PubMed Health⌕ Search

SEARCH · PubMed Health

Results for “Complement Pathway, Alternative”

Explore indexed PubMed citations for clinical trials, systematic reviews and public health research. Read source abstracts and follow each citation to its original PubMed record.

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

At least 919 records · Page 51Linked to original sources

Effect of body weight and caloric restriction on serum complement proteins, including Factor D/adipsin: studies in anorexia nervosa and obesity.

Complement plays important roles in host immune defences, and recent studies suggest that adipose tissue is an important site of production for some complement proteins. Starvation has been associated with low complement levels, but studied populations have usually had concomitant opportunistic infections or other conditions which might affect complement levels. To determine the impact of body weight and changes in body weight on serum complement, we investigated levels of complement proteins in otherwise healthy patients with a wide range of body weights, including patients with anorexia nervosa before and after treatment, obese dieters before and after weight loss, and normal weight controls. We found that complement proteins of the alternative pathway (C3, B, and D), alternative pathway haemolytic activity (AP50) and the inhibitors H and I were low in starving anorectics and normalized with weight gain. C3a levels were comparable in anorectics at low weight and after weight gain, indicating that low serum complement levels were attributable to hypoproduction and not complement cascade activation with consumption. Further, levels of C3, B, AP50, H and I, but not D, were higher than controls in obese patients and decreased toward normal after weight loss. Overall, percentage of ideal body weight, changes in body weight, and serum transferrin were each highly correlated with serum levels of complement proteins. We conclude that levels of alternative pathway complement components are determined in part by factors that influence body weight and by weight changes, possibly due to changes in production in adipose tissue or at other sites.

Adult↗

Pathophysiology of chronic tubulo-interstitial disease in rats. Interactions of dietary acid load, ammonia, and complement component C3.

The human end-stage kidney and its experimental analogue, the remnant kidney in the rat, exhibit widespread tubulo-interstitial disease. We investigated whether the pathogenesis of such tubulo-interstitial injury is dependent upon adaptive changes in tubular function and, in particular, in ammonia production when renal mass is reduced. Dietary acid load was reduced in 1 3/4-nephrectomized rats by dietary supplementation with sodium bicarbonate (NaHCO3), while control rats, paired for serum creatinine after 1 3/4 nephrectomy, were supplemented with equimolar sodium chloride. After 4-6 wk, NaHCO3-supplemented rats demonstrated less impairment of tubular function as measured by urinary excretory rates for total protein and low molecular weight protein and higher transport maximum for para-aminohippurate per unit glomerular filtration rate, less histologic evidence of tubulo-interstitial damage, less deposition of complement components C3 and C5b-9, and a lower renal vein total ammonia concentration. Such differences in tubular function could not be accounted for simply on the basis of systemic alkalinization, and differences in tubular injury could not be ascribed to differences in glomerular function. Because nitrogen nucleophiles such as ammonia react with C3 to form a convertase for the alternative complement pathway, and because increased tissue levels of ammonia are associated with increased tubulo-interstitial injury, we propose that augmented intrarenal levels of ammonia are injurious because of activation of the alternative complement pathway. Chemotactic and cytolytic complement components are thereby generated, leading to tubulo-interstitial inflammation. Thus, alkali supplementation reduces chronic tubulo-interstitial disease in the remnant kidney of the rat, and we propose that this results, at least in part, from reduction in cortical ammonia and its interaction with the alternative complement pathway.

Acid-Base Equilibrium↗

Serum-induced lysis of Pseudomonas aeruginosa.

The sensitivity of 12 Pseudomonas aeruginosa strains (5 mucoid and 7 non-mucoid strains) to serum and the interaction of these strains with the complement system was studied. Five strains (4 mucoid and 1 non-mucoid strains) were lysed in 20% normal serum as measured by the release of radiolabelled material from 3H-adenine labelled bacteria. Three of these strains were also lysed in MgEGTA chelated serum. All strains activated complement via the classical pathway, and six strains were able to activate the alternative complement pathway as well. Slime production did not interfere with bacteriolysis and complement consumption.

