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Successful plasma therapy for atypical hemolytic uremic syndrome caused by factor H deficiency owing to a novel mutation in the complement cofactor protein domain 15.

Quantitative or functional deficiency of complement factor H results in uncontrolled complement activation. This leads to thrombotic microangiopathy and finally causes renal failure (atypical hemolytic uremic syndrome [aHUS]). By regular analysis of factor H in patients with aHUS, the authors found a complete factor H deficiency in an infant in whom aHUS developed at 8 months of age. Factor H was quantified by enzyme-linked immunosorbent assay and further analyzed by Western blot using a factor H-specific antibody. Complement activation was determined by measuring total hemolytic activity of the classical (CH50) and alternative (APH50) pathways, C3 and C3d. The sequence of factor H gene was determined. Serial factor H measurements after fresh frozen plasma infusion allowed calculation of a factor H half-life. Factor H was absent in plasma (<1 mug/mL), and the complement system was highly activated (CH50, APH50, C3 decreased; C3d increased). Genetic analysis identified a novel homozygous factor H mutation (T2770A; Y899Stop) in CCP domain 15, most likely causing defective protein secretion. Time course measurements of factor H after plasma infusion established a factor H half-life of about 6 days. By repetitive plasma infusions (20 mL/kg over about 2 to 3 hours) the authors were able to interrupt the vicious circle of thrombotic microangiopathy in a factor H-deficient patient with aHUS. Based on the measured factor H half-life of about 6 days, regular plasma infusions in 2-week intervals were given, which prevented further aHUS episodes and stopped the decline of kidney function.

Complement Factor H↗

Polyglycolic acid-induced inflammation: role of hydrolysis and resulting complement activation.

Tissue and organ replacement have quickly outpaced available supply. Tissue bioengineering holds the promise for additional tissue availability. Various scaffolds are currently used, whereas polyglycolic acid (PGA), which is currently used in absorbable sutures and orthopedic pins, provides an excellent support for tissue development. Unfortunately, PGA can induce a local inflammatory response following implantation. Therefore, we investigated the molecular mechanism of inflammation in vitro and in vivo. Degraded PGA induced an acute peritonitis, characterized by neutrophil (PMN) infiltration following intraperitoneal injection in mice. Similar observations were observed using the metabolite of PGA, glycolide. Dissolved PGA or glycolide, but not native PGA, activated the classical complement pathway in human sera, as determined by classical complement pathway hemolytic assays, C3a and C5a production, and C3 and immunoglobulin deposition. To investigate whether these in vitro observations translated to in vivo findings, we used genetically engineered mice. Intraperitoneal administration of glycolide or dissolved PGA in mice deficient in C1q, factor D, C1q and factor D, or C2 and factor B demonstrated significantly reduced PMN infiltration compared to congenic controls (WT). Mice deficient in C6 also demonstrated acute peritonitis. However, treatment of WT or C6 deficient mice with a monoclonal antibody against C5 prevented the inflammatory response. These data suggest that the hydrolysis of PGA to glycolide activates the classical complement pathway. Furthermore, complement is amplified via the alternative pathway and inflammation is induced by C5a generation. Inhibition of C5a may provide a potential therapeutic approach to limit the inflammation associated with PGA-derived materials following implantation.

Animals↗

Involvement of the complement system in the pathogenesis of pulmonary leukostasis in experimental myelocytic leukemia.

The role of the complement system in the pathogenesis of pulmonary leukostasis in myelocytic leukemia was studied in a rat model. Acute myelocytic leukemia was induced in six Brown-Norway rats, and complement levels were assayed during the course of the disease. Whole complement activity (CH50) and hemolytic activity of C1q, C3, and C4 decreased from day 16 after induction of the leukemia, when the rats developed pulmonary leukostasis. In addition, local complement activation was established in the lung vessels by immunofluorescence microscopy in advanced stages of pulmonary leukostasis. Finally, following systemic activation of the complement system by injection of cobra venom factor (CVF), leukemic rats (n = 6) died of pulmonary leukostasis 4.5 days earlier than did leukemic controls (n = 6). These findings suggest that, in acute myelocytic leukemia in Brown-Norway rats, pulmonary leukostasis is induced by activation of the complement system. This finding could lead to new modes of treatment for a life-threatening complication of leukemia.

Animals↗

Potentiation of immune complex injury in rats by pretreatment with subnephrotoxic doses of guinea pig anti-glomerular basement membrane IgG1.

