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A complement-fixation test for enzootic pneumonia of pigs using a complement dilution method.

Complement-fixing antibody to Mycoplasma hyopneumoniae in the serums of pigs experimentally infected with enzootic pneumonia was demonstrated by comparing the haemolytic titre of guinea-pig complement titrated in the presence of heated test serum, M. hyopneumoniae antigen and unheated normal pig serum with the titre obtained when the antigen was omitted. The haemolytic titres against sensitised sheep erythrocytes were determined after a fixation period of 16 to 18 hours at 5 degrees C. When serums, collected at intervals of 3 to 7 days, from 43 pigs exposed to pigs experimentally infected with enzootic pneumonia were tested, 4.6 or more complement units were first fixed 14 to 44 (mean 23.4) days after contact began. Serums collected subsequently fixed from 4.6 to more than 31 complement units. This positive reaction usually persisted until the pigs were killed 4 to 35 weeks after contact began. Thirty-three had gross enzootic pneumonia lesions and 9 had lung lesions detected microscopically. Serum antibody was not detected in 73 weaned pigs aged 7 weeks in a pneumonia-free herd but serums from 9 of 15 unweaned piglets aged 9 to 14 days in the same herd, fixed between 3 and 7 complement units.

Animals

Markers of complement-dependent and complement-independent glomerular visceral epithelial cell injury in vivo. Expression of antiadhesive proteins and cytoskeletal changes.

BACKGROUND: Visceral glomerular epithelial cells (GEC) are an important component of the glomerular filtration barrier to proteins. While ultrastructural GEC changes have frequently been observed in proteinuric states, no suitable light microscopic markers of GEC injury have yet been identified. EXPERIMENTAL DESIGN: We have analyzed in vivo the GEC expression of proteins known to be involved in cell shape changes. SPARC (osteonectin, BM-40) and tenascin (cytotactin, J1, hexabrachion) belong to a group of anti-adhesive glycoproteins, that modulate cell-matrix interactions. We also studied cytoskeletal intermediate filament proteins, including desmin and vimentin. The GEC expression of SPARC, tenascin, desmin, and vimentin was analyzed in various types of GEC injury in the rat, including complement-mediated injury (passive Heymann nephritis, autologous immune complex nephritis, conA anti-conA nephritis), complement-independent injury (nephrotoxic nephritis), toxic injury (aminonucleoside nephrosis) and hypertensive injury (5/6 nephrectomy, angiotensin-II infusion). A complement-mediated model of mesangial cell injury (anti-Thy 1.1 mesangial proliferative nephritis) served as a control. RESULTS: SPARC mRNA and protein were constitutively expressed in normal rat glomeruli. Immunostaining and immunoelectron microscopy primarily localized SPARC to the cytoplasm of GEC. Markedly increased glomerular SPARC synthesis and GEC immunostaining was observed in all instances of complement-mediated GEC injury but in none of the other conditions. In contrast, glomerular immunostaining for tenascin, that also stained in a GEC pattern, either remained unchanged or increased to a minor degree (complement-mediated models). GEC immunostaining for desmin in normal rats was low and variable, and increased significantly in any form of GEC injury but not in anti-Thy 1.1 nephritis. No concomitant increase of GEC immunostaining for vimentin was detectable, which could have been due to the constitutively high expression of vimentin in GEC. CONCLUSIONS: SPARC and desmin, but not tenascin or vimentin, are suitable light microscopic markers of GEC injury. The combined staining for these proteins may be useful in differentiating the mechanisms of GEC injury.

Animals

Interactions of the platelets in paroxysmal nocturnal hemoglobinuria with complement. Relationship to defects in the regulation of complement and to platelet survival in vivo.

The blood cells of patients with paroxysmal nocturnal hemoglobinuria (PNH) have abnormal interactions with complement. The activity of the alternative pathway C3 convertase on the platelets of 9 out of 19 patients with PNH was elevated. 10 patients had C3 convertase activity within the normal range even though 80-95% of their platelets lacked the complement regulatory protein decay accelerating factor (DAF) that is absent from the affected blood cells in PNH. PNH and normal platelets released factor H when C3 was bound to their surfaces. This may account for the apparent regulation of C3 convertase activity on platelets that lack DAF. The abnormal uptake of the membrane attack complex of complement by PNH III erythrocytes was not seen in PNH platelets. 111Indium-labeled platelet survival times were normal in five of eight patients, which suggests that the lack of the membrane attack complex defect results in normal platelet survival in PNH.

