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Relative roles of burn injury, wound colonization, and wound infection in induction of alterations of complement function in a guinea pig model of burn injury.

Stimuli involved in induction of alterations of the complement system and production of circulating inhibitor(s) of phagocytic function of polymorphonuclear neutrophils following burn injury were investigated using a guinea pig model of scald burn injury. The activity of C1-C9, assessed by measurement of total hemolytic complement, was found to increase primarily in response to burn injury per se, whereas reduction in the activity of the alternative complement pathway was shown to develop in association with natural colonization and local burn wound infection with bacterial pathogens. Invasive burn wound infection induced experimentally with Staphylococcus aureus, Pseudomonas aeruginosa, or Candida albicans exacerbated this latter abnormality, caused consumption of C1-C9 activity, and was associated with appearance of serum factors that depressed phagocytosis of Escherichia coli 075 by peritoneal polymorphonuclear neutrophils. Thus injury and coexistent infection both play important roles in induction of humoral alterations of host defense associated with burn injury.

Animals↗

Effect of anticomplement agent K76 COOH on hamster-to-rat and guinea pig-to-rat heart xenotransplantation.

In normal rats, the xenobiotic K76 inhibited the C5 and probably the C2 and C3 steps of complement and effectively depressed classical complement pathway activity, alternative complement pathway activity, and the C3 complement component during and well beyond the drug's 3-hr half-life. It was tested alone and with intramuscular tacrolimus (TAC) and/or intragastric cyclophosphamide (CP) in rat recipients of heterotopic hearts from guinea pig (discordant) and hamster (concordant) donors. Single prevascularization doses of 100 and 200 mg/kg increased the median survival time of guinea pig hearts from 0.17 hr in untreated controls to 1.7 hr and 10.2 hr, respectively; with repeated injections of the 200-mg dose every 9-12 hr, graft survival time was increased to 18.1 hr. Pretreatment of guinea pig heart recipients for 10 days with TAC and CP, with or without perioperative splenectomy or infusion of donor bone marrow, further increased median graft survival time to 24 hr. Among the guinea pig recipients, the majority of treated animals died with a beating heart from respiratory failure that was ascribed to anaphylatoxins. Hamster heart survival also was increased with monotherapy using 200 mg/kg b.i.d. i.v. K76 (limited by protocol to 6 days), but only from 3 to 4 days. Survival was prolonged to 7 days with the addition of K76 of intragastric CP at 5 mg/kg per day begun 1 day before operation (to a limit of 9 days); it was prolonged to 4.5 days with the addition of intramuscular TAC at 2 mg/kg per day beginning on the day of transplantation and continued indefinitely. In contrast to the limited efficacy of the single drugs, or any two drugs in combination, the three drugs together (K76, CP, and TAC) in the same dose schedules increased median graft survival time to 61 days. Antihamster antibodies rapidly increased during the first 5 days after transplantation, and plateaued at an abnormal level in animals with long graft survival times without immediate humoral rejection. However, rejection could not be reliably prevented, and was present even in most of the xenografts recovered from most of the animals dying (usually from infection) with a beating heart. Thus, although effective complement inhibition with K76 was achieved in both guinea pig- and hamster-to-rat heart transplant models, the results suggest that effective interruption of the complement cascade will have a limited role, if any, in the induction of xenograft acceptance.

Animals↗

Trypanolytic activity and antibodies to metacyclic trypomastigotes of Trypanosoma cruzi in non-Chagasic human sera.

Metacyclic trypomastigotes of Trypanosoma cruzi, derived either from triatomid vectors or axenic cultures, were found to be extensively lysed by sera of some non-Chagasic healthy individuals through activation of the alternative complement pathway. Antibodies to T. cruzi metacyclics were detected by direct agglutination test in normal human sera (NHS) containing trypanolytic activity. Absorption of lytic NHS with metacyclic trypomastigotes, but not with non pathogenic Herpetomonas samuelpessoai promastigotes, abolished the trypanolytic effect. Natural antibodies to trypomastigotes were not found in NHS devoid of trypanolytic activity. Precipitation of 131I-labelled metacyclic surface proteins with lytic NHS revealed as the major band a polypeptide with an apparent molecular weight of 75,000.

Adult↗

Experimental pig yersiniosis to assess attenuation of Yersinia enterocolitica O:8 mutant strains.

