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C3a and C5a anaphylatoxins bind to heparin-based sorbent in low density lipoprotein apheresis: in vitro and in vivo investigations.

Plasmasorption on a heparin-based sorbent was performed in vitro. It demonstrated affinity of the C3a and C5a anaphylatoxins for the sorbent: C3a was removed almost completely (97%), and the C5a concentration decreased on average by 55%. The plasma level of C3a and C5a complement components was also monitored during the procedure of clinical extracorporeal low density lipoprotein (LDL) apheresis on the sorbent in patients with familial hypercholesterolemia. A two- to threefold increase in C3a (up to 1,500 ng/ml) was observed after plasma separation by the IBM 2997 cell sorter. Subsequent processing of the plasma through the column led to the low level of C3a detected (less than 50 ng/ml), demonstrating significant uptake of C3a by the sorbent column. The removed C3a was found in the eluate obtained after regeneration of the sorbent with 2 M NaCl solution. No significant increase in C5a was found during the procedure. Nevertheless, some C5a was detected in the eluate from the sorbent. The content of C3a and C5a in patients blood after the treatment was approximately the same as it was initially, 200-500 ng/ml for C3a and less than 10 ng/ml for C5a. The removal of C3a and C5a anaphylatoxins by heparin-based sorbent should be regarded as an advantage of this type of plasmasorbent.

Adsorption↗

Leishmania, macrophages and complement: a tale of subversion and exploitation.

Leishmania are intracellular protozoan parasites which reside primarily, if not exclusively, in host mononuclear phagocytes. Several studies have demonstrated that infectious promastigotes rapidly and efficiently fix complement when they encounter serum components during their transmission to the mammalian host. Activation of the complement system by a microorganism can have 3 distinct biological effects. First, fixation of the terminal complement components can result in complement-mediated lysis. Second, fixation of the 3rd component of complement can lead to opsonization of the organism for uptake by phagocytic cells. Finally, the elaboration of the complement anaphylotoxins, C3a and C5a, can lead to inflammation. In the present chapter, we discuss the interaction of leishmania promastigotes with the complement system. We show that infectious promastigotes avoid the lytic effects of complement and resist fixation of the terminal complement components. At the same time, however, these organisms depend on fixation of opsonic complement to invade host mononuclear phagocytes efficiently. We discuss the mechanisms which allow metacyclic leishmania promastigotes to exploit the opsonic properties of complement and the receptors on macrophages involved in leishmania recognition. The role of complement mediated inflammatory processes in the host response to leishmania infection is an area which requires additional study.

Animals↗

Biocompatibility of four plasmapheresis membranes in patients treated for hypercholesterolemia.

Membrane plasma separation uses artificial polymers which might interact with blood components during treatment. In 7 patients treated for familial hypercholesterolemia with heparin-induced extracorporeal LDL precipitation (HELP), we studied 4 different synthetic plasma separation materials. The effect of membranes made from polyethylene, polymethylmethacrylate (PMMA), polypropylene and polysulfone on complement activation (C3a), granulocyte elastase release and granulocyte count were measured repeatedly during the treatment. Polyethylene and PMMA induced high levels of plasma elastase and marked granulocytopenia after 60 min of treatment, much later than during hemodialysis, where granulocyte nadir is known to occur already after 15 min. Polysulfone and polypropylene did not change granulocyte counts and caused only modest levels of elastase during plasmapheresis. Complement activation was present in all 4 membranes but with polyethylene, very high concentrations of C3a were detected. These data indicate that irritation of immune system components as granulocytes or the complement system do occur during plasmapheresis to different degrees depending on the membrane material used. Reinfusion of plasma after processing increases the amount of plasmatic activation products infused into the patient. This was the case, although the plasma processing procedure itself did not add activation products to the plasma. Activation patterns during plasma separation differ from those known to occur during hemodialysis despite use of the same polymer. Immunocompromised patients treated with plasmapheresis may react differently than these otherwise healthy subjects with familial hypercholesterolemia.

