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C4a anaphylatoxin levels as an indicator of disease activity in systemic lupus erythematosus.

The use of a synthetic protease inhibitor, nafamstat mesilate, has enabled reliable estimations of in vivo complement activation to be made in systemic lupus erythematosus (SLE). Elevation of C3a anaphylatoxins was found in two out of 24 patients and elevation of C4a anaphylatoxins was found in 20 out of 24 patients, confirming that complement activation, predominantly by the classical pathway, is a common occurrence in the disease. Significantly higher levels of C4a anaphylatoxin were found in 16 patients, with more aggressive disease requiring supplementary treatment with azathioprine, while the remaining eight patients, with less severe disease, required purely steroid therapy. Very strong associations between elevated C4a anaphylatoxins and raised DNA antibody titres, C1q binding activity and low complement C4 levels were also observed, suggesting that anaphylatoxin measurement may be a sensitive additional method for monitoring disease activity in SLE.

Adult↗

Complement subcomponent C1q stimulates Ig production by human B lymphocytes.

The regulation of Ig production by human B lymphocytes is a complex process involving interactions among B cells, APC, T lymphocytes and soluble factors including activation, growth, and differentiation factors. Components of the complement system, including C3a, C3b, C3d, and C5a, have been shown to influence various stages in this process. In this study, we demonstrate that the C1q subcomponent of complement binds to both small resting and large activated B cells and stimulates immunoglobulin production by Staphylococcus aureus Cowan-activated tonsillar B lymphocytes. This effect is present whether C1q is added to the B cells either at the beginning or near the end of a 7-day culture period and is not associated with enhancement of proliferation. The C1q stimulation of Ig production is, however, associated with increased steady state levels of mRNA for the mu Ig H chain. Furthermore, C1q stimulated IgM production by the human B cell line SKW 6.4, which is capable of secreting IgM in response to B cell differentiation factors (BCDF). SLE is a disorder frequently associated with polyclonal activation of B lymphocytes. We studied the effect of C1q on B cells from two patients with this disorder and one with an SLE-like illness, all selected for the predominance of either IgM or IgG in serum. Spontaneous or BCDF-stimulated Ig secretion was of the isotype predominant in vivo, whereas C1q selectively stimulated B cells to produce the other isotype (IgG vs IgM). Thus, C1q interacts with B lymphocytes in a manner distinct from that of BCDF found in mixed lymphocyte supernatants. C1q may be an important factor influencing the production of Ig by B lymphocytes in normal individuals and in patients with abnormalities of B cell activity.

B-Lymphocytes↗

[Plasma levels of complement fragments during hemodialysis in patients with chronic renal failure].

The kinetics of hemodialysis-induced leukopenia and generation of complement fragments including C3a, C5a, C4d, iC3b and Bb were investigated in 14 patients during hemodialysis using cellulose acetate (CA), cuprophan (Cu) and ethylenevinyl alcohol (EVA) membranes. A marked leukopenia in the first 15 minutes was observed in CA and Cu. Plasma C3a levels were higher in CA than in Cu and EVA. Plasma C5a levels were higher in CA and Cu than in EVA. There was a negative correlation between the white blood cell counts and plasma C5a levels at 15 minutes (gamma = -0.85, p less than 0.001). Plasma C4d levels showed no increase in all membranes. Plasma iC3b levels were higher significantly in Cu than in CA and EVA. Plasma Bb levels in the first 15 minutes increased significantly in all membranes, and furthermore continued to increase till the end of hemodialysis in CA and Cu. This study revealed that all the membranes tested activated the complement via the alternative pathway to produce Bb, iC3b, C3a and C5a. C5a was thought to take an important role in transient leukopenia. Furthermore, Bb was accumulated during hemodialysis in CA and Cu, and its biological effects on patients undergoing hemodialysis should be studied.

Adult↗

[Decrease in the serum level of the C3 complement component in noninsulin dependent diabetes of recent onset].

Complement components C3, C4 and C3A were measured by immuno-diffusion in plasma of 36 recent onset insulin-dependent diabetics (IDD) and compared to plasma complement levels of 19 long-standing IDD and 18 non diabetic controls. A significant decrease of C3 and a mild increase of C3A was found in recent-onset diabetes group. However these variations could not be correlated with IgG-islet cell antibodies, C3--fixing islet cell antibodies or A--B HLA antigens. No significant difference was found between long-standing IDD and controls for the 3 complement components. In conclusion, the decrease of C3, found in 30% of recent onset IDD, might be due to increase complement consumption either by the insulitis process or by circulating immune complexes.

