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Regionally variable pulmonary artery responses to C3a.

Products of the complement (C) cascade may have direct effects on pulmonary vascular tissue and contribute to pulmonary vasoconstriction in states of C activation. We studied the effects of C3a, a C-derived vasoactive peptide, on isolated rabbit hilar (HPA) and main pulmonary arteries (MPA). C3a elicited concentration-dependent constriction of HPA (10(7) M to 5 x 10(7) M) but minimal response in MPA at all concentrations tested. The difference between HPA and MPA responses was significant (P less than 0.05, paired t test). To evaluate HPA desensitization to C3a, the peptide was reapplied at 60 min in some tissues and at 120 min in others. All tissues consistently exhibited less constriction at 60 min than observed with previous exposures. Histamine contribution to the HPA response to C3a was determined by exposing the tissues for 30 min before C3a application to pyrilamine (1 x 10(-5) M), an histamine H1-receptor antagonist. Pyrilamine reduced the HPA response to C3a by 70-85%. We conclude that 1) isolated rabbit PA responses exhibit regional variability to C3a over a range of concentrations; 2) C3a desensitizes HPA for at least 60 min, but the tissue demonstrates variable recovery within 120 min; and 3) HPA responses to C3a are reduced by pyrilamine, an H1-receptor antagonist.

Animals↗

Identification of ligand effector binding sites in transmembrane regions of the human G protein-coupled C3a receptor.

The human C3a anaphylatoxin receptor (C3aR) is a G protein-coupled receptor (GPCR) composed of seven transmembrane alpha-helices connected by hydrophilic loops. Previous studies of chimeric C3aR/C5aR and loop deletions in C3aR demonstrated that the large extracellular loop2 plays an important role in noneffector ligand binding; however, the effector binding site for C3a has not been identified. In this study, selected charged residues in the transmembrane regions of C3aR were replaced by Ala using site-directed mutagenesis, and mutant receptors were stably expressed in the RBL-2H3 cell line. Ligand binding studies demonstrated that R161A (helix IV), R340A (helix V), and D417A (helix VII) showed no binding activity, although full expression of these receptors was established by flow cytometric analysis. C3a induced very weak intracellular calcium flux in cells expressing these three mutant receptors. H81A (helix II) and K96A (helix III) showed decreased ligand binding activity. The calcium flux induced by C3a in H81A and K96A cells was also consistently reduced. These findings suggest that the charged transmembrane residues Arg161, Arg340, and Asp417 in C3aR are essential for ligand effector binding and/or signal coupling, and that residues His81 and Lys96 may contribute less directly to the overall free energy of ligand binding. These transmembrane residues in C3aR identify specific molecular contacts for ligand interactions that account for C3a-induced receptor activation.

Amino Acid Sequence↗

Influence of two different perfusion systems on inflammatory response in pediatric heart surgery.

BACKGROUND: This study tests the hypothesis that a cardiopulmonary bypass system that combines complete heparin-coating, a centrifugal pump, and a closed circuit in comparison with a conventional system (uncoated system, roller pump, and hard shell venous reservoir) attenuates the inflammatory response in pediatric heart surgery. METHODS: In a prospective randomized controlled clinical study 40 consecutive children weighing 10 kg or less were included and divided into two groups. Concentrations of complement proteins (C3a, sC5b-9, C4d, and Bb), granulocyte degranulation products (polymorphonuclear [PMN] elastase), and proinflammatory cytokines (tumor necrosis factor [TNF]-alpha, interleukin [IL]-6, and IL-8) were measured. RESULTS: C3a and sC5b-9 concentrations were lower (C3a, p < 0.001; sC5b-9, p = 0.01) in the combined (heparin-coated/centrifugal pump/closed reservoir) group, the peak values being 58% and 37% of conventional group values. The Bb- and C4d-fragment values indicated activation of the complement system through the alternative pathway in both groups. PMN elastase concentrations were lower (p = 0.02) in the combined group, the peak values being 43% of conventional group values. There were no significant intergroup differences regarding TNF-alpha, IL-6, or IL-8 concentrations. CONCLUSIONS: The use of a fully heparin-coated system, a centrifugal pump, and a closed circuit during CPB in children (10 kg or less) leads to a lower degree of complement activation and PMN elastase release compared with a conventional system.

