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Human complement C3b inactivator: isolation, characterization, and demonstration of an absolute requirement for the serum protein beta1H for cleavage of C3b and C4b in solution.

The complement regulatory enzyme, C3b inactivator (C3bINA), has been purified from human serum by affinity chromatography on an anti-C3bINA Sepharose column. Subsequent chromatography on DEAE-cellulose and removal of IgG with anti-IgG Sepharose resulted in a product which was found to be homogeneous by polyacrylamide gel electrophoresis at pH 8.9 and by sodium dodecyl sulfate polyacrylamide gel electrophoresis. The molecule is composed of two disulfide bonded polypeptide chains with mol wt of 50,000 and 38,000 daltons. Human CobINA was found to be a glycoprotein containing at least 10.7% carbohydrate and to have a normal serum concentration of 34 +/- 7 mug/ml (mean +/- 1 SD). Highly purified C3bINA cleaved neither free C3b nor free C4b if trace amounts of contaminating beta1H were removed from these proteins with anti-beta1H Sepharose. However, in the presence of highly purified beta1H and C3bINA, both C3bIna, both C3b and C4b were cleaved. Incubation of native C3 or C4 with C3bINA and beta1H had no effect on their cleaved. Incubation of native C3 or C4 with C3bINA and beta1H had no effect on their structure. The action of C3bINA and beta1H on C3b produced two fragments of the alpha1-chain which did not dissociate without reduction of the molecule. These fragments have mol wt of 67,000 and 40,000 daltons. The action of C3bINA and beta1H on C4b resulted in cleavage of the alpha'-chain giving rise to the 150,000-dalton C4c and the 49,000-dalton C4d fragments which dissociated without reduction. To produce from C3b the immunochemically defined C3c and C3d, fragments, the action of an additional serum enzyme appears to be required, the effect of which can be mimicked by trypsin.

Amino Acids↗

Activation and binding of C3 by Candida albicans.

Interaction with components of the complement system is an important aspect of the pathogenesis of infection by Candida albicans. The key role of C3 as an opsonic ligand and as an element in amplification of complement activation led us to examine several factors that influence the activation and binding of C3 cleavage fragments to the yeast. Activation and binding of C3 were determined by use of normal human serum containing 125I-labeled C3. Incubation of yeast-phase cells in 20% serum led to deposition of 2.5 X 10(5) to 3.0 X 10(5) molecules of C3 per yeast cell. Binding of C3 was absent in serum that was heat inactivated for 30 min at 37 degrees C or in serum that was chelated with EDTA. Chelation of serum with EGTA [ethylene glycol-bis(beta-aminoethyl ether)-N,N,N',N'-tetraacetic acid] reduced binding of C3 fragments by 31%. These results suggest that the alternative complement pathway is the primary mechanism for activation and binding of C3 fragments to C. albicans. Bound C3 could be partially removed (50%) by treatment with 1.0 M hydroxylamine. In contrast, 1.0 M hydroxylamine removed 98% of the C3 fragments bound to encapsulated Cryptococcus neoformans. These results suggest that ester bonds are the primary mechanism for binding C3 to C. neoformans, whereas binding of C3 to C. albicans involves both ester and amide bonds. Monoclonal antibodies specific for C3c and an iC3b neoantigen were used to identify the fragment of C3 that was bound to C. albicans. The results showed that the primary fragment bound to the yeast was C3b. An examination of the kinetics of activation and binding of C3 fragments showed that activation and binding were very rapid. Near-maximal binding occurred after a 2.5- to 5-min incubation period. In contrast, activation and binding of C3 fragments to C. neoformans proceeded at a slower rate, with maximal binding requiring 10 to 20 min. These results indicate that activation and binding of C3 fragments by the yeasts C. albicans and C. neoformans differ in several important characteristics.

Antibodies, Monoclonal↗

Blood plasma contact activation on silicon, titanium and aluminium.