Adolescent↗

Complement component C3-derived neutrophil chemotactic factors purified from exudate of rat carrageenin-induced inflammation.

Two neutrophil chemotactic factors have been purified from the exudate of chronic-phase of rat carrageenin-induced inflammation. Both the factors were derived from the third component of complement (C3); one was an NH2-terminal fragment (C3a) of alpha chain of C3 and another chemoattractant was a COOH-terminal fragment of beta chain, which was referred to as C3 beta c, on the basis of their molecular masses and NH2-terminal amino acid sequences. C3a exhibits potent chemotactic activity for rat neutrophils, and C3 beta c is a novel basic neutrophil chemoattractant with molecular mass of about 11 kDa, suggesting that both chemoattractants play a role in the neutrophil infiltration into inflammatory site of carrageenin-induced inflammation in rats.

Amino Acid Sequence↗

The role of neural and vasoactive mediators in the regulation of the pulmonary circulation during cardiopulmonary preservation.

The autoperfused working heart-lung preparation has been used for extended cardiopulmonary preservation for transplantation. However, acute lung injury and failure of the preparation can result from pulmonary hypertension, which previous investigators have linked to denervation. We studied the neural and vasoactive mediators of pulmonary vasoconstriction during normothermic autoperfusion of the heart and lungs from 13 calves. Pulmonary vascular resistance was quantitated by multipoint pulmonary artery pressure/flow plots generated by incremental reduction in venous return at three times: A, after sternotomy but before autoperfusion (control); B, during in situ autoperfusion (innervated heart-lung preparation); and C, after explanation (denervated heart-lung preparation). During hemodynamic measurements, left atrial blood samples were obtained for measurement of thromboxane B2, 6-keto-prostaglandin-F1 alpha, and complement activation products C3a and C5a. Results show that pulmonary hypertension in the autoperfused working heart-lung preparation begins during autoperfusion before denervation and may be related to complement activation and to increased levels of circulating thromboxane B2 and 6-keto-prostaglandin F1 alpha (both the absolute levels and the ratio of thromboxane B2 to 6-keto-prostaglandin F1 alpha). After denervation, both prostaglandin intermediates were markedly increased, but their ratio was not significantly affected. These data suggest that there is an initial stage of pulmonary vasoconstriction at the onset of autoperfusion that is accompanied by increased circulating levels of vasoactive mediators and that denervation further contributes to this response.

6-Ketoprostaglandin F1 alpha↗

Cryofiltration apheresis in the United States.

There are approximately 2,000 cases of cryoglobulinemia reported each year in the United States. The number of cases has been and is expected to continue growing exponentially since the advent of its association with the hepatitis C virus (HCV). Cryofiltration apheresis is a specific therapy for the treatment of cryoprotein induced diseases that selectively removes cryoprecipitates. We are currently the only center in the United States performing cryofiltration apheresis. We report on 32 patients treated with over 920 cryofiltration apheresis procedures over the last 6 years under the Investigational Device Exemption of the Food and Drug Administration Office of Orphan Devices. Twenty-seven patients were treated for cryoglobulinemia. Twelve of these patients received maintenance cryofiltration apheresis at some point, and 5 patients died. Five of the 32 patients were treated for cold IgM agglutinin disease. Only 2 of these patients, having plasma positive for cryoprotein and a high titer antibody, responded to therapy. None of these patients received maintenance therapy. No complement activation was observed using the cryofilter by measuring C3a and C5a. Although cryoproteins were effectively removed from the plasma, the other vital proteins such as immunoglobulins, albumin, and fibrinogen were preserved. Therefore cryofiltration apheresis is safe and effective in treating cryoprotein induced diseases. We would like to see widespread use of this cryofilter so that all patients with cryoprotein induced diseases such as cryoglobulinemia may benefit from this procedure.

Adult↗

Accumulation of anaphylatoxins and terminal complement complexes in inflammatory fluids.

The presence of anaphylatoxins (C3a and C5a) and terminal complement complexes (TCC) in different inflammatory fluids and plasma was studied in 33 patients. Anaphylatoxins were assayed using a radioimmunoassay technique, and the terminal complement complexes were determined by an ELISA method. Patients with peritoneal (n = 14), pleural (n = 7), pericardial (n = 6) or burn bullae fluid (n = 6) were studied. High C3a and TCC concentrations were found in all these fluids. Elevated C3a and TCC concentrations in inflammatory fluids were found not only in patients with elevated plasma C3a and TCC concentrations, but also in patients with normal plasma levels. No increases in C5a concentration were observed in pleural or burn bullae fluid. In one patient with pericarditis, and in subjects with acute pancreatitis with ascites, high C5a levels were found in the fluid. However, the high TCC concentration in the fluids suggests that C5a had been formed but was probably removed by leucocytes present in the fluid.

