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Immunohistochemical demonstration of enzymatically modified human LDL and its colocalization with the terminal complement complex in the early atherosclerotic lesion.

Treatment of low density lipoprotein (LDL) with degrading enzymes transforms the molecule to a moiety that is micromorphologically indistinguishable from lipoproteinaceous particles that are present in atherosclerotic plaques, and enzymatically modified LDL (E-LDL), but not oxidized LDL (ox-LDL), spontaneously activates the alternative complement pathway, as do lesion lipoprotein derivatives. Furthermore, because E-LDL is a potent inducer of macrophage foam cell formation, we propose that enzymatic degradation may be the key process that renders LDL atherogenic. In this article, we report the production of two murine monoclonal antibodies recognizing cryptic epitopes in human apolipoprotein B that become exposed after enzymatic attack on LDL. One antibody reacted with LDL after single treatment with trypsin, whereas recognition by the second antibody required combined treatment of LDL with trypsin and cholesterol esterase. In ELISAs, both antibodies reacted with E-LDL produced in vitro and with lesion complement activator derived from human atherosclerotic plaques, but they were unreactive with native LDL or ox-LDL. The antibodies stained E-LDL, but not native LDL or ox-LDL, that had been artificially injected into arterial vessel walls. With the use of these antibodies, we have demonstrated that early human atherosclerotic coronary lesions obtained at autopsy as well as lesions examined in freshly explanted hearts always contain extensive extracellular deposits of E-LDL. Terminal complement complexes, detected with a monoclonal antibody specific for a C5b-9 neoepitope, colocalized with E-LDL within the intima, which is compatible with the proposal that subendothelially deposited LDL is enzymatically transformed to a complement activator at the earliest stages in lesion development.

Antibodies, Monoclonal↗

Complement-fixing adrenal autoantibodies as a marker for predicting onset of idiopathic Addison's disease.

In a prospective investigation of the role of adrenal autoantibodies (AA) in predicting the onset of idiopathic Addison's disease, 9 initially non-addisonian AA-positive autoimmune subjects were followed for 42 months. In 4 of these subjects Addison's disease developed within 1-31 months. A fifth had reduced adrenocortical reserve at the start and at the end of the investigation. An AA capable of fixing the membrane attack complex of complement [(C5-C9) F-AA] was detected before onset of the disease in the sera of the 4 patients in whom Addison's disease developed. (C5-C9) F-AA may be involved in the pathogenesis of idiopathic Addison's disease and may be regarded as a marker for individuals in whom idiopathic adrenal insufficiency is likely to develop.

Addison Disease↗

Complement activation during liver transplantation.

Twelve patients with end-stage liver disease undergoing liver transplantation were studied regarding complement activation and formation of anaphylatoxins (C3a and C5a) and terminal C5b-9 complement complexes (TCC) after reperfusion of the grafted liver. Blood samples for complement variables (C1INH, C3, C4, C5, C3a, C5a, and TCC) were drawn preoperatively, before the anhepatic phase, 1 min before, and 2, 15, and 60 min after the start of reperfusion of the grafted liver. Activation of complement was observed during the operation. The C1INH, C3, C4, and C5 plasma concentrations decreased during the entire operation while the anaphylatoxin C3a and the terminal C5b-9 complement complex increased after the reperfusion of the grafted liver. Activation of complement with the formation of biologically active substances like anaphylatoxins and terminal C5b-9 complement complexes may be one explanation for circulatory complications often seen in patients undergoing orthotopic liver transplantation.

Adult↗

Biochemical background of paroxysmal nocturnal hemoglobinuria.

Paroxysmal nocturnal hemoglobinuria (PNH) is an acquired disorder characterized by paroxysms of intravascular hemolysis. A considerable part of erythrocytes in patient blood is susceptible to autologous complement activation because of the deficiency of CD59, which is a glycosylphosphatidylinositol (GPI)-anchored protein and inhibits the formation of the membrane attack complex (MAC) of complement. The deficiency of CD59 is derived from the inability of GPI-anchor synthesis. Although more than 10 proteins are involved in the GPI-anchor synthesis, the mutation of only one protein, PIG-A, causes the defect in about 200 patients with PNH who have been analyzed. The reason why only PIG-A causes the deficiency of GPI anchor is due to the location of its gene on X chromosome. The clonal stem cell mutated with PIG-A gene in the bone marrow loses the capability of the synthesis of GPI-anchor. The mutation of PIG-A gene alone, however, seems to be insufficient to account for the survival of the PIG-A-deficient cells in the bone marrow. Thus, a fraction of the mutant stem cells probably gain a survival advantage by some additional changes, either additional mutations or changes in immunological circumstances. The release of the surviving cells into blood stream results in a clinical syndrome with PNH.