In the present work, blood plasma protein deposition to spontaneously air oxidized silicon, titanium and aluminium was re-investigated in vitro. Immunological- and null ellipsometry methods were used to detect and quantitate adsorbed proteins, RIA methods to study the retention of preadsorbed 125I-HSA upon exposure to buffer or blood plasma, and kallikrein-specific colorimetric substrate S-2302 to follow the surface generation of kallikrein. The results show that the contact activation of coagulation and complement systems are connected on Si and Ti, but not on Al, via coagulation factor XII. Preadsorbed 125I-HSA was most readily displaced on silicon, followed by titanium and aluminium. The surfaces displayed different antibody binding patterns after short and long-time exposures to plasma. Titanium and silicon bound anti-HMWK after 1 min in plasma, but aluminium did not. When the plasma incubation time was prolonged up to 2h the anti-HMWK binding disappeared totally on titanium and decreased on silicon. During the same time period, anti-C3c binding increased to the three types of surfaces. Also, the anti-C3c binding onto Si and Ti, but not Al, disappeared after incubation in Factor XII deficient plasma or when a specific coagulation factor XII (Factor XII) inhibitor, corn trypsin inhibitor (CTI) was added to normal plasma. The surface contacted plasmas cleaved the kallikrein-specific reagent S-2302 both after single surface contact, and after reincubation of surfaces in fresh plasma. The results show that C3b and Factor XIIa and their degradation products were retained at the surfaces.

Adsorption↗

Interaction of complement-solubilized immune complexes with CR1 receptors on human erythrocytes. The binding reaction.

The binding of complement (C)-solubilized 125I bovine serum albumin (BSA) anti-BSA immune complexes (IC) to CR1 receptors on human red blood cells (RBC-CR1) was studied. The binding of IC to CR1 was strongly dependent on the molar antigen to antibody ratio, and IC formed in moderate antigen excess showed no binding. IC solubilized in 50% human serum in the presence of autologous RBC bound rapidly to RBC-CR1, with maximal binding within less than 1 min at 37 degrees C. Release of CR1-bound IC under these conditions occurred slowly, requiring more than 30 min. Only binding of 'partially' solubilized, e.g., anti C3c (C4c), and conglutinin-reactive IC occurred, whereas fully solubilized complexes (IC-C3dg, C4d) showed virtually no binding. Solubilization of IC in the presence of Mg-EGTA or in C2-deficient serum resulted in a markedly delayed binding of IC to RBC, indicating the importance of an intact classical pathway in preparing the IC for binding to RBC-CR1. C-solubilized IC could be absorbed to solid-phase conglutinin or antibody to C3c and C4c, and these ligands were able to inhibit the binding of solubilized IC to RBC. Heparin also exerted a marked, dose-dependent inhibitory effect on the binding of presolubilized IC to RBC-CR1, whereas the binding was unaffected by the addition of monosaccharides or by the concentration of Ca2+ or Mg2+ ions.

Animals↗

A morphological and immunohistochemical study of lymphoid germinal centers in synovial and lymph node tissues from rheumatoid arthritis patients with special reference to complement components and their receptors.

Rheumatoid arthritis (RA) is one of the immune complex (IC) diseases in which lymphoid germinal centers (GCs) are found in the synovial tissue. Simultaneously, patients with RA often show swelling of lymph nodes. The morphology and function of the lymph-node GCs in patients with RA is not clear. The aim of this study was to evaluate the differences in morphology and immunoreactions to complement (C) components, their receptors, and IgM-rheumatoid factor (RF) between synovial GCs and lymph-node GCs in RA. Furthermore, the relationship between these immunoreactive substances and follicular dendritic cells (FDCs) in GCs was investigated. The tissues examined were 41 RA synovial specimens, seven RA lymph nodes with massive lymphadenopathy, and 10 non-RA lymph nodes. The number of synovial GCs was relatively decreased in comparison with lymph-node GCs in RA, and the diameter of each synovial GC was smaller than that of each lymph-node GC. The synovial GCs were edematous and less cellular, and moreover, those from RF-seronegative cases were smaller than those from RF-seropositive cases. On the other hand, the lymph-node GCs in RA were larger, more cellular and hyperplastic, but contained more tingible-body macrophages (TBMs) and neutrophils. In the GCs of both synovial tissues and lymph nodes in RA, early C components (C1q, C4, C3c, C3d), IgM-RF, and C3b receptor (C3bR) and C3d receptor (C3dR) were expressed as a lacy network by light microscopy, and were demonstrated on the surfaces of FDCs and lymphocytes, and in the intercellular spaces by electron microscopy.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Release of endogenous C3b inactivator from lymphocytes in response to triggering membrane receptors for beta 1H globulin.

