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Elevated complement activities of sera from patients with high density lipoprotein deficiency (Tangier disease): the presence of normal level of clusterin and the possible implication in the atherosclerosis.

Clusterin (apolipoprotein J, SP-40,40), as well as apolipoprotein A-I (apo A-I) and apolipoprotein A-II (apo A-II), are apolipoprotein components of high density lipoprotein (HDL), but not of low density lipoprotein. In spite of the deficiencies of apo A-I, apo A-II and HDL in the sera of patients with Tangier disease, clusterin was found in them at normal level. While clusterin was present as the component of HDL with apo A-I in sera of normal donors, it was present as a protein which did not form a complex in sera of Tangier patients. SC5b-9 made from the sera of Tangier patients contained normal amounts of clusterin and was deficient in apo A-I, indicating that clusterin could be incorporated into the SC5b-9 complex without apo A-I. The complement activities of the sera of the patients were higher than those of normal donors. These results may be explained by the deficiencies of apo A-I, apo A-II and HDL in the patients, because they were suggested to be the inhibitors of the reactive haemolysis of complement. The elevated complement activities of the patients might be related to the severe atherosclerotic lesions in Tangier disease.

Adult↗

Complement-mediated adipocyte lysis by nephritic factor sera.

Recent data indicate a previously unsuspected link between the complement system and adipocyte biology. Murine adipocytes produce key components of the alternative pathway of complement and are able to activate this pathway. This suggested to us an explanation for adipose tissue loss in partial lipodystrophy, a rare human condition usually associated with the immunoglobulin G(IgG) autoantibody nephritic factor (NeF) which leads to enhanced alternative pathway activation in vivo. We hypothesized that in the presence of NeF, there is dysregulated complement activation at the membrane of the adipocyte, leading to adipocyte lysis. Here we show that adipocytes explanted from rat epididymal fat pads are lysed by NeF-containing sera but not by control sera. A similar pattern is seen with IgG fractions of these sera. Adipocyte lysis in the presence of NeF is associated with the generation of fluid-phase terminal complement complexes, the level of which correlates closely with the level of lactate dehydrogenase, a marker of cell lysis. Lysis is abolished by ethylenediaminetetraacetic acid, which chelates divalent cations and prevents complement activation, and reduced by an antibody to factor D, a key component of the alternative pathway. These data provide an explanation for the previously obscure link between NeF and fat cell damage.

Adipose Tissue↗

Distribution of clusterin in Alzheimer brain tissue.

The immunohistochemical distribution of clusterin (SP40,40, SGP-2) was determined in Alzheimer disease (AD) and normal human brain tissue and compared with the distributions of vitronectin, protectin and the complement membrane attack complex (MAC). Antibodies to all four proteins showed staining of dystrophic neurites and neuropil threads in AD tissue, and residual serum in normal tissue, but only antibodies to clusterin and vitronectin strongly stained amyloid deposits in senile plaques. The clusterin antibody also showed punctate staining of some normal appearing AD pyramidal neurons, and very scattered staining of intracellular neurofibrillary tangles. Clusterin, vitronectin and protectin are all believed to inhibit membrane insertion by the MAC, and these data are consistent with upregulation of all three proteins in response to MAC formation in AD, and with a neuronal origin of clusterin.

Aged↗

A simple immunoradiometric assay for the terminal SC5b-9 complex of human complement.

Complement activation in serum via classical or alternative pathway results in the formation of a water-soluble, macromolecular SC5b-9 protein complex consisting of non-covalently associated C5b-C9 complement components and serum S-protein. Characteristic neoantigens are expressed on this complex that permit its immunological differentiation from native complement proteins. The present paper describes a procedure for isolating radiolabelled, specific antibodies to C5b-9 neoantigens. With the use of these antibodies, a simple and rapid immunoradiometric assay for SC5b-9 has been developed that allows for detection of 3-4 micrograms SC5b-9 in 1 ml human serum or plasma. The method is suitable for routine screening analyses for SC5b-9 in patients' plasma, and for detection of SC5b-9 experimentally generated in vitro.

Complement Membrane Attack Complex↗

Serum resistance of metacyclic stage Leishmania major promastigotes is due to release of C5b-9.