Biocompatible Materials↗

Investigation of the activation of a human serum complement protein, C3, by orthopedic prosthetic particulates.

Myriad molecular, cellular, and physiological processes underlie the inflammatory and osteolytic processes induced by particles of biomaterials resulting from the wear of implants such as total joint replacement prostheses. The objective this study was to investigate the role that the complement system may be playing in these phenomena. The aim was to evaluate the degree to which particles of selected orthopaedic materials--high density and ultrahigh molecular weight polyethylene, polymethylmethacrylate, and commercially pure titanium--cause the elevation of a key complement molecule, C3a, in an in vitro assay that directly measured the concentration of C3a. The results demonstrated that HDPE particles, at high concentration, are capable of causing the elevation of C3a in the in vitro assay. This finding is discussed in the context of other work and the mechanics of the complement system as it may affect the osteolytic process.

Biocompatible Materials↗

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↗

Activation of complement in the central nervous system: roles in neurodegeneration and neuroprotection.

The complement system is an essential effector of the humoral and cellular immunity involved in cytolysis and immune/inflammatory responses. Complement participates in host defense against pathogens by triggering the formation of the membrane attack complex. Complement opsonins (C1q, C3b, and iC3b) interact with surface complement receptors to promote phagocytosis, whereas complement anaphylatoxins C3a and C5a initiate local inflammatory responses that ultimately contribute to the protection and healing of the host. However, activation of complement to an inappropriate extent has been proposed to promote tissue injury. There is now compelling evidence that complement activation in the brain is a double-edged sword in that it can exert beneficial or detrimental effects depending on the pathophysiological context. This review focuses on the roles of the complement system in the pathogenesis of acute brain injury (cerebral ischemia and trauma) and chronic neurodegeneration (Alzheimer's disease). Because many effects of the complement appear to promote neuronal survival and tissue remodeling, directing activation of the complement system in the brain may provide a better therapeutic rationale than inhibiting it.

Alzheimer Disease↗

Biocompatibility of blood tubings.

We studied hemocompatibility of various blood tubings with C3a anaphylatoxin measurement and comparative electron scanning microscopy. The following tubing materials were tested: polyvinylchloride (PVC) plasticised with phthalate (PVC), pvc plasticised with phthalate coextruded with polyurethane (PIV), and two phthalate-free lines: pvc plasticised with trimellitate coextruded with polyurethane (TRI) and pvc plasticised with LT 360 (LTP). Results of C3a generation rate showed a significant activation by all blood tubings, with a reduced rate with PIV when compared to all others. Electron scanning microscopy showed marked alterations of PIV surface on tubings stored for 6 months. Protein deposits on internal surfaces after dialysis were similar whatever tubing material was tested, but adhesive cell number was greater with TRI when compared to PVC and LTP. Hemocompatibility is unchanged with phthalate-free tubings when compared to phthalate plasticised ones. In contrast with phthalate plasticised PVC there is no beneficial effect of polyurethane coextrusion with trimellitate plasticised PVC in regard to C3a generation.

Anaphylatoxins↗

Complement activation by a B cell superantigen.

Staphylococcal protein A (SpA), acting as a B cell superantigen, binds to the Fab region of human VH3+ Igs. Using SpA abrogated of its IgG Fc binding activity (Mod SpA) as a model B cell superantigen, we determined whether such an interaction causes complement activation. Addition of Mod SpA to human serum led to complement consumption and the generation of C3a. To determine whether this complement activation 1) was due to an interaction between VH3+ Igs and the Fab binding site of SpA and 2) proceeded via the classical complement pathway, we tested a panel of monoclonal IgM proteins for the ability to hind C1q following interaction with SpA. C1q binding was restricted to SpA-reactive, VH3+ IgM proteins. To formally determine whether the binding of SpA to the reactive VH3+ IgM proteins led to complement activation, we reconstituted the serum from a hypogammaglobulinemic patient with monoclonal IgM proteins and measured complement consumption and C3a generation following the addition of Mod SpA. We observed complement consumption and C3a production only in Mod SpA-treated serum reconstituted with a VH3+, SpA-binding, IgM protein. Taken together, these results provide compelling evidence that the interaction of the Fab binding site of SpA and VH3+ Igs can lead to complement activation via the classical pathway. This novel interaction may have significant implications for the in vivo properties of a B cell superantigen.