Human bone marrow-derived lymphocytes and cells from B lymphoblastoid lines were shown to have specific membrane receptors for beta 1H globin. Lymphocytes responded to the presence of beta 1H by releasing endogenously-synthesized C3b-inactivator. Very little spontaneous release of C3b-inactivator occurred in the absence of beta 1H. beta 1H-treated lymphocytes that either lacked complement receptor type one (CR1, the C4b-C3b receptor) or had their CR1 blocked with Fab'-anti-CR1 formed rosettes with C3b-coated sheep erythrocytes (EC3b) by adherence to complement receptor type two (CR2, the C3d-C3bi receptor). The mechanism of the beta 1H-induced EC3b rosette formation was shown to involve the release of lymphocyte C3b-inactivator that cleaved bound C3b into C3bi forming EC3bi. This lymphocytes-generated EC3bi then bound to CR2, forming rosettes. beta 1H-induced EC3b rosettes were completely inhibited by the presence of either anti-C3b-inactivator, F(ab')2-anti-CR2, Fab-anti-C3c, or Fab-anti-C3d, but were unaffected by the presence of fluid-phase concentrations of beta 1H up to 5.5 mg/ml or Fab'-anti-CR1. Analysis by sodium dodecyl sulfate polyacrylamide gel electrophoresis and fluorography demonstrated that cell-free supernates of beta 1H-treated lymphocytes cleaved 3H-labeled C3b on EC3b into C3bi. Inhibition studies with chelating agents and sodium azide suggested that the release of C3b inactivator might involve a calcium and energy-dependent transport of this enzyme across the membranes of beta 1H-triggered cells. Because plasma beta 1H and C3b-inactivator are known to have important functions in the distinction of alternative pathway-activating substances from normal tissue, it is possible that this beta 1H receptor-C3b-inactivatory releasing system in lymphocytes may have an analogous function.

B-Lymphocytes↗

Quantitation and antigenic characterization of bound C3 of circulating immune complexes in systemic lupus erythematosus, rheumatoid arthritis, and primary biliary cirrhosis.

In recent years defective function of the complement-mediated clearance of immune complexes (IC) has been reported in patients with immune complex disease. The defect has been found at different levels in the clearance system. An important event in this sequential system is the binding of C3-coated particles to C3 receptors on erythrocytes and phagocytes. This study focuses on immunochemical properties of IC-bound C3 that reflect the functional state of the molecule. Sera from patients with primary biliary cirrhosis (PBC), rheumatoid arthritis (RA), and systemic lupus erythematosus (SLE) and from normal subjects were analyzed for their level of C3 precipitable in 2.7% (w/v) polyethylene glycol (PEG). The mean levels for the patient categories were significantly higher than that for the normal subjects. The immunochemical study revealed several differences among the different forms of PEG-precipitable C3. All forms expressed C3(D) antigens which are expressed by immune complex-associated and denatured forms but not by soluble physiological forms of C3. The expression of these antigens was proportionately lower for the complex-associated C3 of PBC compared to that of RA and SLE. Furthermore, employing monoclonal anti-C3(D) antibodies against the C3c and the C3d domain, distinct differences could be detected among all forms of PEG-precipitable C3. Sera from RA and SLE, in particular, contained PEG-precipitable C3 that exhibited distinctive immunochemical features with respect to these epitopes.

Antibodies↗

Immunoconglutinins and C3 in human saliva.

