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All forms of human IgA antibodies bound to antigen interfere with complement (C3) fixation induced by IgG or by antigen alone.

Polyclonal human secretory IgA1 and IgA2 antibodies to a bacterial protein antigen Streptococcus mutans AgI/II, and polyclonal human serum IgA1 and IgA2 antibodies to staphylococcal alpha-toxin, were found to interfere with antigen-mediated C3b fixation. In fluid phase, immune complexes of antigen and IgA failed to fix C3b, whereas antigen-IgG complexes did fix C3b. Partial removal of glycan chains with Streptococcus mitis SK96 glycosidases diminished the capacity of IgA antibodies to interfere with antigen-mediated C3b fixation by the alternative complement pathway. The authors conclude that native serum or secretory IgA antibodies suppress C3b fixation, and that the glycan chains play a significant role in maintaining this property.

Antibodies, Anti-Idiotypic↗

Effects of complement factor D deficiency on the renal disease of MRL/lpr mice.

BACKGROUND: The alternative complement pathway (AP) is activated in individuals with lupus nephritis and in murine models of systemic lupus erythematosus, including MRL/lpr mice. A previous study from our laboratory evaluated the development of renal disease in MRL/lpr mice genetically deficient in factor B (Bf-/-), a protein necessary for AP activation. MRL/lpr Bf-/- mice developed less renal disease and had improved survival; however, these mice were also a different major histocompatibility complex (MHC) haplotype (H-2b) than their wild-type littermates (H-2k) due to the gene for Bf being located in the MHC gene complex. We undertook the current study to determine if the decreased renal disease in MRL/lpr Bf-/- mice was due to the lack of AP activation or the H-2b haplotype by studying the effects of factor D (Df) deficiency, a critical protein for AP activation, on disease development in MRL/lpr mice. METHODS: Df-deficient mice were backcrossed with MRL/lpr mice for four to nine generations. MRL/lpr H-2k Df-/-, Df+/-, and Df+/+ littermates were evaluated for disease development. Lack of AP activation in MRL/lpr Df-/- mice was determined by the zymosan assay. Serum creatinine levels were measured using a creatinine kit. Proteinuria and autoantibody levels were determined by enzyme-linked immunosorbent assay (ELISA). Sections from one kidney were stained with fluorescein isothiocyanate (FITC) alpha-murine C3 or alpha-murine IgG to detect C3 and IgG deposition. The remaining kidney was cut in half with one half fixed, sectioned, and stained with hematoxylin and eosin and periodic acid-Schiff (PAS) to evaluate pathology and another half fixed in glutaraldehyde and examined via electron microscopy. RESULTS: MRL/lpr Df-/- mice had similar glomerular IgG deposition, proteinuria and autoantibody levels, as Df+/+ and Df+/- littermates. However, glomerular C3 deposition, serum creatinine levels, and pathologic renal disease were significantly reduced in Df-/- mice. Despite the lack of renal disease in Df-/- mice, life span was not impacted by factor D deficiency. CONCLUSION: The absence of Df and AP activation is protective against the development of proliferative renal disease in MRL/lpr mice suggesting the similar effect of Bf deficiency in MRL/lpr mice was also due to the lack of AP activation.

Animals↗

Is contact activation of the coagulation system involved in the genesis of the first-use syndrome?

A number of mechanisms have been thought to be involved in the pathogenesis of the first-use syndrome. These include IgE antibody-mediated response to ethylene oxide-related antigens, membrane activation of the alternative complement pathway, activation of tissue mast cells and basophils by materials released from the dialyzer into the circulation, and transfer of bacterial products through high flux dialyzer. However, the possible role of the activation of blood coagulation system and platelets during dialysis has not been considered. The present communication reviews the theoretical basis for a possible connection between dialysis-induced activation of platelets and coagulation system with the first-use syndrome. Although the available data concerning the activation of intrinsic coagulation pathway during dialysis are conflicting, there is no controversy as to the occurrence of platelet activation. It is suggested that biochemical events triggered by activation of these systems may in part contribute to the genesis of first-use syndrome.

Anaphylaxis↗

Incubation in mice provides a signal for the differentiation of Trypanosoma cruzi epimastigotes to trypomastigotes.

