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Complement activation in postpartum thyroiditis.

BACKGROUND: Postpartum thyroid dysfunction (PPTD) develops in 50% of pregnant women who have raised levels of circulating thyroid peroxidase autoantibodies (TPOAb) at booking. Although these antibodies are able to activate the complement cascade in vitro, it is not known whether complement activation plays any role in the pathogenesis of this disease. AIM: To investigate potential and actual activation of the complement system in women with postpartum thyroiditis. DESIGN: Complement activation was monitored on a weekly basis in 24 postpartum women who had raised TPOAb at 16 weeks gestation, attending an antenatal clinic in Mid-Glamorgan, Wales. METHODS: ELISA procedures were used to measure both in-vitro complement C3 activation by TPOAb and circulating terminal complement complexes (TCC) in serum. RESULTS: Higher levels of bioactive TPOAb activity were seen in women who developed PPTD when compared to those who did not. However, TCC remained undetectable in serum throughout the period of study. CONCLUSIONS: In PPTD, despite the presence of circulating bioactive TPOAbs, the extent of complement activation is inadequate to cause detectable increases in peripheral blood TCC, suggesting that the complement system may not play a major role in PPTD pathogenesis.

Autoantibodies↗

Complement activation during and after open-heart surgery is only marginally affected by the choice of fluid for volume replacement.

Forty patients undergoing CPB for coronary artery surgery, using a standardized technical setting, were randomized to receive either Ringer's acetate, dextran 70 (Macrodex), polygeline (Haemaccel) or albumin 4% for volume replacement during and after surgery. The choice of fluid did not affect early complement activation (C3 activation products). Higher values of the terminal complement complex (TCC) were found only at the end of the operation in patients receiving polygeline. There were no differences between any two of the four groups during the postoperative course. The use of blood transfusion or autotransfusion and the degree of haemodilution and hypothermia did not affect complement activation. We conclude that complement activation in association with open-heart surgery is only marginally affected by the choice of fluid for volume replacement.

Adult↗

Inhibition of complement activation by soluble recombinant CR1 under conditions resembling those in a cardiopulmonary circuit: reduced up-regulation of CD11b and complete abrogation of binding of PMNs to the biomaterial surface.

The influence of soluble recombinant CR1 (sCR1) on complement activation, and its indirect effects on the coagulation system and cellular responses were assessed in two models for the study of blood/surface and blood/air interactions, as are encountered in e.g. cardiopulmonary bypass circuits. The concentrations of C3a and sC5b-9 and the amount of bound C3/C3 fragments were analyzed as indicators of complement activation. Thrombin-antithrombin complexes, the platelet count, surface-ATP, beta-thromboglobulin, and the expression of CD11b on leukocytes were the parameters analyzed to reflect coagulation and cellular responses. In addition, immunochemical analyses of the phenotypes of surface-bound leukocytes and platelets were performed. Recombinant sCR1, at doses ranging between 0.1-0.25 mg/ml, was found to completely inhibit the generation of sC5b-9, and of C3a by two thirds; the binding of C3 and/or C3 fragments to the surface was almost entirely abolished. As a result of the inhibition of complement activation, the expression of CD11b on PMNs, and the binding of these cells to the biomaterial surface was almost completely lost. In contrast, the thrombin-antithrombin complexes, the platelet count, and the adherence of platelets to the surface, as reflected by the ATP binding and the release of beta-thromboglobulin, were not affected. These data show that complement activation, in association with extra-corporeal treatment, causes activation and binding of PMNs to the biomaterial and that these effects can be completely abolished by the addition of soluble recombinant sCR1.

Biocompatible Materials↗

Plasma cytokine levels and coagulation and complement activation during use of the extracorporeal liver assist device in acute liver failure.

