Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Complement Hemolytic Activity Assay”

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 775 records · Page 43Linked to original sources

The third component of complement (C3) bound to tumor target cells enhances their sensitivity to killing by activated macrophages.

The third component of complement (C3) bound to P815 tumor cells enhanced their susceptibility to killing by Corynebacterium parvum-activated murine macrophages (M phi). Hemolytically active normal mouse serum and C5-deficient mouse serum were used to deposit complement (C) on P815 tumor cells, in the absence of exogenous antibody, by an alternative pathway mechanism. Cell-bound C3 was detected and was quantified by using a cellular enzyme-linked immunospecific assay. Activated M phi produced tumor cytolysis in a serum-free 16-hr 51Cr-release assay. The lysis of C-treated tumor cells was increased over targets treated with sera containing 10 mM EDTA, heat-inactivated mouse sera, or medium. In addition, C alone did not cause specific 51Cr release. M phi elicited by casein or PBS did not lyse any of the tumor targets tested. The increase in lysis was dependent on the dilution of serum used, and was strongly correlated with the amount of C3 detected on the tumor cells. The enhanced lysis was abrogated by incubating C3-bearing tumor cells with F(ab')2 fragments of a goat anti-mouse C3 antibody. C treatment did not alter the kinetics of tumor cell lysis, nor did it enhance the binding of the targets to effector cells. These results suggest that C may regulate M phi-mediated killing of tumor cells by increasing the lytic efficiency of M phi that are in contact with target-bound C3.

Animals↗

Perfusion of canine serum over Staphylococcus aureus Cowan 1: Evidence for release of protein A and changes in specific antibody activity.

Sera from three normal dogs were assessed for levels of Clq binding IgG and complement consumption after perfusion over Staphylococcus aureus Cowan I (SAC). Increased levels of Clq binding IgG were detected after perfusion of sera over SAC and were associated with complement consumption. Canine antiserum to human erythrocytes were also perfused over SAC and assessed for Clq binding IgG and hemolytic activity. Increased levels of Clq binding IgG in post-perfusion samples were detected which were associated with a decrease in hemolytic activity. IgG was determined to be present in molecular weight fractions greater than 200,000 M.W. in post-perfusion chromatographically fractionated sera. Moreover, 5% polyethylene glycol (PEG) precipitated IgG from post-perfusion sera was functional in antibody dependent cellular cytotoxicity assays. Putative staphylococcal protein A isolated from post-perfusion sera produced a precipitin band in double diffusion agarose gel studies when reacted with normal human and canine sera. A polypeptide co-migrating with purified protein A could be detected by polyacrylamide gel electrophoresis (PAGE) analysis of the post-perfusion isolated protein A. Addition of purified protein A to canine antiserum resulted in decreased hemolytic activity of the serum which was associated with increased levels of Clq binding IgG.

Animals↗

Prolonged haemolytic anaemia in malaria and autoantibodies against triosephosphate isomerase.

Prolonged haemolysis may accompany infection with Plasmodium falciparum. We observed prolonged haemolysis in 4 of 10 patients with this type of malaria after parasitological cure. IgM antibodies specific for the glycolytic enzyme triosephosphate isomerase were detected in these patients' sera. Clinical recovery and a decrease in haemolysis coincided with a fall in these autoantibodies. In vitro, affinity purified autoantibodies isolated from the sera directed against triosephosphate isomerase induced lysis of erythrocytes and activation of complement as shown by the 51Cr release assay. We assume that autoantibodies against triosephosphate isomerase contribute to the development of prolonged haemolysis and anaemia in P falciparum malaria.

Adult↗

Synthesis of C1 inhibitor (C1-INA) by a human monocyte-like cell line, U937.

Human monocytes are known to synthesize many of the components of complement, including C1-INA. In this report we demonstrate that the human monocyte-like cell line U937 is also capable of synthesizing functional C1-INA. This was shown in several ways, including 1) incorporation of tritiated amino acids into antigenic C1-INA, immunoprecipitation, and detection by fluorography; 2) a sensitive ELISA, which allowed quantitation of antigenic C1-INA in cell lysates, and 3) a C2-dependent hemolytic assay in which the functional activity of U937 C1-INA was assayed. Data from the ELISA indicate that U937 cells contain between 2.1 to 12.8 ng of C1-INA per 1 X 10(6) cells. Furthermore, fluorescence-activated cell sorter analysis revealed that approximately 16% of U937 cells carry C1-INA as a surface bound antigen. Other proteins found to be synthesized by U937 cells include C1r, C8, and possibly alpha-2-macroglobulin. These results suggest that the U937 cell line could be a convenient and valuable model for the study of monocyte C1-INA synthesis and physiology.