High titres of immunoconglutinin activity (antibody to bound complement components) have been found in the parotid, sublingual and submandibular saliva of most healthy subjects. The immunoconglutinin (IK) titre in mixed saliva was substantially lower than in the other samples of saliva. C3 was detectable in only three of 164 samples of parotid, submandibular and sublingual saliva but was present in forty-seven of 117 mixed saliva samples. It is suggested that crevicular fluid is the major source of C3 in mixed saliva. A negative correlation was found in mixed saliva between the C3 concentration and the IK titre, and this suggested that C3 was the inhibitor of IK in mixed saliva. Binding of C3 to IK has been demonstrated in mixed saliva by using highly purified salivary IK and C3. Purified C3, C3i, C3c and C3d inhibited the activity of purified IK. It is suggested that salivary IK represents the secretion of a B-lymphocyte population which has evaded the mechanism responsible for inducing B-cell tolerance to autologous serum proteins. The reason for its persistence in the salivary glands, however, is not known at present.

Adolescent↗

Localization of the conglutinin binding site on the third component of human complement.

The binding site on the human third complement component for bovine conglutinin has been located. C3 fragments were purified to homogeneity by preparative SDS-polyacrylamide-gel electrophoresis. Only the N-terminal 27,000 dalton (Da) fragment of the alpha'-chain and the beta-chain were found to be glycosylated, and the carbohydrate was susceptible to endo-beta-N-acetylglucosaminidase H. This finding indicates that only high mannose or hybrid-type oligosaccharide chains are present on the C3 molecule. Binding to conglutinin was determined by an enzyme-linked immunosorbent assay and occurred with C3b, iC3b, C3c, the alpha-chain, and the 27,000 Da fragment of the alpha'-chain, but not with C3d or the C-terminal 40,000 Da fragment of the alpha'-chain. The beta-chain displayed very weak interaction. Binding to conglutinin could be inhibited by EDTA, N-acetylglucosamine, and to a lesser degree by mannose. Enzymatic removal of the carbohydrate from the C3 molecule abolished binding to conglutinin. It is concluded that bovine conglutinin binds to the carbohydrate moiety located on the N-terminal 27,000 Da polypeptide of the alpha-chain.

Acetylglucosamine↗

Serum-treated antigen-antibody complexes inhibit the production of C2 and factor B by mononuclear phagocytes.

Antigen-antibody complexes enhanced the synthesis of C2 and factor B by human monocytes and macrophages, and C2 by guinea-pig macrophages. In contrast complexes that had been treated with serum inhibited the production of these components. The inhibitory effect of serum-treated complexes was abrogated by Fab fragments of anti-C3, anti-C3c and anti-C3d. It is therefore probable that inhibition was mediated by a C3 fragment bound to the complex. The enhancing effect of untreated complexes was reversible by serum-treated complexes, and the inhibitory action of serum-treated complexes was counteracted by untreated complexes. Such a system may be important in the regulation of the synthesis of complement components in response to local requirements.

Animals↗

IgG, IgA and C3 deposits in the extra-thyroidal manifestations of autoimmune Graves' disease: their in vitro solubilization by intravenous immunoglobulin.