The differentiation of Trypanosoma cruzi epimastigotes into trypomastigotes was studied in diffusion chambers subcutaneously implanted in mice. Using epimastigotes of the Tulahuén strain, transformation was first evident at 16 h after implantation and reached its maximum (92% trypomastigotes) by 24 h. Shortly before their differentiation into trypomastigotes, epimastigotes were found to develop resistance to lysis by the alternative pathway of complement. Furthermore, implantation of stationary-phase (as opposed to log-phase) parasites resulted in the accumulation of large numbers of complement-resistant epimastigotes in the chambers. These observations suggest that epimastigotes pass through a complement-resistant transitional stage before differentiating into trypomastigotes and that transformation may require cell division. In a further series of experiments, epimastigotes recovered 7 h after implantation in mice were found to differentiate into trypomastigotes when cultured in vitro for an additional 17 h at 37 degrees C. This observation indicates that the events which trigger the morphologic transformation of epimastigotes into trypomastigotes can be dissociated operationally from the differentiation process itself.

Animals↗

Effect of C3 depletion on the genesis of thrombocytopenia induced in rats by Erysipelothrix rhusiopathiae.

The role of complement in the pathogenesis of marked thrombocytopenia induced in rats by Erysipelothrix rhusiopathiae (E. rhusiopathiae) was examined. In cobra venom factor (CoF)-treated rats thrombocytopenia was not induced by the bacterium. The content of 5-hydroxytryptamine (5-HT) in platelets was decreased significantly after inoculation only in untreated rats. E. rhusiopathiae could bind C3 and generate platelet-bacteria aggregation when incubated in the plasma diluted with veronal-buffered saline containing calcium and magnesium (VBS++) or gelatin-VBS containing magnesium and ethyleneglycol tetra-acetic acid (GVB-Mg-EGTA), but not when incubated in GVB-ethylenediamine tetra-acetic acid (GVB-EDTA) diluted plasma or in CoF-treated or anti rat C3-treated plasma. When platelets were preincubated with activated zymosan, no bacteria could bind to platelets. From the results, we speculate that the alternative complement pathway, activated by E. rhusiopathiae, appears to mediate the formation of platelet-bacterial aggregations that may accelerate the removal of platelets from circulating blood.

Animals↗

The complement system in pregnancy.

Maternal recognition of fetal antigens is well-documented. Antibodies directed against fetal antigens are the rule rather than the exception. Maternal antibodies seem to bind fetal antigens at the placental level and apparently activate the complement system even in normal pregnancy, yet multiple studies confirm an increase in C1q, C4, C3 and CH50 levels in pregnancy and an absence of complement activation. More sensitive assays and a broadened concept of the timing of crucial immunologic events may lead to a greater understanding of the importance of the complement system in pregnancy.

Cell Membrane↗

Activation of the complement system by pathogenic fungi.

Fungi have been studied as prototype activators of the complement cascade since the early 1900s. More recently, attention has focused on the role of the complement system in the pathogenesis of fungal infections. The interactions of Cryptococcus neoformans and Candida albicans with the complement system are the most widely characterized; however, all pathogenic fungi examined to date have the ability to initiate the complement cascade. The molecular mechanisms for initiation and regulation of the complement cascade differ from one fungus to another, most likely reflecting differences in the structure of the outer layers of the cell wall. The molecular bases for such differences remain to be identified. Studies of mycoses in experimental animals with induced or congenital deficiencies in the complement system demonstrate that complement is an important innate system for control of fungal infection. Contributions to host resistance include opsonization and generation of inflammatory mediators. Inflammation induced by chemotactic products of the complement system may contribute to the pathogenesis of some fungal infections.

Aspergillosis↗

Complement activation by cell wall fractions of Micropolyspora faeni.

The ability of several cell wall fractions of Micropolyspora faeni, a thermophilic actinomycete associated with farmer's lung disease, to activate complement is reported. Cell walls, obtained by mechanical disruption, were purified by enzyme treatment and chemical extractions. Fractions containing the most purified cell walls were most active in consuming complement, as measured by reduction of hemolytic complement levels of normal human serum. Cell wall fractions activated the alternative complement pathway, as shown by monitoring the conversion of C3 proactivator (factor B) to C3 activator (activated factor B) in the presence of specific cation chelators. Selective degradation of cell walls by lysozyme resulted in a decreased ability to consume complement and implicated peptidoglycan as the major complement-reactive component. The role of this nonspecific complement activation in relation to farmer's lung disease is discussed.