Adolescent↗

Effect of extracorporeal membrane oxygenation on leukocyte function in neonates.

The impact of extracorporeal membrane oxygenation (ECMO) on neonatal leukocyte content and function was examined in six patients. Patients were treated with ECMO for a mean of 134 h (range 44-246 h). Absolute neutrophil counts decreased from 14679 +/- 2291/mm3 to 7791 +/- 1672/mm3 after 2 h of ECMO. However, neutrophil phagocytosis and oxidative burst remained unchanged during the first 48 h of bypass. Monocyte counts also decreased during bypass, and at times were undetectable in 50% of patients. Monocyte HLA-DR content was decreased compared to normal cord blood prior to initiation of ECMO, and remained low throughout ECMO. However, the content increased significantly after termination of bypass. Plasma C3a levels increased transiently, paralleled by an increase in neutrophil CR3 expression. While moribund infants had some impairment of host defenses prior to ECMO, there was no further impact of ECMO per se on the parameters measured, other than transient complement activation and decreased monocyte counts.

Complement Activation↗

Differential regulation of the C3a and C5a receptors (CD88) by IFN-gamma and PMA in U937 cells and related myeloblastic cell lines.

We have analyzed the induction of the receptor for the anaphylatoxic peptide C3a (C3aR) by the immunomodulator IFN-gamma, the phorbol ester PMA, and dibutyryl cAMP (Bt2cAMP) in comparison with the C5a receptor (C5aR, CD88). For U937 cells, IFN-gamma and Bt2cAMP up-regulated the C3aR to the same extent, whereas Bt2cAMP was 20-fold more effective in C5aR induction. PMA increased the expression of the C5aR, and acted synergistically with IFN-gamma. In contrast, PMA did not increase specific 125I-hC3a binding, and actually antagonized C3aR induction by IFN-gamma. Two related human cell lines of the myeloblastic/monocytic lineage, HL-60 and Mono Mac 6, showed inducibility of the C3aR similar to U937 cells. The two receptors showed subtle differences in signal transduction. Despite comparable numbers of both receptors, IFN-gamma potentiated activation of the C5aR but not the C3aR, as measured by an increase in free cytosolic Ca2+ upon ligand activation. Interestingly, Bt2cAMP-treatment led to a functional response to C3a in U937 cells. Such differences in receptor regulation and signaling might underlie the partly differing physiologic effects of C3a and C5a on, for example, chemotaxis, induction of oxidative burst, or immunoregulatory functions.

Acetylglucosaminidase↗

Complement activation and the prognostic value of C3a in patients at risk of adult respiratory distress syndrome.

In vivo and in vitro studies have shown that complement activation plays an important role in the pathogenesis of the adult respiratory distress syndrome (ARDS). In a prospective study of polytrauma patients at risk of ARDS (n = 38) complement parameters were determined over a period of 14 days in serial plasma samples (obtained every 6 h during the first 48 h). Polytrauma induced a rapid and remarkable complement activation. Low levels of the complement proteins C3, C4, C1 inhibitor (C1 INH) factor I and factor H during the first 48 h indicated complement consumption in all patients. Elevated C3a levels in the first few hours after injury were associated with the later development of ARDS. A more sensitive indicator than C3a alone was the calculated C3a:C3 ratio discriminating ARDS and non-ARDS patients. A second rise of C3a levels and C3a:C3 ratio from day 4 on paralleled the course of extravascular lung water. To assess the mode of complement activation, the activation-specific protein complexes C1rC1s-C1 INH and C3b(Bb)P were measured in some of the patients. We demonstrate that in the first 48 h complement activation occurred via the alternative pathway only and was later followed by an additional activation via the classical pathway. Our observations suggest that monitoring of C3a and C3 in plasma can identify polytrauma patients at high risk for ARDS at an early stage of the disease.

