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Evidence suggesting the occurrence of C3-independent intravascular immune hemolysis. Reactive hemolysis in vivo.

The authors present circumstantial evidence for the involvement of reactive hemolysis, i.e., C3-independent binding of the cytolytic C5b-9 complement complex to bystander red cells (RBC), in a case of intravascular immune hemolysis. Fresh serum obtained from a 6-year-old patient during the hemolytic episode, but not obtained thereafter, induced C5b-9-dependent hemolysis of human RBCs but the indirect C3 antiglobulin test remained negative. Particles (presumably RBC ghosts) isolated from the patient's plasma anticoagulated with EDTA at the peak of hemolysis were coated with C5b-9 complexes, whereas the direct antiglobulin test was strongly positive for IgA, only weakly positive for IgG, and negative for C3. Moreover, neither the autoantibodies isolated by elution (IgG plus IgA), nor free serum autoantibodies (IgA alone) activated complement in vitro. Additionally, serum samples collected later during the 12-month period of observation contained normal levels of C3, C4, C8, and C9, but markedly reduced levels of C7. These serums all produced strong reactive lysis in agarose plates, but not in test tubes. These results appear compatible with the working hypothesis that the intravascular hemolytic episode in this patient might have arisen through a local initiation of complement activation with subsequent C3-independent binding of C5b-9 to and hemolysis of bystander RBCs.

Anemia, Hemolytic, Autoimmune

Postoperative inflammatory response after autologous and allogeneic blood transfusion.

BACKGROUND: Allogeneic blood transfusions cause immunosuppression. The aim of this study was to determine whether complement anaphylatoxins, cytokines, or both are released in the recipient, after blood transfusions in general, and after autologous blood transfusions in particular. METHODS: Thirty-one patients having total hip joint replacement surgery were randomized to receive either allogeneic red blood cells (n = 15) or predeposited autologous whole blood transfusion (n = 16). Plasma concentrations of the anaphylatoxins C3a and C5a, the terminal C5b-9 complement complex, and cytokines IL-6 and IL-8 in the recipients were repeatedly analyzed before, during, and after surgery. RESULTS: Significantly increased concentrations of IL-6 and IL-8 appeared in both groups, with a significantly greater increase in the autologous blood group. Patients in both groups developed a moderate but significant increase of C3a without a significant difference between them. C5a and terminal C5b-9 complement complex were not greatly changed. CONCLUSIONS: The study showed a greater increase in cytokine concentration after autologous blood transfusion than after allogeneic blood transfusion. The lower response in the latter may result from transfusion-induced suppression of cellular immunity.

Adult

Mechanisms and kinetics of the synthesis and release of platelet-activating factor (PAF) by polyacrylonitrile membranes.

Platelet-activating factor is a recognized mediator of anaphylaxis and bioincompatibility. Here, the mechanisms and the kinetics of the production of platelet-activating factor were studied in vivo during high-flux hemodialysis and in vitro in a recirculation model with polyacrylonitrile membranes, the AN-69 and the more recent SPAN, where the Na-metallilsulfonate group is partially substituted with the less polar methacrylate group. In in vivo studies, eleven patients were studied in cross over. Patients were randomly allocated to the AN-69 (5 patients) and to the SPAN membrane (6 patients) for two weeks. Measurements were made in the second week of use. After completion of the second week, the patients were switched to the other membrane for a further two weeks. Samples for leukocyte and platelet counts, PAF in whole blood or bound to platelets, the C3a des Arg and the C5b-C9 membrane attack complex as well as samples for clearances of urea, creatinine and phosphates were taken at different time intervals during treatment. PAF was detected by biological assay after methanol extraction of whole blood or of platelet pellets obtained by sequential centrifugation. C3a des Arg and the C5b-C9 fraction were detected by commercially available immunoassays. Results were analyzed by Minitab statistical package. PAF was detectable only during treatment with AN-69 but not with SPAN 1 min after start of the extracorporeal circulation in both whole blood (4.5 +/- 2.7 ng/ml) and on platelet surface (4.1 +/- 1.2 ng/ml). No statistical significant differences were observed between AN-69 and SPAN with regard to leukocyte and platelet counts, plasma C3a des Arg and C5b-C9 levels. The structure modification did not alter functional performances as indicated by the lack of statistically significant differences in clearance values between the two membranes. In in vitro experiments performed with normal washed and whole blood recirculated in a closed circuit demonstrated the presence of a plasma-dependent, complement-independent mechanisms responsible for the triggering of PAF synthesis and release with AN-69 but not SPAN membrane. PAF was extractable from the inner and outer side of both polyacrylonitrile membranes (AN-69: inner, 4.9 +/- 0.5 ng/ml; outer, 0.1 +/- 0.05 ng/ml; SPAN: inner, 5.5 +/- 0.6 ng/ml, outer: 3.3 +/- 0.7 ng/ml, SPAN vs. p < 0.001), suggesting that absorption may be relevant with both membranes.

