Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Complement Pathway, Classical”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 1,063 records · Page 59Linked to original sources

Complement levels and circulating immune complexes in a controlled, longitudinal, multicentre study on effects of intravenous immunoglobulin in adults with AIDS-related complex/Walter-Reed 5. The ARC-IVIG Study Group.

The complement system, as the effector mechanism of the antigen-antibody reaction, and the levels of circulating immune complexes in a 1-year, double-blind, randomized, placebo-controlled study served as laboratory parameters to assess the effect of long-term high-dose intravenous immunoglobulin (IVIG) therapy in 30 adult patients (2 x 15) with AIDS-related complex/Walter-Reed 5 (ARC/WR5). We obtained no evidence of an adverse effect in such patients of high-dose IVIG administered over a 6-month period: none of the parameters studied showed a significant difference between the two groups of patients. In both groups, using data before the first infusion or using data of the whole study, a correlation between circulating immune complexes and classical complement pathway activation was found. The most striking increase was seen in the two groups of patients for functional serum factor D. The accumulation of serum factor D was not paralleled by an increase in serum creatinine. In patients with disease progressing from ARC to AIDS within the study period, an accumulation of serum factor D was not more or less pronounced than in those who remained in the ARC stage. Accumulation of factor D was not related to the clinical score as assessed in this study.

AIDS-Related Complex↗

Francisella tularensis resistance to bactericidal action of normal human serum.

Lipopolysaccharide and outer membranes from the three virulent encapsulated (Cap(+)) strains of three subspecies of Francisella tularensis and their isogenic avirulent capsule-deficient (Cap(-)) mutants were isolated. It was shown that the Cap cells and their outer membranes almost completely consumed the available complement of normal human serum whereas Cap(-) LPS (R-LPS), Cap(+) cells and their components activated the complement less effectively. Absorption of normal human serum with Cap(-) strain dramatically reduced the complement consumption for homologous strain and its surface structures. This reduction reflected the loss of bactericidal antibodies. Addition of antibodies to whole cells of F. tularensis completely restored complement activity. The cross-absorbing experiments demonstrated that Cap(-) cells more effectively deplete bactericidal antibodies than homologous virulent strain. From these results it can be concluded that normal human serum is bactericidal for serum-sensitive Cap(-) F. tularensis strains through the action of complement initiated by the classical complement pathway and serum resistance of virulent strains is not due to absence of targets for bactericidal antibodies, but is due to their low accessibility because of O-side chains of lipopolysaccharide.

Antibodies, Bacterial↗

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↗

The immune environment in human endometrium during the window of implantation.

PROBLEM: Changes in the immune environment in the endometrium are believed to be important for successful implantation and maintenance of pregnancy. We have previously investigated global gene profiling in human endometrium during the window of implantation by oligonucleotide microarray technology, and analysis of these data underscore the regulation of a group of immune-related genes. The present study was therefore conducted to examine the pattern of expression and regulation of these genes including decay accelerating factor (DAF), indoleamine 2,3 dioxygenase (IDO), interleukin-15 (IL-15), IL-15 receptor alpha subunit (IL-15Ralpha), interferon regulatory factor-1 (IRF-1), lymphotactin (Lpn), natural killer-associated transcript 2 (NKAT2) and NKG5 in secretory and proliferative human endometrium. METHOD OF STUDY: Endometrial biopsies were obtained from normally cycling women in the late proliferative and mid-secretory phase of the menstrual cycle. Semi-quantitative reverse transcriptase-polymerase chain reaction (RT-PCR) and Northern blot analysis were used to determine the expression and regulation of these genes in secretory and proliferative human endometrium. Cellular localization of NKG5, Lpn and IDO by in situ hybridization in secretory-phase endometrium was also examined. RESULTS: Semi-quantitative RT-PCR and Northern blot results demonstrate that there is a coordinated upregulation of this group of genes during the window of implantation. CONCLUSIONS: We demonstrate the upregulation of immune-related genes IL-15Ralpha, Lpn and NKG5 in secretory versus proliferative human endometrium. We also demonstrate a similar upregulation in secretory endometrium of other immune-related genes, viz, DAF, IDO, IL-15, IRF-1 and NKAT2. The functions of these genes include stimulation of proliferation of uterine natural killer (uNK) cells, inhibition of cytolytic activity of uNK cells, inhibition of cell growth of T cells and other pathogens and inhibition of the classical complement pathway. Upregulation of these immune-related genes in the window of implantation suggests their role during the process of implantation and in immune tolerance of the implanting conceptus.

Blotting, Northern↗

Partial complement deficiencies in idiopathic thrombocytopenia of childhood.