OBJECTIVE: To study the involvement of antibodies in the extrathyroidal manifestations of autoimmune Graves' disease, we determined the presence of IgG, IgA and IgM antibodies and C3c in connective tissue samples from patients with Graves' disease and pretibial myxedema (PTM) or thyroid associated ophthalmopathy (TAO). METHODS: Connective orbital tissue samples were obtained from 12 patients undergoing orbital decompression for TAO, and skin samples from lesions on the pretibial area were obtained in 7 patients with PTM. Sections from each tissue sample were stained with fluorescin-isothiocianate conjugated anti-human IgG, IgA, IgM and C3c and were examined by a fluorescence optical instrument. Other serial sections from each sample were incubated with human IgG solutions (concentration 6 mg/ml or 20 mg/ml), human albumin (40 mg/ml), PBS, myoglobin (40 mg/ml), or IgA (20 mg/ml), and were then processed by a standard direct immunofluorescence staining procedure. RESULTS: Among the samples from TAO patients 8/12 (67%) were positive for IgG deposition, 4/9 (44%) were positive for IgA, 1/9 (11%) was positive for IgM and 4/9 (44%) were positive for C3c deposition. Orbital connective samples from 3 non-TAO patients were all negative. Among samples from PTM patients 4/7 (57%) were positive for IgG deposition, 3/ 4 (75%) were positive for IgA, 0/4 was positive for IgM and 3/7 (43%) were positive for C3c deposition. Skin samples from 5 control patients undergoing skin biopsy for non-autoimmune diseases were all negative. Incubation with human IgG (20 mg/ml) resulted in the complete disappearance of IgG and C3c deposition in all positive patients. No significant variation in IgG fluorescent staining after incubation with either 6 mg/ml of IgG solution, human albumin, PBS, myoglobin or IgA was observed. CONCLUSION: The results of our study suggest that different classes of antibodies, mainly IgG and IgA, may be implicated in the disease process in autoimmune TAO and PTM. Activation of the complement cascade, via the classic or the alternative pathway, could take place in about 40% of these patients. IVIG in vitro may solubilize, by a specific mechanism, IgG and complement immune complex deposition in the extrathyroidal manifestations of autoimmune Grave's disease.

Complement C3↗

Phosphorylation of complement component C3 and C3 fragments by a human platelet protein kinase. Inhibition of factor I-mediated cleavage of C3b.

Phosphorylation of C3 in vitro has been shown previously to lead to significantly altered function of the protein. Platelets are known to contain and release considerable amounts of protein kinases and ATP, which are prerequisites for protein phosphorylation. The aim of the present study was to investigate whether C3 is phosphorylated extracellularly by human platelets. Platelet-rich plasma was stimulated by human aggregated gamma-globulin or ADP. The remaining cells were removed by centrifugation, and the plasma was incubated with [gamma-32P]ATP. After precipitation with Sepharose-bound Abs to C3c followed by SDS-PAGE, it was shown that C3 was phosphorylated in the alpha-chain by a protein kinase dependent on Mn2+, Ca2+, or Mg2+ ions. The supernatant from washed, activated platelets was incubated with purified C3 or soluble or activated thiol Sepharose-bound C3b, together with [gamma-32P]ATP. Phosphorylation was seen in the alpha-chain of C3, and to the same extent in the alpha'-chain of both C3b preparations. The analysis of acid hydrolysate demonstrated that C3 contained 32P-labeled Thr and 32P-labeled Ser. After extensive proteolysis with trypsin, the major phosphorylation site was located to a peptide of 3 to 4 kDa that was bound to the activated thiol Sepharose via the free sulphydryl group in the C3d fragment. Incubation of phosphorylated C3b with factors I and H showed that phosphorylation inhibited the cleavage of the alpha'-chain of C3b. The results in this study suggest that phosphorylation is a regulator of C3 during platelet activation induced, for example, by immune complexes.

Binding Sites↗

Effect of complement on the rheological properties of the erythrocyte membrane.

The effect of complement (C) on the erythrocyte deformability was investigated. Sheep erythrocytes (E) were sensitized with specific antibodies (A) and treated with various doses of human C. Gravity filtration of unlysed EAC showed a C dose-dependent decrease in whole cell deformability, which was shown to be due to an impairment of the membrane rheological properties. As the fluidity of the lipid bilayer, sensed by a spin label, was not modified, the observed effects should be related to an interaction between C and the cytoskeleton. The influence of C3b and C3d in these processes seems unlikely, as similar hemagglutination titers were found, respectively, for anti-C3c and anti-C3d antisera against the varying EAC. The study of the degree of spontaneous hemolysis of EAC in buffers with solutes of different Stokes radii showed that differing-sized functional C lesions were produced, and that the formation of larger-sized lesions was favored by incubation with higher C doses. These results suggest that the insertion of proteins from the membrane attack complex, C5b-9 (MAC), into the erythrocyte membrane may be responsible for the effect of C on the rheological properties of the erythrocyte membrane.

Animals↗

Inhibition of lymphocyte blastogenesis by C3c and C3d.