Bacteriolysis↗

Chemotactic efficiency of various chemoattractants for polymorphonuclear leukocytes in inflammatory acne vulgaris.

The chemoattractant efficiencies of a Propionibacterium acnes (P. acnes) cell wall preparation, a P. acnes culture supernatant, and a soluble comedonal extract in the presence and absence of autologous serum for polymorphonuclear leukocytes (PMNs) have been compared in the present study. It has been found that all three preparations have no or very little chemotactic activity for PMNs in the absence of serum. In the presence of autologous serum chemotactic factors is generated by all preparations via the alternative complement pathway. The relative efficiencies of the various preparations to induce chemotactic factor by the alternate complement pathway has been evaluated. Based on the bacterial numbers of the original preparations from which the test preparations had been derived the comedonal extract appears to be more efficient in generating chemotactic factor than the other preparations. It is concluded that in vivo generation of chemotactic factors occurs mainly via the alternate complement pathway activated by soluble comedonal factors diffusing through the follicular wall.

Acne Vulgaris↗

Inhibitory effects of FUT-175, a new synthetic protease inhibitor, on intravascular hemolysis by human serum in mice.

Effects of FUT-175, a new protease inhibitor, on intravascular hemolysis of mouse erythrocytes caused by intravenous injection of human serum was studied in mice. In in vitro experiments, unsensitized erythrocytes obtained from various species of animals were lysed with sera in EGTA-GVB-Mg++. After heat inactivation of sera at 50 degrees C for 30 min, hemolysis in EGTA-GVB-Mg++ was abolished, indicating loss of activity of the alternative complement pathway. FUT-175 inhibited the alternative complement pathway-mediated hemolysis with IC50 values of 1.3 X 10(-7) to 4.0 X 10(-7) M. Intravenous injection of human serum caused intravascular hemolysis of mouse erythrocytes in mice. No remarkable change was observed in the mice that were injected with heat-inactivated (56 degrees C, 30 min) human serum. Intravenous administration of FUT-175 at a dose of 3 or 10 mg/kg inhibited intravascular hemolysis of mouse erythrocytes regardless of whether it was administered before or after injection of human serum. These results indicated that FUT-175 prevents intravascular hemolysis of mouse erythrocytes through the inhibitory effect of both alternative and classical complement pathway.

Animals↗

Effects of decomplementation on mercuric chloride-induced glomerulonephritis in Brown-Norway rats.

The course of mercuric chloride-induced immune glomerulonephritis is characterized by complement activation, intensive proteinuria, linear and then granular IgG and C3 deposits in the glomeruli. To assess the role of complement activation in the occurrence of the disease, decomplementation was achieved by intravenous injections of cobra venom factor in rats injected with mercuric chloride. In these animals, proteinuria still appeared while rats were decomplemented by cobra venom factor through the alternative pathway. These rats exhibited linear IgG deposits without detectable C3 deposits. In the rats injected with cobra venom factor alone, no proteinuria, no classical pathway complement activation and no renal IgG or C3 deposits were observed. Therefore, in Brown-Norway rats intoxicated with mercuric chloride, proteinuria appears to be at least in part complement independent.

Animals↗

Interaction of complex polysaccharides with the complement system: effect of calcium depletion on terminal component consumption.

Complex polysaccharides and lipopolysaccharides can activate the terminal components of complement by either the classical (antibody, C1, C4, and C2) or alternative complement pathways, but the relative importance of either pathway for terminal component consumption in normal serum is poorly understood. Since classical complement pathway function requires both calcium and magnesium ions, whereas the alternative pathway requires only magnesium ions, selective chelation of calcium ions in serum can be used to block the classical complement pathway while leaving the alternative pathway intact. In these studies, ethyleneglycol-bis-(beta-aminoethyl ether)N, N-tetraacetic acid, a potent chelator or calcium, was used to block the classical complement pathway in normal guinea pig serum. Consumption of the terminal complement components by endotoxin, inulin, and zymosan in such serum was strikingly depressed when compared to serum containing an intact classical complement pathway. These studies demonstrate that in normal serum, both the classical and alternative complement pathways participate in the consumption of the terminal complement components by complex polysaccharides and lipopolysaccharides.