Multiple organ failure frequently occurs in patients with acute liver failure, and this has been associated with increased cytokine production. Treatment by hemoperfusion with an extracorporeal liver assist device (ELAD) containing human liver-derived cells was performed in 12 patients with acute liver failure. Over the first 6 h, there were significant increases in plasma tumor necrosis factor alpha (TNFalpha; from 114+/-54 pg/ml [mean+/-SEM] to 236+/-161 pg/ml, p < 0.05) and interleukin (IL)-6 (260+/-121 pg/ml to 445+/-149 pg/ml, p < 0.05) but not in interferon gamma (IFNgamma). A similar pattern with a small peak increase was observed for complement C5b-9 complex. Plasma C-reactive protein (CRP) and thrombin antithrombin (TAT) III complex showed small peaks after 24 h of ELAD hemoperfusion. No such changes were seen in 12 control patients with acute liver failure who were treated with intensive care alone. These transitory effects, without changes in blood pressure, are likely to be due to the contact of the blood with the dialyzer membrane. There was no evidence of the clearance of cytokines by the ELAD.

Adolescent↗

Roller and centrifugal pumps compared in vitro with regard to haemolysis, granulocyte and complement activation.

A Biomedicus centrifugal pump and a Polystan roller pump were compared in vitro with regard to differences in haemolysis, granulocyte and complement activation. Six circuits of tubing and oxygenators were connected to each pump. Heparinized fresh human blood was circulated for 72 hours in the systems. Blood samples were drawn at defined intervals. Haemolysis was assessed by determination of lactate dehydrogenase (LD) and potassium, and granulocyte activation by quantification of the granulocyte proteins calprotectin, lactoferrin and myeloperoxidase. Complement activation was assessed by measuring C3 activation products (C3b, iC3b and C3c), and the terminal C5b-9 complement complex (TCC). The results indicate more haemolysis and complement activation in the roller pump group, revealed by significantly higher concentrations of LD, potassium, C3 activation products and TCC. Calprotectin, lactoferrin and myeloperoxidase were all significantly increased in both groups, but the rise appeared earlier in the roller pump group. The concentrations of LD and potassium both correlated significantly with C3 activation products, indicating that complement activation may at least partly be responsible for the haemolysis.

Cell Adhesion Molecules, Neuronal↗

In vitro evaluation of new surface coatings for extracorporeal circulation.

Cardiopulmonary bypass (CPB) exposes blood to large, foreign surfaces. This exposure may activate the cellular and humoral inflammatory systems, resulting in inflammatory reactions and organ dysfunction. Coating the inner surfaces of the bypass circuit may help alleviate these side-effects. The objective of this study was to determine the influence of two new surface treatments on blood cell and complement activation. Oxygenator and tubing sets coated with synthetic polymers (n = 7) or heparin (n = 7) were compared to uncoated sets (n = 7) in an in vitro model of CPB. The circuits were run at 4 l/min and recirculated for 120 min. The inflammatory response was assessed at regular intervals by platelet counts, and activation of complement, leucocytes and platelets. We found that the median platelet counts decreased from 127 to 122 x 10(9)/l (not significant, NS) in the synthetic polymer sets, from 96 to 88 x 10(9)/l (NS) in the heparin-coated sets, and from 93 to 54 x 10(9)/l (p < 0.01) in the uncoated sets after 2 h of recirculation. There were significant differences in platelet counts between the coated sets and the uncoated set at end of experiments (p < 0.05). Beta-thromboglobulin (BTG) concentrations increased in the synthetic polymer sets from 166 to 352 ng/ml (p < 0.01), in the heparin coated sets from 336 to 1168 ng/ml (p < 0.01), and in the uncoated sets from 301 to 3149 ng/ml (p < 0.01) after 2 h of recirculation. The differences in BTG at termination of the experiments were significant among all three sets (p < 0.05). Myeloperoxidase (MPO) concentrations in the synthetic polymer sets increased from 63 to 86 micrograms/l (p < 0.01), in the heparin-coated sets from 90 to 208 micrograms/l (p < 0.01), and in the uncoated sets from 122 to 513 micrograms/l (p < 0.01) after 2 h of recirculation. The differences in MPO at termination of the experiments were significant among all three groups (p < 0.01). There were no significant differences at termination of the experiments among the three sets regarding complement activation as measured by C3 activation products and the terminal complement complex. We conclude that in the current in vitro model of a CPB circuit, the synthetic polymer coating and the heparin coating caused significantly less platelet loss and granulocyte and platelet activation than the uncoated surface (p < 0.05). The synthetic polymer coating caused significantly less granulocyte and platelet activation than the heparin coating (p < 0.05). There was moderate complement activation within each group, but no significant differences among the three groups.