Acute Disease↗

Hemodialysis-associated platelet activation and thrombocytopenia.

The interactions between platelets and dialysis membranes were studied prospectively in 10 patients undergoing long-term stable dialysis. Transient but significant thrombocytopenia and platelet activation were found during dialysis with the commonly used cuprophane membrane. Platelet counts decreased from 231 +/- 21 X 10(3)/mm3 before dialysis to 127 +/- 28 X 10(3)/mm3 at 90 minutes following initiation of dialysis (p less than or equal to 0.007). Thromboxane B2, an index of platelet activation, also increased from a baseline level of 1.06 +/- 0.2 pg/10(6) platelets to 7.3 +/- 3.0 pg/10(6) platelets at 90 minutes (p less than or equal to 0.04). Cuprophane membranes were also shown to induce complement activation with C3a desArg, the stable derivative of C3 activation, showing a threefold increase from baseline 15 minutes after initiation of dialysis. In contrast, during dialysis with a non-complement-activating dialyzer membrane, polymethylmethacrylate, thrombocytopenia and platelet activation were not observed. These data suggest that platelet activation and thrombocytopenia during hemodialysis are associated with complement activation during hemodialysis in a manner similar to dialysis-associated neutropenia.

6-Ketoprostaglandin F1 alpha↗

Acidosis activates complement system in vitro.

We investigated the in vitro effect of different forms of acidosis (pH 7.0) on the formation of anaphylatoxins C3a and C5a. Metabolic acidosis due to addition of hydrochloric acid (10 micromol/ml blood) or lactic acid (5.5 micromol/ml) to heparin blood (N=12) caused significant activation of C3a and C5a compared to control (both p=0.002). Respiratory acidosis activated C3a (p=0.007) and C5a (p=0.003) compared to normocapnic controls. Making blood samples with lactic acidosis hypocapnic resulted in a median pH of 7.37. In this respiratory compensated metabolic acidosis, C3a and C5a were not increased. These experiments show that acidosis itself and not lactate trigger for activation of complement components C3 and C5.

Acidosis↗

The effect of FUT-175 (Nafamstat Mesilate) on C3a, C4a and C5a generation in vitro and inflammatory reactions in vivo.

FUT-175 is a synthetic protease inhibitor and an inhibitor of the classical and alternate pathways of complement activation. In human serum, FUT-175 inhibited C3a, C4a and C5a generation induced by heat aggregated IgG, zymosan and Cobra venom factor with IC50 values in the range of 3-43 microM depending on the stimulus and the fragments. To assess in vivo anti-inflammatory activity, inflammatory reactions induced in the skin of rabbits were quantitated by using 125I-albumin extravasation, 51Cr-labelled leukocyte accumulation and 86RbCl accumulation as a measure of hyperemia. Infusion of FUT-175 at 2 mg/kg/h inhibited all three parameters by 50-80% in dermal reactions induced by killed E. coli, zymosan, immune complexes, the reversed Arthus reaction, zymosan activated plasma (ZAP), f-norleu-leu-phe (FNLP) and LTB4. In contrast, the response to endotoxin (0.1 microgram) was not effected by FUT-175 treatment. The effect of FUT-175 was comparable to that of local or systemic therapy with indomethacin, but unlike indomethacin, the effect of FUT-175 was not reversed by local PGE2 administration. Furthermore, indomethacin and FUT-175 had additive anti-inflammatory effects. These results suggest that although FUT-175 is a potent inhibitor of C3a, C4a and C5a generation, it has novel and broad anti-inflammatory effects, possibly through actions in addition to complement inhibition as indicated by inhibition of FNLP-, LTB4- and ZAP-induced reactions.

Animals↗

Complement activation and HLA-B27.