Acrylic Resins

Immunohistochemical studies of vitronectin, C5b-9, and vitronectin receptor in membranous nephropathy.

To investigate the involvement of vitronectin, the terminal complement complex (C5b-9), and the vitronectin receptor in the pathogenesis of membranous nephropathy, the immunohistochemical localization of these antigens in the kidney was determined using the immunoperoxidase method and monoclonal antibodies: antivitronectin, anti-SC5b-9 (neoantigen), and antivitronectin receptor (specific for alpha v beta 3 and alpha v). The subjects were 6 patients with membranous nephropathy, and the controls were 2 patients with minimal-change nephrotic syndrome. In membranous nephropathy, vitronectin was localized in subepithelial deposits and in epithelial cell foot processes and was intensely positive in the foot processes adjacent to subepithelial deposits. C5b-9 showed a similar pattern of localization to vitronectin. Both alpha v beta 3 and alpha v were localized in the basal portions of the foot processes of visceral epithelial cells as well as along the borders of these cells adjacent to the urinary space. Deposition at the former site was heavier than at the latter, and localization was especially prominent adjacent to the subepithelial deposits. In addition, alpha v was localized around and within some of the electron-lucent subepithelial deposits in the basement membrane. In contrast, the deposition of vitronectin, C5b-9, alpha v beta 3, and alpha v was always less intense in minimal-change nephrotic syndrome than in membranous nephropathy. Vitronectin and C5b-9 were localized to small parts of mesangium and glomerular basement membrane, while alpha v beta 3 and alpha v deposits showed no difference in intensity between the basal portions of the foot processes and the urinary border of the visceral epithelial cells. Thus, membranous nephropathy featured increased localization of vitronectin, C5b-9, and vitronectin receptors both within and around the subepithelial deposits, suggesting that the mechanism of immune complex disposal via the vitronectin receptor and the vitronectin-C5b-9 complex, associated with complement activation due to subepithelial immune complex formation, may also be active.

Adult

Generation of an activated form of human C5 (C5b-like C5) by oxygen radicals.

Treatment of purified human C5 with hydrogen peroxide leads to a reduction of functional activity in the classical immune haemolysis assay. The effect of H2O2 is enhanced by traces of iron-EDTA, and becomes even stronger when ascorbic acid is present in addition. The enhancement by iron and protective effects of various radical scavengers indicate that the conversion of C5 is brought about by hydroxyl radicals mainly, generated from H2O2 during its decomposition. By the conversion C5 acquires a new functional property: it becomes capable of binding C6, and the resulting complex C56 lyses non-sensitized red cells in cooperation with the late components C7, C8, and C9 (reactive lysis). In this respect, H2O2-treated C5 resembles the activation fragment of C5, C5b. However, unlike C5b, C5(H2O2) is not fragmented but comprises the whole molecule, according to polyacrylamide gel electrophoresis. In accordance with the lack of cleavage, no chemotactic activity indicating formation of C5a, became apparent after H2O2 treatment of C5. In whole human serum, however, the H2O2 system induces additional processes leading to the generation of C5a activity and indicating C5 cleavage. The pathways to this reaction are as yet not clear. The effect of oxygen radicals on C5 may be the basis of the enhancing effect of stimulated leukocytes on C5 activation in body fluids. Activated leukocytes are known to produce H2O2 and oxygen radicals.