Adolescent↗

Effects of inhibition of complement activation using recombinant soluble complement receptor 1 on neutrophil CD11b/CD18 and L-selectin expression and release of interleukin-8 and elastase in simulated cardiopulmonary bypass.

The inflammatory response to cardiopulmonary bypass includes activation of complement and induction of several neutrophil activation pathways. A recombinant soluble form of complement receptor 1 was used as a specific inhibitor of complement activation in simulated cardiopulmonary bypass circuits. Substantial complement activation was observed in these circuits with progressive accumulation of both plasma C3a and terminal complement complex. Soluble complement receptor 1 resulted in a significant reduction in C3a levels (p < 0.01) but did not inhibit terminal complement complex generation. A marked rise in neutrophil CD11b/CD18 expression, simultaneous loss of L-selectin expression, and a progressive accumulation of plasma elastase-alpha 1-antitrypsin occurred and were not affected by soluble complement receptor. However, generation of interleukin-8 in the circuits was inhibited (p < 0.05) by pretreatment with soluble complement receptor. These data suggest that changes in neutrophil activation seen during cardiopulmonary bypass may not be induced directly by anaphylatoxin generation.

CD11 Antigens↗

Alternative pathway activation of the complement system in preterm infants with early onset infection.

The increased incidence of infection in preterm neonates has been related in part to their relative deficiency of most complement components, because complement is known to participate in the defense against bacterial and viral infections. In a prospective study, complement activation products were determined in 52 preterm infants. Twenty preterm infants suffered from proven early onset infection, 11 infants were presumed to suffer from infection, which could not be confirmed. Twenty-one preterm infants without infection or perinatal asphyxia formed the control group. EDTA plasma was obtained within the first 6 h after birth, and follow-up examinations were done in 15 patients with proven infection during the next 24 h. The complement activation products C3a-desArg, C3bBbP, and sC5b-9 were measured with enzyme immunoassay systems. In preterm neonates with early onset infection, a significant elevation of C3a-desArg was found in the very early course of the disease. C3a-desArg generation resulted from alternative pathway activation as shown by a concurrent increase of C3bBbP concentration. In addition, significantly higher concentrations of sC5b-9 predicted infection in the first few hours after birth. Thus, despite very low levels of native complement proteins, preterm babies are able to generate remarkable amounts of activation products of the complement cascade. The elevation of these activation products preceded by hours significant changes of routine laboratory markers of infection, such as leukocyte count, differential blood count, and C-reactive protein. Thus they might help to identify preterm neonates with severe systemic infection earlier than other laboratory parameters.

Age of Onset↗

Functional activities of synthetic anaphylatoxic peptides in widely used biological assays.

A comparison study was carried out between the modern ATP release assay (ARA) with guinea-pig platelets and the traditional guinea-pig ileum contraction assay (ICA). The biological activities of the anaphylatoxin C3a and synthetic C3a analogue peptides were determined in both assays. In dose-response curves with C3a, a human C3a peptide with the last 21 amino acids of the C terminus (C3a 56-77) and a peptide with 13 amino acids which was acylated N-terminal with the aromatic fluorenylmethoxycarbonyl group and an aminohexanoyl group (Fmoc-Ahx YRRGRAAALGLAR) were tested. The ARA turned out to be 100 times more sensitive than the ICA. In contrast to previous reports the 21 amino acid long C3a analogue peptide did not exhibit full C3a activity but only 7% (ARA) or 12% (ICA). The potentiation of biological activity in the ARA by coupling non-peptide acyl-residues N terminal to peptide C3a analogues could be confirmed with Fmoc-Ahx-YRRGRAAALGLAR in the ICA. In addition, the tri-peptide Fmoc-Ahx-LAR displayed C3a specific activity in the ICA demonstrated by desensitization experiments.

