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Complement inhibition by FUT-175 and K76-COOH in a pig-to-human lung xenotransplant model.

Two complement inhibitors, FUT-175 (FUT) and K76-COOH (K76), were studied as single agents in an ex vivo, in situ model of pig lung rejection by human blood. Pulmonary toxicity (primarily increased pulmonary vascular resistance [PVR]) was seen with FUT at a dose which inhibited complement in vitro (0.4 mg/ml); a lower dose (0.1 mg/ml) was therefore used. K76 had little apparent toxicity at a dose which inhibited complement in vitro (6 mg/ml), but activated complement, leading to C3a elaboration. Efficacy was then assessed by 1) deposition of complement pathway components in the lung and 2) lung survival during perfusion with human blood. Neither agent consistently prolonged median lung survival (FUT: 50 min. +/- 28 SEM; K76: 37 +/- 16), blocked thromboxane production, or prevented PVR elevation compared to experiments using unmodified human blood (survival 9 min. +/- 2). At the doses used, both agents prevented deposition of terminal complement complex (TCC) in the lung. This finding demonstrates that the various phenomena associated with hyperacute lung rejection (thromboxane release, PVR elevation, capillary leak, and intraalveolar hemorrhage) can all occur despite abrogation of membrane attack complex formation. We can not exclude a contribution by drug toxicity or complement damage (mediated by C3a or other complement pathway components proximal to TCC) to the observed lung injury. We conclude that, although both FUT and K76 inhibit deposition of TCC in the lung, at the dose tested neither drug is useful as a single agent to prolong survival in a pig-to-human lung xenograft model.

Animals↗

Human malignant ascites and histamine-induced protein leakage from the normal microcirculation.

The accumulation of malignant ascites is a significant cause of morbidity and mortality in patients with intraabdominal malignancies. However, the cause of malignant ascites is unknown. In this study, we used the rat cremaster muscle preparation to determine if and how malignant ascites could produce protein leakage from normal blood vessels which would lead to fluid accumulation in the peritoneal cavity. The rat cremaster muscle, with nerves and blood vessels to the animal intact, was prepared for microscopic observations of the microcirculation. Serum albumin was tagged to fluorescein isothiocyanate and injected into the rat. Fluorescent microscopy was used to quantitate leakage of the tagged albumin into the interstitial tissue. Malignant ascites was collected from a patient with metastatic breast cancer. The ascites fluid was placed on the cremaster muscle and it induced protein leakage from the normal blood vessels of this tissue. Protein leakage was partially blocked by diphenhydramine (10(-4) M) and by mast cell depletion with compound 48/80. There was a high level of C3a in the malignant ascites solution but C3a did not increase during the exposure period. These data suggest that activated complement in malignant ascites may release histamine from mast cells to cause protein leakage of the normal vasculature. The movement of protein into the peritoneal cavity would be followed by water, thus increasing the volume of the ascites and exacerbating the clinical condition.

Animals↗

Assay for opsonin activity based on chemiluminescence of a Cypiridina luciferin analog.

Opsonin activity (OA) was investigated in serum samples from cord blood of 11 full-term newborn infants and 12 healthy adult volunteers by the method of luminol-dependent chemiluminescence (L-CL) and Cypiridina luciferin analog-dependent chemiluminescence (CLA-CL) together with the measurement of complement components (C3, C4, C3A and properdin). CL and complement components of cord samples were significantly lower than that of healthy adult blood. CLA-CL showed a significant correlationship to C3 and C3A. L-CL also displayed a significant correlationship to C3A but the relationship to C3 was not significant. From these results, when OA is measured by CL, CLA-CL is preferred to L-CL as a technique.

Adult↗

Receptor for the C3a anaphylatoxin is expressed by neurons and glial cells.

Little is known about the expression of the receptor for complement anaphylatoxin C3a (C3aR) in the central nervous system (CNS). In this study, we provide the first evidence that neurons are the predominant cell type expressing C3aR in the normal CNS. By using in situ hybridization (ISH) and immunohistochemistry, we found that C3aR is constitutively expressed at high levels in cortical and hippocampal neurons as well as in Purkinje cells. Moreover, we showed that primary culture of human astrocytes and microglia express the C3aR mRNA as assessed by RT-PCR. In situ hybridization performed on rat primary astrocytes confirmed the RT-PCR result demonstrating C3aR expression by astrocytes. In experimental allergic encephalitis (EAE), C3aR expression was elevated on microglia, infiltrating monocyte-macrophage cells and a few astrocytes, whereas neuronal expression remained unchanged during the course of the disease. These data demonstrate that the C3aR is expressed primarily by neurons in the normal CNS and that its neuronal expression is not dramatically upregulated under inflammation. This is in contrast to the increased neuronal expression of the C5aR in several inflammatory CNS conditions. The high constitutive expression of the C3aR by neurons suggests this receptor may play an important role in normal physiological conditions in the CNS.