Adult↗

Quantitation of the anaphylatoxin C3a in the presence of C3 by a novel sandwich ELISA using monoclonal antibody to a C3a neoepitope.

C3a levels in plasma are usually measured by a competitive inhibition radioimmunoassay (RIA) using 125I-labelled C3a-desArg and antibodies to C3a capable of detecting C3a determinants which are also present on the native C3. Therefore, prior to the assay native, non-cleaved C3 has to be removed completely from the C3a-containing sample by precipitation. We developed a new rapid two-site sandwich ELISA system for the quantitation of C3a-desArg in plasma. This immunoassay uses a monoclonal antibody (mAb H466) reacting with C3a-desArg but not with C3. The reactivity of mAb H466 with a neoantigenic determinant of C3a-desArg permitted the direct quantitation of C3a-desArg without removal of C3 from the sample. The mAb H466 was used as a capture antibody and bound C3a-desArg was detected with a second peroxidase-labelled anti-C3a mAb. The lower limit of detection of C3a-desArg in this ELISA was 1 ng/ml. The C3a-desArg levels measured in the plasma samples of various patients were found to differ over a wide range. A good correlation was observed between the results obtained in the RIA and those obtained in the ELISA (r = 0.95). High levels of C3a-desArg were detected in plasma from patients with multiple trauma and patients undergoing haemodialysis. The C3a-desArg assay described should facilitate the routine quantitation of C3a in samples of plasma.

Antibodies, Monoclonal↗

Gene synthesis by serial cloning of oligonucleotides.

A rapid and simple method of gene synthesis is presented. A gene is constructed by serial additions of individual gene fragments in the 5'----3' direction. The vector used as the synthesis vehicle contains a unique Bsm I site at the amino terminus of the lacZ gene. Plasmid linearized with Bsm I is recircularized in vivo by oligonucleotide-directed double-strand break repair. The synthetic oligonucleotide used to "bridge" the double-strand break carries a 70- to 100-nucleotide insert which constitutes a portion of the gene along with a BsmI site at the 3' end that regenerates the site and allows for another consecutive round of mutagenesis to extend the gene sequence. The process is repeated until the entire gene is assembled. The method uses the beta-galactosidase color assay as a means of screening for correct insert lengths. The only in vitro enzymatic step necessary is a single Bsm I restriction digest of plasmid DNA. No ligation reactions are required. Only one strand of a gene sequence needs to be synthesized chemically. The gene synthesis method presented here was used to construct the human anaphylatoxin complement factor C3a gene.

Amino Acid Sequence↗

In-vitro activation of complement system by lactic acidosis in newborn and adults.

INTRODUCTION: Complement activation occurs secondary to a variety of external stimuli. Lactic acidosis has been previously shown to activate the complement factors C3a and C5a. In the present investigation we examined the differential effect of lactic acidosis on anaphylatoxin levels in cord and adult blood. Furthermore we aimed to determine if the entire complement cascade could be activated by lactic acidosis. METHODS: Cord and adult blood samples (n = 20 each) were collected and incubated for one hour in either untreated condition or with the addition of lactate in two concentrations (5.5 mmol/l vs. 22 mmol/l). Following incubation, levels of C3a, C5a and sC5b-9, and blood gas parameters were determined. RESULTS: Anaphylatoxin (C3a and C5a) and sC5b-9 levels increased with the addition of lactate in a dose-dependent manner in cord and adult blood (C3a: 1 h, 5.5 mmo/l, 22 mmol/l: 418/498/622 microg/l in cord blood; 1010/1056/1381 microg/l in adult blood, p<0,05; similar results were found for C5a and sC5b-9). CONCLUSION: Lactic acidosis leads to an activation of the entire complement system in neonates and in adults. This activation is dose-dependent and more pronounced in adults as compared to neonates.