Animals↗

Complement: activation, consequences, and control.

The activation of complement provides the humoral (fluid-phase) effector mechanism most responsible for immune-mediated injury. The classical pathway is activated by an antigen-antibody reaction. The binding of C1q initiates the sequential activation of the eleven proteins. The classical pathway has a calcium-dependent step (C1q, C1r, C1s) and a magnesium-dependent reaction (the enzymatic action of C1s on C4 and C2). The alternative pathway appears to be spontaneously activated, but the perpetuation of that activation is dependent upon the availability of an activating (or protective) surface which interferes with the inactivation of C3b by control proteins. The alternative pathway has a magnesium-dependent step, the binding of B to C3b to form the C3 convertase. Once initiated, the alternative pathway activation results in the sequential activation of nine proteins, six of which are common to both pathways. The activation of complement results in a variety of biologic consequences which can result in injury to the host. The potential destructiveness of the effects of complement activation is modulated by a series of control proteins.

Carrier Proteins↗

Inhibition of complement activation by natural sulfated polysaccharides (fucans) from brown seaweed.

In the present study, we demonstrate that natural sulfated polysaccharides (fucans) isolated from brown seaweed are potent inhibitors of human complement activation. A fucan fraction of chromatographic molecular weight 22,600, termed BS8, was found to inhibit classical and alternative pathway activation in whole serum in a dose-dependent fashion. Fucan BS8 inhibited formation of the classical pathway C3 convertase by interfering with C1 activation or by inhibiting C4 cleavage and the interaction between C4b and C2. The fucan also inhibited formation/function of the alternative pathway C3 convertase by suppressing the binding of B to C3b and by interfering with the stabilizing function of Properdin. The inhibitory effect of fucans on formation of the C3 convertases was dependent on the molecular weight of the polysaccharide for compounds of chromatographic molecular weight below 16,600. Fucan had no effect on the function of the terminal complex. Since fucans were more efficient than heparin in inhibiting activation of the classical pathway in whole serum and exhibited a lesser specific anticoagulant activity on a molar basis, our results suggest that these natural sulfated polysaccharides have a potential for use as anti-complementary and anti-inflammatory agents.

Complement Activation↗

Anti-complement effects of lactoferrin-derived peptides.

Lactoferrin is an important biological molecule with many functions such as modulation of the inflammatory response, iron metabolism and antimicrobial defense. One effect of lactoferrin is the inhibition of the classical complement pathway. This study reports that antimicrobial peptides derived from the N-terminal region from both human and bovine lactoferrin, lactoferricin H and lactoferricin B, respectively, inhibit the classical complement pathway. No inhibitory effect of these peptides was observed on the alternative complement pathway in an AP50 assay. However, lactoferricin B reduced the inhibitory properties of serum against Escherichia coli in a concentration dependent manner. These results suggest that the N-terminal region of lactoferrin is the important part in the inhibition of complement activation and that these peptides possess other important properties than their antimicrobial effect.

Amino Acid Sequence↗

Characteristics of complement activation in mice bearing Lewis lung carcinomas treated by photodynamic therapy.

Following treatment of Lewis lung carcinomas (LLC) by Photofrin-mediated photodynamic therapy (PDT), tumor tissues and sera of host mice were collected for the analysis of complement activity. Elevated tumor C3 levels were detected between 1 and 24 h after PDT, while serum C3 levels increased significantly at 24 h post therapy. Increased alternative complement pathway activity in the serum was evident between 1 and 3 days post PDT. Blocking C3a- or C5a-receptors in the host mice decreased the efficacy of PDT in producing LLC tumor cures, supporting the importance of complement action in PDT-mediated tumor destruction.

Animals↗

Complement C3b interactions studied with surface plasmon resonance technique.