Complement Activation

Isolation and properties of complement-resistant strains of Escherichia coli K-12.

Several strains that were resistant to the bactericidal action of antibody and complement were isolated from Escherichia coli K-12 W3110/SM by selecting them through the medium containing antiserum and complement. They can be agglutinated by antiserum against the parent strain and showed similar immune adherence reactivity to the parent when sensitized with this antiserum. Few differences were found in the compositions of phospholipids and proteins between both inner and outer membranes of these strains and those of the parent. However, there were fewer short-chain and more long-chain fatty acids in these strains than in the parent. It was also found that unsaturated fatty acide decreased and saturated and cyclopropanoic acids increased in phosphatidylethanolamine and phosphatidylglycerol in both inner and outer membranes of one of these strains when compared with those from the parent. Therefore, the resistance of these strains to the complement-mediated bactericidal action was considered to be due to the rigidity of their membrane structures which might repel the insertion of membrane-attack complement complex C5b-9, although they could fix the earlier complement components up to the step of the formation of C4b,2a,3b complex enzyme.

Bacterial Proteins

Channel fluctuations induced by membrane attack complex C5B-9.

The assembly of complement (C) components C5b-9 in membranes results in the formation of transmembrane lesions. The C9 component has been shown to be mainly responsible for formation of the ultrastructurally visible tubules associated with C5b-9 complexes. Several studies have disputed the role of C9 polymerization in C-mediated cytolysis on the grounds that C5b-9 lyses cells in the absence of tubular formation. Here, C5b-9 complexes were reconstituted into high-impedance planar lipid bilayers and shown to form channels which are heterogenous in size. The smallest channels had unitary conductances of 15 picoSiemens (pS) in 0.1 M NaCl. The closing of these channels showed voltage-dependence at membrane potentials exceeding 40 mV. These channels were more cation-selective, with K+ ions being favored over Na+. The 15-pS channels described here are much smaller than the channels attributed previously to either C5b-9 or polymerized C9 complexes but resemble channels formed by the C9b fragment, which does not polymerize into tubules. These results indicate that C5b-9 complexes are capable of damaging membranes by forming initially small ion channels which then aggregate in the membrane to form tubular lesions with much larger conductances. Like C5b-9, C5b-8 also increased membrane permeability. However, this increase in membrane conductance could not be resolved into single channels, suggesting that C5b-8 may induce membrane leakiness by perturbing the packing of membrane lipids, whereas addition of C9 results in authentic production of ion channels.

Cell Membrane Permeability

Immunohistochemical analysis of C3 cleavage fragments, factor H, and the C5b-9 terminal complex of complement in de novo membranous glomerulonephritis occurring in patients with renal transplant.

Fifteen renal biopsies from 13 transplanted patients with de novo membranous nephropathy (DNMN) were investigated by immunofluorescence for the presence of C5b-9 neoantigens of the terminal sequence of complement and for antigens expressed by C3 cleavage fragments. DNMN lesions were classified as stage I, II or III upon light and electron microscopy examination. Seven biopsies were classified as stage I DNMN and 8 stage II-III. All patients were proteinuric. In six biopsies with stage I DNMN, staining for C5b-9 neoantigens was restricted to a fine granular labeling in mesangial areas which was analogous to that seen in normal kidneys in contrast with extensive parietal labeling for IgG, C3d and factor H antigens. In eight biopsies with stage II-III DNMN, the pattern of staining with anti-C5b-9 neoantigens antibodies was similar to that obtained with anti-IgG, anti-C3d and anti-factor H antibodies. These results suggest that in situ activation of the whole complement sequence throughout C5b-9 only occurs on large immune deposits (stage II-III DNMN).

