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Novel monoclonal antibodies against mouse C3 interfering with complement activation: description of fine specificity and applications to various immunoassays.

The role of complement proteins in various pathophysiological settings has been studied primarily using mouse models of disease. However, the specific contribution of C3-derived fragments to these biologic processes has not been addressed in a rigorous manner because of a lack of antibodies that can selectively recognize mouse C3 or any of its degradation fragments. Here we report the generation and characterization of a panel of rat monoclonal antibodies reacting with mouse C3 and its degradation products. We describe their performance in various immunological assays such as ELISA, Western blotting, flow cytometry and immunohistochemistry. Of all the antibodies generated, one selectively recognized the C3a anaphylatoxin, and all other reacted with C3c. Furthermore, two monoclonal antibodies preferentially reacted with the cleaved C3 fragments C3b/iC3b/C3c but not native C3. Except for the one recognizing C3a, all antibodies were suitable for detecting C3 deposited on cells and tissues, two effectively inhibited the hemolytic activity of mouse complement and one enhanced C3-deposition to the cell membrane. These novel monoclonal antibodies may serve as useful reagents for elucidating functions mediated by C3-derived fragments in various pathophysiological conditions.

Animals↗

Rapid removal of mycoplasma from cell lines mediated by a direct effect of complement.

Mycoplasma can be removed from the surface of contaminated human and murine cell lines by incubation for 4 h with human, rabbit, guinea pig, or mouse sera. Several lines of evidence suggest the involvement of complement in this process: (1) The activity can be abrogated by heat treatment (56 degrees C for 45 min). (2) Using monoclonal antibodies directed against C3a and C3b, the deposition of C3b fragments on the surface of mycoplasma-positive cells can be demonstrated after 1 h incubation with human serum. (3) Ca2+ depletion ablates the ability of serum to remove the activity. (4) C2def' sera are inactive while addition of purified C2 reconstitutes the activity. The latter two findings implicate that activation of the classical pathway of complement is responsible for the effect. Antibody, however, is not required as demonstrated by the uncompromised activity of Ig-deficient sera from bursectomized chicken. Treatment with human serum or rabbit serum was used successfully to permanently cleanse 10/10 tumor cell lines of human and of murine origin. The complete removal of mycoplasma was monitored over at least 8 weeks by direct DNA staining and confirmed by agar culture and transfer of supernatants to mycoplasma-free Vero cells followed by DNA staining. Thus the direct interaction of mycoplasma and complement appears to be an effective and rapid means of curing cell lines from mycoplasma.

Animals↗

Novel approaches to immunotherapy: epitopes, determinants, activators, or modulators?

The immunological mechanism through which immunotherapy (IT) acts is not certainly known. The participation of the so-called "blocking antibodies" has not been proved and how it intervenes in the regulation of the production of IgE is still to be cleared, as it affects the action of lymphocytes Th1 and Th2. Nowadays, IT is based in the concept that the allergic reaction is somehow an antigen (allergen)-antibody (reagin) reaction. The possible modifications of IT are also based on the possibility to interfere in the antigen-antibody interaction. It has been proved in vitro that aqueous extracts of some allergens produce the consumption of complement, by its usual via, in which the C1 component is involved, without the mediation of antibodies, generating anaphylotoxin C3a, which is a powerful releaser of histamine, as well as C3b, which participates in the regulation of the cellular immunitary system. The term atopen should therefore be used when referring to the unspecific activation or adjuvant activity of antigenically different allergens, due to their common structural or functional characteristics. The term allergen should then be used when describing those structural traits of the carrier molecule, which preferently produces the induction, and possible recognition of IgE antibodies. The action atopen and allergen as separate characteristics of a same molecule could theoretically become important in the future of therapeutics. The receptor of membrane CD21 for C3b, in B cells is a link for lectine CD23 of lymphocytes B, which has been identified with the low affinity receptor IgE (Fce RII-CD23). In summary, the basic defect in atopy may reside in a defect of the receptor portion of reagin for atopen, but not in IgE. This means that in the nearby future, this fact should be taken into account in the search of drugs which participate in this kind of activation of allergic reaction, trying to modify or modulate the low affinity receptor IgE or even the high affinity receptor IgE.

Adjuvants, Immunologic↗

Complestatin, a potent anti-complement substance produced by Streptomyces lavendulae. I. Fermentation, isolation and biological characterization.