Complement Activation↗

Cell desensitization by sublytic C5b-9 complexes and calcium ionophores depends on activation of protein kinase C.

Basal cell resistance to lysis by complement C5b-9 complexes depends on extracellular and intracellular protection. Cell membrane regulatory proteins and enzymes interfere with complement activation and intracellular processes of protein phosphorylation and synthesis support cell resistance and damage repair. K562 human erythroleukemic cells treated with sublytic complement doses become protected from lytic doses of complement within 50 min. The early signaling processes leading to cell desensitization to complement-mediated lysis were studied. Treatment with calcium ionophores or phorbol 12-myristate 13-acetate rapidly induced in K562 cells protection from complement as well as synthesis of a large protein complex similar to the large complement-induced protein complex L-CIP induced by sublytic complement. Both ionophore- and complement-induced protection were blocked by treatment with protein kinase C (PKC) inhibitors. Calphostin C, sphingosine and GF109203X abrogated complement-induced protection almost completely, whereas Go6976 inhibited it only partially. Since Go6976 is a selective inhibitor of the conventional PKC type, it is proposed that sublytic complement doses activate both conventional and non-conventional PKC types. Immunofluorescence analysis of K562 cells demonstrated sublytic complement-induced translocation of the conventional PKCalpha and PKCbetaII from the cytoplasm to the plasma membrane. These results indicate that PKC activation is an early obligatory signal in cell desensitization by sublytic C5b-9 or calcium ionophore.

Calcimycin↗

Deposition of membrane attack complex in cutaneous lesions of lupus erythematosus.

BACKGROUND: The membrane attack complex (MAC; C5b-9) localizes in the basement membrane zone (BMZ) of cutaneous lesions from patients with lupus erythematosus (LE) and has been implicated in the pathogenesis of this disease. OBJECTIVE: Our purpose was to compare the frequency of MAC deposition with that of immunoglobulin and C3 deposition (lupus band). METHODS: We studied 56 skin biopsy specimens from 42 patients with LE by direct immunofluorescence. RESULTS: MAC was deposited in a granular pattern at the BMZ in 29 of 38 biopsy specimens (76%) from lesional skin; 5 of 38 specimens (13%) had focal or weak segmental deposition and 4 of 38 (11%) were negative. In contrast, IgG, IgM, IgA, and C3 were detected in 16 of 38 specimens (42%), 30 of 38 (79%), 4 of 38 (11%), and 22 of 38 (58%), respectively. None of the uninvolved skin biopsy specimens was MAC positive, although 4 of 18 (22%), 5 of 18 (28%), 1 of 18 (6%), and 2 of 18 (11%) were positive for IgG, IgM, IgA, and C3, respectively. CONCLUSION: MAC deposition in lesional skin appears to be a relatively sensitive and specific marker for cutaneous LE and may be useful as an adjunct to the "lupus band" test.

Basement Membrane↗

Complement activation in the central nervous system following blood-brain barrier damage in man.