Adolescent

Human protectin (CD59), an 18,000-20,000 MW complement lysis restricting factor, inhibits C5b-8 catalysed insertion of C9 into lipid bilayers.

Human cells are relatively resistant to lysis by the homologous complement system. Here we describe the mechanism of action of a recently discovered and widely distributed 18,000-20,000 molecular weight (MW) membrane glycoprotein (CD59), which appears to act as a major protective element against complement-mediated lysis (hence called protectin). When incorporated into heterologous erythrocyte membranes, protectin efficiently prevented cell lysis by human serum. Neutralization with antibody of the naturally occurring protectin on human erythrocytes or on nucleated K562 cells increased their susceptibility to lysis by homologous complement. During complement activation, protectin became incorporated into the membrane attack complex (MAC). By interacting with newly exposed regions in the C5b-8 complex and in aggregating C9 it limited the number of C9 molecules associating with the C5b-8 complex to a C8:C9 ratio of 1:1.5 instead of a normal average of 1:3.5. The results demonstrate directly that protectin is a powerful inhibitor of complement cytolysis and acts by inhibiting the C5b-8 catalysed insertion of C9 into the lipid bilayer.

Antigens, Differentiation

Neoantigens of the membrane attack complex of human complement.

The membrane attack complex of complement is a fusion product of five complement proteins: C5b, C6, C7, C8, and C9. The complex causes complement-dependent cell membrane damage. It is assembled following complement activation both on the target cell surface and in the fluid phase. The isolated soluble complex, which has a molecular weight of one million, exhibited reduced expression of the antigenic determinants of the native precursor proteins. Antisera produced to the intact complex contained antibodies to neoantigens which were not detectable on the five precursor proteins. Antisera were rendered neoantigen-specific by adsorption with fresh human serum. Since the adsorbed antisera precipitated the complex, the complex must contain multiple neoantigenic sites. The complex-specific antibodies not only reacted with the soluble complex, but also with the target cell-bound membrane attack complex.

Antigens

Quantitative measurement of SC5b-9 and C5b-9(m) in infarcted areas of human myocardium.

Previous immunohistochemical work has indicated that terminal C5b-9 complement complexes are selectively deposited in infarcted areas of human myocardium. In the present study, we sought to quantify C5b-9 levels in myocardial tissue, and to differentiate between the membrane-bound C5b-9 (m) and the cytolytically inactive SC5b-9 complex. Paired tissue specimens from infarcted and non-infarcted myocardium were obtained from 36 autopsies. The homogenized and washed tissues were extracted with n-octyl-beta-D-glucopyranoside (octylglucoside) detergent, and the concentrations of C5b-9 in the extracts were determined by ELISA. Membrane-derived C5b-9 (m) and SC5b-9 were differentiated from each other on the basis of their characteristic sedimentation behaviour in sucrose density gradients. It was found that infarcted myocardial tissue contained on average an approximately three-fold higher concentration of C5b-9, compared with non-infarcted tissue. This increase was due in part to an increase in levels of C5b-9 (m). The results corroborate previous immunohistochemical data and show that complement activation occurs to completion with the generation of potentially cytotoxic C5b-9 complexes in infarcted myocardial tissues.

Adult

Isolated hyperthermic liver perfusion with cytostatic-containing perfusate activates the complement cascade.