Amino Acids↗

Monoclonal antibodies to the chemotherapeutic agent methotrexate: production, properties and comparison with polyclonal antibodies.

Hybridomas that secrete monoclonal antibodies to the chemotherapeutic agent methotrexate (MTX) were produced by fusion of FO myeloma cells with splenocytes obtained from BALB/c mice immunized with L-MTX covalently bound to keyhole limpet hemocyanin (KLH). When the MTX/KLH molar ratio was 430/1 or 530/1 (high MTX series), 238/412 (58%) or 157/405 (39%), respectively, of antibody producing hybridomas secreted only antibodies to MTX. In contrast, only 15/412 (4%) or 54/405 (13%) hybridomas secreted only antibodies to KLH. When the molar ratio was 50/1 (low MTX series), only 14/343 (4%) of the wells contained anti-MTX and 93/343 (27%) contained antibodies to KLH. The predominance of anti-MTX over anti-KLH secretors in the 2 high MTX series, and the reverse predominance of anti-KLH secretors over anti-MTX hybridomas in the low MTX series was highly significant (P less than 0.001). The anti-MTX antibodies were mainly IgG1 with fewer IgG2a and IgG2b subclasses. All were kappa chain isotypes. No IgM or IgA antibodies were detected. Titers and binding constants of monoclonal anti-MTX antibodies in ascites fluid obtained from mice injected with selected cell lines were higher than those of conventional rabbit, mouse, or goat antibodies. Based on results of competitive inhibition radioimmunoassays, the ascites monoclonal antibodies were at least as specific as the conventional antibodies for MTX compared to structurally related compounds. IgG2a and IgG2b antibodies had high titers in complement mediated hemolysis of sheep erythrocytes that contained MTX on the cell surface (E-MTX) and also bound 125I-labeled protein A when complexed to MTX on these cells. IgG1 antibodies were relatively weak in the hemolysis assay and failed to bind 125I-labeled protein A directly. Hemolytic activity and 125I-labeled protein A binding were markedly enhanced when E-MTX cells were treated sequentially with IgG1 anti-MTX then rabbit IgG antibodies to mouse IgG1.

Animals↗

Serum complement changes during double-blind food challenges in children with a history of food sensitivity.

Serum levels of C3, C4, factor B, properdin, total hemolytic complement and alternative-pathway hemolytic activity were measured before and after double-blind food challenge in 23 children with impressive histories of adverse reactions to foods. The 23 subjects had 11 positive food challenges and 12 negative food challenges. Nine patients with reagin-mediated positive food challenges showed increases in all six complement assays after double-blind food challenge, while the group with negative food challenges showed decreases in five of the six assays. The difference between the two groups for complement changes after double-blind food challenge was significant only for the alternative-pathway assay. Individual subject analysis revealed markedly heterogeneous changes in direction and magnitude within both groups for all complement assays. Therefore, it is concluded that measurement of serum complement levels is not a useful test for the clinical evaluation of a patient with suspected food sensitivity.

Adolescent↗

Systemic lupus erythematosus. Some contemporary laboratory aspects.

A summary of some of the important laboratory features of systemic lupus erythematosus (SLE) is presented. Emphasis is given to the sensitivity and specificity of the antinuclear antibody test, the relevance of particular antinuclear antibody patterns, and the status of testing for antibodies to DNA. Serum complement abnormalities in the patient with SLE are briefly reviewed, and the utility of the total hemolytic complement assay is stressed. The increasing evidence for disordered immune regulation in SLE is considered. Particular attention is given to the role of antilymphocyte antibodies and in vitro assays that permit an assessment of functional lymphocyte subsets. The heterogeneity of the SLE patient population and the influence of treatment and/or disease activity on laboratory results is repeatedly emphasized.

Antibodies, Antinuclear↗

C1r, subunit of the first complement component: purification, properties, and assay based on its linking role.

