M(rs) of 105,000, 76,000 and 37,000.

Animals↗

Hind III genomic polymorphism of the C3b receptor (CR1) in patients with SLE: low erythrocyte CR1 expression is an acquired phenomenon.

Expression of the human erythrocyte C3b receptor (CR1-CD35) and its Hind III RFLP was studied in a group of 37 patients with SLE, 15 consanguineous relatives of the patients and 48 healthy normal subjects. The CR1 number on erythrocytes was quantitated by ELISA using a mAb to CR1. Serum levels of complement proteins (C3, C4, C3d) and circulating immune complexes (CIC) were estimated simultaneously in controls and relatives. The patients were followed up during the course of the treatment. The CR1/erythrocyte (CR1/E) in patients were found to be significantly low in comparison to controls. The gene frequencies for the alleles H and L (7.4 and 6.9 kb Hind III restriction fragments) in the patients were 0.75 and 0.25, respectively, which did not differ significantly from the controls (0.77 and 0.23 in normal subjects and 0.79 and 0.21 in consanguineous relatives of the patients). However, patients expressed fewer CR1/E within each genotype than their relatives and healthy subjects. CR/E was found to be stable in consecutive samples in controls. In patients, the numbers varied between low and high during the course of the treatment. The variation in the numbers was significantly correlated with C3d and CIC as well as with the severity of the disease. Our results suggest that low levels of CR1 on erythrocytes in SLE patients are required during the course of the disease and that the 6.9 kb restriction fragment does not play a role in causing susceptibility to the disease.

Adolescent↗

C1q-bearing immune complexes detected by a monoclonal antibody to human C1q in rheumatoid arthritis sera and synovial fluids.

Using a monoclonal antibody directed against the C-chain of human C1q, we detected C1q-bearing immune complexes (IC) in sera and synovial fluids of rheumatoid arthritis (RA) patients. In a sandwich-ELISA, C1q-bearing IC were captured by the solid-phase monoclonal antibody and then detected with peroxidase-labeled F(ab')2-antibodies to either human IgG or IgM. The results of this assay were compared to an ELISA-modification of the C1q-solid-phase binding assay (C1q-SPBA). C1q-bearing IC were detected in 81.1% of RA-sera and the 65.2% of RA-synovial fluids. IgG as well as IgM was present in 72.6% of the sera and 70% of the synovial fluids which were positive in both assays. Most RA sera that were only positive for C1q-bearing IC, contained IgG alone (81.5%). The corresponding synovial fluids showed IgG alone (53%) or both IgG and IgM (41.1%). IgM alone (25%) could be detected in sera, e.g. in juvenile forms of RA. The levels of IC were higher in synovial fluid than in paired serum. In comparison to normal human serum (NHS) and patients with osteoarthritis, complement activity (CH50 titers) and C1q-values in patients with RA were frequently elevated. Since the formation of C1q-bearing IC is an indicator for the classical complement pathway activation, an assay with monoclonal anti-C1q antibody may be a useful tool in the diagnosis of rheumatoid diseases.

Antibodies, Monoclonal↗

[The changes of complement activities in sera of mice after subcutaneous administration of beryllium chloride].