The central nervous system (CNS) is virtually isolated from circulating immunological factors such as complement (C), an important mediator of humoral immunity and inflammation. In circulation, C is constantly inhibited to prevent attack on host cells. Since a host of diseases produce an abnormal blood-brain/cerebrospinal fluid (blood-brain/CSF) permeability allowing C protein extravasation, we investigated if C activation occurs in CSF in vitro and in CNS in vivo during subarachnoid hemorrhage (SAH) or brain infarction. After SAH (n = 15), the terminal complement complex (TCC) concentration on days 0 to 2 was higher in the CSF, 210 +/- 61 ng/ml, than in the plasma, 63 +/- 17 ng/ml, but null in the CSF of controls (n = 8) or patients with an ischemic stroke (n = 7). TCC was eliminated from the CSF after SAH (24 +/- 10 ng/ml on days 7 to 10). Incubation of normal human CSF with serum in vitro also activated the terminal C pathway. In 10 fatal ischemic brain infarctions, immunohistochemical techniques demonstrated neuronal fragment-associated deposition of C9 accompanied by neutrophil infiltration. We conclude that the C system becomes activated intrathecally in SAH and focally in the brain parenchyma in ischemic stroke. By promoting chemotaxis and vascular perturbation, C activation may instigate nonimmune inflammation and aggravate CNS damage in diseases associated with plasma extravasation.

Adult↗

Mechanism of infiltration and activation of glomerular monocytes/macrophages in IgA nephropathy.

Glomerular deposits of fibrin-related antigens (FRA), C3c, membrane attack complex (MAC) were examined by the immunoperoxidase method on 176 renal biopsy specimens from 120 cases with IgA nephropathy including 56 cases with sequential biopsies. On 47 sets of repeated renal biopsy specimens, the glomerular infiltration of the following immune cells was examined by the indirect immunoperoxidase method; immune cells positive for C3bi receptor (C3biR; CR3/CD11b, CR4/CD11c), HLADR antigen and several leukocyte surface markers (CD45R, CD3, CD15 and CD68). Twenty-four-hour urine protein (UP) at the renal biopsy was also evaluated. The glomerular deposition of FRA was inversely correlated with C3c/MAC deposition (p < 0.00001). Most cases (163 of 176) were classified into the following two types; type C with dominant deposition of C3c (97 cases) and type F with dominant deposition of FRA (66 cases), except for 13 cases with equivalent deposits of C3c and FRA (7 cases, type B) and without C3 or FRA deposits (6 cases, type O). In 56 rebiopsied cases, apparent conversion from type F or C into the other was observed only in one case though a few cases in type C lost or reduced C3c deposition to an equivocal type at the follow-up biopsy, which were included in type C', an expanded category of type C. In the whole cases, the glomerular infiltration of immune cells was significantly correlated with FRA deposition (p < 0.0002) but not with C3c. Glomerular CD11c+ cells were significantly correlated with C3c deposition in type C' (p < 0.0001), but not in type F. Glomerular HLADR positive immune cells were significantly correlated with glomerular CD3+ T cells in type F (p < 0.001), but not in type C'. In type C', UP was significantly correlated with glomerular CD11c+ cells (p < 0.0001) but not with CD 15+ or HLADR+ cells. On the other hand, in type F, UP was significantly correlated with CD 15+ and HLADR+ cells (p < 0.001) but not with CD11c+ cells. These results suggested that there are multiple pathways in inducing glomerular infiltration of immune cells in IgA nephropathy. In type C, local activation of complements might primarily induce immune cell infiltration through C3biR and these C3biR+ cells are involved in inducing proteinuria. On the other hand, in type F, in which complement activation is weak, immune cells might infiltrate directly through their Fc receptor or MHC class II antigens, and might be activated by T-cell/macrophage interaction to induce proteinuria.

Adult↗

A comparative study on the immunohistochemical detection of early myocardial damage.

The study was undertaken to evaluate the kinetics and distribution patterns of several immunohistochemical markers in ischemically and hypoxically damaged myocardium. The myocardium of 8 cases of acute myocardial infarction (AMI), 8 cases of diagnosed acute cardiac death (ACD) and 12 cases of acute exogenic hypoxia (AEH) due to CO poisoning or hanging were analysed for depletion of the cardiac antigens FABP, troponin C and T, desmin and myoglobin, loss of CD59 and deposition of the plasma antigens fibrinogen, fibronectin and the terminal complement complex C5b-9. The visualisation of the terminal complement complex was positive as early as 30 min after onset of symptoms of AMI. Depletion of cellular antigens started earlier than the deposition of plasma antigens. The deposition of fibronectin and fibrinogen began earlier than the detection of C5b-9 but later than the depletion of the cellular antigens. Our findings indicate that for the immunohistochemical detection of very early myocardial damage, the depletion of myoglobin is at least of the same rank or better than depletion of FABP and troponin.