An experimental oral pig model was used to assess the pathogenic and immunogenic potential of Yersinia enterocolitica serotype O:8 wild-type strain 8081-L2 and its lipopolysaccharide (LPS) mutant derivatives: a spontaneous rough mutant 8081-R2, strain 8081-DeltawzzGB expressing O-antigen with uncontrolled chain lengths, and strain 8081-wbcEGB expressing semirough LPS with only one O-unit. Microbiological and immunological parameters of the infected pigs were followed from day 7 to 60 postinfection. The wild-type and all LPS mutant strains persisted in the lymphoid tissue of tonsils and small intestines, causing asymptomatic infection without any pathological changes. Although the pig is known as a reservoir of Yersiniae, a precise analysis of pathogenic and immunogenic parameters based on different in vitro tests (hematological response, killing ability of leukocytes and blood sera, antibody response, hydrogen peroxide production by macrophages, classical and alternative pathways of complement activation), revealed significant attenuation in the pathogenicity of the LPS mutant strains but not the loss of immunogenic potential. In comparison with the other strains, strain 8081-DeltawzzGB demonstrated more continuous leucocytosis with monocytosis, higher invasive potential, significant activation of hydrogen peroxide production by macrophages and an effective immunoglobulin G immune response accompanied by relevant histological immunomorphological rearrangements.

Animals↗

In vitro and in vivo changes in human complement caused by silage.

Aqueous extracts of silage samples from four farms in up-state New York were reacted in vitro with normal human serum. Hemolytic levels of complement component C3 were consumed in a dose-dependent fashion, and the four extracts differed in their relative activity rankings. Studies with chelated serum indicate that the alternative complement pathway is involved in the activation, and the active fragment C3b was demonstrated. Serum levels of hemolytic C3 and C4 in vivo were quantified before and after farmers performed their normal silo unloading operations. Although the study groups were small, suggestive evidence of in vivo complement consumption was found. IgE-related allergy did not appear to be of significance to the study groups. Complement activation may be an initiator of or contributor to adverse reactions in farmers who are exposed to airborne silage dusts.

Animal Feed↗

[Activation of complement during hemodialysis].

In hemodialysis using 3 types of dialysis membrane materials [regenerated cellulose (RC), cellulose triacetate (CTA), and polysulfone (PS)], activation of the complement, reduction of white blood cells, and variation of vitronectin (VN) were observed. RC membrane caused a significant reduction of white blood cells and elevations of Bb and soluble membrane attack complex (S-MAC), indicating a strong activation of the alternative complement pathway. Especially, the increase of S-MAC persisted for a long time during hemodialysis. Because reduction of VN was transient, it was assumed that the S-MAC escaping removal by VN receptors might have persisted in the circulation. These findings suggested that S-MAC would become useful as an index for evaluating biocompatibility of various artificial organs including dialysis membranes.

Aged↗

Toxoplasma gondii: mechanism of resistance to complement-mediated killing.

Tachyzoites of the obligate intracellular protozoan Toxoplasma gondii are resistant to lysis in non-immune human serum. We have examined the mechanism of this serum resistance in RH and P strain organisms, which differ markedly in virulence, but are equally resistant to serum killing. Rapid, but limited, activation of the alternative complement pathway occurred in non-immune human serum, with deposition of equivalent amounts of C3 on the two strains. C component C3 bound covalently to parasite acceptor molecules via an ester linkage. The predominant form of C3 was iC3b which cannot participate in formation of a lytic C5b-9 complex. Multiple membrane constituents of the tachyzoite of T. gondii may serve as acceptors for the limited amount of C3 deposited during incubation in non-immune serum. When tachyzoites were presensitized with the lytic anti-p30 mAb 7B8, new amide-linked C3-acceptor complexes formed. Nearly equivalent C3 binding but a threefold enhancement of 125I-C9 binding occurred when mAb 7B8 pre-sensitized tachyzoites were compared to native organisms. These results indicate that tachyzoites of T. gondii are serum resistant because of failure to activate C efficiently. Presensitization with a lytic mAb alters the site of complement deposition and augments C5b-9 formation.

Animals↗

Comparative investigations of Latin American trypanosomes with lectins and complement lysis test.