Eight patients with advanced liver malignancy undergoing isolated hyperthermic liver perfusion with melphalan and cisplatin were studied with regard to complement activation and formation of anaphylatoxins (C3a and C5a) and terminal C5b-9 complement complexes (TCCs). Blood samples for complement variables (C1-INH, C3, C4, C5, C3a, C5a and TCCs) were taken before surgery, 1 min before the start of perfusion, 1, 2 and 3 h after the start of perfusion, and 24 h after operation. Samples were drawn from the perfusate 1 h after the start of perfusion. Activation of complement was observed during perfusion. Raised plasma concentrations of C3a and TCCs were recorded and high levels of C3a and TCCs were found in the perfusate. In vitro tests indicated that melphalan and cisplatin may activate complement. This activation occurred at 37 and 42 degrees C but was more pronounced at 42 degrees C.

Adult

Role of the terminal complement pathway in experimental membranous nephropathy in the rabbit.

Our recent observations of a complement-mediated, cell-independent mechanism of altered glomerular permeability in rat membranous nephropathy suggested a possible role for the terminal complement pathway in the mediation of proteinuria in certain forms of glomerular disease. To directly determine whether the membranolytic terminal complement components (C5b-C9) are involved in glomerular injury, we studied the development of proteinuria in normal and C6-deficient (C6D) rabbits, in both of which a membranous nephropathy-like lesion develops early in the course of immunization with cationized bovine serum albumin (cBSA) (pI 8.9-9.2). C6 hemolytic activity of C6D was 0.01% that of control rabbits. After 1 wk of daily intravenous injections of cBSA, proteinuria developed in 71% of controls (median 154, range 1-3,010 mg/24 h, n = 24), whereas none of C6D were proteinuric (median 6, range 2-12 mg/24 h, n = 12, P less than 0.01). After 1 wk of cBSA, both groups had qualitatively identical glomerular deposits of BSA, rabbit IgG, and C3 on immunofluorescence microscopy, predominantly subepithelial electron-dense deposits on electron microscopy, and minimal glomerular inflammatory cell infiltration of glomeruli. Glomeruli were isolated from individual animals after 1 wk of cBSA and deposits of rabbit IgG antibody were quantitated by a standardized in vitro assay using anti-rabbit IgG-125I. Rabbit IgG deposits were found to be similar in control (29.8 +/- 13.2, range 12.7-48.6 micrograms anti-IgG/2,000 glomeruli, n = 6) and C6D rabbits (32.6 +/- 13.8, range 16.8-48.8 micrograms anti-IgG/2,000 glomeruli, n = 5, P greater than 0.05). After 2 wk, coincident with a prominent influx of mononuclear cells and neutrophils, proteinuria developed in C6D rabbits. These results document, for the first time, a requirement for a terminal complement component in the development of immunologic glomerular injury. Since the only known action of C6 is in the assembly of the membrane attack complex, these observations suggest that the membranolytic properties of complement may contribute to glomerular damage.

Animals

Vitronectin-mediated inhibition of complement: evidence for different binding sites for C5b-7 and C9.

In the activated complement system, vitronectin (complement S-protein) occupies the metastable membrane binding site of the nascent precursor complex C5b-7, so that the newly formed SC5b-7 is unable to insert into cell membranes. Some evidence also indicates that vitronectin limits on-going membrane-associated pore formation by inhibiting C9 polymerization. It has been assumed that these two stages of terminal complement complex (TCC) inhibition take place through charge interactions between the heparin-binding region of vitronectin and homologous cysteine-rich sequences of the late complement proteins C6, C7, C8 and C9. We examined SC5b-7 formation and inhibition of C9 binding in the TCC using separate haemolytic assays. The mode of action of vitronectin in these assays was compared with two 15mer peptides which span residues 348-379 of the heparin-binding region, and a heparin-affinity polypeptide, protamine sulphate. The results showed that vitronectin acts predominantly through SC5b-7 production with a lesser effect on the inhibition of C9 lytic pore formation. In contrast, protamine sulphate did not prevent C5b-7 membrane attachment, but was a potent inhibitor of C9-mediated lysis. The peptides did not inhibit C5b-7 membrane insertion and only one affected C9 binding. These data suggest that the two stages of TCC inhibition involve separate binding sites on the vitronectin molecule. The site for association with nascent C5b-7 is unknown, whereas inhibition of C9 binding and pore formation takes place through the heparin-binding region.