1. Female Wistar rats received a single subnephrotoxic dose of guinea pig anti-glomerular basement membrane (GBM) IgG1, 2.5 mg, followed by infusion of preformed immune complexes (BSA, 5.0 mg/rabbit anti-BSA, 6 mg), 10 X antigen excess. Control groups received guinea-pig IgG1 anti-GBM, or preformed immune complexes alone, or isotonic saline. Systemic reactions were observed clinically during the first 24 h, and 24 h urine was collected for the measurement of proteinuria and hematuria. 2. Blood was collected before and 2 h after the above treatment for the determination of complement (50% hemolytic assay), kininogen (isolated guinea pig assay of released bradykinin-like spasmogenic activity) and activated partial thromboplastin time (APTT). Kidney and lung tissue was examined by light microscopy, immunofluorescence and electron microscopy. 3. Rats treated with guinea pig anti-GBM IgG1 followed by BSA immune complex presented a severe systemic picture, with macroscopic hematuria (9/14), several deaths (8/14), slight proteinuria (24.6 +/- 5.2 mg/day), marked complement consumption (delta = 49.4 +/- 2.4 UCH50/ml), intravascular coagulation and severe diffuse interstitial pneumonia, obliteration of glomerular capillary walls by edema of endothelial cells, without deposition of immune complexes in kidneys or lungs. The control groups showed no signs of systemic reaction (isotonic saline alone) or slight dyspnea (guinea pig anti-GBM IgG1 or immune complexes alone), without proteinuria or macroscopic hematuria, and with foci of interstitial pneumonia. 4. Complement consumption was significant in rats receiving immune complexes alone (delta = 31.1 +/- 1.3 UCH50/ml) and even higher when associated with infusion of guinea pig anti-GBM IgG1 (delta = 49.3 +/- 2.4 UCH50/ml). APTT was significantly lengthened only for the group treated with guinea pig anti-GBM IgG1 plus immune complexes (delta = 18.5 +/- 1.9 s), with no alterations in the other groups. Kininogen consumption was demonstrable for all groups except the saline control and was more extensive in rats which received immune complexes alone or preceded by guinea pig IgG1. 5. These data show that previous infusion of a subnephrotoxic dose of guinea pig IgG1 anti-GBM aggravated the pathological effects of preformed immune complexes by promoting marked complement consumption and activation of the coagulation system, rather than by enhancing tissue deposition.

Animals↗

Complement components and activation in primary biliary cirrhosis.

Total complement activity was normal in 18 patients with primary biliary cirrhosis using two hemolytic assays capable of distinguishing between defects in classical and alternative pathways. Activation of the classical pathway was demonstrated in all patients by formation of complexes between C1r, C1s, and C1 inactivator. Large amounts of free C1q, not in complex with C1r and C1s, were demonstrated in the majority of patient sera. Furthermore, C4 levels were within the normal range or slightly subnormal. No evidence for alternative pathway activation was found. Increased mean levels of several complement components, in particular C1 inactivator, C2, C3, factor B, factor H, were noted. A significant correlation between these complement factors, derived mainly from the liver, and ceruloplasmin suggests that this elevation might be secondary to cholestasis. In contrast, no significant correlation with levels of early reacting acute phase reactants, immunoglobulins, or circulating immune complex-like material were observed. It is concluded that activation of the complement system by the classical pathway is common in patients with primary biliary cirrhosis.

Antigen-Antibody Complex↗

Determination of the complement component C2 by ELISA in human serum and bronchoalveolar lavage fluids.

In order to measure the concentration of the human complement component C2 in various biological fluids, an enzyme linked immunosorbent assay (ELISA) was developed. This assay was highly sensitive and allowed to detect as few as 400 pg of C2 in a sample volume of 150 microliters (i.e. 2.6 ng/ml). This is a 10- to 15-fold increase in sensitivity with regard to the conventional hemolytic test. As assessed by an immunoblot analysis, our anti-C2 antiserum was able to detect native C2 as well as the cleavage fragments C2a and C2b generated upon complement activation through the classical pathway. Thus, complement activation involving the classical pathway can easily be evidenced by comparing functional (hemolytic) and immunochemical (ELISA) C2 assays which respectively do not and do reveal activated C2. When C2 was assayed in either normal human serum or bronchoalveolar fluids, in both ELISA and hemolytic tests, a highly significant correlation was observed between the two assays (P less than or equal to 0.01). The specific C2 activity (i.e. functional hemolytic activity/ng C2 assayed in ELISA) was higher in serum than in bronchoalveolar lavage fluids from both normal volunteers and patients with pulmonary diseases.