The mechanism of serum resistance for infective promastigotes of Leishmania major was investigated. Prior results suggested that the mechanism of resistance was mediated at a step after C3 deposition. Equivalent amounts of C3b were deposited on serum-susceptible, noninfective promastigotes harvested from log stage cultures (LOG) and on C-resistant, infective, metacyclic promastigotes (MP) purified from stationary stage cultures. Whereas binding of C9 to LOG was stable during incubation in serum, C9 binding to MP was minimal and unstable, because molecules bound initially to MP were released with continued incubation. Failure to bind C9 was not a result of inability to activate C; the kinetics of C3, C6, and C9 consumption were similar for LOG and MP. Deposition of C5b-7 on MP was stable, indicating that the initial steps in terminal complex formation were intact. Instead, the majority of C5b-9 formed on MP was spontaneously released into the serum as SC5b-9. Residual C5b-9 on MP was released with 1 M NaCl. These data show that developmental modification of the promastigote membrane during transition from a noninfective to an infective stage blocks insertion of lytic C5b-9 into the promastigote membrane.

Animals↗

The cytolytic C5b-9 complement complex: feedback inhibition of complement activation.

We describe a regulatory function of the terminal cytolytic C5b-9 complex [C5b-9(m)] of human complement. Purified C5b-9(m) complexes isolated from target membranes, whether in solution or bound to liposomes, inhibited lysis of sensitized sheep erythrocytes by whole human serum in a dose-dependent manner. C9 was not required for the inhibitory function since C5b-7 and C5b-8 complexes isolated from membranes were also effective. No effect was found with the cytolytically inactive, fluid-phase SC5b-9 complex. However, tryptic modification of SC5b-9 conferred an inhibitory capacity to the complex, due probably to partial removal of the S protein. Experiments using purified components demonstrated that C5b-9(m) exerts a regulatory effect on the formation of the classical- and alternative-pathway C3 convertases and on the utilization of C5 by cell-bound C5 convertases. C5b-9(m) complexes were unable to inhibit the lysis of cells bearing C5b-7(m) by C8 and C9. Addition of C5b-9(m) to whole human serum abolished its bactericidal effect on the serum-sensitive Escherichia coli K-12 strain W 3110 and suppressed its hemolytic function on antibody-sensitized, autologous erythrocytes. Feedback inhibition by C5b-9(m) represents a biologically relevant mechanism through which complement may autoregulate its effector functions.

Complement Activation↗

Quantitative evaluation of the terminal C5b-9 complement complex by ELISA in human atherosclerotic arteries.

A quantitative ELISA using monoclonal and polyclonal antibodies against neoantigens of the terminal C5b-9 complement complex was used to evaluate the presence of terminal complexes in 68 human arterial samples with or without atherosclerotic involvement. Plasma levels of SC5b-9 were directly compared with the corresponding levels eluted from the femoral arteries in six patients undergoing surgical procedures. The plasma concentration of SC5b-9 in these donors was in the range of 30-90 arbitrary units (AU)/ml, equivalent to 100-300 ng/ml SC5b-9 or 45-130 AU/100 mg plasma protein. All the arterial samples contained detectable amounts of C5b-9. The aortic normal and fatty streaks intimae presented a minimum mean value of 65 +/- 12 AU/100 mg total protein, in the range of normal plasma SC5b-9 levels. The corresponding media contained significantly higher amounts of terminal complexes (115 +/- 30 AU/100 mg protein). Markedly increased levels of C5b-9 were eluted from aortic intimal thickenings (350 +/- 100 AU/100 mg protein) and the corresponding media (300 +/- 53 AU/100 mg protein). Similar concentrations were found in aortic fibrous plaques (340 +/- 80 AU/100 mg protein). The observed correlation between C5b-9 levels and atherosclerotic alterations in arterial walls is suggestive of chronic complement activation with involvement of the terminal complement sequence at these sites. These processes may contribute to progression of the arteriosclerotic lesions.

Adult↗

Radioimmunoassay of the attack complex of complement in serum from patients with systemic lupus erythematosus.

We developed a radioimmunoassay to measure the attack complex of complement (SC5b-9) in serum from patients with systemic lupus erythematosus. The radioimmunoassay used a monoclonal antibody to an antigen of C9, which is absent from native C9 but present on SC5b-9. SC5b-9 was detectable in 13 of 63 normal subjects, with a mean value of 0.5 unit (range, 0 to 4.8), and elevated in 13 of 14 patients with active lupus. Analysis of 108 samples from the patients with lupus revealed a mean value of 10.1 units (range, 0 to 35) when the disease was active and 1.0 unit (range, 0 to 433) when it was clinically stable. SC5b-9 was a more sensitive measure of disease activity than C3, C4, or CH50; its specificity was equivalent to that of C3 and C4. SC5b-9 was elevated in serum from 6 of 49 patients with other forms of glomerulonephritis. Our study documents the presence of SC5b-9 in abnormal serum and correlates its elevation with clinical disease activity in patients with active systemic lupus erythematosus.