Animals↗

Systemic complement activation in psoriasis vulgaris.

Nineteen patients with psoriasis vulgaris and no other cause for systemic complement activation were studied for evidence of such activation. There was a marked elevation in serum C5b-9 complexes with no other significant complement abnormalities, and no correlation between C5b-9 levels and disease activity. This is the most detailed study of complement in psoriasis yet attempted and confirms that complement activation is a feature of psoriasis vulgaris.

Adolescent↗

Importance of the third thrombospondin repeat of C6 for terminal complement complex assembly.

The anti-C6 monoclonal antibody WU 6-4 was shown to be unequivocally native restricted since it neither binds to the terminal complement complex (TCC) nor to C5b6. In addition, it was shown to inhibit TCC formation by interfering with C5b6 generation. Using the pUEX expression system and C6 cDNA the WU 6-4 epitope was mapped to the third thrombospondin repeat of C6. This protein domain may therefore contribute to the C5 binding site of C6 and be involved in terminal complement complex assembly. The presence of the epitope in rabbit C6 indicates a useful model for studying inhibition of TCC formation in vivo.

Animals↗

Events that stimulate release of thromboxane B2 in passive heymann nephritis.

The cause of proteinuria in passive Heymann nephritis has been attributed to the activation of the C5b-9 membrane attack complex following the antibody binding on the glomerular epithelial cell. Previous studies have shown an association between release of prostaglandin thromboxane B2 (TxB2) and proteinuria. Whether this release is dependent on antibody binding per se, or on secondary actions subsequent to antibody binding has not been clarified. The present study was designed to address this issue. Antibody binding event was experimentally separated from the proteinuria by employing a rabbit antibody which produces equivalent glomerular binding equal to that produced by a sheep antibody but without causing proteinuria. Comparisons were made with animals injected with the sheep antibody which produces all the hallmarks of the disease, including proteinuria. Animals injected with the rabbit antibody showed glomerular immunofluorescent deposits which were identical to the deposits produced by the control sheep antibody. However, rabbit antibody failed to produce the typical electron-dense subepithelial deposits, complement binding and proteinuria. Comparison of prostaglandin profile in isolated glomeruli revealed that TxB2 was unchanged in rabbit antibody-injected glomeruli (compared with its nonimmune antibody control). On the other hand, glomeruli from sheep antibody-injected animals released 45% higher TxB2 compared with their respective nonimmune antibody control. These data suggest that the binding of antibody per se may not be a sufficient stimulus for TxB2 release. Subsequent events of subepithelial electron dense deposit formation, complement activation, and proteinuria are associated with TxB2 release.

Animals↗

Coelenterate photoproteins as indicators of cytoplasmic free Ca2+ in small cells.

The Ca2+-activated photoproteins aequorin and obelin are capable of detecting rapid changes in free Ca2+ over the range 10nM-100uM. Whilst they have been used to quantify free Ca transients in giant cells for some time, their use in small mammalian cells has been restricted because of the difficulty of incorporating them into live cells without impairment of cell function. We have developed three methods for incorporating photoproteins into small cells (a) reversible cell swelling (b) membrane fusion and (c) intracellular release from pinocytotic vesicles. Formation of the membrane attack complex of complement (C5b6789), via a specific cell surface antibody to activate complement, causes a rapid increase in cytoplasmic Ca2+ detectable within 5-10 s. It provides a specific method for quantifying cytoplasmic photoprotein. As a result new insights into the role of intracellular Ca2+ in cell physiology and pathology have been established.

Aequorin↗

NIH conference. Membranous nephropathy.