We studied changes of the complement pathway activities and the content of C3 in sera of mice, administered BeCl2 (containing 5 micrograms of Be per mouse) or CuCl2 (containing 5 micrograms of Cu per mouse) by a single subcutaneous injection. The value of the classical complement pathway activity (CH50) of the Be group 3 days after administration was significantly higher than that of the control group (P < 0.001). It was significantly lower than in the control group after 7 days (P < 0.001). On the other hand, the CH50 value of the Cu group 3 hr after administration tended to increase, however, it was significantly lower than in the control group after 7 days (P < 0.01). The change of the alternative complement pathway activity (ACH50) value of the Be group was similar to the change of the CH50 value of the group. The ACH50 value of the Cu group 3 days after administration tended to increase but it was the same as the ACH50 value of the control group after 7 days. The C3 contents of both the Be and Cu groups 3 days after administration were significantly higher than in the control group (P < 0.001). The aspartate aminotransferase (AST) activity of the Be group 7 days after administration was significantly higher than that of the control group (P < 0.01). By contrast, AST activity of the Cu group 3 hr after administration was significantly higher than in the control group (P < 0.05). The value of the alanine aminotransferase (ALT) activity of the Be group was low (P < 0.01), but that of the Cu group was high (P < 0.05), 3 hr after administration. These values of both groups after 7 days, however, were significantly higher than in the control group (P < 0.05). The AST/ALT ratio in mice was very high at 3 hr, and it remained high by 7 days after Be injection. On the other hand, the ratio of the Cu group was almost constant for 7 days after Cu injection. Thus, these values changed with relative expedition after Be injection. Therefore, we confirmed that measurements of complement activities and the content of C3 were valuable indices for assaying acute effects of Be on mice.

Alanine Transaminase↗

Protective and inactivating effects of neutrophil myeloperoxidase on C1q activity.

This study investigated the interaction between neutrophil myeloperoxidase (MPO) and the C1q component of the complement system. Using a dot-spot assay, MPO was found to bind to C1q in a dose-dependent manner. The specificity of this reaction was proved by the inhibitory effect of F(ab')2 antibodies to C1q and by the inability of MPO to bind to C1r, C1s and IgG. The interaction between MPO and C1q did not influence the enzymatic activity of the peroxidase but resulted in a more stable C1q as assessed by hemolytic assay for C1q. The protective effect of MPO on C1q did not require the presence of H2O2 in the reaction mixture nor was it inhibited by sodium azide, whereas it was abolished by heating the peroxidase. Lactoferrin and lysozyme, unlike MPO, were ineffective in protecting C1q from functional decay. Addition of H2O2 and chloride to MPO and C1q led to a complete inactivation of C1q, which could not be induced by H2O2 alone. The hypochlorite, which is known to be generated during the reaction of MPO with H2O2 and chloride, exhibited a similar inactivating effect on C1q, which was prevented by an external source of methionine.

Chlorides↗

Host cell components affect the sensitivity of HIV type 1 to complement-mediated virolysis.

An infection-competent, full-length HIV-1 clone (pNL4-3) was expressed in seven human cell lines and in peripheral blood mononuclear cells in order to assess the contribution of host cell components toward interaction of free virus with the complement system. HIV-1 expressed in the H9 cell line, which is frequently used for in vitro infection, was relatively susceptible to complement-mediated virolysis in the presence of both HIV antibody-positive patient serum and an anti-V3 monoclonal antibody. Expression of complement receptors 1, 2, and 3, complement control proteins membrane inhibitor of reactive lysis (MIRL, CD59) and decay-accelerating factor (DAF, CD55), and HLA-DR was assessed on host cells. There was an inverse relationship between the sensitivity of virus to complement and the amount of expression of MIRL and DAF on cells. HIV derived from the JY cell line and the mutant JY33 cell line, which is deficient in expression of phosphatidylinositol (PI)-linked proteins including MIRL and DAF, were also evaluated for complement-mediated virolysis. Virus expressed in the mutant cell line was more sensitive to antibody-independent as well as antibody-dependent complement-mediated virolysis than virus expressed in the wild-type cells. Direct demonstration of the presence of MIRL and DAF on the viral surface was obtained by showing that anti-MIRL or anti-DAF antibody induced complement-mediated virolysis. These experiments show that the host cell type can substantially influence the susceptibility of HIV to complement-mediated virolysis and suggest that PI-linked complement control proteins play an important role in this resistance.

Acquired Immunodeficiency Syndrome↗

Serum complements. Inappropriate use in patients with suspected rheumatic disease.