Blood Coagulation Factors

Anaphylatoxins and terminal complement complexes in pancreatitis. Evidence of complement activation in plasma and ascites fluid of patients with acute pancreatitis.

Complement activation has been proposed as a mediator of remote complications of acute pancreatitis. Thirty-seven patients with acute pancreatitis were studied with respect to the formation of anaphylatoxins (C3a/C3adesArg, C5a/C5adesArg) and terminal complement complexes (TCC) in plasma and ascites fluid. The patients were classified according to Ranson's criteria. Eighteen patients with moderate or severe pancreatitis had higher maximum plasma C3a/C3adesArg and TCC concentrations than 19 patients with mild pancreatitis. During convalescence, the concentrations had returned to normal. High concentrations of C5a/C5adesArg and TCC were also found in ascites and pancreatic cyst fluid, drawn from patients with moderate or severe pancreatitis. As the terminal complement pathway activation is involved in reactive lysis and anaphylatoxins increase vascular permeability, anemia and impaired respiration in these patients may be influenced by complement activation.

Acute Disease

Complement regulatory molecules on human myelin and glial cells: differential expression affects the deposition of activated complement proteins.

The expression of decay-accelerating factor CD55, membrane cofactor protein CD46, and CD59 was studied on Schwann cells cultured from human sural nerve and myelin membranes prepared from human cauda equina and spinal cord. These proteins are regulatory membrane molecules of the complement system. CD55 and CD46 are inhibitors of C3 and C5 convertases and CD59 inhibits C8 and C9 incorporation into C5b-9 complex and C9-C9 polymerization. The presence of these proteins was assessed by using antibodies to each of the proteins by fluorescent microscopy, fluorescence-activated cell sorter analysis, and also sodium dodecyl sulfate-polyacrylamide gel electrophoresis and western blot analysis. Schwann cells in culture expressed CD55, CD46, and CD59. It is interesting that only CD59 was detected on myelin from both central and peripheral nerve tissue. The ability of these proteins to limit C3 peptide deposition and C9 polymerization in myelin was studied by western blot analysis. C3b deposition was readily detected on antibody-sensitized myelin incubated with normal human serum used as a source of complement but not with EDTA-treated or heat-inactivated serum. C3b deposition was not affected by anti-CD55 antibody. On the other hand, poly-C9 formation in myelin, which was maximum when 50% normal human serum was used, was increased four-to fivefold when myelin was preincubated with anti-CD59. Our data suggest that complement activation on myelin is down-regulated at the step of the assembly of terminal complement complexes, including C5b-9, due to the presence of CD59.

Antigens, CD

C5b-9 dimer: isolation from complement lysed cells and ultrastructural identification with complement-dependent membrane lesions.

The membrane attack complex (MAC) of complement was extracted from the membranes of cells lysed by human complement and its properties were compared with those of the fluid phase complex SC5b-9. Upon sodium dodecyl sulfate polyacrylamide gel electrophoresis and immunochemical analysis, the two isolated complexes had identical subunit compositions, except that the MAC lacked the S-protein. The sedimentation coefficient and molecular weight of the extracted and isolated MAC were, respectively, 33.5 S and 1.7 x 10(6) daltons, compared to 23 S and 1.0 x 10(6) dalton for SC5b-9. Because the molecular weight of the MAC is approximately two times greater than that of C5b-0 (800,000 daltons), the MAC is considered the dimer of C5b-9. Under specified conditions, the 33.5 S dimer could be converted to the 23 S monomer without dissociation of subunits. The MAC had the electron microscopic appearance and dimensions that are characteristic for the complement produced ultrastructural membrane lesions. SC5b-9 had a different ultrastructure that is dissimilar to the morphology of the lesions. The isolated MAC could be reincorporated into phospholipid bilayers and assumed on the surface of the resultant lipid vesicles the orientation and appearance of typical complement lesions.

Animals

Formation of the terminal complement complex on agarose beads: further evidence that vitronectin (complement S-protein) inhibits C9 polymerization.