We have examined the classical complement activation pathway in 36 children with idiopathic thrombocytopenia (ITP) in a retrospective study. An increased prevalence of congenital, partial complement deficiencies is found in ITP. Homozygous C4A deficiency was found in 5 patients (p < 0.05) and heterozygous C2 deficiency in 2 other patients (p = 0.05). We suggest that some cases of childhood ITP belong to the immune complex mediated diseases, such as systemic lupus erythematosus and that abnormal immune complex formation and clearance may lead to ITP.

Adolescent↗

C-reactive protein reactivity with complement and effects on phagocytosis.

In the studies described here we have attempted to evaluate the hypothesis that CRP may function in host defense using two systems in which CRP in the presence of C appears to have opsonic properties. In the first, CRP and C were found to stimulate ingestion of erythrocytes by human monocyte or mouse macrophages in vitro, and to alter clearance patterns in vivo. In the second, we have studied opsonization of S. pneumoniae by CRP and C. Experiments with human neutrophils indicate that although CRP and C can enhance opsonization of S. pneumoniae, this effect is more pronounced in the absence of antibody. In vivo CRP was found to protect mice against intravenous infection with S. pneumoniae.

Animals↗

Complement in experimental Trypanosoma lewisi infection of rats.

The role of complement in host resistance to infection with Trypanosoma lewisi was studied in normal, C4-deficient, and C3-depleted rats. Complement levels were measured in normal rats throughout the course of infection. A drastic reduction of total complement and C4 hemolytic activities occurred, and C3 levels measured immunochemically were decreased. Although total complement and C4 levels were regularly reduced to less than 10% of preinfection levels regardless of parasite numbers, the degree of C3 consumption correlated with the parasitemia. C3 levels varied from 100% of preinfection in rats with light infections to 35% in animals with heavy parasitemias. Recovery to normal levels followed trypanosome elimination from the peripheral blood. The infection had no significant effect on C6 hemolytic activity. Parasitemias and C3 levels in C4-deficient rats did not differ from those of normocomplementemic controls. Depletion of C3 and late-acting components by cobra venom factor during the reproductive or adult stages of infection did not alter the parasitemias. In addition, T. lewisi and immune serum caused complement activation in vitro, which could be inhibited with ethylene glycol-bis-(beta-aminoethyl ether)N,N'-tetraacetic acid or ethylenediaminetetraacetic acid. It is concluded that T. lewisi infection in rats result in activation of the classical complement pathway with extensive consumption of the early-acting components, as well as a low degree of activation of the alternative pathway. However, complement does not appear to play a major role in the control and termination of the infection.

Animals↗

Evaluation of Streptococcus pneumoniae type XIV opsonins by phagocytosis-associated chemiluminescence and a bactericidal assay.

The relative roles of serum factors required for opsonization of type XIV Streptococcus pneumoniae were investigated by means of luminol-enhanced chemiluminescence (CL), bactericidal, and immunofluorescence assays employing adult sera containing high (>1,000 ng of antibody nitrogen per ml) or low (<200 ng of antibody nitrogen per ml) antibody concentrations as determined by radioimmunoassay. Specific antibody concentration correlated directly with both total and heat-labile CL activity (P < 0.005) and with the bactericidal index (P < 0.05) at a serum concentration of 10%. The importance of specific antibody as an opsonin was confirmed by the abolition of CL activity and immunoglobulin immunofluorescence observed after absorption of heated sera with type XIV pneumococcal cells and by the dose response in CL and bactericidal activity observed with the addition of immunoglobulin G to hypogammaglobulinemic serum. A role for the classical complement pathway in opsonization was indicated by significantly greater CL integrals for high-antibody sera than for low-antibody sera depleted of factor D and by the bactericidal activity noted for untreated, but not magnesium ethylene glycol-bis(beta-aminoethyl ether)-N,N-tetraacetic acid-chelated low-antibody sera. The alternative pathway contributed more than half of the CL activity of both high- and low-antibody sera. However, after magnesium ethylene glycol-bis(beta-aminoethyl ether)-N,N-tetraacetic acid chelation, only sera with high antibody concentrations or agammaglobulinemic serum reconstituted with immunoglobulin G with high specific antibody levels supported significant bactericidal activity. Therefore, type-specific antibody and complement promote opsonization of type XIV S. pneumoniae, and this may occur via either complement pathway. These results suggest that CL is a suitable tool to delineate serum factors and their contribution to opsonization, but results must be related to other functional assays.

Antibodies, Bacterial↗

Activation of human complement by the pneumococcal toxin pneumolysin.

Highly purified pneumolysin (at a concentration of 10 micrograms/ml) caused significant activation of human complement, as measured by conversion of C3. Complement activation in the presence of pneumolysin was not observed in sera chelated with a combination of Mg2+ and ethylene glycol-bis(beta-aminoethyl ether)-N,N-tetraacetic acid, and activation was only slight in C2-deficient sera. This suggests that the toxin is capable of activating the classical complement pathway. Treatment of normal human serum with pneumolysin also significantly reduced its opsonic activity for Streptococcus pneumoniae.