The efficiency of complement activation was studied in sera from HLA-B27 positive and negative subjects (27 with previous yersinia arthritis and 35 controls). Activation of complement with zymosan induced higher mean levels of the anaphylatoxin C3a in HLA-B27 positive sera (mean (SD) 7.40 (1.66) mg/l) than in HLA-B27 negative sera (6.41 (1.79) mg/l). Similarly, higher levels of C3d,g, another C3 breakdown fragment, were obtained in HLA-B27 positive sera after Escherichia coli 0111:B4 lipopolysaccharide treatment (17.6 (3.7)% v 15.0 (3.8)%). The differences occurred irrespective of previous arthritis, complement C4 or Bf phenotype, or variation in background complement levels. The findings suggest that an increased responsiveness to complement activators may contribute to the pathogenesis of HLA-B27 associated inflammatory diseases.

Adult↗

Low molecular weight heparin improves peritoneal ultrafiltration and blocks complement and coagulation.

OBJECTIVES: Clinical studies have demonstrated that the intraperitoneal (IP) complement and coagulation systems are activated in peritoneal dialysis (PD) patients. In animal models, low molecular weight heparin (LMWH) was seen to inhibit peritoneal angiogenesis, and related compounds have increased ultrafiltration volumes after repeated administration to PD patients. The present study evaluated the effects of LMWH on ultrafiltration, coagulation, and complement activation during a single PD dwell. DESIGN: Rats were exposed to a single dose of 20 mL 2.5% glucose-based, filter-sterilized PD fluid, with or without supplementation with LMWH. The PD fluid was administered either as an IP injection or as an infusion through an indwelling catheter. The dwell fluid was analyzed 2 hours later concerning activation of the complement and coagulation cascades, chemotactic activity, neutrophil recruitment, ultrafiltration volume, and glucose and urea concentrations. RESULTS: Exposure to PD fluid induced activation of IP complement [formation of C3a (desArg) and increase of C5a-dependent chemotactic activity] and coagulation (formation of thrombin-antithrombin complex) and recruitment of neutrophils. In the case of IP injection, neutrophil recruitment and complement activation were inhibited by LMWH. In both models, LMWH inhibited thrombin formation, reduced complement-dependent chemotactic activity, and increased the IP fluid volume, indicating an improved ultrafiltration. CONCLUSIONS: The acute inflammatory reaction to PD fluid involves the complement and coagulation cascades. Addition of LMWH to the PD fluid improves ultrafiltration, inhibits formation of thrombin, and potentially blocks C5a activity. The present results motivate further investigations of the IP cascade systems in PD.

Animals↗

Study of complement-mediated anaphylaxis in humans. The role of IgG subclasses (IgG1 and/or IgG4) in the complement-activating capacity of immune complexes.

The role of Ig classes and subclasses in complement activation has been investigated both in vitro and in experimental animals, but not in humans. This study was conducted to determine the immunologic events of post-transfusion anaphylaxis in humans, and the effects of immune complexes of different IgG subclass compositions on complement activation. The ability of immune complexes containing mixed IgG1 and IgG4 or IgG4 Ab only to activate complement was investigated in two patients with von Willebrand's disease (a congenital bleeding disorder). This disease was complicated by precipitating IgG alloantibodies to von Willebrand factor (vWF), which triggered complement-mediated anaphylaxis after infusion of vWF-containing preparations. Complement activation was greater in the presence of mixed IgG1- and IgG4-vWF complexes than with IgG4-vWF alone. In one patient, the generation of large amounts of C4a, C3a, and terminal complement complexes following the formation of mixed IgG1- and IgG4-vWF was associated with life-threatening anaphylaxis. In this patient, IgG4 appeared to have no inhibitory effect on antigen-bound IgG1-mediated complement activation. In the other patient, formation of IgG4-vWF led to a lesser degree of complement activation and was associated with moderately severe anaphylaxis. Since neither patient showed any biochemical alterations indicating the involvement of mast cells or the contact phase of coagulation at any time, it is probable that the pathogenetic mechanism of the clinical syndrome was a direct effect of complement anaphylatoxins on vascular permeability and smooth muscle contraction. In both patients, IgG-vWF bound C4 and C3 (IgG4-vWF to a lesser extent than mixed IgG1- and IgG4-vWF), and this probably prevented serum sickness as a complication.

Adult↗

Complement activation after prolonged exercise.

The effects of a 2.5-h running test on the concentrations of the complement cleavage products C3a, C4a and C5a in plasma were examined in eight healthy young males. In all participants the C3a and C4a values were raised during (1 h after the start) and immediately after exercise. C4a was also raised 1 and 3 h after the race. These results provide evidence for complement activation after prolonged exercise.

Adult↗

Clinical sequelae of complement activation in hemodialysis.