Vitronectin occupies the metastable binding site of C5b-7, which is unable to insert membranes as part of the complement lytic attack. Some evidence has been presented that vitronectin inhibits also membrane-associated pore formation by inhibiting C9 polymerization in the terminal complement complex (TCC). The authors wished to add to this background by studying the effect of vitronectin on formation of TCC on a carbohydrate surface like agarose beads, an alternative complement pathway activator. Bound TCC was detected by monoclonal and polyclonal antibodies to C9-neoepitopes. Soluble SC5b-7 and TCC (SC5b-9) did not bind to the agarose beads. Using serum or isolated complement factors for the alternative and terminal pathways, the authors found that vitronectin reduced the density of C9-neoepitopes on the beads. As there was no convincing evidence for association of vitronectin with the factors C5b-8 of the agarose-bound TCC, it was concluded that vitronectin bound directly to C9 in TCC and inhibited C9 polymerization within the complex. The authors have shown that TCC can bind to a carbohydrate surface like agarose (an alternating polymer of galactose moieties) in the absence of lipid. These results suggest that vitronectin can limit the lytic effect of membrane-bound TCC by inhibiting C9 polymerization.

Animals

Metabolism of the fifth component of complement, and its relation to metabolism of the third component, in patients with complement activation.

The metabolism of the fifth component of complement (C5), and its relatonship to metabolism of the third component of complement (C3), has been studied in normal subjects and patients by simultaneous administration of radioiodine labeled C5 and C3. In seven normal subjects the fractional catabolic rate of C5 ranged from 1.5 to 2.1% of the plasma pool/h and extravascular/intravascular distribution ratio from 0.22 to 0.78, these values being similar to those obtained for C3, and synthesis rate from 71 to 134 mug/kg per h, In patients with complement activation the increase in fractional catabolic rate of C5 was nearly always less than that of C3. The data also showed that there was increased extravascular distribution of C3 and C5 in most patients and considerable extravascular catabolism of both proteins in some. However, there were differences in metabolic parameters between patients with different types of complement activation. In patients with systemic lupus erythematosus, fractional catabolism and extravascular distribution of C3 and C5 were both increased, and there was marked extravascular catabolism of both proteins. There was increased fractional catabolism and extravascular distribution of C3 in patients with mesangiocapillary nephritis and (or) partial lipodystrophy, and fractional catabolism of C5 was also increased in three of six studies although distribution of C5 was always within the normal range; however, in two patients with nephritic factor in their serum fractional catabolism of C5 was normal despite markedly increased C3 turnover, suggesting that in patients with alternative pathway activation by nephritic factor little or no C5 convertase is generated.

Adolescent

Comparative study of assays detecting complement activation. Complement-split product C3d (rocket immuno-electrophoresis) and C3d neodeterminants (ELISA).

The aim of the study was to investigate the correlation between two types of assay measuring specific products of complement C3 activation and their clinical application. Complement C3d split product was estimated using double-decker rocket immunoelectrophoresis (DD-RIE) and measurements of C3d neodeterminants exposed after C3 activation was carried out with an enzyme-linked immunosorbent assay (ELISA). A total of 595 blood samples were measured in parallel in the DD-RIE and the ELISA test systems. The samples originated from blood donors (44), uraemic patients undergoing dialysis (135), serial samples from rheumatoid arthritis (RA) patients during steroid treatment (88) and 328 randomly collected patient samples. The mean values for DD-RIE and ELISA (+/- 1 SD) for the 595 samples were 48 (+/- 20) mU/l and 48 (+/- 28) mU/l respectively. The interassay coefficient of variation (CV) in the ELISA was 18%. The Spearman rho-correlation coefficient between the two assays was 0.63 for all 595 samples. The mean values using ELISA and DD-RIE were practically identical for the 328 successively incoming samples, the samples from the 135 dialysis patients and the 44 donors. In RA patients a higher mean value was found for the 88 samples using DD-RIE than ELISA. In the majority of patient samples there was a good correlation between the two assays. However, the ELISA appears to be more sensitive in detecting acute complement activation and to give lower levels in RA patients with chronic complement activation.

Anaphylaxis

Studies on the possible involvement of complement component C3 in the initiation of acid hydrolase secretion by macrophages. I. Correlation between enzyme-releasing and complement-activating capacities of several secretagogues.

A possible relationship between activation of the alternative pathway of complement and acid hydrolase secretion by macrophages has been investigated in vitro by examining the dose--response characteristics of several immunological and non-immunological stimuli of these two processes. Zymosan particles, insoluble immune complexes, methylamine and several other primary aliphatic monoamines were all found to elicit the selective release of lysosomal enzymes from macrophages by a process that correlated well with the ability of these agents to bring about consumption of haemolytically-active components of the alternative complement pathway. By contrast, substances which failed to activate the alternative complement pathway, i.e. soluble aggregated immunoglobulin and several primary aliphatic diamines, were found to be likewise incapable of inducing the selective release of lysosomal glycosidases from macrophages. These observations are interpreted as further evidence for imputing a role for complement C3 in the initiation of lysosomal enzyme release from macrophages.