Adenosine Triphosphate↗

Elevated production of neutrophil leukotriene B4 precedes pulmonary failure in critically ill surgical patients.

Leukotriene B4, a potent neutrophil chemotactic factor, is also made by the neutrophil. Neutrophil function was studied in 12 patients at risk for the development of adult respiratory distress syndrome (ARDS) after admission to the surgical intensive care unit (ICU) to test the hypothesis that increased generation by the neutrophil generation of this mediator precedes the development of pulmonary failure. Peripheral blood neutrophils were tested for chemotaxis to f-met-leu-phe (fMLP) and leukotriene B4 (LTB4) and the generation of LTB4. Plasma was collected simultaneously for assay of C3a desArg levels. Five patients had ARDS a mean of 2.2 +/- 0.25 days after admission to the ICU. Neutrophil generation of LTB4 was significantly enhanced on ICU day 1 in these patients as compared with patients at risk for ARDS but not developing the syndrome (119.4 +/- 6.1 versus 101.0 +/- 5.1, per cent control, p less than 0.05). Chemotaxis to fMLP and LTB4 was significantly reduced in both groups of patients. However, neutrophil chemotaxis improved in patients who did not have pulmonary failure during the time in the ICU, whereas neutrophil chemotactic responsiveness worsened in patients who did have pulmonary failure. Plasma C3a desArg levels were significantly elevated over normal laboratory values on ICU day 1 in the ARDS patients (317.2 +/- 74.0 versus 132.0 +/- 16.0 milligrams per milliliter, p less than 0.01). These data indicate that LTB4 production by the neutrophil occurs concomitantly with complement activation, is a predictor of subsequent ARDS and may play a significant role in the development of pulmonary failure in critically ill surgical patients.

Chemotaxis, Leukocyte↗

Regulation of IL-6 synthesis in human peripheral blood mononuclear cells by C3a and C3a(desArg).

The anaphylatoxin C3a has been reported to have immunomodulatory effects on a number of different cell types. In this study we investigated the effects of C3a and C3a(desArg) on gene expression and protein secretion of IL-6 in human PBMCs, either alone or in combination with LPS or IL-1beta. C3a or C3a(desArg) alone exhibited no effect on the expression or secretion of IL-6. However, when PBMC were stimulated with LPS or IL-1beta, both C3a and C3a(desArg) were found to enhance IL-6 release by PBMC in a dose-dependent manner. Since C3a has been shown to induce PGE2 production by monocytes, and PGE2 has been shown to influence cytokine production, we investigated the potential role of PGE2 in C3a-mediated enhancement of LPS- and IL-1beta-induced IL-6 production. Indomethacin blocked PGE2 release, but had no influence on the observed effects of C3a, suggesting that the effects of C3a on IL-6 production are independent of PGE2 formation by monocytes. Northern blot analysis showed that C3a as well as C3a(desArg) enhanced LPS-induced mRNA levels for IL-6. Pretreatment of PBMCs with pertussis toxin blocked the functions of C3a and C3a(desArg), indicating that the actions of these two molecules are mediated by a G protein-coupled pathway. Furthermore, we investigated the effects of C3a and C3a(desArg) on induction of NF-kappaB and activating protein-1 binding. Both molecules enhanced LPS-induced NF-kappaB and activating protein-1 binding activity. These results demonstrate the capacity of intact C3a and its circulating des-Arg form to exert immunmodulatory effects in vitro.

Amino Acid Sequence↗

Human monocyte-derived dendritic cells are chemoattracted to C3a after up-regulation of the C3a receptor with interferons.