Four-days old epimastigote culture forms of different stocks of Trypanosoma cruzi from Colombia, Costa Rica and Mexico as well of Colombian stocks of T. rangeli were tested with 27 lectins and the complement lysis test. While the stocks of T. cruzi and T. rangeli showed common agglutination reactions with the lectins of Canavalia ensiformis and Pisum sativum, only the stocks of T. cruzi were additionally agglutinated by Ricinus communis-120, Glycine maxima, Helix pomatia, Axinella polypoides, Bandeiraea simplicifolia, Bauhinia purpurea, Wistaria floribunda, Abrus precatorius, Aaptos papillata II, Limax flavus and Arachis hypogaea. On the basis of lectin typing, the strains of T. cruzi belong to the PNA-type. While the epimastigote culture forms of T. cruzi stocks were lysed by normal fresh human, rat, chicken, rabbit and guinea pig serum, the culture forms of T. rangeli were only lysed by chicken serum. Mouse serum had no lytic effect on either trypanosome species. Incubation of T. cruzi with neuraminidase did not alter the lytic effect of the sera. The membrane-associated N-acetylneuraminic acid on T. cruzi does not protect the cell surface against the activation of the alternative complement pathway. After treatment of T. cruzi with neuraminidase and subsequent incubation in culture medium, the PNA-type was restored. The cells reacted again with the lectins of Arachis hypogaea, Limax flavus, Aaptos papillata II but not with Triticum vulgaris.

Animals↗

Complement-mediated serum cytotoxicity for Leishmania major amastigotes: killing by serum deficient in early components of the membrane attack complex.

Leishmania major, the agent of Oriental sore, is an obligate intracellular parasite of macrophages in mammalian hosts. Man's immune defense against this organism requires participation of specifically sensitized lymphocytes and activated macrophages. Recent studies, however, have demonstrated that as little as 1/120 concentration of normal human serum is highly cytotoxic for the amastigote form of L. major. Initiation of the lethal process occurs rapidly, requiring only 30 sec of parasite exposure to serum, and is mediated by antibody-independent activation of the alternate complement pathway. The molecular mechanism of cytotoxicity is not known, but may require participation of the membrane attack complex, C5b-9. We investigated this possibility by treating amastigotes with human sera genetically deficient in complement components C5, 6, 7, 8, or 9. We then measured viability of treated parasites by amastigote-promastigote conversion. Our results were quite unexpected: not only did C9-deficient serum kill organisms, but sera singly deficient in each of the preceding components C6 to C8 were also cytotoxic. The degree of cytotoxicity was related both to serum concentration and to the point in the complement cascade at which deficiency occurred. Sera lacking C6 or C7 were less cytotoxic than those deficient in C8, which were less toxic than those deficient in C9. Cytoxicity of deficient sera was abolished by heating serum to 56 degrees C for 30 min. These findings indicate that an incomplete membrane attack complex may mediate cytotoxicity for L. major amastigotes. Moreover, our results raise important questions regarding the mechanism by which the complex is assembled on the surface of a living, unicellular eukaryotic organism.

Animals↗

[Immunologic aspects of the nephrotic syndrome].

Evidence that immunological mechanisms playing a major role in certain forms of nephrotic syndrome are obtained from immunopathologic observations, by analogy to certain form of experimental renal disease and by alterations in serum complement and complement component levels. This group of disease includes a variety of glomerulonephritis in which antigen-antibody-complexes and anti-glomerular basal membrane antibodies play a role in their pathogenesis. There are also evidences that the alternate complement pathway may be involved in certain forms of immune related glomerulonephritis. The precise etiology of idiopathic nephrotic syndrome having unique characteristics separating it from nephrotic syndrome associated with glomerulonephritis, is yet unknown. However, there are some circumstantial evidences depending on clinical observations that it may be an immunological disorder. It is possibly produced by a systemic abnormality of T-cell function resulting in the secretion of a circulating chemical mediator, toxic to the glomerular basement membrane; but there is not yet direct proof to substantiate this hypothesis.

Antibodies↗

Cytolysis of Sendai virus-infected guinea-pig cells by homologous complement.

Guinea-pig line 10 tumor (GPL10) cells, which were transplantable in strain 2 guinea-pigs, gained the capacity to activate the homologous alternative complement pathway (ACP) following infection with ultraviolet-irradiated Sendai virus (UV-SV). The ACP activation of homologous serum on the UV-SV-infected GPL10 cells (UV-SV-GPL10 cells) resulted in cytolysis of the tumor cells. This indicates that UV-SV infection induced not only the capacity to activate complement on the GPL10 cells, but also made them sensitive to complement attack, because GPL10 cells have been demonstrated to be resistant to the reaction of homologous complement via the classical pathway in the presence of rabbit antibody. Furthermore, UV-SV-GPL10 cells prepared with as little as 0.1 plaque-forming unit equivalent of UV-SV per cell showed suppressed growth in syngeneic strain 2 guinea-pigs. The essential role of complement in the elimination of UV-SV-GPL10 cells in vivo was confirmed by demonstrating that UV-SV-GPL10 could grow in guinea-pigs whose complement had been depleted by administration of cobra venom factor.