A new potent inhibitor of complement system, named complestatin, was isolated from the mycelium of Streptomyces lavendulae SANK 60477. Complestatin (C61H45N7O15Cl6, MW 1,325) was a peptide compound having two unusual amino acids, D-(-)-4-hydroxyphenylglycine and D-(-)-3,5-dichloro-4-hydroxyphenylglycine. This compound inhibited the hemolysis of sensitized sheep erythrocytes (EA) mediated by guinea pig and human complement 50% at concentrations of 0.4 and 0.7 micrograms/ml, respectively, but did not trypsin and alpha-chymotrypsin activities at 200 micrograms/ml. When complestatin was administered intravenously to the sensitized guinea pigs, it strongly inhibited the systemic anaphylactic shock elicited by the antigen probably by blocking generation of anaphylatoxins (C3a and C5a).

Amino Acids↗

Impact of immunoadsorption on complement activation, immunopathology, and hepatic perfusion during xenogeneic pig liver perfusion.

BACKGROUND: The impact of antibody adsorption by immunoapheresis on liver damage, complement activation, and hepatic perfusion was evaluated against the background of an application in extracorporeal pig liver perfusion for hepatic coma. METHODS: Eighteen pig livers were ex vivo perfused close to physiological conditions with fresh human blood for 4 hr. The influence of the perfusion circuit was investigated by perfusions of the circuit in the absence of livers (group 1 [G1]; n=5). Livers were xenoperfused without modifications in group 2 (G2; n=6). In group 3 (G3; n=6), pure Sepharose columns were used prior to liver perfusion. Immunoapheresis with Ig-Therasorb 100 columns was used in group 4 (G4; n=6). RESULTS: IgG was reduced by 95%, IgM by 72%, and IgA by 82% in G4, but only by about 30% in G3 (P<0.05). C4d, Bb fragment, and C3a levels were significantly lower in G4 than in G3 and G2 (P<0.05) after 180 min. Immunoadsorption diminished antibody and complement deposition as well as hepatocellular damage in G4. Portal angiographies demonstrated improved hepatic perfusion in G4. CONCLUSION: Immunoapheresis reduced organ damage as well as complement activation and improved hepatic perfusion during xenogeneic pig liver perfusion.

Acute Disease↗

The role of macrophage activation in chronic inflammation.

The macrophage is the characteristic cell type in chronic inflammatory reactions, in the rheumatoid synovium, as in other sites. When macrophages are activated, considerable synthesis of enzymes and other proteins occurs. Macrophages can be activated by (i) products of activated lymphocytes, (ii) immune complexes and (iii) the complement cleavage product C3b. Among the many consequences of macrophage activation are (i) secretion of hydrolytic enzymes, (ii) cleavage of C3 into C3a, which is cytolytic, and C3b, (iii) production of tissue thromboplastin, a powerful procoagulant, and (iv) formation of polyamine oxidase, which in the presence of appropriate substrates generates factors that lyse or limit the proliferation of tumour cells, lymphocytes and micro-organisms. The relevance of these observations to the pathogenesis of chronic inflammatory reactions is discussed.

Animals↗

Quantitative determinations of immunoglobulins and complement components in human aortic atherosclerotic wall.

Saline and acid eluates of intima with only fatty streaks, fibrous plaque and intima surrounding the fibrous plaque were obtained from 42 human aortae. IgG, IgA, IgM, C1q, C3c, C4, C9, C3A, C-reactive protein, alpha-1-antitrypsin, alpha-2-macroglobulin, albumin, transferrin and fibrinogen were quantitatively determined in these eluates using the radial immunodiffusion technique. Saline extracted IgG and IgA were significantly higher in the fibrous plaque and adjacent tissue than in the fatty streak intima, where IgM was the highest. IgG and IgA were only present in acid eluates. The complement components were present in all saline eluates, but only traces of C3c and C1q in some acid eluates. Statistically significant differences were found for C1q and C9. C-reactive protein was present in 23 samples. The results could suggest an involvement of immune mechanisms in the progression of the atherosclerotic lesion.

Adolescent↗

Cleavage of the human C5A receptor by proteinases derived from Porphyromonas gingivalis: cleavage of leukocyte C5a receptor.