Adolescent↗

Complement activation in rheumatoid arthritis evaluated by C3dg and the terminal complement complex.

Complement activation was evaluated in plasma and synovial fluid from patients with rheumatoid arthritis. The activation fragment C3dg and the fluid-phase terminal complement complex were used as indicators of initial and terminal activation, respectively. Considerable activation of the whole complement cascade was demonstrated in most synovial fluid samples and in one-third of the plasma samples. No correlation was found between the level of activation products in synovial fluid and the level in plasma. Therefore, both compartments must be examined in order to evaluate local and systemic complement activation in rheumatoid arthritis.

Arthritis, Rheumatoid↗

Physiology and pathophysiology of complement: progress and trends.

The complement system comprises a family of at least 20 plasma and membrane proteins that interact in a tightly regulated cascade system to destroy invading bacteria and prevent the deposition of immune complexes in the tissues. This brief review addresses the basic mechanisms of complement activation and control and describes the active fragments produced during complement activation. The biological importance of the complement system is amply illustrated in patients with complement deficiencies, who are susceptible to bacterial infections and immune complex diseases. The involvement of complement in other immunological diseases is an expanding area of clinical research, supported by the development of new assays for the identification of complement activation. This area is discussed here with particular reference to neurological diseases. A promising new prospect involves the use of complement inhibitory molecules in therapy of complement-mediated disease and this exciting area is also discussed. Novel physiological roles of complement also are being revealed and new evidence that complement and complement receptors play an important role in reproduction is summarized. It is hoped that this brief overview will convey some of the enthusiasm currently pervading research in this underappreciated area of immunology.

Animals↗

Histologic localization of terminal complement complexes in renal diseases. An immunohistochemical study.

Histologic localizations of terminal complement complexes (TCCs) were examined and compared with clinical findings in 154 patients with various renal diseases. Immunohistochemical demonstration of TCCs was carried out on ethanol-fixed paraffin-embedded renal biopsy specimens by indirect immunoperoxidase technique. In glomerular diseases that are thought to be immune-complex glomerulonephritis (IC-GN), such as IgA-nephropathy, membranous nephropathy, and systemic lupus erythematosus (SLE), TCCs were demonstrated in a pattern similar to that of immunoglobulins and C3, indicating that TCCs were induced by immune complexes. The intensity of TCC deposition was correlated with the morphologic destruction of glomeruli or serum creatinine levels in IgA-nephropathy, with urine protein in membranous nephropathy, and with serum C4 in SLE. TCC deposits without IC were also observed in tissue damages without disease specificity such as glomerular or vascular sclerosis and tubulointerstitial lesions. These findings suggested the existence of various roles of TCCs in renal injury, according to IC-mediated or non-IC-mediated mechanism acting in individual diseases.

Antibody Specificity↗

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↗

Inhibition of terminal complement: a novel therapeutic approach for the treatment of systemic lupus erythematosus.

The importance of the complement system in the pathophysiology of systemic lupus erythematosus (SLE) is clear although individual complement components play very different roles in the disease process. Early complement proteins are critical in the clearance of immune complexes and apoptotic bodies, and their absence predisposes individuals to SLE. Conversely, activation of terminal complement is associated with exacerbations of disease and damage to tissues and organs, particularly in lupus nephritis. Monoclonal antibodies that specifically inhibit terminal complement activation while preserving the critical functions of the early complement cascade have now been developed. These antibodies target the C5 complement protein, blocking its cleavage and the subsequent generation of potent proinflammatory molecules. Anti-C5 therapeutics have recently been investigated in an animal model of SLE and in a Phase I single dose study in humans. The results of these studies and the multiple roles of complement in SLE are discussed.

Complement Inactivator Proteins↗

Streptokinase does not activate the complement system.

Streptokinase is an extensively used thrombolytic agent. However, different preparations cause severe hypotension during therapy, partially related to the complement cascade activation. In four ischaemic stroke patients treated with Streptase, an increased level of soluble terminal complement complex (SC5b-9) was measured. In the sera of normal subjects, the increase in SC5b-9 induced by Streptase, Kabikinase and Calbiochem streptokinases was highly significant (P < 0.005). Sigma streptokinase did not activate the complement system. Sigma streptokinase analyzed by sodium dodecyl sulphate-polyacrylamide gel electrophoresis showed a homogeneous band. The other three preparations were contaminated with albumin and other proteins. Based on our in vivo and in vitro data, we conclude that complement activation is related to contamination of different streptokinase products rather than the streptokinase itself.