Animals

Complement-dependent antibody cytotoxicity test of chicken antibody with duck complement used against cells of a Marek's disease lymphoma-derived cell line (MSB-1).

Complement-dependent antibody cytotoxicity (CDAC) against cells of a lymphoblastoid cell line (MSB-1) derived from Marek's disease lymphoma was investigated in a chicken antibody system using complements from several animal species. Cytotoxicity was seldom observed when rabbit, guinea pig, or chicken complements were used in the presence of hyperimmune chicken serum against MSB-1. With duck complement, however, cytotoxicity was always observed. Therefore, duck complement appears to be suitable for assay of hyperimmune chicken serum against MSB-1 cells by the CDAC test.

Animals

Control of the immune complex-complement interaction by protein H of the alternative complement pathway and the natural inhibitor heparin.

The potential of the negative regulatory protein H of the alternative complement pathway convertase and of heparin in modulating the complement-dependent capacity of fresh serum to inhibit immune complex precipitation (CIICP) between bovine serum albumin (BSA) and rabbit anti-BSA as well as tetanus toxoid (TT) and human anti-TT was assessed. Additions of purified H to serum to increase the intrinsic concentration of this protein by 80% (BSA-anti-BSA system) and 190% (TT-anti-TT system) resulted in an inhibition of CIICP by 50% and 60%, respectively, whereas further increase of the amount of H lead to a decrease of its inhibitory activity. A similar effect was observed with heparin: at a concentration of 400 U/ml a 90% inhibition of CIICP in the TT-anti-TT system was obtained which diminished at higher heparin concentrations. The effect of H on C3 deposition to immune aggregates was assessed through its influence on C3b-mediated immune adherence hemagglutination; factor H dose-dependently suppressed such hemagglutination induced by aggregated human IgG or preformed TT-anti-TT complexes when added to the immune complex-fresh serum mixture at the outset but not after 45 min of the 37 degrees C incubation period which means that H inhibited more likely decoration of immune complexes with C3b than it did inhibit the interaction of C3b-coated immune complexes with erythrocytes. This suppressive effect of H was reversed by the simultaneous addition of the activating protein B. Complement-mediated binding of tritiated C3 to latex-bound human IgG was assessed and H was found to dose-dependently inhibit such binding with a maximal inhibition of 37% at a H concentration of 7 micrograms/ml.

Animals

Complement receptors and cell associated complement components.

Membrane receptors for activated complement components are widely distributed amongst tissue cells of most mammalian species. Common amongst these are receptors for C3b which mediate many of the biological functions of C3. In addition, the genetic control of certain complement components is linked to the genes which code for the major histocompatibility complex. Many of these components are also present on cell surfaces. This suggests that the function of the complement system and the major histocompatibility complex may be related.

Animals

G alpha-16 complements the signal transduction cascade of chemotactic receptors for complement factor C5a (C5a-R) and N-formylated peptides (fMLF-R) in Xenopus laevis oocytes: G alpha-16 couples to chemotactic receptors in Xenopus oocytes.

The human leukocyte chemoattractant receptors for complement factor C5a (C5a-R) and N-formylated peptides (fMLF-R) are important members of the superfamily of G-protein coupled receptors (GPCR). Uniquely among the GPCR, these two receptors cannot be expressed in a functionally active form in the oocytes of the frog Xenopus laevis, but require substitution of total RNA of the myelomonocytic U-937 or HL-60 cell lines, respectively. Recently, it was reported that the C5a-R may couple to the alpha subunit of G-16. We have tested this G-protein for its ability to complement the signal transduction cascade of the C5a-R and fMLF-R in Xenopus oocytes. Injection of cRNA for the C5a-R in combination with G alpha-16 led to expression of a functional C5a-R as measured by ligand-induced whole cell current. In contrast to a previous report, the fMLF-R exhibited some residual functional activity when transiently expressed in Xenopus oocytes the extent of which could, however, substantially be increased by coexpression of G alpha-16. Thus, G alpha-16 complements the signal transduction cascade of both receptors in Xenopus laevis oocytes and is most likely the complementing factor present in the U-937 and HL-60 cell lines.

Animals

Complement-mediated antibody-dependent enhancement of HIV-1 infection requires CD4 and complement receptors.