During clinical hemodialysis, interactions between blood and dialysis membranes lead to the activation of several pathways such as the coagulation, kallikrein and complement pathways. The sum of these interactions defines the biocompatibility of the dialysis membrane; Cuprophane membranes, the most widely used dialysis membranes elicit intense blood-membrane interactions. Complement activation can be measured by determining the concentration of the activated third and fifth component of the complement cascade, namely C3a and C5a. These active products lead to the well known neutropenia seen during the early phase of dialysis. However, the neutropenia is only the most visible manifestation of the effects of complement activation. C5a-induced secretion of granule enzymes from neutrophils and their subsequent desensitization to further chemotaxis and phagocytosis may be an important factor in the incidence of infections in the dialysis patient. Endothelial cell damage by complement stimulated granulocytes mediated via superoxide anion may also play a role in the pulmonary dysfunction seen in dialysis patients, and recent evidence suggests that complement products may lead to cardiac dysfunction manifested by impaired ventricular contractility. Although some of these events may not be mediated directly by activated complement products, recent studies suggest that they play a role in the activation of several other pathways and pathophysiological process.

Biocompatible Materials↗

Acute vascular rejection is associated with systemic complement activation in a pig-to-primate kidney xenograft model.

The introduction of h-DAF transgenic porcine organs into pre-clinical pig-to-primate discordant xenotransplantation has led to complete and reliable abrogation of hyperacute xenograft rejection (HAR). Despite additional heavy immunosuppression however, most xenografts are still lost due to acute vascular rejection (AVR), with current treatment protocols being of only limited value. In a life-supporting model of pig-to-primate kidney transplantation, unmodified (n=8) or h-DAF-transgenic (n=9) porcine kidneys were transplanted into cynomolgus monkeys under cyclophosphamide (CyP), cyclosporine and low-dose steroid immunosuppression. Longest recipient survival was 11 days in the control group and 68 days in the h-DAF transgenic group. Stable initial graft function with recipient survival >4 days was generated in eight animals (two controls and six transgenics). In these animals, plasma complement levels were analyzed during ongoing AVR. Compared with baseline levels, a two-fold increase in C3a levels and a four-fold increase in sC5b-9 levels were measured. In parallel to systemic complement activation, increased deposition of C3 and C5b-9 along with massive staining for recipient IgM immunoglobulins was detected in the xenografts on immunohistochemistry. We conclude that acute vascular xenograft rejection of porcine kidneys in cynomolgus monkeys is associated with classical pathway complement activation following binding of induced recipient anti-porcine antibodies. This complement activation can be observed despite membrane bound expression of human complement regulators in the porcine xenografts. Therefore, additional short-term fluid phase complement inhibition seems necessary for the future development of protocols designed for treatment of AVR in the pig-to-primate combination.

Acute Disease↗

Role of C3 cleavage in monocyte activation during extracorporeal circulation.

BACKGROUND: We previously demonstrated that inhibiting formation of terminal complement components (C5a and C5b-9) prevents platelet and neutrophil (PMN) but not monocyte activation during simulated extracorporeal circulation (SECC). This study examined whether earlier complement inhibition during SECC, blocking C3a formation, would additionally prevent monocyte activation. METHODS AND RESULTS: SECC was established by recirculating heparinized whole blood from human volunteers on a membrane oxygenator. CAB-2, a chimeric protein constructed from genes encoding the complement regulatory proteins CD46 and CD55, inactivates the C3/C5 convertases and blocks in vitro generation of C3a, C5a, and C5b-9. CAB-2 was used in 4 experiments at a final concentration of 300 micrograms/mL and 4 experiments at 30 micrograms/mL; 4 control runs used vehicle alone. Samples were assayed for C3a and C5b-9, monocyte activation (CD11b upregulation), PMN activation (CD11b upregulation and elastase release), and platelet activation (P-selectin expression and monocyte-platelet conjugate formation). CAB-2 at both doses significantly inhibited formation of C3a and C5b-9 during SECC. High-dose CAB-2 significantly blocked monocyte and PMN CD11b upregulation and PMN elastase release. CAB-2 also inhibited formation of platelet activation-dependent monocyte-platelet conjugates. CONCLUSIONS: Blockade of complement activation early in the common pathway inhibited monocyte CD11b upregulation during SECC, suggesting that early complement components contribute most to monocyte activation during SECC. As expected, PMN and platelet activation were blocked by terminal complement inhibition. This investigation further elucidates the relation between complement and blood cell activation during simulated cardiopulmonary bypass.

Blood Platelets↗