Adolescent↗

Muscle inflammation and MHC class I up-regulation in muscular dystrophy with lack of dysferlin: an immunopathological study.

Muscle inflammation is characteristic of inflammatory myopathies but also occurs in muscular dystrophy with lack of the sarcolemmal protein dysferlin. We quantified inflammatory cells and major histocompatibility complex (MHC) expression in muscle from 10 patients with dysferlinopathy. Infiltrating cells were always present although numbers varied considerably; macrophages were more common than T cells, T cytotoxicity was absent, and MHC class I was overexpressed on muscle fibers. These findings differ from polymyositis (PM) but are closely similar to those in SJL/J mice (which lack dysferlin) and emphasize the relationship between absence of dysferlin and immune system abnormalities in muscle.

Adolescent↗

Heparin-coated cardiopulmonary bypass circuits reduce circulating complement factors and interleukin-6 in paediatric heart surgery.

Children are sensitive to the inflammatory side effects of cardiopulmonary bypass (CPB). Our intention was to investigate if the biocompatibility benefits of heparin-coated CPB circuits apply to children. In 20 operations, 19 children were randomized to heparin-coated (group HC, n = 10) or standard (group C, n = 10) bypass circuits. Plasma levels of acute phase reactants, interleukins, granulocytic proteins and complement factors were measured. All were significantly elevated after CPB. Levels of complement factor C3a (851 (791-959)ng/ml [median with quartiles] in group C, 497 (476-573)ng/ml in group HC, p < 0.001), Terminal Complement Complex (114 (71-130) AU/ml in group C, 35.5 (28.9-51.4) AU/ml in group HC, p < 0.001), and interleukin-6 (570 (203-743) pg/ml in group C, 168 (111-206)pg/ml in group HC, p = 0.005), were significantly reduced in group HC. Heparin-coated CPB circuits improve the biocompatibility of CPB during heart surgery in the paediatric patient population, as reflected by significantly reduced levels of circulating complement factors and interleukin-6.

Anticoagulants↗

Decay-accelerating factor regulates complement-mediated damage in the human atherosclerotic wall.

Decay-accelerating factor (DAF) is an intrinsic membrane inhibitor that regulates the activity of C3 and C5 convertases of the classical and alternative complement pathways. Using two monoclonal antibodies, IC6 and IA10, DAF was localized by immunohistochemistry using streptavidin-biotin-peroxidase complex or silver-intensified immunogold techniques in aortic, iliac and femoral samples obtained at surgery and autopsy from 32 patients. DAF was localized on the cells and in the connective tissue matrix of the arterial wall. Fibrous plaques and intimal thickenings presented larger amounts than fatty streaks, intimae and normal areas. By Western blotting analysis, DAF extracted from the arterial wall had a molecular weight of about 67 kDa. Using a double-labeling technique, DAF and C5b-9 complexes were co-localized on nucleated cells and on cell debris. The cells isolated after enzyme digestion of the arterial wall were tested for the protective role of DAF to complement-mediated damage. When DAF of the sensitized cells was blocked by monoclonal antibodies, complement-mediated cell lysis was enhanced from 10-15% to 60-70%. The effect of anti-DAF antibodies was dose-dependent. DAF blocking in the absence of antibodies used for sensitization led to a lysis under 10%. These data suggest a protective role of DAF against autologous complement activation, however insufficient to prevent complement activation in the human atherosclerotic wall.

Adult↗

The effects of plasma and albumin infusion on organ function and sepsis markers in experimental gram-negative sepsis.