The anaphylatoxin C3a is an important inflammatory mediator in the innate and adaptive immune systems. Recent reports in various animal models have fostered the role of C3a in mediating allergic reactions such as pulmonary allergies. However, data in humans are limited and the cellular targets for C3a are not fully understood. We sought to explore human dendritic cells as a new target for C3a, because C3a receptor (C3aR) expression has been described on myeloid cells, and dendritic cells are likely make contact with C3a at sites of inflammatory reactions. In this study, we demonstrated the expression of the C3aR on human monocyte-derived dendritic cells (MoDC) and its up-regulation by interferon (IFN)-alpha, IFN-gamma and prostaglandin E2 (PGE2). The strongest up-regulation was yielded by the combination of IFN-alpha+ IFN-gamma. Tumour necrosis factor-alpha (TNF-alpha) down-regulated the C3aR. After up-regulation of the C3aR by IFN-alpha+ IFN-gamma, C3a significantly up-regulated the surface expression of CD54, CD83 and CD86, but not of CD40, CD80 or human leucocyte antigen (HLA)-DR. C3a had no effect on the production of interleukin (IL)-10 or IL-12p70, or on the capacity of MoDC to stimulate autologous T-cell proliferation. However, C3a had a direct migratory effect on MoDC, as indicated by the induction of F-actin polymerization and migration in Boyden chamber experiments, which was pronounced after up-regulation of the C3aR with IFN-alpha+ IFN-gamma. Therefore, dendritic cells represent another group of target cells that might be recruited by C3a to areas of inflammation, in particular under conditions where IFNs are increased in the surrounding environment.

Cell Division↗

Ligand binding sites on guinea pig C3aR: point and deletion mutations in the large extracellular loop and vicinity.

Human C3a receptor (huC3aR) belongs to the G-protein coupled receptor family chacterized by having seven transmembrane domains. The huC3aR is a unique member of this family having a large extracellular (EC) loop of 175 amino acids between the 4th and 5th transmembrane domains. Based on a comparison of C3aR sequences from several species, a number of charged and conserved amino acids (Asp182, Asp309, Asp310, and Arg331) in and near the large EC loop of guinea pig C3aR were replaced using site-directed mutagenesis. Competitive binding assays showed that changing Arg331 in guinea pig C3aR to Ala (or Gln), but not changing Asp182, Asp309, or Asp310 to Ala, resulted in complete loss of ligand binding activity. These results and major EC loop deletions demonstrated that an essential C3a binding site is present in the transmembrane portion of C3aR, but not in the large EC loop. Replacement of Arg331 by a noncharged residue was sufficient to eliminate ligand-receptor interactions.

Animals↗

Bradykinin is a mediator of anaphylactoid reactions during hemodialysis with AN69 membranes.

Anaphylactoid reactions (AR) are the most feared complications of hemodialysis. Recently, a high incidence of AR has been reported during dialysis with AN69 membranes in patients treated with ACE inhibitors. Plasma levels of C3a, histamine and bradykinin were measured in 12 patients at the onset of AR during dialysis with AN69. We also investigated bradykinin generation in 10 symptom-free patients dialyzed with four different membranes. None of the 12 patients studied during AR displayed excessive complement activation or histamine release. In contrast, high bradykinin plasma levels (2392 +/- 53 fmol/ml; mean +/- SEM) were observed in all nine patients of whom bradykinin was measured. One patient developed two consecutive episodes of hypersensitivity on AN69 membranes even without taking ACE inhibitors. Bradykinin levels were high in both episodes (5280 and 10467.7 fmol/ml). Furthermore, this patient showed no symptoms and normal bradykinin levels (123.4 fmol/ml) when dialyzed with other membranes. The role of the membrane type in the AR is further substantiated by the observation that AN69 also provoked a significantly higher bradykinin generation (327.6 +/- 18 fmol/ml; mean +/- SEM) during symptom-free sessions compared to other membranes like CuprophanR (5.1 +/- 7.3), HemophanR (17.2 +/- 6.3) and PolysulfoneR (39.7 +/- 6.6). Our findings strongly suggest that bradykinin is the principal mediator of AR during hemodialysis with AN69 membranes. To our knowledge it is the first time that data support the hypothesis of a more general role of bradykinin in shock-like symptoms. Furthermore, bradykinin generation must be regarded as a new marker of biocompatibility of extracorporeal treatments.