Membranous nephropathy is a worldwide problem that accounts for about 20% of the cases of the adult-onset nephrotic syndrome. This disease places many patients at risk for both end-stage renal failure and the complications of hyperlipidemia. Immune-mediated injury to the glomerular capillary wall in patients with membranous nephropathy is characterized by subepithelial immune complex formation and generation of the membrane attack complex of complement. Glomerular capillary hypertension, hyperlipidemia, and possibly cytokines could contribute to the glomerular sclerosis seen in the advanced stages of the disorder. In some cases, production of pathogenic antibody can be suppressed by treating the underlying condition. The mechanisms of action of immunosuppressive agents are being investigated and treatments are being tested in clinical trials to optimize the balance of efficacy and toxicity. Alternate-day treatment with corticosteroids is often recommended for nephrotic patients with idiopathic membranous nephropathy, but this approach has not been proved beneficial. Ongoing studies are evaluating whether cytotoxic drugs or cyclosporin A combined with prednisone is more effective than treatment with corticosteroids alone. Lipid-lowering drug therapy is warranted in cases of the persistent nephrotic syndrome to avert the cardiovascular sequelae of hyperlipidemia.

Animals↗

HMG-CoA reductase inhibition reduces the proinflammatory activation of human vascular smooth muscle cells by the terminal complement factor C5b-9.

The terminal complement complex C5b-9 is known to participate in inflammatory processes including atherosclerosis. Inflammation appears to be a direct consequence of C5b-9-mediated cell stimulation. 3-Hydroxy-3-methylglutaryl coenzyme A (HMG-CoA) reductase inhibitors may exert anti-inflammatory effects on vascular cells independent of lowering plasma cholesterol. Thus, we studied activation of vascular smooth muscle cells (VSMCs) by C5b-9 focusing on whether inhibition of the HMG-CoA reductase can reduce the proinflammatory effects of C5b-9.C5b-9 in sublytic concentrations increased the proliferation of human VSMCs and induced a time-dependent activation of the mitogen-activated protein (MAP) kinase extracellular signal-regulated kinase (ERK). Proliferation and ERK1/2 activation could be inhibited by the specific ERK inhibitor PD98059. HMG-CoA inhibition with cerivastatin-reduced VSMC proliferation and C5b-9-induced ERK1/2 activation. Cerivastatin also reduced the C5b-9-induced synthesis of the proinflammatory interleukin-6 (IL-6). Furthermore, C5b-9 induced activation of the transcription factors activator protein- 1 (AP-1) and nuclear factor-kappaB (NF-kappaB), which could be inhibited by pretreatment of VSMCs with cerivastatin. L-mevalonate and geranylgeranylpyrophosphate reversed the inhibitory effects of cerivastatin. The present study in VSMCs shows that cerivastatin inhibits IL-6 synthesis and cell proliferation induced by the terminal complement complex C5b-9. This may be an important mechanism contributing to the beneficial effects of HMG-CoA reductase inhibitors beyond lowering of plasma cholesterol.

Cell Division↗

IgA nephropathy in patients with congenital C9 deficiency.

The clinical, histologic, and immunopathological findings of three young Japanese males with congenital C9 deficiency and primary IgA nephropathy are reported. The C9 deficiency was discovered either through mass complement screening, or when low hemolytic activity for CH50 and normal C3 levels were detected in plasma. Hematuria and proteinuria were detected at the age of 8 or 9 years as a result of annual urinary screening tests for school children. Renal biopsy showed focal and segmental mesangial proliferation with small epithelial crescents in one patient, and mild, diffuse mesangial proliferation in two. IgA and C3 were deposited predominantly in the mesangial area, and staining for C9 was negative in these patients. Electron microscopy revealed electron dense deposits predominantly in mesangial and paramesangial zones. Immunohistochemical staining in renal biopsy tissues from two patients showed mesangial staining for C5, C8, and S-protein, but staining for C5b-9 neoantigen was completely negative. These results show that the formation of C5b-9 complex is not essential for the induction of human IgA nephropathy, and also for the proliferation of mesangial and even parietal epithelial cells.

Child↗

Deletion of the gene encoding CD59a in mice increases disease severity in a murine model of rheumatoid arthritis.