A method to obtain C1r, a subunit of the first complement component, in a highly purified state has been described for the first time. The stepwise method starts with a neutral euglobulin precipitation, after diethylaminoethyl- and carboxymethyl-cellulose chromatography and a final preparative polyacrylamide electrophoresis step. Such C1r preparations are devoid of C1q and C1s activities and show only one protein band on analytic polyacrylamide electrophoresis. Rabbits injected with this preparation produced antisera showing only one precipitation band. The stability of C1r activity was determined under different conditions, and C1r was found to be labile at 37 degrees C, pH 7-8 and low ionic strength. The electrophoretic mobility of purified C1r is that of a beta-globulin on disc acrylamide electrophoresis and on agarose electrophoresis at pH 8.6. Its molecular weight as estimated by sephadex chromatography is 168,100.A sensitive hemolytic assay based on the property of C1r to link C1s to C1q and thereby to generate macromolecular C[unk]1 is described. The number of C[unk]1 molecules generated is stoichiometrically related to the concentration of C1r for a fixed C1q and C1s concentration provided that the titration is carried out below the plateau zone. Macromolecular C1 can be separated from free C1s as the former is cell bound. This method of purification and assay should allow the development of monospecific antisera and further chemical study of C1r.

Beta-Globulins↗

Mutational analysis of the substrate binding site of human complement factor D.

Complement factor D is a serine protease with a single natural substrate, C3b-complexed factor B, and very low catalytic activity against synthetic esters. The recently solved X-ray crystal structure of factor D has demonstrated certain key differences from other serine protease in the conformation of residues of the catalytic triad and the substrate-binding regions. To investigate possible contributions of unique amino acid substitutions to these distinct structural and functional features of factor D, we constructed a series of mutants by substituting trypsin substrate-binding residues for the corresponding factor D residues. Wild-type and seven mutant factor D cDNAs were expressed stably in Chinese hamster ovary cells, and the recombinant proteins were purified from culture supernatants and assayed by hemolytic, proteolytic, and esterolytic assays. The combined results indicate that residues Thr-198, Ser-199, Arg-202, and perhaps also Val-203 provide determinants for substrate binding and catalysis. The data also provide additional support for the hypothesis that the proteolytically active conformation of the active center of factor D is induced by its substrate, C3bB.

Amino Acid Sequence↗

Several epitopes on native human complement C9 are involved in interaction with the C5b-8 complex and other C9 molecules.

Ten monoclonal antibodies (mAb) against native human C9 exhibiting various inhibitory effects on the hemolytic activity of C9 (Bausback, J., Kontermann, R. and Rauterberg, E. W., Immunobiology 1988. 178: 58) were further analyzed regarding their reactivities with monomeric C9 (mC9), polymerized C9 (pC9), and the non-lytic SC5b-9 complex in enzyme-linked immunosorbent assay and with the membrane attack complex (MAC) generated on rabbit erythrocytes analyzed by flow cytometry. In addition, the inhibitory effects of mAb on zinc-induced C9 polymerization were investigated. One epitope of the C-terminal half of C9b exposed on the surface of pC9 and the MAC seems not to participate directly in lytic function or polymerization since no inhibitory effect of the respective mAb was observed. The nine other mAb directed against epitopes of the C9a part exhibit various inhibitory potentials. The mAb inhibit either hemolysis or polymerization, or both processes. Due to the reactivity with the tested antigens the mAb can be divided into two groups. mAb of the first group bind with nearly the same affinity to all four antigens, whereas mAb of the second group react preferentially with mC9 while their affinity to pC9, SC5b-9 and the MAC is reduced. Comparison of reaction patterns and inhibitory effects strongly suggest that different epitopes on the surface of native C9 are involved in interaction of C9 with C5b-8 and/or in C9-C9 interaction. The finding that mAb inhibiting polymerization of C9 in vitro have no inhibitory effect on hemolysis confirms that C9 polymers are no prerequisite for lysis.

Antibodies, Monoclonal↗

Inherited deficiency of properdin and C2 in a patient with recurrent bacteremia.

A nine-year-old white boy with recurrent pneumococcal bacteremia is described. His serum had no hemolytic activity in either the classic or alternative complement pathways. Absence of classic pathway activity was secondary to a homozygous deficiency of C2. The parents had half-normal levels of C2, compatible with an autosomal recessive mode of inheritance. Measurement of serum properdin levels by radial immunodiffusion and enzyme-linked immunoabsorbent assay revealed a profound deficiency in the patient, normal levels in the father, and half-normal levels in the mother, suggesting X-linked inheritance of the deficiency. Addition of purified properdin to the patient's serum fully reconstituted the alternative pathway function. This patient's unique combination of inherited deficiencies of properdin and C2 is a likely explanation for his susceptibility to bacterial infection.

Child↗

Neutrophil phagocytic and serum opsonic response of the foal to Corynebacterium equi.

