Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Complement C5”

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 541 records · Page 30Linked to original sources

Complement activation during hemodialysis: laboratory evaluation of hemodialyzers.

A laboratory method that facilitates delineation of the complement-activating characteristics of various dialyzers under defined conditions has been developed. Results obtained by circulating reconstituted human serum through these devices and measuring time-dependent production of both C3a and C5a antigens are entirely consistent with previous clinical observations. For example, the complement-activating potential of dialyzer membranes could be described as high (cuprammonium cellulose), moderate (cellulose acetate), or low (polycarbonate or polyacrylonitrile). Furthermore, these techniques provided the opportunity to identify membrane characteristics that are not readily defined by clinical studies alone. Specifically, membranes that transported and absorbed C5a antigen were readily identified by these methods. Additionally, laboratory evaluation provided the unique ability to define the efficiency of complement activation taking place on the membrane surface. Results of these investigations are compatible with a hypothetical model that not only describes the properties of a typical dialyzer membrane but may be generally applicable to other biomaterials as well.

Acrylic Resins↗

Is contact activation of the coagulation system involved in the genesis of the first-use syndrome?

A number of mechanisms have been thought to be involved in the pathogenesis of the first-use syndrome. These include IgE antibody-mediated response to ethylene oxide-related antigens, membrane activation of the alternative complement pathway, activation of tissue mast cells and basophils by materials released from the dialyzer into the circulation, and transfer of bacterial products through high flux dialyzer. However, the possible role of the activation of blood coagulation system and platelets during dialysis has not been considered. The present communication reviews the theoretical basis for a possible connection between dialysis-induced activation of platelets and coagulation system with the first-use syndrome. Although the available data concerning the activation of intrinsic coagulation pathway during dialysis are conflicting, there is no controversy as to the occurrence of platelet activation. It is suggested that biochemical events triggered by activation of these systems may in part contribute to the genesis of first-use syndrome.

Anaphylaxis↗

Complement activation produced by biomaterials.

The complement-activating potential of biomaterials may be defined by appropriate application of C3a and C5a anaphylatoxin radioimmunoassays. Studies performed with hemodialysis membranes demonstrate that blood contact with these model biomaterials results in complement activation that may be ascribed to specific properties of the material surface. Further delineation of these chemical and physical properties may permit design of biocompatible materials.

Anaphylatoxins↗

Leishmania: chemotaxic responses of promastigotes and macrophages in vitro.

Promastigotes of Leishmania move progressively up a concentration gradient of: various sugars, specific sugars attracting individual species of Leishmania; serum albumin and another unidentified constituent of serum; hemoglobin; and a factor generated by promastigotes in NNN medium. The movement of promastigotes up a concentration gradient of serum is optimal at a pH of 6.4 to 6.8 and a temperature of 28 degrees C and above. Cholinergic and adrenergic agents did not affect the attraction of serum for promastigotes, and cyclic nucleotides, inflammatory mediators, and macrophage products were not chemotaxic. It is postulated that the sugar chemotaxins influence the movement of promastigotes from the sand fly midgut to the esophagus, and serum chemotaxins may play a part in the entry of promastigotes into the skin of a mammal from the proboscis. Macrophages, the host cell of the obligate intracellular Leishmania species, were not attracted to any product of promastigotes. When, however, promastigotes interact with serum, complement is activated to form C5a which is chemotaxic for macrophages. Activation of complement by promastigotes is, at least partially, by the alternate pathway. Other chemotaxins resulting from promastigote interaction with serum may also be present. Promastigotes may also produce inhibitors of C5a activity.

Amino Acids↗

The role of black-pigmented Bacteroides in human oral infections.

Today, 10 black-pigmented Bacteroides (BPB) species are recognized. The majority of these species can be isolated from the oral cavity. BPB species are involved in anaerobic infections of oral and non-oral sites. In the oral cavity, BPB species are associated with gingivitis, periodontitis, endodontal infections and odontogenic abscesses. Cultural studies suggest a specific role of the various BPB species in the different types of infection. Bacteroides gingivalis is closely correlated with destructive periodontitis in adults as well as in juveniles. Bacteroides intermedius seems to be less specific since it is found in gingivitis, periodontitis, endodontal infections and odontogenic abscesses. The recently described Bacteroides endodontalis is closely associated with endodontal infections and odontogenic abscesses of endodontal origin. There are indications that these periodontopathic BPB species are only present in the oral cavity of subjects suffering from periodontal breakdown, being absent on the mucosal surfaces of subjects without periodontal breakdown. BPB species associated with healthy oral conditions are Bacteroides melaninogenicus, Bacteroides denticola and Bacteroides loescheii. There are indications that these BPB species are part of the normal indigenous oral microflora. Many studies in the past have documented the pathogenic potential and virulence of BPB species. This virulence can be explained by the large numbers of virulence factors demonstrated in this group of micro-organisms. Among others, the proteolytic activity seems to be one of the most important features. Several artificial substrates as well as numerous biological proteins are degraded. These include anti-inflammatory proteins such as alpha-2-macroglobulin, alpha-1-antitrypsin, C3 and C5 complement factors and immunoglobulins. B. gingivalis is by far the most proteolytic species, followed by B. endodontalis. Like other bacteria, the lipopolysaccharide of B. gingivalis has shown to be active in bone resorption in vitro and is capable in stimulating interleukin-1 production in human peripheral monocytes. Based on the well documented association with periodontal disease and the possession of relevant virulence factors, BPB species must be considered as important micro-organisms in the etiology of oral infections. B. gingivalis seems to be the most pathogenic and virulent species.