OBJECTIVE: To investigate the roles of CD59a in the protection of joint tissue in the context of murine antigen-induced arthritis (AIA). METHODS: AIA was triggered in CD59a-deficient (CD59a(-/-)) mice and in CD59a-sufficient (CD59a(+/+)) controls; the course and severity of disease were compared between groups. The effects on arthritis of restoring CD59 to the joint in CD59a(-/-) mice by use of a membrane-targeted recombinant CD59 were also explored. RESULTS: Disease, as assessed clinically by measurement of joint swelling on day 1 (P < 0.0001), day 2 (P < 0.01), and day 7 (P < 0.02) and histologically from indicators of joint damage on day 21 (P < 0.02), was significantly enhanced in CD59a(-/-) mice compared with CD59a(+/+) wild-type controls. Membrane attack complex (MAC) deposition in the arthritic joints of CD59a(-/-) mice was also increased compared with that in the joints of CD59a(+/+) controls. Restitution of CD59 activity in joints of CD59a(-/-) mice was attempted with soluble recombinant rat CD59 (sCD59) or with a novel membrane-targeted rat CD59 derivative (sCD59-APT542). Strong immunohistochemical staining of the synovial membrane and subsynovial tissue was apparent in sCD59-APT542-injected joints, but not in joints injected with untargeted sCD59. Intraarticular administration of sCD59-APT542 markedly ameliorated disease severity in CD59a(-/-) mice, knee swelling was significantly reduced over the time course of the disease, and joint damage, assessed histologically, was significantly milder on day 21 (P < 0.05). CONCLUSION: These data firmly implicate the MAC of complement as a major effector of joint damage in the murine AIA model of rheumatoid arthritis (RA), and they provide a rationale for the inhibition of MAC assembly as a therapeutic strategy for RA.

Adjuvants, Immunologic↗

Both plasma- and leukocyte-associated C5a are essential for assessment of C5a generation in vivo.

BACKGROUND: Measurement of C5a in plasma is hampered by the rapid clearance of C5a as a result of cell binding. Therefore, an assessment of whether cell-bound C5a might better reflect C5a generation in vivo is essential. METHODS: We quantified plasma and leukocyte-bound C5a in samples from patients undergoing cardiopulmonary bypass, which is known to be associated with complement activation. C3 activation products and the terminal complement complex were measured as well. RESULTS: Plasma levels of C3 activation products and the terminal complement complex increased rapidly and significantly after the onset of cardiopulmonary bypass until they reached a plateau after 30 minutes. The concentration of plasma C5a increased steadily to twice baseline at the end of bypass. The concentration of leukocyte-associated C5a increased threefold after 10 minutes of cardiopulmonary bypass, when a plateau was reached. A positive correlation was found between levels of plasma C3 activation products or terminal complement complex and plasma C5a plus cell-associated C5a but not between C3 activation products or terminal complement complex and either one of the C5a variables. CONCLUSIONS: We conclude that both plasma C5a and leukocyte-associated C5a are needed for monitoring in vivo C5a generation.

Cardiopulmonary Bypass↗

Acute serum sickness in normal and C6 deficient rabbits: role of membrane attack complex.

Acute serum sickness was induced in New Zealand White (NZW) and in C6 deficient (C6D) rabbits, to compare the histology, immunofluorescence, especially distribution of poly C9 (MAC), and electron microscopic characteristics of the disease in each strain. Glomerulonephritis and albuminuria of comparable extent occurred in 13/17 NZW and 4/8 C6D rabbits. In NZW rabbits with albuminuria an early intense glomerular infiltration by mononuclear cells was associated with focal small fine granular glomerular basement membrane (GBM) deposits of IgG and BSA and more diffuse and larger deposits of C3 and MAC. After the disappearance of monocytes and decrease in mesangial cell proliferation, development of large subepithelial GBM deposits rich in all immune reactants was observed in NZB rabbits. In C6D rabbits with albuminuria a similar monocytic infiltrate occurred, but no association with IgG and C3 GBM immune deposits was noted. No deposits of MAC and no large subepithelial GBM 'humps' were observed in C6D rabbits. We conclude that the exudative (monocytic) phase of glomerular injury and albuminuria in acute serum sickness nephritis are not dependent upon terminal complement components, but the subsequent formation of large subepithelial GBM deposits does not occur in this model in the absence of MAC.

Albuminuria↗

Cardiopulmonary bypass circuit treated with surface-modifying additives: a clinical evaluation of blood compatibility.