BACKGROUND: The diagnostic value of serum complement testing is well established in inherited complement deficiencies and glomerulonephritis. Their utility is less certain in diagnosing rheumatic diseases. We noted that complement tests were frequently ordered for patients who were referred to our rheumatology clinic. We sought to determine the clinical rationale for ordering complement tests in our hospital and the effect of the test results in patients with rheumatic diseases. METHODS: We conducted a retrospective medical chart review of patients who had serum complement tests ordered at our hospital. We determined whether the test was ordered as a diagnostic tool in a patient with a suspected rheumatic disease. In these cases, we attempted to correlate the results of the complement tests with the patient's eventual diagnosis. RESULTS: We obtained the medical charts of 130 patients who had 307 complement assays (C3, C4, or total hemolytic complement) performed between October 1988 and July 1989. The tests were ordered for diagnostic reasons in 68% of the patients; 54% of these were ordered by nonspecialists. The complement tests were ordered on 28 patients with suspected rheumatic diseases. The three patients with hypocomplementemia did not have a connective tissue disease. The 10 patients who eventually were diagnosed as having rheumatic disease all had normal serum complement levels. Additionally, we found that 77% of patients had more than one complement assay ordered. The test results were discordant in only 24% of these cases. CONCLUSION: Complement screening is not a useful diagnostic test in most patients with suspected rheumatic disease. Despite their lack of established diagnostic value, these tests were frequently performed in our hospital. Judicious use of complement testing would provide substantial cost savings without a loss of clinically relevant information. When the complement testing is clinically indicated, clinicians should consider using a single C3 assay initially rather than multiple assays unless a hereditary deficiency is suspected.

Adolescent↗

Comparison of conventional tube test with diamed gel microcolumn assay for anti-D titration.

Anti-D titration is the first step in the evaluation of the RhD-sensitized patient. Traditionally, anti-D titration has been performed by tube agglutination. Gel microcolumn assay is a method that has gained widespread usage throughout the world, mainly for ABO/Rh typing, unexpected antibody screening and direct antiglobulin tests. As gel assay has become widely used as a routine method to detect red blood cell alloantibodies, a critical anti-D titer needs to be established. Seventy-nine known blood samples with anti-D (titers 1-32) were titrated simultaneously by the conventional tube test and the gel microcolumn assay. Red blood cells (R0r phenotype) were used, with a final concentration of 3% for tube and 0.8% for gel. Serial twofold dilutions (2-2.048) were prepared for each technique, followed by reading in antiglobulin phase. Anti-D titration in the gel microcolumn assay showed significantly higher titers (mean 3.4-fold) than the conventional tube test in all samples studied. Based on these data, it was not possible to determine a critical titer for anti-D titration by the gel microcolumn assay.

Blood Grouping and Crossmatching↗

Leukocyte depletion ameliorates free radical-mediated lung injury after cardiopulmonary bypass.

Activated leukocytes and oxygen free radicals have been implicated in the pathogenesis of lung injury associated with cardiopulmonary bypass. To determine whether leukocyte depletion could prevent this injury, we used a dog model simulating routine cardiac operations. Mongrel dogs (11 to 17 kg) were subjected to cardiopulmonary bypass with a bubble oxygenator and cooled to 27 degrees C. After aortic crossclamping and cardioplegic arrest for 90 minutes, control animals (n = 5) were rewarmed and weaned from bypass, and their condition was then stabilized for 90 minutes. Leukocyte-depleted animals (n = 5) had a leukocyte filter incorporated in the bypass circuit. During bypass, circulating leukocyte counts decreased by 60% in control dogs, and by 97% in leukocyte-depleted animals. Free radical generation (estimated by spectrophotometric assay of plasma conjugated dienes) was significantly reduced by leukocyte depletion during and after bypass. Total hemolytic complement activity and the titer of C5 decreased markedly immediately after the onset of bypass in both the control and leukocyte-depleted animals. Pulmonary function after bypass was better preserved in leukocyte-depleted animals. These data suggest that depletion of circulating leukocytes contributes to lung injury during cardiopulmonary bypass and is associated with increased oxygen radical activity, pulmonary edema, and vasoconstriction. Leukocyte depletion substantially reduced the pulmonary injury seen after cardiopulmonary bypass.

Animals↗