Bacterial Proteins↗

Isolation and partial characterization of staphylococcal decomplementation antigen.

A substance with potent decomplementation activity was isolated from staphylococcal culture supernatants by polyethylene glycol precipitation, DEAE-ion-exchange and Sephacryl chromatography, and preparative sodium dodecyl sulfate-polyacrylamide gel electrophoresis. The purified substance exhibited all the characteristics of the decomplementation antigen (DA) previously detected in unfractionated culture supernatants. It contained glucosamine and phosphorus and was provisionally identified as extracellular, water-soluble teichoic acid of Staphylococcus aureus. DA was entirely resistant towards the action of proteases, DNase, RNase, or lysostaphin and withstood boiling for 30 min. Its electrophoretic mobility in agarose gels at pH 8.7 was approximately double that of human serum albumin. The molecule eluted in a molecular-weight region of 70,000 to 120,000 on Sephacryl S-300 and sedimented as a symmetrical 3 to 4 S moiety in sucrose density gradients. It migrated near the dye front on 12.5% sodium dodecyl sulfate-polyacrylamide gels and remained undenatured after boiling in sodium dodecyl sulfate. DA formed a symmetrical immunoprecipitate upon crossed immunoelectrophoresis against pooled human immunoglobulin G. It was identified as the major extracellular antigen present in unfractionated S. aureus culture supernatants that is precipitable by naturally occurring human immunoglobulin G antibodies. Immune complexes forming between DA and human immunoglobulin G exhibited an extraordinary capacity to activate the classical complement pathway. Micro- or nanogram amounts of purified antigen added to antibody-containing human serum effected rapid and complete consumption of C3, C4, and C5. The biochemical and biological properties of DA single out this molecule for an important role in suppressing the opsonizing activity of host complement through induction of abortive complement consumption in the fluid phase.

Antigens, Bacterial↗

Role of immune serum and complement in stimulation of the metabolic burst of human neutrophils by Plasmodium falciparum.

Interaction between human neutrophils (polymorphonuclear leukocytes [PMN]) and Plasmodium falciparum in the natural defense of the host remains to be elucidated. In patients with acute malaria, oxygen consumption (QO2) of PMN at rest and after stimulation by zymosan was significantly increased compared with that in the controls. With 10% immune serum, both QO2 and chemiluminescence of normal PMN were significantly increased after stimulation by a P. falciparum erythrocyte culture. This activation was not observed with a nonparasitized erythrocyte culture and was correlated with parasitemia. Immune serum and complement were required to trigger this metabolic activation of normal PMN. With normal serum or heat-inactivated immune serum, a parasitized erythrocyte culture did not significantly stimulate QO2 or chemiluminescence of normal PMN. The classical complement pathway was essential for this stimulation, whereas the alternate pathway was less involved. Hyperimmune sera from subjects residing in endemic areas were more able to trigger the metabolic burst than were immune sera from subjects from other sources. The use of synchronous cultures showed that PMN were more stimulated by cultures rich in merozoites than by the same cultures which contained only intraerythrocytic forms. Giemsa staining showed granules of hemozoin and occasional merozoites or parasitized erythrocytes within PMN. This increase in production of activated oxygen radicals could damage intra-or extraphagocytic parasitic forms. As P. falciparum is sensitive to oxidant stress and PMN is the phagocyte with the most intense metabolic burst, the role of PMN in defense against malaria should be considered.

Antigen-Antibody Complex↗

Susceptibility of Campylobacter jejuni to strain-specific bactericidal activity in sera of infected patients.

Campylobacter jejuni is a common cause of inflammatory enteritis, which in normal hosts is usually self-limited and resolves without antibiotic therapy. C. jejuni bacteremia is very rare. We examined sera for bactericidal activity that might be important in limiting the extent of C. jejuni infection in man. We studied the ability of nonimmune sera and homologous and heterologous immune sera from infected patients to kill different fresh case isolates of C. jejuni in vitro. The reduction of the log10 concentration of viable C. jejuni (log10 killing) by fresh sera from nonimmune donors was only 0.2. Log10 killing by homologous acute sera varied from 0 to 3.8 (mean, 1.8). Convalescent sera showed remarkable log10 killing of only homologous C. jejuni, with values of 2.7 to 4.4 (mean, 3.7). The bactericidal effects of acute and convalescent sera were abrogated by heat and EDTA chelation, indicating mediation by complement. The role of classical complement pathway activation was supported by chelating sera with magnesium EGTA [ethylene glycol-bis(beta-aminoethyl ether)-N, N, N', N'-tetraacetic acid] and by reconstitution experiments with heat-inactivated sera, C2-deficient serum, and purified C2. The requirement of specific antibody for the serum bactericidal effect was indicated by the loss of bactericidal activity when immune sera were absorbed with homologous but not heterologous whole C. jejuni isolates. The presence of specific antibodies was further documented by agglutination of only homologous C. jejuni suspensions by heat-inactivated immune sera. Studies with polymorphonuclear leukocytes suggested that ingestion and killing of two C. jejuni strains were modest and variable in the presence of heat-inactivated homologous serum. In summary, the data document a potent serum bactericidal effect that develops rapidly and specifically during C. jejuni enteritis and may be an important factor in host defense against C. jejuni.