BACKGROUND: The cardiopulmonary bypass (CPB) circuit induces blood activation and a systemic inflammatory response in cardiac surgical patients. The CPB circuit treated with surface-modifying additive (SMA) has been found to reduce blood activation by in vitro and ex vivo experiments. This study evaluates the surface thrombogenicity and complement activation of SMA circuits during clinical CPB. METHODS: Twenty patients undergoing coronary artery bypass grafting were randomly divided into two groups. In the SMA group (n = 10), all blood-contacting surfaces in the CPB circuit were treated or coated with SMA, whereas in the control group (n = 10) patients were perfused with an identical circuit without treatment. RESULTS: During CPB, platelet count and beta-thromboglobulin were found similar in both the SMA and the control groups. Prothrombin activation indicated by fragment F1 + 2 was found less in the SMA group (p < 0.05). After CPB, platelet deposition on the CPB circuit was significantly less (p < 0.05) in the SMA group than in the control group as assessed by the labeled monoclonal antibody against platelet glycoprotein IIIa. Complement activation identified by C3a and terminal complex C5b-9 did not differ between the two groups, but C4a generation was less in the SMA group (p < 0.05). Leukocyte activation identified by elastase and cytokine release indicated by interleukin-8 were found uniformly in both groups. Postoperatively, chest tube drainage, blood transfusion, duration of ventilatory support, as well as the intensive care unit and hospital stay were not significantly different between the two groups. CONCLUSIONS: These preliminary clinical results suggest that SMA inhibits platelet interaction with the biomaterial surface of the CPB circuit. Complement activation assessed by the terminal complement complex is not influenced by SMA. The clinical benefit of this surface-modifying technique has yet to be assessed in a larger population of patients undergoing cardiac operations.

Blood Platelets↗

Correlation between anti-C1q and immune conglutinin levels, but not between levels of antibodies to the structurally related autoantigens C1q and type II collagen in SLE or RA.

The simultaneous appearance of autoantibodies with either a functional or structural relationship to anti-C1q antibodies (anti-C1q) was investigated in 39 systemic lupus erythematosus (SLE) patients and in 28 rheumatoid arthritis (RA) patients, in both cross-sectional and longitudinal design. Levels of anti-C1q showed an isotype-specific correlation to levels of immune con-glutinin (IK) in SLE patients, whereas no correlation was evident to levels of antibodies to the structurally related antigen type II collagen (anti-CII) in SLE or RA patients. IgG anti-C1q levels correlated with serum levels of the terminal complement complex (sC5b-9) in SLE patients. In two longi-tudinally followed patients, the IK response preceded the anti-C1q response. Possibilities for regulation of the humoral anti-complement response are discussed.

Adolescent↗

Membrane attack complex and membrane cofactor protein are related to tubulointerstitial inflammation in various human glomerulopathies.

Immunohistochemical analysis of the membrane attack complex (MAC) and the membrane cofactor protein (MCP) was performed on the tubuli and cortical vessels of 46 kidney biopsies with various types of human glomerulopathies. Irrespective of the type of glomerulopathy, significant correlations between tubular MAC and interstitial lymphomonocyte infiltration (p < 0.001) and interstitial volume (p < 0.02) were found. Tubular MCP was significantly overexpressed at the site of MAC deposition (p < 0.002). There was no correlation between the vascular MAC and MCP and tubulointerstitial lesions. Since tubular MAC is deposited in inflamed areas of tubulointerstitium, we propose that MAC might contribute to the development of tubulointerstitial inflammatory processes in human glomerulopathies. MCP as a regulatory factor in the tubulointerstitium might abrogate further tissue damage and cell-stimulatory effects of the MAC.

Adolescent↗

Complement dependent cytotoxicity of sensory ganglion neurons mediated by the gp120 glycoprotein of HIV-1.

Patients infected with HIV-1 frequently have a sensory neuropathy, but the cause is unknown. We found that the gp120 glycoprotein of HIV-1 bound to the surface of cultured rat dorsal root ganglia (DRG) neurons, and activated the complement cascade to lyse the neuronal cells. Cytotoxicity was measured by a 51Cr-release assay, and deposits of the C5b-9 complement complex were detected on the affected cells. As controls, gp120 or complement alone, or rgp120 plus deactivated complement, did not damage the neuronal cells, and fibroblasts were unaffected. The gp120 glycoprotein can thereby damage DRG neurons by complement dependent mechanisms. This interaction may contribute to the development of the sensory neuropathy in AIDS.

Animals↗