The C3 cleavage products C3c and C3d were tested for their ability to alter the immunoproliferative response of human peripheral mononuclear cells to the antigens SLO and SK-SD, and to the mitogens PHA and PWM. It was found that both C3c (30 to 120 micrograms/ml) and C3d (10 to 40 micrograms/ml) inhibited lymphocyte blastogenesis in the presence on antigens but not mitogens, when cells were cultured in either autologous plasma or FCS. Similarly, the response to antigens of cell populations enriched for T lymphocytes was inhibited, whereas the response to optimal or suboptimal doses of mitogens was unaffected. When nonadherent (NA) cells were reconstituted with increasing numbers of adherent (AD) cells to potentiate the proliferative response of NA cells to the antigen SLO, the addition of either C3c or C3d abolished the potentiation of the response at low levels of reconstitution. However, at given dose of C3c or C3d, addition of excess AD cells could restore the proliferative response. These results suggest that both C3c and C3d can inhibit T cell proliferation in response to antigen and that they may act at the level of the monocyte-T lymphocyte interaction to modulate cellular immune responses.

Antibodies↗

Phylogeny of C4b-C3b cleaving activity: similar fragmentation patterns of human C4b and C3b produced by lower animals.

Functional and structural studies of the activated proteins of the complement system C4b and C3b have led to the identification of cleavage products resulting from the effect of the regulatory proteins, factor I, H, and C4b binding protein (bp). In this paper we report the results of studies that investigated the capacity of plasma or serum from a wide range of phylogenetic species to yield similar cleavage products. Sera and plasma from mammals, reptiles, amphibia, and fishes are capable of cleaving fluid phase human C4b and C3b, generating apparently the same fragments as observed using normal human serum: alpha 2, alpha 3, alpha 4 from the alpha' chain of C4b: and alpha-68, alpha-46, alpha-43, and alpha-30 from the alpha' chain of C3b. When C3b bound to a cell membrane is used C3c and C3dg are generated. The generation of these fragments from C3bi is a dose-dependent reaction. There is no correlation between the evolution of the species and the quantitative capability to degrade the substrates. Birds possess only a limited capability to degrade the alpha' chain of C4b and have no cleaving activity for C3b, whereas sera from more primitive vertebrate species (chondrichthyes and agnatha) fail to participate in the reaction. Contrary to other species, the proteins in fish serum or plasma responsible for the degradation of C4b and C3b show a unique requirement for Ca2+ ions. Magnesium and barium are less effective, and in their presence a 65,000 dalton intermediate product is observed. These results demonstrate that protein(s) displaying proteolytic activity for products of complement activation, probably related to I, H, and C4bp, are present in plasma of species whose evolution have preceded humans by 300 million years. Moreover, the recognition of human substrates and the generation of fragments identical to those produced by human serum suggests that human C4b and C3b share structural characteristics with their evolutionary ancestors in the serum or plasma of the species studied.

Animals↗

Studies of C3d,g in normal human epidermal basement membrane.

Recent studies in our laboratory have demonstrated that polyclonal as well as monoclonal antibodies directed against C3d,g, a specific 41,000-Da fragment of the third component of complement, bind normal human epidermal basement membrane in a continuous pattern. No such reactivity is present within dermal microvascular basement membranes. By direct immunofluorescence microscopy, anti-human C3d,g antibodies bind the base of the cleavage plane in 1 M NaCl split human skin. By immunoelectron microscopy, anti-human C3d,g reactivity is found along the base of the lamina densa and in the sublamina densa region. Control antibodies directed against human C3, C3c, C5, IgG, IgA, or IgM do not bind normal human epidermal basement membrane or identify in situ deposits of immune complexes in multiple samples of normal human skin that are all positive for C3d,g. Preabsorption of monoclonal or polyclonal anti-human C3d,g antibodies with purified human C3d completely blocks these reagents' epidermal basement membrane reactivity. Studies of skin samples from a patient with congenital C3 deficiency reveal that anti-human C3d,g antibodies do not bind this subject's epidermal basement membrane. Moreover, in vitro treatment of this patient's skin with normal serum, aged serum containing C3d,g, purified human C3, or zymosan-serum reaction mixtures does not restore epidermal basement membrane anti-human C3d,g binding. Studies of other primate tissues demonstrate that C3d,g is not restricted to basement membranes of stratified squamous epithelia as it is also present within renal tubule and glomerular basement membranes. While a recent study has demonstrated that C3d binds laminin in vitro, our investigations show a difference in both the regional and ultrastructural distribution of laminin and C3d,g in normal human skin. Furthermore, C3d,g is absent from laminin-rich basement membranes of papulonodular basal cell carcinomas. These findings suggest that C3d,g is not passively incorporated within selected epithelial basement membranes but rather is a previously unrecognized normal constituent. Basement membrane-associated C3d,g may play a role in adhesive interactions between leukocytes and matrix proteins. Moreover, a C3d,g binding site(s) in selected epithelial basement membranes may account for the accumulation of C3 containing immune complexes in such tissues.