This study was undertaken to examine the neutrophil response to Corynebacterium (Rhodococcus) equi, and to assess the possibility of neutrophil immaturity or malfunction in predisposition to C. equi pneumonia in foals. Neutrophil phagocytosis of Corynebacterium (Rhodococcus) equi was studied in foals from birth to 6 months of age. Chemiluminescence (CL) and bactericidal assays were used to assay the phagocytic response of peripheral blood neutrophils to C. equi in vitro. Results of in vitro bactericidal and CL assays indicate that foal neutrophils are able to ingest and kill C. equi, however are significantly more efficient in the presence of opsonization with specific antibody, and less importantly complement. Neutrophil CL was significantly decreased (p greater than .05) or eliminated by antibody adsorption, heat-inactivation, or removal of serum from the assay. The ability of the neutrophil to kill C. equi, as measured by in vitro bactericidal assay, was greater than 90% killing by 6 hours, in the presence of C. equi antiserum. Bactericidal activity was reduced to less than 40% killing when C. equi adsorbed serum was used as the opsonin source. As CL results indicated complement involvement in the opsonization of C. equi, the temporal development of hemolytic and conglutinating complement was measured in normal and C. equi infected foals. Neither defects nor age-related suppression of neutrophil function or complement activity were detected in C. equi affected foals, suggesting that these are not pathogenic mechanisms involved in foal pneumonia.

Animals↗

Visualization of amylase secretion from individual pancreatic acini.

To assess the secretion of individual rat pancreatic acini, we developed a reverse hemolytic plaque assay that allows for a direct visualization of amylase release. This release was detected around secreting cells by the presence of hemolytic plaques that resulted from the complement-mediated lysis of red blood cells bearing amylase-antiamylase complexes bound to protein A. Controls showed that these plaques reflected specifically the active secretion of amylase. Quantitation of hemolytic plaques showed that after a 30-min incubation approximately 50% of the acini secreted under basal conditions. Stimulation of amylase release by increasing concentrations of carbamylcholine resulted in a dose-dependent recruitment of secreting acini as well as in a time-dependent enhancement in the response of individual acini. Under all conditions, the wide distribution of hemolytic plaque sizes indicated large differences in the secretory output of individual acini. Thus, using a new method to directly visualize and quantitate amylase secretion, we have provided evidence for a functional heterogeneity of pancreatic acini.

Amylases↗

Monoclonal antibodies to human C4. I. Purification of hemolytically active C4 from small volumes of normal serum.

A C4-specific monoclonal antibody has been developed that allows the rapid purification of C4 from whole serum or plasma by affinity chromatography. 1- to 2-ml volumes of serum are loaded onto a small column of antibody-coupled agarose beads and washed through with buffer. C4 is eluted by adjusting the pH to 11.2. The purified C4 is free of extraneous proteins as detected by SDS-polyacrylamide gel electrophoresis and retains high activity as assessed by hemolytic assay and incorporation of [14C]-methylamine. Columns are reusable, and the entire procedure can be adapted for large-scale purifications.

Antibodies, Monoclonal↗

Leukocyte-derived complement inhibitor. IV. The functional properties of C1 bound to erythrocytes pretreated with leukocyte culture supernatant.

E, pretreated with leukocyte cultures supernatant (ES), binds C1 through C1q; ES and EIgM that bind the same amount of C1 as measured in a hemolytic assay have the same uptake of 125I-C1q; ESC1q and EIgMC1q, carrying the same number of molecules of CUq per cell, have the same uptake of CUr and CUs; soluble immune compleses prevent the binding of C1 and C1q to ES. The activity of C1 bound to ES is impaired; ESC1 can react with C4 but not with C2. The C4 turnover and the C1 ING turnover by ESC1 are reduced so that ES-bound C1 is protected from destruction by C1 ING. These modifications are fully reversed when C1 is transferred from ES to EA:C1 recovers its ability to react with C2, and C1 INH. Thus the C1s activity can be modulated inside the C1 molecular complex upon binding of C1q to a lymphocyte product. In addition, the 125I-C1q uptake is proportional to the amount of IgM hemolysin used to sensitize E; it has, however, an exponential relationship to the amount of IgG or S used to sensitize E. The ratio of 125I-C1q uptake towhole C1 uptake measured in a hemolytic assay is lowerthan 2. This indicates that one molecule of IgM is sufficient to bind one molecule of C1q on E, that several molecules of IgG or S are required to bind one molecule of C1q, and that one molecule of C1q is sufficient to create a lytic site on E.

Animals↗

A biotin-avidin sandwich ELISA for quantification of intact complement component C9. The sera from hereditary C9 deficient individuals completely lack C9.