Adult↗

Granulocyte colony-stimulating factor effects on lymphocytes and immunoglobulin concentrations in periparturient cows.

Immunomodulatory effects of recombinant bovine granulocyte colony-stimulating factor were evaluated in periparturient dairy cows. Eleven of 21 cows were experimentally infected with Staphylococcus aureus in one mammary quarter prior to the study. Cows were assigned to four groups in a randomized complete block design to evaluate the effects of recombinant bovine granulocyte colony-stimulating factor (5 micrograms/kg of body weight or placebo injected subcutaneously once daily beginning 14 d prepartum through 10 d postpartum) on infected and uninfected cows during the periparturient period. Blood lymphocytes were isolated and evaluated from 5 wk before expected parturition through 7 wk postpartum. Lymphocyte function was evaluated using a blastogenesis assay, a mitochondrial methylthiazoltetrazolium cleavage activity assay, and an in vitro assay of IgM production. Serum concentrations of IgM, IgG1, conglutinin, and hemolytic complement were also determined. Injections of cows with recombinant bovine granulocyte colony-stimulating factor resulted in enhanced lymphocyte blastogenesis and mitochondrial methylthiazoltetrazolium cleavage activity in unstimulated cultures, higher serum IgM, and increased in vitro IgM production by B lymphocytes. These data provide support for the use of recombinant bovine granulocyte colony-stimulating factor to alleviate immunosuppression in periparturient cows.

Animals↗

A semi-automated microassay for complement activity.

A simple, automated microassay for the serum complement-dependent hemolytic activity is described here. In contrast to the traditional titration hemolysis assay, the new method depends on a single experimental step using a fixed volume of serum specimen and sheep erythrocytes. The assay is based on the change in light scattering properties of erythrocytes upon hemolysis. It relies on the spectrophotometric reading of microtiter well samples at 700 nm by using a microplate reader. The measured absorbance correlates proportionally with the extent of hemolysis. A good correlation between the results obtained using this technique and those obtained by the traditional CH50 titration method is observed. This simple procedure can be applied to the rapid, semi-quantitative diagnostic screening of complement activities of a large number of serum specimens.

Animals↗

Cold dependent activation of complement in systemic lupus erythematosus. A unique cause for a discrepancy between clinical and laboratory parameters.

A 31-year-old woman with systemic lupus erythematosus (SLE) was studied because she developed markedly reduced total hemolytic complement activity at a time when her disease was clinically inactive. Functional assays demonstrated reduced activities of C1, C4, and C2, but normal concentrations of C3 and the terminal (C5-9) components were present. Antigenic concentrations of C1, C4, and C2 were normal. Plasma or serum obtained from blood allowed to clot at 37 degrees C had normal complement activity. Complement activity was depleted when the patient's serum was incubated in the cold. At reduced temperatures, the patient's serum (or purified IgG) depleted complement activity of normal human sera. A second patient with SLE was also demonstrated to have this same phenomenon. Cryoglobulins were not detectable in these patients. These data indicate that in vivo the patients' complement was normal and that the observed in vitro reduction was caused by cold dependent activation of the classical pathway.

Adolescent↗

Immunologic studies in patients with recurrent bronchopulmonary infections.

In view of the known association of several different immune deficiency disorders with infections of the respiratory tract, a number of immunologic parameters were investigated in 15 patients with recurrent brochopulmonary infections. The patients' neutrophils all demonstrated normal intracellular killing of Staphylococcus aureus, and responded normally to chemotactic stimuli. Although assays of complement 3c were normal in all patients' sera, defective total hemolytic complement activity was consistently shown in 1 patinets manifested elevated serum immunoglobulin concentrations. Severe alpha1 -antitrypsin deficiency (Pi ZZ phenotype) was discovered in 1 patient. Three patients displayed cutaneous anergy to a battery of skin-test antigens, but lymphocytes from all patients studied responded normally to in vitro phytohemagglutinin stimulation. A "blocking" factor found in the serum of 3 patients suppressed the in bitro transformation of normal Candida-responsive lymphocytes by Candida albicans antigen. "Cold" lymphocytotoxins were detected in the sera of 10 patients, but in only 3 of 19 control sera. Although the significance of these findings is unknown, they may possibly have pathogenetic relevance in a small number of the patients studied.

Adolescent↗

Synovial fluid total hemolytic complement activity in rheumatic diseases - a reappraisal.