The anaerobic bacteria P. gingivalis has been implicated as a primary causative agent in adult periodontitis. Several proteinases are produced by this bacteria and it is suggested that they contribute to virulence and to local tissue injury resulting from infection by P. gingivalis. Collagenases and cysteine proteinases (i.e., the gingipains) have been characterized as the predominant vesicular enzymes produced by this bacterium. It has been shown that an arginine-specific cysteine proteinase from P. gingivalis, called gingipain-1 or Arg-gingipain, can selectively cleave complement components C3 and C5. In the case of C5, cleavage by Arg-gingipain results in the generation of C5a, a potent chemotactic factor for PMNs. Since these bacterial proteinases are capable of generating pro-inflammatory factors at sites of infection, we examined the possibility that gingipains or other proteinases from this bacterium might attack or destroy cell surface proteins, such as receptor molecules. Using an affinity-purified rabbit antibody raised against residues 9-29 of the C5a receptor (i.e., C5aR; CD88), the signal transmitting element for the pro-inflammatory mediator C5a, we demonstrated that the mixture of proteinases in P. gingivalis vesicles cleaves the C5a receptor on human neutrophils. This vesicular proteinase activity did not require cysteine activation which indicates that proteinases other than the gingipains may be responsible for cleavage of the C5aR molecule. in addition, the purified Lys-gingipain, but not Arg-gingipain, also cleaved C5aR on the human neutrophils. The N-terminal region of CaR (residues 9-29, PDYGHYDDKDTLDLNTPVDKT) was readily cleaved by chymotrypsin, but not by trypsin, despite the presence of potential trypsin (i.e., lysyl-X) cleavage sites. The specific sites of C5aR 9-29 peptide cleavage were determined by mass spectroscopy for both chymotrypsin and Lys-gingipain. These studies suggest that the proteolytic activity in the bacterial vesicles that is responsible for cleaving C5aR is primarily a non-tryptic proteinase, distance from either Arg- or Lys-gingipain. Consequently, there appear to be additional proteinase(s) in the vesicles that attacks the cell surface molecule C5aR which are not the same (i.e., Arg- and Lys-gingipain) as were shown to generate pro-inflammatory activity from complement components C3 and C5. Evidence that the proteinases which attack the inflammatory precursor molecules (i.e., C3 and C5) exhibit different specificities than those that attack receptors to these bioactive complement products makes a particularly interesting story of how this bacteria avoids major host defense mechanisms. It is well known that generation of pro-inflammatory factors such as C3a and C5a at extra-vascular sites can promote edema, leukocyte recruitment and cellular activation responses that could lead to the release of toxic oxygen products and to phagocytosis of the bacteria. Destruction of receptors to these cellular activating factors generated by bacterial proteinases may eliminate the ability of these (i.e., complement-derived) and other mediators to carry out their anti-bacterial actions and thereby limit the host's defense mechanisms in responses to the infecting bacteria. The concept of anti-bacterial responses (i.e., oxygen radical generation and phagocytosis) being effectively eliminated at the injury site, by bacterial proteinases acting at the cellular receptor level, has not been studied in detail. In this case, the situation is particularly unusual because, once the bacterial gingipains generate potent plasma-derived inflammatory factors that can enhance edema and deliver essential nutrients to the bactgeria, other bacterial proteinases may destsroy their cellular receptors. These receptors transmit the signal activation mechanisms in the infiltrating cells that elicit bacterial killing.(ABSTRACT TRUNCATED)

Adhesins, Bacterial↗

In vitro evaluation of a relationship between human serum- or plasma-material interaction and polymer bulk hydroxyl and surface oxygen content.

To evaluate serum- or plasma-material interactions and a relationship between such interactions and membrane properties such as bulk hydroxyl percentage and surface oxygen percent, medical polymeric membranes with extremely different hydroxyl percentage and surface oxygen percentage were evaluated with normal human serums or plasmas. Six types of mini-membrane modules (hydroxyl & surface oxygen %) were studied including cellulose triacetate (CA; 0 & 34.7%), Cuprophan (CP; 31.5 and 37.4%), ethylene vinyl alcohol (EVAL; 30.4 and 25.3%), polyacrylonitrile (PAN; 1.5 and 10.2%), polysulfone (PS-F; 0 and 14.2%), and a polymer alloy of polysulfone (PS-K; 0 and 16.2%). Post-perfusion values of biochemical solutes and complement components for PAN and both PS membranes were smaller than those for sham, CA, CP, and EVAL membrane module perfusions. C3a and C4a concentrations showed no significant differences among all membranes except PS-K. Mononuclear cell transformation functions to all mitogens for serums in contact with CA and CP membranes were suppressed versus sham and PAN and both PS membranes. Fibrinogen concentration changes for plasma in contact with EVAL, PAN, and PS-F membranes were significantly smaller than sham, and a significant prolongation of APTT was found for only EVAL versus sham, CA, and CP. Higher surface oxygen percentages (CA, CP > EVAL > PAN, both PS) but not hydroxyl content were associated with lower protein adsorption and higher suppressive transformation function results. These results suggest that surface oxygen percentage may be an important indicator of biocompatibility.