A two-site sandwich ELISA method was developed for quantitating intact C9 protein using MoAb P40 (anti-C9b antibody). This antibody reacted with monomeric C9 but not with polymerized C9. MoAb P40 was used as a capture antibody and MoAb X195 (anti-C9a antibody) as a detection antibody. This method is highly sensitive and can detect approximately 0.5 ng/ml of native C9. No cross-reactivities of either C6, C7, or C8 were observed even at concentrations of 10 micrograms/ml per component. In addition, this method allows for measurement of only intact C9 molecules, eliminating the interference of polymerized C9 or inactivated C9. Using this assay, no C9 at all was detected in sera from inherited C9 deficient individuals, including both healthy blood donors and patients with meningococcal meningitis; although by hemolytic assay, C9 levels were reported to be less than 0.2% those of NHS. Therefore, this two-site sandwich ELISA method can replace the hemolytic assay, and is especially useful for measuring small amounts of C9 in serum.

Animals↗

A second variant of properdin deficiency: the detection of properdin at low concentrations in affected males.

A selective deficiency of properdin (P) was identified in a 58-year-old male and in his 29-year-old nephew, both of whom were clinically healthy. As determined by different immunochemical methods P at low concentrations (about 2 mg/l) was detectable in serum and plasma. Three female relatives, including the mother and daughter of one of the P-deficient males showed moderately low P concentrations. The findings clearly suggested that the deficiency was inherited as an X-linked trait. Three males belonging to another family with P deficiency also showed detectable P concentrations. By contrast, no P (less than 0.1 mg/l) was found in 8 males belonging to three other families. We suggest that there are two variants of X-linked P deficiency: P deficiency type 1, characterized by extremely low P concentrations (less than 0.1 mg/l); and P deficiency type 2 recognizable by P concentrations of about 2 mg/l. The P detected in P deficiency type 2 had subunits of normal molecular weight (52 kilodaltons), but eluted in a lower molecular weight range than did the P of normal serum, either on gel filtration (Ultrogel AcA 22) or on size exclusion chromatography (TSK-4000). The evidence suggested that the P concentration may be one determinant of P oligomer formation. P-deficient serum type 2 did not support fluid phase C3 cleavage in the presence of such alternative pathway activators as inulin and zymosan, nor did it support efficient lysis of guinea pig erythrocytes in agarose gel. By contrast, rabbit erythrocytes were efficiently lyzed, but at a slow rate. P-deficient serum type 1 did not support lysis of rabbit erythrocytes in the assay system used. The reaction was clearly promoted by very low concentrations of purified P. Partially purified P from a male with P deficiency type 2 was shown to be hemolytically active. Further evidence of P function in P deficiency type 2 was obtained by using IgG-presensitized serogroup W-135 meningococci in an alternative pathway-mediated serum bactericidal assay.

Adult↗

Complement inhibitor of C5 activation from the soft tick Ornithodoros moubata.

Blood-feeding ticks must control C activation or be damaged by the host inflammatory response. We report the characterization and expression of a novel, relatively small, broad-acting C inhibitory protein (termed OmCI) from the soft tick Ornithodoros moubata. The native 17-kDa nonglycosylated protein inhibits both human and guinea pig classical and alternative C activation pathways. The IC50 values for each pathway were 12 and 27 nM, respectively, in hemolytic assays using human serum diluted 40-fold. The cDNA encodes a protein of 168 aa, including an 18-aa secretion signal sequence that is absent in the mature form. The inhibitor has 46% amino acid identity with moubatin, a platelet aggregation inhibitor also from O. moubata that is an outlying member of the lipocalin family. Native OmCI had no inhibitory effect on the addition of C8 and C9 to preformed C5b-C7 and C5b-C8 to form the membrane attack complex and no effect on the rate of C3a production by the C3 convertase enzymes C4bC2a, C3(H2O)Bb, or C3bBb. Both recombinant and native OmCI abolish production of C5a by human classical (C4bC3bC2a) and alternative (C3bC3bBb) C5 convertases. Addition of excess C5 but not C3 competes away the inhibitory activity of OmCI, indicating that OmCI targets C5 itself rather than inhibiting the C5 convertase C4bC3bC2a itself. Direct binding of OmCI to C5 was demonstrated by Western blotting and gel filtration chromatography using 125I-labeled proteins. OmCI is the first lipocalin family member shown to inhibit C and also the first natural inhibitor that specifically targets the C5 activation step.

Amino Acid Sequence↗