The varied and contradictory claims made of the clinical value of measuring total hemolytic complement activity in rheumatic diseases prompted a reappraisal of its role, and a review of the literature, taking into account the anomalies of assay and the semi-quantitative nature of the procedure. We found that measurements of synovial fluid (SF) total hemolytic complement activity were of limited value in determining the diagnosis or prognosis of joint diseases. Also there was no significant relationship between SF total hemolytic complement activity and either clinical activity or other laboratory findings. We believe that measurements of SF complement activity will prove of little use as a guide to the effectiveness of drug therapy.

Arthritis↗

Systematic discovery and evaluation of complement inhibitors.

Methods are presented for an orderly search of a chemical file for complement inhibitors. Compounds are initially examined for intrinsic activity against dilute human components in vitro, using hemolytic assays to detect inhibitors of fluid phase C1, of late components lysis of EAC142, and of CVF-induced passive lysis of AET-treated human erythrocytes. Active compounds are then examined for activity against undiluted serum in vitro. Compounds passing this test are examined for activity in vivo against serum complement and complement-dependent lesions, viz. Forssman vasculitis, the reverse passive Arthus phenomenon, and Forssman shock. Methods are given for quantitation of these lesions.

Animals↗

Restriction of C1 hemolytic function by human proline-rich salivary proteins.

Acidic proline-rich salivary proteins, PRPI, PRPII, PRPIII, PRPIV, upper Db and Statherin, were isolated from parotid saliva and tested for interaction with complement. It was determined that each of the isolated proline-rich proteins blocked C1 hemolytic activity in assay systems where C1 was rate-limiting. Further studies comparing the specific activity of the proline-rich proteins to unfractionated parotid saliva indicated that other salivary substances (sensitive to urea treatment of parotid saliva) were also interacting with the first complement component but in a time-dependent manner. Based on a series of experiments examining the effect of the sequence of addition of the proline-rich proteins in the complement assay systems, it is postulated that these salivary proteins are able to block the proper interaction of C1 with EAC4 cells (sheep erythrocytes coated with antibody and C4gp). The proline-rich salivary proteins had no effect on C1 once C1 was bound to the immune complexes on the EAC4 cells. The C1 macromolecular complex undergoes conformational changes upon interaction with immune complexes resulting in a more avid binding of the C1q-Clr-Cls subunits with one another. Thus it is speculated that the EAC4-bound C1 becomes resistant to disruption by the proline-rich salivary proteins. Although the urea-sensitive factors had the highest specific C1-fixing activity, the activity of the acidic proline-rich proteins on C1 is important because of their relatively high concern in salivary secretions. Since complement-containing serous exudates and transudates are present on inflamed mucosal tissues, salivary substances which interact with C1 may play a role in regulating the initiation of the classical complement pathway, particularly at those mucosal sites where there is a high ratio of salivary secretion to serous exudate.

Chromatography, Gel↗

The cleavage site of C5 from man and animals as a common target for neutralizing human monoclonal antibodies: in vitro and in vivo studies.

The isolation of an anti-C5 single-chain fragment variable (scFv) antibody, TS-A12/22, from a human phage display library, is described. This antibody inhibits the activation of C5 and the assembly of the terminal complement complex implicated in cell and tissue damage. Using antibody-sensitized sheep erythrocytes and rabbit red cells as target cells in hemolytic assays, we found that TS-A12/22 inhibited the activation of C5 by the convertases of both classical and alternative pathways. Western blot analysis and competition experiments with synthetic peptides showed that TS-A12/22 reacted with the alpha chain of C5 and recognized the cleavage site of this complement component by the C5 convertase. As a result, the antibody prevented splitting of C5 and inhibited the generation of C5a and of the terminal complement complex. The identification of the TS-A12/22 recognition site as a conserved sequence in man, mouse, rat and rabbit enabled the demonstration of in vitro inhibition of complement activity in these species. The scFv TS-A12/22 was tested in a rat model of antigen-induced arthritis and proved to be effective in preventing influx of polymorphonuclear cells into the knee joint and C9 deposition on synovial tissue.

Animals↗

Inhibitors of C1q biosynthesis suppress activation of murine macrophages for both antibody-independent and antibody-dependent tumor cytotoxicity.