Animals↗

Serum complement proteins in IgA nephropathy.

Immunohistologic studies in IgA nephropathy which have suggested activation of the alternative complement pathway prompted us to study serum complement components and control proteins in 28 patients with IgA nephropathy. Thirteen patients, 12 of whom were men, had or developed chronic renal failure (CRF) during 34 +/- 5 months of follow-up. These patients were more hypertensive and had heavier proteinuria than those with stable renal function. Their serum IgA concentrations were not different from patients with normal renal function. The prevalence of HLA antigens was similar to that for the reference population and BW35 was not associated with CRF. Serum C3, B, H and I concentrations in patients with stable normal renal function were higher than they were in patients with CRF. Four patients studied--two with normal renal function and two with CRF--had partial familial deficiencies of single complement proteins. Our data suggest that high serum levels of C3, B, H and I may be associated with stable normal glomerular filtration rate and that complement deficiencies are not infrequent in IgA nephropathy. How these findings relate to the pathogenesis and progression of IgA nephropathy requires further study. We also conclude that higher serum IgA concentrations and the presence of BW35 are not necessarily associated with progressive renal insufficiency in IgA nephropathy.

Adult↗

[Homozygous C7 defect in a German family].

An 11 year old boy with recurrent meningitis/sepsis (once without positive bacterial culture, once with demonstration of Neisseria meningitidis in blood) was evaluated for suspected immunodeficiency. Absent activity of both the classical and alternative pathway of complement suggested a defect of the membrane attack complex. Immunochemical and functional analyses together with family studies revealed a homozygous defect of the seventh component of complement in the boy. This is the first description of C7 deficiency in a German family.

Child↗

Resistance of Acanthamoeba species to complement lysis.

Acanthamoeba species were evaluated for susceptibility to complement lysis as determined by release of radiolabeled uridine. The 3 Acanthamoeba species tested, A. culbertsoni (ATCC 30171), A. castellanii (ATCC 30010), and A. polyphaga (ATCC 30461), depleted hemolytic complement activity from normal human serum (NHS), yet were resistant to its lytic effects. Examination of microtiter plates containing amoebae incubated in NHS demonstrated formation of a pellet in the wells. Pellet formation was not observed when amoebae were incubated in human cord serum, heat-inactivated serum, or C1q-deficient serum. Ultrastructural examination of serum-treated amoebae revealed the presence of a finely granular substance that surrounded the amoebae. Treatment of amoebae with enzymes or metabolic inhibitors prior to incubation in NHS was performed to investigate the mechanism of complement resistance. Cycloheximide or cytochalasin D pretreatment increased the susceptibility of A. culbertsoni and A. castellanii to complement lysis. Cytochalasin D treatment also increased the susceptibility of A. polyphaga to complement lysis. Inhibition of serine protease activity by phenylmethylsulfonylfluoride increased complement susceptibility of all 3 species of Acanthamoeba. Enzymatic removal of surface components from A. polyphaga or A. castellanii, with trypsin, neuraminidase, or phosphatidylinositol-specific phospholipase C (PIPLC), did not affect serum resistance. In contrast, PIPLC treatment of A. culbertsoni significantly increased lysis by complement. The ability of Acanthamoeba species to activate the alternative complement pathway yet resist complement-mediated cellular lysis can be attributed to both the release of a transport-dependent extracellular matrix as well as the presence of complement inhibitory surface proteins.

Acanthamoeba↗

[The state of classical and alternative complement activation pathways in persons who participated in the cleanup of the aftereffects of the accident at the Chernobyl Atomic Power Plant].

The levels of T-cell activation through classical and alternative pathways were studied in persons participated in cleaning-up operations at Chernobyl N. P. P. Proliferation response of T-cells on the action of monoclonal antibody anti-CD3 (classical activation) as well as response on phytohaemagglutinin was partially decreased just as response on autologic erythrocytes in combination with phorbol 12-myristate-13 acetate (CD2-dependent alternative activation) was completely suppressed in all affected persons. Addition of interleukin 2 did not restore T-cell responses on both anti-CD3 and alternative stimulation. The different degree of decrease of T-cell responses on anti-CD3 and CD2-dependent alternative stimulation is not a result of respective alterations of cell surface CD3 and CD2 expression.