Carbohydrate Sequence↗

Complement activation during OKT3 treatment: a possible explanation for respiratory side effects.

Respiratory side effects that sometimes occur during treatment with anti-CD3 MAb OKT3 might result from pulmonary sequestration of activated neutrophils. Therefore, we studied complement activation in relation to activation and pulmonary sequestration of neutrophils during antirejection treatment with OKT3. In each of nine patients studied, plasma C3a-desarg and C4b/c levels increased compared with pretreatment values already in the first sample taken 15 minutes after the first dose of OKT3 (P < 0.05), with peak values at 15 and 30 minutes, respectively. Levels of neutrophil degranulation product elastase (complexed to alpha 1-antitrypsin) also increased already at 15 minutes after the first dose of OKT3 (P < 0.05), which is before elevated levels of the cytokines TNF alpha, IL-6 or IL-8 were detectable. In contrast, upon subsequent OKT3 administrations or in the control group treated with methylprednisolone, neither complement activation, cytokine release nor neutrophil degranulation occurred. In five studied patients treated with OKT3, pulmonary sequestration of radiolabeled granulocytes was observed from 3 until 15 minutes after the first dose of OKT3, together with peripheral blood granulocytopenia, which lasted at least 30 minutes. In conclusion, we demonstrate a simultaneous activation of complement and pulmonary sequestration of activated granulocytes immediately following the first dose of OKT3. These phenomena may be involved in the development of respiratory side effects complicating this therapy.

Adult↗

Cotton dust and complement in vivo.

Cotton grown in Stoneville, Mississippi and harvested by three different methods was examined for anticomplementary activity in human serum in vivo. Subjects exposed to cotton dust in a model cardroom for six hours showed changes in C3c and CH50 after exposure to closed boll harvested, bract removed cotton dust when compared with a group of normal, unexposed controls. Decreases in C3c, :C4, and C3A were associated with decreases in FEV1 after exposure to closed boll harvested bract intact cotton dust. The data from this preliminary study suggest in vivo associations between inhalation of cotton dusts and complement which appear to be independent of endotoxin contamination. These findings suggest a relationship between cotton dust inhalation and complement-mediated respiratory impairment.

Adolescent↗

[Levels of serum complement and immunocomplexes in HBs antigen positive blood donors].

Blood donors who were tested twice at interval from 6 to 8 months, were HBs-Ag positive both times. The biochemical parameters for the evaluation of liver function were within normal limits. The significantly decreased values of total haemolytic activity of complement-CH50 (0,001) and Clq (0,005) and increased level of Cl Inh (0,005) point ot the activation of the complement system (Table 2, 3). The level of Cl Inh statistically significantly and positively correlates with the values of C4, C5 and with C3A, what means that it participates in the process of activation regulation (Table 5). Using the method of precipitation by means of 0,3 g/l PEG we have registered in 92% of HBs-Ag positive blood donors elevated concentrations of immune complexes and in all PEG precipitates HBs-Ag (Table 6). These findings point to the need of clinical investigation and treatment of those persons.

Adolescent↗

[A clinical study of respiratory complication after cardiopulmonary bypass, with special reference to complement activation, WBC and granulocyte elastase].

Complement activation and it's influence on lung injury were studied in 20 patients undergoing cardiopulmonary bypass (CPB). Anaphylatoxins increased remarkably to 3130 +/- 1770 ng/ml in C3a, 2480 +/- 2530 ng/ml in C4a and granulocytes were significantly fewer in left atrium (LA) than right atrium (RA) during CPB. Granulocyte elastase (GEL) was significantly higher in LA than RA at the time of reperfusion. Postoperative respiratory index was well correlated with C3a and GEL. We concluded that lung injury after CBP was caused by anaphylatoxin which aggregated granulocyte in pulmonary vasculature and released GEL during CPB, and anaphylatoxin was produced not only by using CBP but in patient's lung.