Acidosis, Lactic↗

Ex vivo biocompatibility evaluation of a new modified cellulose membrane.

To evaluate membrane biocompatibility, an open loop ex vivo model was designed simulating the hemodialysis procedure. Blood was withdrawn continuously from healthy nonuremic donors, heparinized, and pumped through a module containing the membrane to be studied. C3a generation in the module was determined at various time points comparing the cuprammonium cellulose (CC) membrane and four types of modified cellulose (MC) membrane, each with a different degree of hydroxyl (OH-) group substitution. In other studies, C3a generation in the ex vivo mode was compared with that during in vivo dialysis. In the ex vivo model, C3a generation with MC membranes was reduced by 70% compared with CC. However, within the MC group, the degree of C3a generation did not correlate with the degree of OH-group substitution. In vivo studies confirmed the reduced degree of C3a generation with the MC membrane compared with CC. Additionally, validation studies using the CC membrane showed excellent agreement between C3a generation during ex vivo perfusion and in vivo dialysis. The results suggest that a group of new MC membranes causes substantially less complement activation than the CC membrane but that the degree of complement activation with various subtypes of MC membranes is not related to the degree of OH-group substitution.

Anaphylaxis↗

Studies on C3ahu binding to human eosinophils: characterization of binding.

C3a purified to chemical homogeneity from human serum binds preferentially to human eosinophils greater than neutrophils. Little or no binding is found with human platelets. Maximum binding to eosinophils at 37 degrees C occurs within 15 min. Dilution of 125I-C3a by either cold C3a or washing away unbound 125I-C3a and reincubating at 37 degrees C reveals a T1/2 of approximately 30 min. C3adesArg neither binds to eosinophils nor inhibits the binding of 125I-C3a. The binding of C3a to human eosinophils may reflect a physiologic role of C3a in eosinophil motility or function.

Blood Platelets↗

Effects on complement activation of a new continuous autotransfusion system.

Allogeneic blood transfusions may subject patients to risks of infection and allergic reactions. Various techniques for transfusion of shed blood have been developed. The aim of this study was to evaluate a new continuous autotransfusion system (Fresenius CATS) as regards its impact on the complement system, and on erythrocytes and leucocytes. Eighteen consecutive patients undergoing hip replacement surgery were studied. Complement variables (C4d, factor Bb, C3a and terminal complement complex, SC5b-9) and free haemoglobin, haemoglobin, leucocytes, platelets, albumin and protein were determined in the patient's blood preoperatively, 1 min before the start of transfusion, 15 and 60 min after transfusion; and in the reservoir, in the waste bag and in the retransfusion blood. Increased concentrations of C3a and SC5b-9 were found in the collected reservoir blood (P < 0.05). The washing and centrifugation procedure reduced these concentrations (< 0.001). High levels of free haemoglobin were found in the collected blood as well as in the processed product. The median haemoglobin level in the processed blood was 260gL-1 (range 104-289gL-1). Inflammatory mediators from the complement cascade are removed by continuous autotransfusion technique. The processed blood contains high levels of free haemoglobin.

Adult↗

Regulation of mast cell activation by complement-derived peptides.

It is known for more than 25 years that the complement-derived anaphylatoxic peptides, C3a, C4a and C5a are potent activators of basophils and certain types of mast cells. Although tissue distribution of receptors for C3a and C5a well exceeds myeloid cells, apparently they are not expressed on mucosal type mast cells, consequently these cells are not activated by C3a and C5a. Our results do however demonstrate that C3a and peptides related to this complement activation product are able to inhibit FcRI-clustering induced activation of mucosal type mast cells-such as RBL-2H3 cells and bone-marrow derived mast cells. Based on the current results we propose the presence of separate "activator" and "inhibitor" sequence motifs in C3a which are in balance under physiologic conditions.

Animals↗