In this study it is demonstrated that complement-mediated antibody-dependent enhancement (C'-ADE) of HIV-1 infection in vitro is blocked by murine monoclonal antibodies to CD4 and complement receptor type 2 (CR2) while HIV-1 infection in the absence of C'-ADE is blocked by anti-CD4 but not anti-CR2 monoclonal antibodies. The anti-CR2 murine monoclonal antibody, OKB7, blocked C'-ADE of HIV-1 infection at concentrations greater than 1 microgram/ml. The anti-CD4 monoclonal antibody, OKT4a, but not OKT4f blocked C'-ADE at concentrations greater than 0.06 microgram/ml. HIV-1 infections were quantitated by cytopathic effect, indirect immunofluorescence, and reverse transcriptase release. It appears from these in vitro studies that C'-ADE of HIV-1 infection requires both CD4 and complement receptors while HIV-1 infection in the absence of antibody and complement requires only CD4.

Antibodies, Monoclonal

Levels of complement receptor type one (CR1, CD35) on erythrocytes, circulating immune complexes and complement C3 split products C3d and C3c are not changed by short-term physical exercise or training.

The effect of heavy short-term physical exercise on the levels of complement receptor type one (CR1, CD35) on erythrocytes, the concentrations of circulating immune complexes (IC), and the complement C3 split products C3c and C3d were examined in young healthy males. Fourteen untrained volunteers underwent a 60-min bicycle exercise test at 75% of maximal oxygen uptake (VO2max). Six of the volunteers were exercised twice with an interval of at least one month. Before the second bicycle test they received oral indomethacin. With an interval of at least 1 week, 6 also went through a 60-min back-muscle exercise at up to 30% of VO2max. Blood samples were collected before and during the last few minutes of exercise as well as 2 h and 24 h afterwards. The same parameters were examined once in 29 highly trained racing cyclists. There were no consistent or significant exercise-induced changes in the levels of erythrocyte CR1, circulating IC, C3c nor C3d as measured by an enzyme-linked immunosorbent assay, polyethylene glycol precipitation complement consumption method, and by intermediate gel rocket immunoelectrophoresis, respectively. Neither did these parameters differ from controls in the highly trained group. The results indicate that CR1 on erythrocytes, circulating immune complexes and complement cleavage products C3c and C3d in healthy subjects remain unaffected by short-term heavy physical activity and training.

Adult

Studies of group B streptococcal infection in mice deficient in complement component C3 or C4 demonstrate an essential role for complement in both innate and acquired immunity.

Group B streptococci (GBS) cause sepsis and meningitis in neonates and serious infections in adults with underlying chronic illnesses. Specific antibodies have been shown to be an important factor in protective immunity for neonates, but the role of serum complement is less well defined. To elucidate the function of the complement system in immunity to this pathogen, we have used the approach of gene targeting in embryonic stem cells to generate mice totally deficient in complement component C3. Comparison of C3-deficient mice with mice deficient in complement component C4 demonstrated that the 50% lethal dose for GBS infection was reduced by approximately 50-fold and 25-fold, respectively, compared to control mice. GBS were effectively killed in vitro by human blood leukocytes in the presence of specific antibody and C4-deficient serum but not C3-deficient serum. The defective opsonization by C3-deficient serum in vitro was corroborated by in vivo studies in which passive immunization of pregnant dams with specific antibodies conferred protection from GBS challenge to normal and C4-deficient pups but not C3-deficient pups. These results indicate that the alternative pathway is sufficient to mediate effective opsonophagocytosis and protective immunity to GBS in the presence of specific antibody. In contrast, the increased susceptibility to infection of non-immune mice deficient in either C3 or C4 implies that the classical pathway plays an essential role in host defense against GBS infection in the absence of specific immunity.

Animals

Alternative complement pathway activation by HIV infected cells: C3 fixation does not lead to complement lysis but enhances NK sensitivity.

HIV infected T and monocytic cell lines could activate and fix C3 fragments when incubated in human serum under conditions allowing for activation of the alternative complement pathway. Normal T lymphocytes incubated with HIV could also activate and fix C3. This activity was, at least in part, the property of the virus itself since cell-free HIV could efficiently activate C3. The C3 activating HIV infected cells were resistant to complement-mediated lysis, even after prolonged incubation periods. However, their sensitivity to cell-mediated natural killing increased, presumably due to their interaction with complement receptor bearing NK lymphocytes. The results suggest that the alternative complement pathway may contribute to the depletion of CD4+ T lymphocytes during HIV infection in vivo.

Cell Line