Amino Acid Sequence

Formation and structure of the C5b-7 complex of the lytic pathway of complement.

The formation and structure of the complement cytolytic intermediary complex, C5b-7, were studied with the aim of determining the interactive regions of C5, C6, and C7. The structure of human complement component C5 was elucidated by the application of limited proteolysis which generated well characterized major polypeptide fragments of this molecule. Plasmin, thrombin, and kallikrein cleave C5b with greater facility than C5. The most useful cleavage of C5b was effected by plasmin because the fragmentation pattern was similar to the processing of C3b by factors H, I, and kallikrein. Plasmin hydrolyzes peptide bonds within the alpha'-chain of C5b, resulting in a four-chain fragment, C5c (M(r) = 142,000), and a single chain fragment, C5d (M(r) = 43,000). Circular dichroism spectroscopic analyses indicated that C5d is substantially richer in alpha-helical content than is C5c (27 versus 9%). Polyclonal antibodies directed against C5c blocked the interaction of C5b-6 with C7, whereas antibodies directed against C5d inhibited the binding of C5 with C3b. Chemical cross-linking using a cleavable radioiodinated photoreactive reagent revealed that both C6 and C7 associate preferentially with the alpha'-chain of C5b. The reversible interactions of C5 with C6, C7, and major polypeptide fragments derived from these were investigated with solid phase binding assays. The results indicate that the carboxyl-terminal domains of C6 and C7, which have cysteine-rich modules homologous to those found in factors H and I, have the capacity to link specifically with C5.

Amino Acid Sequence

The expression of the complement regulators CD46, CD55, and CD59 by human sperm does not protect them from antisperm antibody- and complement-mediated immune injury.

OBJECTIVES: To investigate whether membrane-bound regulators of the initial (C3) and terminal (C5b-9) complement (C) pathway components are expressed on human sperm and to evaluate the protective effects of these regulators in restricting antisperm antibody and C-mediated injury. DESIGN: Sperm surface C inhibitors were quantitated by indirect immunofluorescence flow cytometry using murine monoclonal antibodies to detect C3 regulatory proteins, C3b/C4b receptor type (CR1, CD35), membrane cofactor protein (CD46), and decay-accelerating factor (CD55), and C5b-9 inhibitor, P18 (CD59) on acrosome-intact human sperm and sperm induced to undergo acrosomal loss. The susceptibility of sperm to antisperm antibody- and C-mediated immobilization was evaluated by sperm motility loss in the presence of antidecay-accelerating factor and/or anti-P18. SETTING: University of Oklahoma Health Sciences Center, a tertiary care referral center. RESULTS: Both decay-accelerating factor and P18 were detected on acrosome-intact and sperm induced to undergo acrosomal loss; neither expressed CR1. Membrane cofactor protein was detected on only acrosome-reacted sperm. The time course of sperm motility loss in antisperm antibody-negative sera in the presence of antidecay-accelerating factor, anti-P18, or both had a cumulative effect and brought about a time-dependent enhancement of sperm motility loss by serum C. However, sperm motility loss in C-fixing antisperm antibody-positive sera was unaffected by sperm membrane bound C3 and C5b-9 regulators. CONCLUSIONS: The susceptibility of human sperm to antisperm antibody- and C-induced motility loss may reflect a low potency of the sperm membrane C regulators membrane cofactor protein, decay-accelerating factor, and P18 in inhibiting serum C. Therefore, the use of serum C in the traditional assay for the diagnosis of cytotoxic antisperm antibody in infertile couples may have limitations. The inefficiency of these proteins in restricting serum C activity also suggested a secondary function in restricting localized proteolytic damage at the site of fertilization.

Antibodies, Monoclonal