Acrylic Resins↗

Minimodule dialyser for quantitative ex vivo evaluation of membrane haemocompatibility in humans: comparison of acrylonitrile copolymer, cuprophan and polysulphone hollow fibres.

Minimodule hollow fibre dialysers, representing clinical dialysis modules on a scale of 1/25, enable quantitative evaluation of the haemocompatibility of hollow fibre membranes in an ex vivo flow system in humans. On line heparinization, adjusted for donor sensitivity, is maintained at a minimal level (approximately 0.14 units/ml). Blood samples collected at the minimodule exit over 30 min are analysed for heparin (anti-Xa activity), activated partial thromboplastin time, fibrinopeptide A, platelet count and beta-thromboglobulin, complement fragment C3a, leucocyte count and polymorphonuclear neutrophil elastase. Initial experiments were performed using well-characterized reference materials: acrylonitrile copolymer (AN 69 HF), polysulphone and cuprophan (CUP). Activation of coagulation and platelets was low for AN 69 HF, intermediate for CUP and greatest for polysulphone, while complement activation was negligible in the presence of AN 69 HF, moderate for polysulphone and most important for CUP. Future applications will be directed towards haemocompatibility screening of prototype membranes with the aim of developing clinical dialysers with improved biocompatibility.

Acrylic Resins↗

Molecular cloning and characterization of the human anaphylatoxin C3a receptor.

In a human neutrophil cDNA library, an orphan G-protein-coupled receptor, HNFAG09, with 37% nucleotide identity to the C5a receptor (C5a-R, CD88) was identified. A novel feature of this gene, unlike C5a-R and other G-protein-coupled receptors, is the presence of an extraordinarily large predicted extracellular loop comprised of in excess of 160 amino acid residues between transmembrane domains 4 and 5. Northern blot analysis revealed that expression of mRNA for this receptor in human tissues, while similar, was distinct from C5a-R expression. Although there were differences in expression, transcripts for both receptors were detected in tissues throughout the body and the central nervous system. Mammalian cells stably expressing HNFAG09 specifically bound 125I-C3a and responded to a C3a carboxyl-terminal analogue synthetic peptide and to human C3a but not to rC5a with a robust calcium mobilization response. HNFAG09 encodes the human anaphylatoxin C3a receptor.

Amino Acid Sequence↗

In vivo effects of C3a on neutrophils and its contribution to inflammatory lung processes in a guinea-pig model.

C3a, when injected intravenously in guinea-pigs, caused a rapid drop of circulating neutrophils and platelets. The neutropenia was reversible and followed by a neutrophilia, which reached about 200% of baseline values. Upon challenge with octa- and hexapeptide, mimicking the C-terminal sequence of C3a, neutrophils and platelets reacted in the same manner. The hexapeptide-desArg (pentapeptide without the C-terminal arginine of hexapeptide) induced no neutropenia but a significant neutrophilia. Likewise, when injected in animals with a genetic deficiency or dysfunction of the C3a-receptor, the hexapeptide caused no drop of the neutrophils, but a neutrophilia, indicating that both neutrophil reactions are mediated by different mechanisms. With the octapeptide in vivo dose-response studies were performed. Despite maximal doses of octapeptide about 40% of the neutrophils remained in circulation, indicating that some but not all PMNs are susceptible to C3a. By pretreating the animals with an inhibitor of the serum carboxypeptidase N (SCPN-Inh) the C3a-induced neutropenia could be significantly augmented. But intravenous application of the inhibitor itself caused a 20-40% reduction of neutrophils during the first hour after injection, followed by a neutrophilia. In histological studies the timecourse of neutrophil sequestration in the lung was established, showing that the initial high neutrophil content of the lung lasted for at least 1 h and declined thereafter. Structural derangements could not be detected. These observations stress the importance of C3a besides C5a as an important mediator of inflammatory processes in species, where the C3a-receptor is present on inflammatory cells such as granulocytes.

3-Mercaptopropionic Acid↗