Acute Disease↗

Vascular leakage in severe dengue virus infections: a potential role for the nonstructural viral protein NS1 and complement.

BACKGROUND: Vascular leakage and shock are the major causes of death in patients with dengue hemorrhagic fever (DHF) and dengue shock syndrome (DSS). Thirty years ago, complement activation was proposed to be a key underlying event, but the cause of complement activation has remained unknown. METHODS: The major nonstructural dengue virus (DV) protein NS1 was tested for its capacity to activate human complement in its membrane-associated and soluble forms. Plasma samples from 163 patients with DV infection and from 19 patients with other febrile illnesses were prospectively analyzed for viral load and for levels of NS1 and complement-activation products. Blood and pleural fluids from 9 patients with DSS were also analyzed. RESULTS: Soluble NS1 activated complement to completion, and activation was enhanced by polyclonal and monoclonal antibodies against NS1. Complement was also activated by cell-associated NS1 in the presence of specific antibodies. Plasma levels of NS1 and terminal SC5b-9 complexes correlated with disease severity. Large amounts of NS1, complement anaphylatoxin C5a, and the terminal complement complex SC5b-9 were present in pleural fluids from patients with DSS. CONCLUSIONS: Complement activation mediated by NS1 leads to local and systemic generation of anaphylatoxins and SC5b-9, which may contribute to the pathogenesis of the vascular leakage that occurs in patients with DHF/DSS.

Adolescent↗

Activation-dependent epitopes in the terminal complement pathway.

Assembly of the terminal complement complex (TCC) during complement activation is associated with considerable antigenic changes in the individual C5, C6, C7, C8 and C9 components. Numerous neoepitopes specific for the TCC are exposed. Similarly, native-restricted epitopes specific for the nonactivated components are concealed in the TCC. The present paper reviews these antigenic changes with special reference to available monoclonal antibodies and their utilization in assays to detect and quantify the TCC. Application of such assays in clinical medicine is discussed. Finally, a recommended terminology for the terminal complement pathway is put forward.

Antibodies, Monoclonal↗

In vivo clearance studies of the terminal fluid-phase complement complex in rabbits.

The present study was directed at obtaining information on the in vivo elimination rate of SC5b-9, the terminal fluid-phase product of complement activation. A sandwich ELISA based on the use of mono- and polyclonal antibodies was constructed that permitted quantitation of rabbit SC5b-9 in plasma. Rabbit serum was activated with inulin in vitro to generate SC5b-9, and the activated serum was applied intravenously in normal and C6-deficient rabbits. Elimination of SC5b-9 in normal rabbits was rapid, half-life in the range of 30-50 min. No differences were noted between the clearance of homologous rabbit and heterologous human SC5b-9, SC5b-9 concentrations returned to basal levels 2-3 h after application. Plasma of C6-deficient rabbits contained no SC5b-9 and these animals displayed an even more effective clearance capacity for the complex. Quantitative considerations indicated that basal plasma SC5b-9 levels in healthy animals result from a spontaneous turnover rate of approximately 0.2% of C5-C9 components per h. When multiple doses of SC5b-9 were injected in sequence, the same half-life and total elimination time were found as with single-dose experiments. The results demonstrate the existence of an effective clearance mechanism for SC5b-9, consistent with recent findings that SC5b-9 plasma levels are very low not only in healthy adults, but also in the majority of patients with complement-consuming diseases.

Animals↗

Effect of time, temperature and anticoagulants on in vitro complement activation: consequences for collection and preservation of samples to be examined for complement activation.

The effects of time, temperature, ethylene-diamine-tetra-acetic acid (EDTA), citrate and heparin on in vitro complement activation were examined in enzyme immuno assays (EIA) for detection of C3 activation products and the terminal complement complex (TCC). In vitro complement activation occurred during coagulation since baseline concentrations of activation products were considerably higher in serum than in plasma. EDTA was more efficient than citrate and heparin in inhibiting in vitro activation. Minimal activation was observed in all preparations when samples were kept at 4 degrees C for up to ten days, whereas a very rapid increase in activation products occurred even in EDTA plasma when the temperature was elevated. Based on the data obtained, guidelines for the collection and preservation of samples to be examined for complement activation are given.

Blood Preservation↗