Cells, Cultured↗

An alternative role for specific antibody in neutrophil bactericidal activity against highly pathogenic group B streptococci.

An investigation was undertaken into the role of antibody and complement in neutrophil phagocytosis and killing of group B streptococci of low and high pathogenicity. Phagocytosis of both types of organism appears to be a nonspecific event requiring only nonspecific antibody or complement. However, neutrophil bactericidal activity is mediated by the pathogenicity of the infecting organism. Neutrophils alone can kill some streptococci of low pathogenicity, but their killing ability is considerably increased in the presence of specific antibody or complement. An active role for the alternative pathway of complement in the killing process was demonstrated for organisms of low pathogenicity. Neutrophils did not kill the highly pathogenic organisms in the absence of antibody and complement, and required specific antibody, but not complement, to kill these bacteria. The alternative complement pathway is not involved in killing of highly pathogenic organisms. Addition of specific antibody to neutrophils containing ingested bacteria stimulated the neutrophils to kill the intracellular bacteria, suggesting an alternative role for specific antibody in the killing process other than as an opsonin. It is suggested that activation of Fc receptors on the neutrophil surface initiates the bactericidal action of the neutrophils.

Animals↗

Alternative pathway of complement activation by human lymphoblastoid B and T cell lines.

Other investigators have reported activation of the alternative complement (C) pathway in homologous and heterologous serum by a variety of human lymphoblastoid B cell lines. Their ability to activate the C was associated with Epstein Barr virus transformation of the cells. We report that some human lymphoblastoid T cell lines, lacking EBV-DNA in their genome, do activate the human alternative C pathway with no participation of immunoglobulin or specific antibodies. Nevertheless, activation measured by C3 deposition on the cell surface was weaker than with the B cell lines so far studied; in relation to the RAJl cells, C3 deposition on JURKAT, MOLT 4, HSB2, and 1301 was, respectively, 68, 38, 28, and 19%. Furthermore, C3 deposition on JURKAT T cell line requires D, whereas RAJl cells provide a proteolytic activity able to mimic D, and which, unlike D, can be controlled by serum protease inhibitors. Although the ability to activate the AP seems to be a largely shared property of the human lymphoblastoid B and T cell lines, the situation was strikingly different with normal and mitogen-stimulated lymphocytes or with acute leukemic cells, which led to a negligible AP-dependent C3 deposition compared with the level observed with the lymphoblastoid cell lines. Membrane sialic acid content was determined for every cell tested and revealed no relationship with their ability to activate the AP. The two EBV+ B cell lines tested led to a comparable AP activation regardless of the presence of the C3b receptor.

Absorption↗

Effect of cholesterol content in activation of the classical versus the alternative pathway of rat complement system induced by hydrogenated egg phosphatidylcholine-based liposomes.

Liposomes composed of hydrogenated egg phosphatidylcholine (HEPC) and cholesterol (CHOL) were found to activate the rat complement (C) system in a CHOL content-dependent manner. Liposomes containing 22 or 33 mol% CHOL activated the C system in a Ca(2+)-dependent manner, suggesting that C activation occurred via the classical pathway. Liposomes containing 44 mol% CHOL activated the C system in a Ca(2+) independent manner, suggesting that C activation occurred via the alternative pathway. The CHOL content appeared to dictate the pathway by which the C system was activated. This C activation was inhibited by removal of serum component(s), which adsorb to the liposomes. Activation of the alternative pathway, induced by the liposomes, was reduced by the depletion of IgG and IgM, whereas the classical pathway activation was reduced by the depletion of IgG, but not IgM. In addition, the removal of adsorbed serum component(s) by treatment with 44 mol% CHOL-containing liposomes decreased serum IgG and IgM levels that adsorb to the same liposomes, whereas the removal of adsorbed serum component(s) by treatment with 22 mol% CHOL-containing liposomes only slightly decreased serum IgG levels, which adsorbs to the same liposomes. Collectively, both IgG and IgM, which are specifically adsorbed to the liposomes in a CHOL-content dependent manner, were responsible for C activation via the alternative pathway induced by the 44 mol% CHOL containing liposomes. IgG alone would be partially responsible for C activation via the classical pathway induced by 22 or 33 mol% CHOL-containing liposomes. The discovery of this unique C-activating property of liposomes will be of value in attempts to decipher the underlying mechanism of C activation by providing a useful model membrane system.

Animals↗