The surface plasmon resonance (SPR) phenomenon is utilized in a number of new real time biosensors. In this study, we have used this technique to study interactions between the central complement component C3b and its multiple ligands by using the Biacore equipment. The SPR technique is particularly suitable for analysis of the alternative complement pathway (AP) because the inherent nature of the latter is to amplify deposition of C3b on various surfaces. C3b was coupled onto the sensor surface and the coupling efficiency was compared under various conditions on both polystyrene and carboxymethylated dextran surfaces. After enzymatic C3b coupling or standard amine C3b coupling, we analyzed and compared the binding of four C3b ligands to the surface: factor B, factor H, C5 and the soluble complement receptor 1 (sCR1, CD35). Binding of each ligand to C3b was detected when C3b had been coupled either enzymatically or using the amine coupling, but the half-lives of the interactions were found to vary depending on the coupling procedure. Factor H binds to C3b via three interaction sites. The target sites are exposed on the C3b, C3c and C3d fragments of C3, respectively. Therefore, we also tested by using the Biacore whether factor B, C5 and sCR1 bind to C3c and/or C3d. It was found that factor B bound to C3d, but not to C3c. On the other hand, both C5 and sCR1 bound to C3c, but not to C3d. In conclusion, this study shows that SPR is a powerful tool in analyzing and mapping the interactions of C3b with its multiple ligands.

Binding Sites↗

Identification of complement regulatory domains in vaccinia virus complement control protein.

Vaccinia virus encodes a homolog of the human complement regulators named vaccinia virus complement control protein (VCP). It is composed of four contiguous complement control protein (CCP) domains. Previously, VCP has been shown to bind to C3b and C4b and to inactivate the classical and alternative pathway C3 convertases by accelerating the decay of the classical pathway C3 convertase and (to a limited extent) the alternative pathway C3 convertase, as well as by supporting the factor I-mediated inactivation of C3b and C4b (the subunits of C3 convertases). In this study, we have mapped the CCP domains of VCP important for its cofactor activities, decay-accelerating activities, and binding to the target proteins by utilizing a series of deletion mutants. Our data indicate the following. (i) CCPs 1 to 3 are essential for cofactor activity for C3b and C4b; however, CCP 4 also contributes to the optimal activity. (ii) CCPs 1 to 2 are enough to mediate the classical pathway decay-accelerating activity but show very minimal activity, and all the four CCPs are necessary for its efficient activity. (iii) CCPs 2 to 4 mediate the alternative pathway decay-accelerating activity. (iv) CCPs 1 to 3 are required for binding to C3b and C4b, but the presence of CCP 4 enhances the affinity for both the target proteins. These results together demonstrate that the entire length of the protein is required for VCP's various functional activities and suggests why the four-domain structure of viral CCP is conserved in poxviruses.

CD55 Antigens↗

The complement system in HIV disease.

Different aspects of the relationship between the HIV infection and the complement system were studied. 1. No significant differences were found between seronegative controls, asymptomatic, and symptomatic (ARC, AIDS) HIV-seropositive patients in the plasma levels of complement components C4, Bf, and C3. 2. Using sensitive ELISA assays, a significant increase was observed in the levels of protein-protein complexes which are formed at the activation of the classical (C1r-C1s-C1-INH) and alternative (C3b-Bb-P) pathways, indicating that both complement pathways are activated in the HIV disease. No significant differences were found, however, in the levels of these complexes between the groups of asymptomatic and symptomatic HIV-infected patients. 3. Artificial immune complexes of synthetic peptides representing some immunodominant epitopes of HIV envelope (gp120, and gp41) proteins, and human polyclonal anti-HIV IgG were found to weakly activate both the classical and alternative complement pathways. 4. An elevated percentage of the lymphocytes carrying a complement activation fragment, C3d, was detected in the blood of HIV seropositive patients as compared to the seronegative controls. No significant positive correlation was found between the percentage of these cells and that of any T cell subsets tested.