Adult↗

Immunological effects of therapeutic immunoadsorption with respect to biocompatibility.

The activation of the complement system leading to generation of anaphylatoxins and the membrane attack complex depends on the chemical nature of the adsorptive system and the anticoagulation used. The method of the primary separation determines the presence of cell debris in the plasma as well as the extent of platelet activation. The particular role of anticoagulation and its properties to prevent/reduce complement activation on immunadsorption material is discussed and the combined use of citrate and heparin is proposed. The quality of the reinfused plasma--as discussed on the example of LDL-apheresis--is therefore influenced by the amount of the activated split products. This determines finally the extent of cellular activation during therapeutic immunadsorption when receptor-dependent activation of cells by C3a(desarg) and C5a(desarg) can occur.

Biocompatible Materials↗

Anaphylatoxin-like molecules generated during complement activation induce a dramatic enhancement of particle uptake in rainbow trout phagocytes.

Here we have identified a serum fraction containing approximately 8-kDa molecules with an unexpected capacity to greatly enhance particle uptake in trout head kidney leukocytes (HKLs). This approximately 8-kDa particle-uptake enhancing fraction (PUEF-8) was purified from complement-activated serum by gel filtration chromatography. Mass spectrometric analysis and reactivity of anti-trout C3-1 and C4 antibodies, indicated the presence of C3a, C4a and C5a molecules in PUEF-8. Using a newly developed flow cytometric assay that measures the capacity of cells to ingest fluorescent beads, we showed that PUEF-8 induced a striking enhancement (344+/-50% higher than the PBS control value) in the number of HKLs ingesting three or more beads. In contrast, the effect of PUEF-8 on peripheral blood leukocytes (PBLs) was almost negligible. Interestingly, PUEF-8 acted as a strong chemoattractant for both HKLs and PBLs. These findings suggest a novel role for the anaphylatoxins generated during complement activation in teleost fish.

Anaphylatoxins↗

Blood substitution and complement activation.

Complement activation was studied in 45 patients undergoing total hip arthroplasty under epidural anesthesia. The patients were randomly allocated to three groups. In Group I blood loss was replaced with microaggregate-poor erythrocyte concentrate (SAGM-ERC) plus 3% dextran-60 as plasma substitute, and postoperative analgesia was maintained with intramuscular ketobemidone. In Group II blood loss was replaced as in Group I, but epidural anesthesia was prolonged 12 h postoperatively and kept at a level of T4 with 0.5% bupivacaine. In Group III blood loss was replaced with non-frozen stored plasma plus SAGM-ERC, and postoperative analgesia was maintained with ketobemidone as in Group I. All groups received pre- and postoperative thrombo-prophylaxis with dextran. The plasma concentration of C3a-des-arginine (C3a-desArg) was measured by radioimmunoassay preoperatively, immediately after operation and 3, 6 and 18 h postoperatively. No significant differences in plasma C3 and C4 were found between the groups. C3a-desArg was significantly (P less than 0.01) increased up to 6 h postoperatively in Group III compared with both the preoperative value and Groups I and II. It is demonstrated that infusion of plasma can enhance or initiate endogenous complement activation. Blood component therapy with SAGM-ERC and 3% dextran-60, on the other hand, did not significantly increase the plasma level of C3a-desArg irrespective of the type of postoperative analgesia.

Aged↗

[Levels of complement components in plasma of onco-hematologic patients with defective hemopoiesis].

Immunochemical assay using monoclonal antibodies was carried out to determine levels of a number of complement components (C3 and its derivatives-C4 and C5) and immunoglobulins (lg) in plasma of patients with onco-hematological diseases involving defective hemopoiesis: leukemia, myelodysplastic syndrome (clonal diseases) or aplastic anemia (delayed clonal disease). The most significant disorders were registered in the concentrations of component C3 and its derivatives. In acute leukemia, the nature and extent of C3 splitting was found to depend on disease while Ig level-on stage. Myelodisplasia usually involved a 2-3-fold decrease in C3 level matched by a rise in the concentrations of its derivatives-C3-like form and C3a fragment. Reduced C3 levels matched by increased ones of Ig were observed in some cases of aplastic anemia. It is suggested that disturbances in complement component level may cause changes in cascade reactions of the complement in onco-hematological patients and thus indirectly influence immune response regulation processes.

Complement C3↗