Cell Wall↗

Complement consumption gonococcal peptidoglycan.

Purified peptidoglycan (PG) obtained from Neisseria gonorrhoeae was tested for the ability to consume complement in normal human sera. Sonicated PG (S-PG), a heterogeneous mixture of soluble fragments (molecular weight, greater than 10(6)), as well as intact (insoluble) PG, reduced the level of whole hemolytic complement in a pool of four human sera. The minimal concentration of S-PG required for this activity was approximately 500 micrograms of S-PG per ml of serum. Complete lysozyme digestion of S-PG, yielding PG fragments of less than 10(4) molecular weight, eliminated complement-consuming activity. S-PG-mediated complement consumption resulted in depletion of the individual complement components C4 and C3. Consumption of complement did not occur when C4-deficient human serum or normal human sera treated with Mg2+-(ethylene glycol-bis(beta-aminoethyl ether)-N,N-tetraacetic acid to specifically impair classical complement pathway activity were used. The addition of rabbit anti-PG antibody greatly enhanced gonococcal PG-mediated complement consumption. Together, the data suggested that gonococcal PG-mediated complement consumption occurred via the classical complement pathway, was dependent on the presence of anti-PG antibody, and required glycosidically linked polymers of PG. Individual human sera varied widely in the extent of gonococcal PG-mediated reduction of complement levels, presumably a reflection of either different amounts of natural antibody to gonococcal PG, different levels of human PG hydrolase(s) capable of degrading PG to inactive fragments, or both.

Antibodies, Bacterial↗

Mucorales species activation of a serum leukotactic factor.

Previous studies have suggested that the focal accumulation of phagocytic leukocytes is an important feature of the host response in mucormycosis. To ascertain the basis for this influx of inflammatory cells, we evaluated the effect of members of the order Mucorales, including species from the genera Rhizopus, Absidia, and Mucor, on the chemotactic activity of normal human serum for neutrophils and monocytes. Both hyphae and spores produced concentration-dependent chemotaxigenesis in serum to a maximum level equivalent to that produced by zymosan activation of serum. Chemotactic activity was similar for live and heat-killed hyphae. No leukotactic activity was demonstrated in the absence of serum. The pretreatment of serum with anti-C3 antibody, heating at 56 degrees C, or 0.01 M EDTA abolished the activity. The pretreatment of serum with 0.01 M ethylene glycol-bis(beta-aminoethyl ether)-N,N-tetraacetic acid did not abolish the activity. These data provide evidence that the leukotactic activity of Mucorales species is generated through the alternative complement pathway.

Chemotactic Factors↗

Influence of growth temperature of Escherichia coli on K1 capsular antigen production and resistance to opsonization.

When Escherichia coli strains that produce K1 capsular polysaccharide antigen at 37 degrees C were grown at 22 degrees C, K1 antigen was not detected in the supernatant or washed-cell fraction of broth cultures. Significant amounts of K1 polysaccharide were detected only when the organism was grown at temperatures of 30 degrees C or higher. Rabbits immunized with an E. coli K1 strain (serotype O18ac:K1:H7) grown at 37 degrees C produced agglutinating antibody to somatic antigen and precipitating and agglutinating antibody to capsular K1 antigen; those immunized with this strain grown at 22 degrees C produced antibody to somatic antigen, but not to K1 antigen. Antibody to somatic antigen was markedly reduced by adsorption with the organism grown at 22 degrees C, while antibody to capsular antigen was not. E. coli K1 strains grown at 37 degrees C (K1 present) resisted phagocytosis and killing if they were opsonized solely by the alternative complement pathway (ACP) using magnesium ethylene glycol-bis(beta-aminoethyl ether)-N,N-tetraacetic acid-chelated serum. When these strains were grown at 22 degrees C (K1 absent), they were opsonized efficiently by the ACP (28 versus 94% killing, respectively; P less than 0.001). In addition, a non-K1 mutant of an E. coli K1 strain was opsonized efficiently by the ACP although its encapsulated K1 parent was not. Sensitivity of E. coli strains to the bactericidal activity of serum was observed in strains with and without K1 capsular antigen. These studies demonstrated that production of K1 polysaccharide antigen was regulated by environmental temperature and that K1 capsule plays an essential role in rendering the organism resistant to opsonization by the ACP.

Animals↗