To study the effects of early plasma versus albumin infusion on vital organ function and the appearance of central sepsis mediators in septic shock, three groups of anesthetized piglets (n = 28) were inoculated with live Eschericia coli. Group I received fresh frozen plasma, group II received albumin, whereas group III served as nontreated septic controls. Plasma-treated animals exhibited improved survival (p < .02) compared with controls, and improved organ function compared with both controls and albumin-treated animals. Plasma infusion was associated with increased levels of endotoxin (p < .02) and terminal complement complex (TCC) (p < .03), and persisting high levels of tumor necrosis factor (TNF). Following albumin infusion TNF levels decreased to baseline values (p < .01), whereas endotoxin and TCC levels did not change significantly. Our study shows a beneficial effect of early plasma infusion on survival and vital organ function in septic animals. The effect of plasma infusion on circulating levels of endotoxin, TNF, and TCC may be potentially deleterious in uncompensated stages of septic shock.

Albumins↗

Comparison of three oxygenator-coated and one total-circuit-coated extracorporeal devices.

The present study was designed to compare the biocompatibility of three cardiopulmonary bypass setups with different surface coatings, and to determine if coating of the whole circuit with one of the coatings was more beneficial than coating of the oxygenator only. Extracorporeal devices entirely coated with synthetic polymers (Avecor, n = 6) were compared to oxygenators coated with synthetic polymers (Avecor, n = 6), end-point, covalently attached heparin (CBAS, n = 6) or absorbed heparin (Duraflo 2, n = 6) in an in vitro model of a heart lung machine. The circuits were primed with fresh human whole blood and Ringer's acetate and recirculated at 4 l/min at 30 degrees C for 2 h. Test samples were obtained at regular intervals and analysed for myeloperoxidase (MPO), platelet counts, beta-thromboglobulin, heparin, prothrombin fragment 1+2, plasmin anti-plasmin complexes, and complement activation products. The mean MPO concentrations increased in the Avecor-coated oxygenator group (AV) from 247 at the start to 671 microg/l at the termination of the experiments, in the Avecor-coated total circuit group (AV-T) from 116 to 288 microg/l, in the Duraflo 2 coated oxygenator group (DU) from 160 to 332 microg/l, and in the CBAS-coated oxygenator (CA) group from 172 to 311 microg/l. The MPO concentrations increased significantly in all groups (p < 0.03). The increase in group A was significantly higher than in the other three groups (p = 0.007). The mean platelet counts decreased in the Avecor-coated total circuit group from 117 at start to 99 x 10(9)/l at termination of the experiments, in the Avecor-coated oxygenator group from 119 to 103 x 10(9)/l, in the Duraflo 2 group from 96 to 86 x 10(9)/l, and in the CBAS group from 132 to 123 x 10(9)/l. The platelet counts decreased significantly in all groups (p < 0.01), but the intergroup differences were not significant (p = 0.15). The mean beta-thromboglobulin concentrations increased in the Avecor-coated total circuit group from 193 at the start to 754 ng/ml at the termination of the experiments, in the Avecor-coated oxygenator group from 474 to 1654 ng/l, in the Duraflo 2 group from 496 to 1280 ng/l, and in the CBAS group from 418 to 747 ng/l. The beta-thromboglobulin increase was significant in each group (p < 0.01), but not between the groups (p = 0.49). The mean heparin concentrations in the Duraflo 2 group increased from 2460 at the start to 2897 IU/l at termination of the experiments, in the CBAS group from 2468 to 2518 IU/l. In the Avecor-coated oxygenator group heparin concentrations decreased from 2010 to 1968 IU/l, and in the Avecor-coated total circuit group from 2002 to 1927 IU/l. The differences in heparin concentrations were significant between the Duraflo 2 group and the other groups (p < 0.05). The mean prothrombin fragment 1+2 concentrations increased in the CBAS group from 0.4 at the start to 2.1 nmol/l at the end of the experiments, in the Avecor-coated oxygenator group from 0.4 to 0.6 nmol/l, in the Avecor-coated total circuit group from 0.3 to 0.4 nmol/l, and in the Duraflo 2 group from 1.2 to 1.3 nmol/l. The prothrombin fragment 1+2 increase was significant in all groups (p < 0.05), but there were no significant intergroup differences (p = 0.54). There were no significant differences at the termination of the experiments among the four groups regarding complement activation as measured by C3 activation products and the terminal complement complex. In the present in vitro model of a heart-lung machine, none of the three specific setups with different coatings was superior with regard to all test parameters. The CBAS group generated the highest levels of prothrombin fragment 1+2 formation, but least complement activation. The increasing plasma heparin concentrations in the Duraflo 2 group indicated more unstable heparin bonding. The Avecor-coated total circuit group were superior to the Avecor-coated oxygenator group regarding plasma concentrations of MPO, but not compa