The inhibitors of C1q biosynthesis and secretion, 3,4-dehydro-DL-proline (DHP) and 2,2'-dipyridyl, were previously shown to suppress murine macrophage FcR-dependent phagocytosis and cytolysis of IgG-opsonized RBC targets. Inasmuch as non-antibody macrophage activators also bind C1q to initiate C1 activation, we determined the effects of these same inhibitors of C1q biosynthesis on activation of macrophages for antibody-independent, nonspecific tumor cytotoxicity by lipid A and a variety of other non-antibody activators. Preexposure of mouse inflammatory peritoneal macrophages to either DHP (0.5 to 2.5 mM) or 2,2'-dipyridyl (0.1 to 0.3 mM) for 24 h produced a dose-related suppression of their response to activation by lipid A to mediate tumor cytotoxicity of L1210 mouse leukemia targets. Inhibition of C1q secretion by DHP-treated macrophages was confirmed both by a complement hemolytic assay and by autoradiographic analysis of [35S]methionine-labeled culture supernatants. DHP-treated macrophages were inhibited in their response to direct activation and triggering of IFN-gamma-primed macrophages by lipid A, Poly I:C, and cobra venom factor for tumor cytotoxicity. DHP inhibited macrophage activation for antibody-dependent cellular cytotoxicity of L1210 tumor targets mediated by antitumor target IgG. The addition of exogenous purified C1q (2 micrograms/ml) to macrophages after DHP treatment, reconstituted their response to activation for both antibody-independent and antibody-dependent tumor cytotoxicity. Our results indicate that C1q synthesis and secretion by effector macrophages is a prerequisite for the initiation of their activation by both immune complex and by non-antibody agents that also bind C1q. It now appears that macrophage-derived C1q may act as an auxiliary amplification signal for autocrine-like modulation of the initiation of macrophage activation by both the antibody-dependent and independent pathways.

2,2'-Dipyridyl↗

Immunoadsorbent affinity purification of the fifth component (C5) of human complement and development of a highly sensitive hemolytic assay.

The fifth component of complement (C5) has been isolated from human serum in fully hemolytically active form by immunoadsorbent and anion exchange column chromatography. The immunoadsorbent column was prepared by the covalent coupling of the purified IgG fraction obtained from monospecific goat anti-human C5 antiserum to CNBr activated Sepharose 4B. Establishment of appropriate conditions for the dissociation and elution of functionally active C5 from the immunoadsorbent column was of central importance in the development of this purification procedure. The C5 preparations exhibited final yields of 20--50% with 570--710-fold purification factors based on recovery of specific hemolytic activity. These preparations were free of contaminating serum proteins as judged by SDS-polyacrylamide slab gel electrophoretic and immunochemical criteria. A C5-depleted reagent (C5D) was generated from the non-adsorbed protein containing fractions obtained subsequent to the passage of freshly drawn NHS plus 10 mM EDTA through the monospecific anti-C5 Sepharose 4B column. Upon reconstitution of C5D with Ca2+, Mg2+, and C1q, this reagent was utilized for the detection and quantitation of C5 hemolytic activity. The purified C5 preparations contained 1.5--2.5 x 10(12) effective molecules/mg protein and NHS expressed 0.5--2.0 x 10(11) effective molecules/ml.

Animals↗

The polyclonal activation of lymphocytes and T cell mitogenicity by a unique sialic-acid-binding lectin from the hemolymph of Achatina fulica snail.

A unique sialic-acid-binding lectin, AchatininH, isolated from the hemolymph of Achatina fulica snail was found to be strongly mitogenic, as monitored by [3H]thymidine incorporation assay, to rat and human lymphocytes. However, the degree of mitogenic response varied with the type of cell population. As indicated, this lectin induced proliferation of purified T lymphocytes and rat thymocytes, whereas it was less mitogenic towards peripheral lymphocytes of pregnant rats and was not mitogenic towards B lymphocytes. Furthermore, the mitogenic response was inhibited by the sialic-acid-containing disaccharide, a strong inhibitor of this lectin. This suggests that lymphocyte cell surface molecules containing sialic acid residues are important for this interaction and may have a structure similar to that of AchatininH receptors. Although this lectin showed strong mitogenicity towards lymphocytes, it showed very weak leucoagglutination. Surprisingly, PHA-induced blastogenesis was inhibited by the same dose of AchatininH as caused mitogenic activity in resting lymphocyte culture. The degree of suppression was higher for the lymphocytes isolated from pregnant rat blood compared to the non-pregnant control. Since the 51Cr-uptake assay and the cell viability test results negate the potential cytotoxic activity of this protein, the immunosuppression induced in the presence of PHA by AchatininH may be the additive effect of two mitogens causing an increased cell-density-dependent arrest. AchatininH does not have complement-like activity, but induces potent polyclonal activation of B cells as measured by the reverse hemolytic plaque assay.

Adult↗