Animals↗

The effect of substrate molecular mobility on surface induced immune complement activation and blood plasma coagulation.

Changing the length of the alkyl ester side chain in poly(alkyl methacrylates) provides a unique opportunity to systematically vary the mobility of the polymer chains, or in other words vary the glass transition temperature (T(g)), without greatly affect the solid surface energy (gamma(s)) of the polymer. A series of poly(alkyl methacrylate) coatings was therefore analysed with regard to the human immune complement (IC) activation and the surface associated blood plasma coagulation cascade (CC) properties. For the IC and CC measurements we used a quartz crystal microbalance (QCM) where we modified the chemistry of the sensor surface by applying 10-30 nm thick poly(alkyl methacrylate) coatings. The surface energy was calculated from water contact angles and small differences between the coatings were observed. The surface chemistry of the coatings, as determined with X-ray photoelectron spectroscopy (XPS), showed no deviation from expected compositions. Tapping mode atomic force microscopy (TM-AFM) measurements revealed that all coatings displayed similar morphology and the roughness was in the range of 0.7-0.9 nm. Increased polymer mobility correlated with a decrease in IC activation, measured as a decreased C3c deposition at the surface. The surface induced CC, measured as fibrin clot formation at the surface, was different between the different coatings but no correlation with molecular mobility was observed. Thus, the molecular mobility of the polymer chains had a major effect on both the IC and the CC and it seems that different aspects of the chemistry of the solid surface regulate activation of the IC and the CC.

Biocompatible Materials↗

Production of mouse monoclonal antibodies that detect distinct neoantigenic epitopes on bound C3b and iC3b but not on the corresponding soluble fragments.

Polyclonal antibodies raised in rabbits against sodium dodecyl sulphate (SDS)-denatured and reduced human complement factor C3 have in recent studies been shown to lack any reactivity towards native C3 but to react with antigens distinctly expressed by SDS-denatured C3 (C3(D) antigens). These antigens are also neoantigens specific for physiologically bound C3 and appear to be involved in the interaction of C3 with other complement components. The present investigation deals with production of mouse monoclonal antibodies against C3(D) antigens. To accomplish this two different immunization and screening procedures employing C3 preparations of known C3(D) expression were tested. From each group 14 clones were randomly selected and the reactivity of these and of a control group of 14 additional monoclonal anti-human C3 antibody preparations raised against native soluble C3 and C3b, was investigated in ELISA and immunoblotting. The procedure which employed denatured reduced C3 as both immunogen as well as screening antigen was shown to be superior for obtaining anti-C3(D) antibodies. Altogether 16 clones producing antibodies against C3(D) antigens were found. All of them bound to the C3 alpha-chain, 14 to C3c and one to C3d, and eight monoclonal antibodies specific for neoantigens of C3(D) type on bound C3b and/or iC3b were obtained. The majority of these detected neoantigenic epitopes in the 25,000 N-terminal fragment of the C3 alpha-chain specifically exposed by bound iC3b, but one monoclonal antibody was specific for the 36,000 C-terminal alpha-chain fragment and for both bound C3b and iC3b.

Animals↗