Antibodies, Bacterial↗

Susceptibility of pathogenic and nonpathogenic Naegleria spp. to complement-mediated lysis.

The susceptibility of four species of Naegleria amoebae to complement-mediated lysis was determined. The amoebicidal activity of normal human serum (NHS) and normal guinea pig serum (NGPS) for Naegleria amoebae was measured by an in vitro cytotoxicity assay. Release of radioactivity from amoebae labeled with [3H]uridine and visual observation with a compound microscope were used as indices of lysis. Highly pathogenic mouse-passaged N. fowleri was less susceptible to the lytic effects of NHS and NGPS than the weakly pathogenic, axenically grown N. fowleri or N. australiensis and the nonpathogenic amoebae N. gruberi and N. lovaniensis. However, both pathogenic and nonpathogenic Naegleria spp. depleted complement as assessed by total hemolytic activity. Treatment of serum with EDTA, heat (56 degrees C, 30 min), cobra venom factor, or antibody to C3 or C9 complement components decreased the amoebicidal activity of NHS. The presence of specific agglutinating antibody to N. fowleri enhanced the amoebicidal activity of NGPS for N. fowleri.

Amebiasis↗

Haemophilus influenzae type b lipooligosaccharide: stability of expression and association with virulence.

Spontaneous antigenic and phenotypic variations in the lipooligosaccharide (LOS) of two strains of Haemophilus influenzae type b (Hib) were previously shown to be associated with changes in virulence (A. Kimura and E.J. Hansen, Infect. Immun. 51:69-79, 1986). The goal of the present study was to define further the stability of LOS expression by this pathogen and the role of Hib LOS in virulence. Variation in LOS antigenic reactivity, as detected with LOS-specific monoclonal antibodies, was observed in 3 of 30 Hib strains after single-colony passage. When large numbers of individual colonies from seven other Hib strains were screened, however, spontaneous LOS antigenic variation was detected in all of the strains. Antigenic variation was not consistently associated with an altered LOS phenotype, as determined by sodium dodecyl sulfate-polyacrylamide gradient gel electrophoresis and silver staining of LOS preparations. Changes in the LOS antigenic phenotype were correlated with altered virulence potential in two strains. In these strains, acquisition of reactivity with certain LOS-directed monoclonal antibodies was associated with the synthesis of a higher-molecular-weight LOS, enhanced virulence, and increased resistance to serum killing involving the classical complement pathway.

Animals↗

Characterization of the susceptibility of Pseudomonas aeruginosa to complement-mediated killing: role of antibodies to the rough lipopolysaccharide on serum-sensitive strains.

The mechanism of complement-mediated killing of seven serum-sensitive Pseudomonas aeruginosa strains was examined. All seven strains were sensitive to the bactericidal activity of 20% pooled normal human serum (PNHS) containing magnesium EGTA, which blocks the classical complement pathway (CCP), or 20% PNHS preheated to 50 degrees C for 20 min, which inactivates the alternative complement pathway, suggesting that either pathway was effective against these strains. However, for four of these strains, optimal killing required the function of both pathways. Preabsorption of PNHS with serum-sensitive strains dramatically reduced the killing activity of serum for the homologous strains when a concentration of 10% serum was used, implying a role for antibody in the activation of complement via the CCP. Affinity purification of antibodies to the rough lipopolysaccharide (LPS) on strain 144M resulted in a pool of antibodies which could restore all of the bactericidal activity and most of the C3 activation-deposition activity of serum which had been lost by preabsorption with 144M. Confirmation that the LPS was the target for these bactericidal antibodies was provided by demonstrating that exogenously added 144M LPS inhibited the killing activity of PNHS. These anti-144M LPS-specific antibodies were also bactericidal for the six other serum-sensitive strains examined, suggesting that all seven strains shared an antigenic determinant recognized by these anti-144M LPS-specific antibodies. Results from cross-absorption studies imply that there are bactericidal antibodies in PNHS directed to additional bacterial targets. These studies suggest that part of the bactericidal activity of PNHS is due to binding of antibodies to the rough LPS on serum-sensitive strains, initiating activation of the CCP, and that all seven strains examined shared this bactericidal antibody-binding site.

Adult↗