Complement Activation↗

Lethal effect of complement and lysozyme on polymyxin-treated, serum-resistant gram-negative bacilli.

When genetically serum-resistant Escherichia coli, Klebsiella pneumoniae, and Citrobacter freundii, but not Pseudomonas aeruginosa or Proteus mirabilis, were exposed to polymyxin B, they became susceptible to the bactericidal action of normal human and rabbit sera. In constrast, beta-lactam and aminoglycoside antibiotics did not render any serum-resistant bacteria serum-sensitive. Synergy between polymyxin B and the serum bactericidal system could be demonstrated by the addition of polymyxin B to bacteria in vitro, as well as to bacilli in serum from rabbits injected with the antibiotic. Polymyxin B-treated bacteria were killed by normal, lysozyme-depleted, C2-deficient, and hypogammaglobulinemic sera, but not by heated or C6-deficient sera. These findings indicate that polymyxin B-treated bacteria can be killed via the alternative complement pathway. However, C3 and C3b were detected on the surface of serum-resistant E. coli, regardless of whether the bacteria had been treated with polymyxin B. This observation suggests that a change in susceptibility to the alternative complement pathway was not the only explanation for the acquired serum sensitivity. Polymyxin B may also affect a step in the complement sequence beyond the activation of C3, a step that is apparently blocked in serum-resistant gram-negative bacteria.

Animals↗

Complement components in kidney allograft recipients: relationship to cytomegalovirus infection.

Serum complement profiles of 19 renal transplant recipients were studied serially before and after renal transplantation to determine if there is any relationship between cytomegalovirus (CMV) infection and alteration in the serum complement (C) levels. Most patients had low serum C3 and C4 levels before transplantation, but afterwards these levels increased in some patients. Clq was elevated before and after transplantation. Factor B was low before transplantation, but after surgery, its level approached normal in patients without cytomegalovirus viremia, whereas in those with viremia, Factor B level became even more depressed. Circulating Factor B fragments were found in the sera of five out of seven patients with active cytomegalovirus infection, which suggests activation of the alternative pathway possibly related to active CMV infection.

Adult↗

Crossed immunoelectrophoresis for the detection of split products of the third complement component in dengue hemorrhagic fever. II. In vitro activation by dengue viral antigen.

The ability of dengue viral antigen(s) from different sources, and performed antigen-antibody complexes, to activate the third component of human complement (C3) in vitro was demonstrated by using split products of human C3. Dengue type 2 viral antigen(s) from suckling mouse brain and from infected monocytes activated C3 via the alternative pathway, while performed soluble dengue-2 antibody complex activated mainly the classical pathway. The implications of this finding for the pathogenesis of dengue hemorrhagic fever are discussed.

Animals↗

Decay accelerating activity of complement receptor type 1 (CD35). Two active sites are required for dissociating C5 convertases.

The goal of this study was to identify the site(s) in CR1 that mediate the dissociation of the C3 and C5 convertases. To that end, truncated derivatives of CR1 whose extracellular part is composed of 30 tandem repeating modules, termed complement control protein repeats (CCPs), were generated. Site 1 (CCPs 1-3) alone mediated the decay acceleration of the classical and alternative pathway C3 convertases. Site 2 (CCPs 8-10 or the nearly identical CCPs 15-17) had one-fifth the activity of site 1. In contrast, for the C5 convertase, site 1 had only 0.5% of the decay accelerating activity, while site 2 had no detectable activity. Efficient C5 decay accelerating activity was detected in recombinants that carried both site 1 and site 2. The activity was reduced if the intervening repeats between site 1 and site 2 were deleted. The results indicate that, for the C5 convertases, decay accelerating activity is mediated primarily by site 1. A properly spaced site 2 has an important auxiliary role, which may involve its C3b binding capacity. Moreover, using homologous substitution mutagenesis, residues important in site 1 for dissociating activity were identified. Based on these results, we generated proteins one-fourth the size of CR1 but with enhanced decay accelerating activity for the C3 convertases.

Amino Acid Sequence↗