Bacteroides↗

The natural modulation of the amplification phase of complement activation.

As C3 cleavage represents the most critical step in the elaboration of the biologic effects of the complement system, the modulation of this reaction by formation and function of the C3b-dependent C3 convertase may well determine whether the initial activation of the complement sequence eventuates in beneficial or detrimental effects to the host. Stabilization of the amplification C3b-dependent convertase, C3bBb, is achieved with P and C3NeF, respectively, after their binding which exhibits different molecular and temperature requirements. Control of this amplifying step occurs at three levels: intrinsic decay of the inherently labile C3bBb convertase; extrinsic decay by displacement of Bb from the convertase with beta1H; and inactivation by C3bINA of C3b after its generation from native C3 or removal of protective Bb by intrinsic or extrinsic decay. In the presence of the stabilizing factors the control proteins must function in sequence with beta1H-mediated decay preceding C3b inactivation.

Complement C3↗

Altered free cytosolic calcium changes and neutrophil chemotaxis in patients with juvenile periodontitis.

Nearly 70-75% of patients with localized juvenile periodontitis (JP) have abnormal polymorphonuclear leukocytic (PMN) chemotaxis. The objective of this study was to determine whether the lower chemotactic response in PMNs from JP patients is associated with a defect in intracellular signal transduction, as measured by stimulus-induced changes in free cytosolic calcium (Ca2+) mobilization. We report that peptide chemoattractants such as N-formyl-methionyl-leucyl-phenylalanine (fMLP) and the complement fragment C5a in direct comparative studies induced lower amounts of initial Ca2+ mobilization in PMNs from JP patients than healthy controls, as monitored by intracellular fura-2 fluorescence. The initial resting levels of free cytosolic Ca2+ in PMNs from JP patients and normal individuals were found to be similar. fMLP and C5a both mobilized Ca2+ in PMNs in a dose-dependent manner. Treatment of PMNs from 0.16 to 20 nM fMLP and 0.2 to 20 nM C5a resulted in elevated levels of free cytosolic Ca2+. However, above 20 nM fMLP and 5 nM C5a concentrations the extent of total Ca2+ mobilization did not differ significantly. Although fMLP and C5a caused Ca2+ mobilization in PMN cells from JP and healthy control subjects, fMLP stimulation induced higher levels of free cytosolic Ca2+ mobilization in PMN cells from healthy control subjects (141.29 +/- 25.55 nM/2 x 10(6) PMNs), than PMNs from JP patients (62.33 +/- 23.76 nM/2 x 10(6) PMNs). Similarly C5a induced higher levels of Ca2+ mobilization in PMNs from healthy control individuals (130.43 +/- 18.26 nM Ca2+/2 x 10(6) PMNs)O, when compared to JP patients (49.92 +/- 14.92 nM Ca2+/2 x 10(6) PMNs).(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

A skin chamber technique for leukocyte migration studies; description and reproducibility.

An in vivo skin chamber method, using lesions obtained by suction, was evaluated for studying leukocyte migration. No dyspigmentation or scar was seen after two months. The number of leukocytes accumulated in the collection chamber was 6.9 X 10(7)/cm2 and was correlated to the area of the lesion (r = 0.964). Reproducibility, essentially unchanged over an extended period, was 19% for one skin chamber and 13.6% for determinations with duplicate chambers; by comparison, with an under-agarose technique, the coefficient of variation for migration was low on consecutive days (6%), but much higher (29%) when determined over a longer period. No correlation was found between the skin chamber technique and chemotaxis or random migration determined with the under-agarose technique (r = -0.38 and 0.12 respectively). Zymosan-activated serum attracted a higher number of leukocytes than did fresh serum, whereas heat-inactivated serum attracted a lower number. This attraction seems to be partly caused by C5a, as a higher C5a-concentration was detected in zymosan-activated serum and in fresh serum after 24 hours in a collection chamber than in heat-inactivated serum.

Adult↗

Monocyte chemotaxis: a method for routine in vitro investigation using lactic dehydrogenase as a marker enzyme.

Using the cytoplasmic enzyme lactic dehydrogenase (LDH) as a marker, a method for routine measurements of highly purified monocyte chemotaxis is described. Standardization of this assay was carried out in order to achieve objective and reproducible results. The LDH-method showed a good correlation with both the 51Cr-chemotactic assay and the leading-front technique. The sensitivity of the LDH-method could be compared with the 51Cr-assay and was significantly higher compared to the leading-front technique. Being objective, inexpensive and requiring only a photometer as equipment, the LDH-method was proved to be suitable for routine investigations of monocyte chemotaxis as a part of monocyte functional activity in laboratories engaged in leukocyte research.

Cell Separation↗

Neutrophil Mac-1 and MEL-14 adhesion proteins inversely regulated by chemotactic factors.

The neutrophil Mac-1 and gp100MEL-14 adhesion proteins are involved in neutrophil extravasation during inflammation. Both the expression and activity of Mac-1 are greatly increased after neutrophil activation. In contrast, neutrophils shed gp100MEL-14 from the cell surface within 4 minutes after activation with chemotactic factors or phorbol esters, releasing a 96-kilodalton fragment of the antigen into the supernatant. Immunohistology showed that gp100MEL-14 was downregulated on neutrophils that had extravasated into inflamed tissue. The gp100MEL-14 adhesion protein may participate in the binding of unactivated neutrophils to the endothelium; rapid shedding of gp100MEL-14 may prevent extravasation into and damage of normal tissues by activated neutrophils.

Animals↗