Antifibrinolytic Agents↗

Complement control proteins, CD46, CD55, and CD59, as common surface constituents of human and simian immunodeficiency viruses and possible targets for vaccine protection.

Complement control proteins include a group of membrane-bound surface antigens that protect cells from complement lysis by preventing formation of the membrane attack complex (MAC) of complement. HIV-1 and SIV are known to possess cellular proteins, making it possible that some of them contribute to the ability of these viruses to evade complement lysis. Three complement control proteins, CD46 (membrane cofactor protein), CD55 (decay accelerating protein), and CD59 (HRF20), were found by flow cytometry to be expressed on the surface of CD4+ cell lines commonly used for HIV-1 and SIV synthesis. Monoclonal antibodies to each of these proteins precipitated HIV-1 IIIB and SIV delta/B670 synthesized in CEM x 174 cells and two primary HIV-1 isolates synthesized in peripheral blood mononuclear cells, indicating that CD46, CD55, and CD59 are physically associated with the virus membrane after the virus has been released from the surface of infected cells. Additional experiments showed that the precipitated material contained infectious virus, confirming that whole virus was precipitated. Evidence that CD46 and CD59 are immunogenic in macaques was found when anti-cell antibodies in plasmas from macaques immunized with human cell-grown SIV blocked anti-CD46 and anti-CD59 from binding to the surface of CEM x 174 cells. Anti-cell antibodies rendered HIV-1 susceptible to complement lysis as measured by the release of p24 core protein, and consistently produced a complement-dependent reduction in HIV-1 and SIV infectivity of 1-3 logs. These results demonstrate that CD46, CD55, and CD59 are common surface constituents of HIV-1 and SIV. The results also raise the possibility that the mechanism of SIV vaccine protection attributed to anti-cell antibodies could have involved complement-mediated virolysis.

Antibodies, Viral↗

Complement-induced vesiculation and exposure of membrane prothrombinase sites in platelets of paroxysmal nocturnal hemoglobinuria.

Paroxysmal nocturnal hemoglobinuria (PNH) is an acquired stem-cell disorder in which the glycolipid-anchored membrane proteins, including the cell-surface complement inhibitors, CD55 and CD59, are partially or completely deleted from the plasma membranes of mature blood cells. To gain insight into the pathogenesis of thrombosis that is frequently observed in this disorder, the procoagulant responses of PNH platelets exposed to the human terminal complement proteins C5b-9 were investigated. C5b-9 complexes were assembled on gel-filtered platelets by incubation with purified C5b6, C7, C9, and limiting amounts of C8. Platelet microparticle formation and exposure of plasma membrane-binding sites for coagulation factor Va were then analyzed by flow cytometry. PNH platelets exhibiting undetectable levels of surface CD59 antigen showed an approximately 10-fold increase in sensitivity to C5b-9-stimulated expression of membrane-binding sites for factor Va when compared with platelets from normal controls. Expression of catalytic surface for the prothrombinase complex (VaXa) paralleled the exposure of factor Va-binding sites; the rate of prothrombin conversion by C5b-9-treated PNH platelets exceeded that of C5b-9-treated normal controls by approximately 10-fold at the maximal input of C8 tested (500 ng/mL). These data indicate that PNH platelets deficient in plasma membrane CD59 antigen are exquisitely sensitive to C5b-9-induced expression of prothrombinase activity, and suggest that the tendency toward thrombosis in these patients may be due, at least in part, to the deletion of this complement inhibitor from the platelet plasma membrane.

Adult↗