Anaphylatoxins↗

Complement activation during saturation diving.

In this study, the levels of activated complement fragments C3a and C5a were measured on 11 U.S. Navy divers as they performed a 28-day saturation dive to a pressure equivalent of 1,000 feet of seawater (fsw, 31.3 atm abs). Two subjects developed symptoms consistent with the high pressure nervous syndrome (HPNS) and three were treated for type I DCS (joint pain only). These events allowed us to test two hypotheses: a) alterations in C3a or C5a levels during compression are related to the occurrence of HPNS and b) increases in complement fragments are an indicator of decompression stress associated with type I DCS. There was no correlation between changes in C3a and C5a levels during compression and the diagnosis of HPNS. Our results suggest that an increase in C3a and C5a levels during saturation diving correlates with decompression stress and the clinical diagnosis of type I DCS.

Analysis of Variance↗

Complement system is not activated in primary biliary cirrhosis.

There is controversial evidence suggesting that the classical pathway of complement system is chronically activated in primary biliary cirrhosis (PBC) and that complement activation may be important in development of bile duct injury. We have reevaluated this issue by measuring by-products of complement activation such as C4a, C3a, Bb, and terminal complement complexes (SC5b-9) in plasma of 44 PBC patients with sensitive methods not previously used to detect complement activation in this disease. Age-matched healthy women and patients with chronic hepatitis of different etiology were studied as controls. We found that PBC patients have normal C4a concentrations. This finding argues strongly against chronic classical pathway activation. Although a minor increase of C3a levels was observed in a minority of PBC patients, the C3a/C3 ratio, an index used to evaluate the extent of native protein conversion, was remarkably similar in all groups. Potentially lytic terminal complement complexes were not increased. PBC patients had normal Bb plasma levels, indicating that the alternative pathway is also not activated. C3 concentration was higher in PBC patients than in healthy subjects and in chronic hepatitis patients, particularly in the early stages of the disease. C3 and C4 concentrations became lower in PBC and chronic hepatitis with the progression of the disease. The increase of C3 concentration in PBC does not reflect liver inflammation, since serum levels of C-reactive protein are normal. We found high serum C3 levels in patients with rare chronic cholestatic syndromes without superimposed infections and observed that serum C3 levels paralleled those of bilirubin in a patient with benign recurrent intrahepatic cholestasis. In conclusion, our data indicate that complement is not activated in PBC and that the increase of serum C3 levels is related to cholestasis.

Adult↗

Active site of C3a anaphylatoxin: contributions of the lipophilic and orienting residues.

Activation of the serum complement cascade generates C3a anaphylatoxin, a primary mediator of inflammation. The active-site pentapeptide from the COOH terminus of C3a, Leu-Gly-Leu-Ala-Arg (residues 73-77), exhibits the inflammatory activities and specificity of the native 77-residue polypeptide. Functionally important features of this active site were studied by testing the ability of 22 synthetic analogues of this pentapeptide to contract isolated muscle strips from guinea pig ileum and to desensitize this tissue to contraction induced by human C3a or C5a. The C3a receptors on mast cells and basophils probably contain lipophilic groups that interact with the lipophilic side chains of Leu-73 and Leu-75 and charged groups that interact with the carboxylate and guanidinium groups of Arg-77. The lipophilic contribution of Leu-73 is modest and sterically nonspecific while that of Leu-75 is substantial and sterically specific. Gly-74 and Ala-76 appear to position and orient the adjacent residues Leu-73, Leu-75, and Arg-77 for optimal receptor binding. The contribution of Gly-74 is neither conformationally nor sterically specific while that of Ala-76 is both conformationally and sterically specific. The cellular C3a receptors evidently interact most efficiently with peptides ending in -Leu-Ala-Arg-OH.

Anaphylatoxins↗

A new biologic role for C3a and C3a desArg: regulation of TNF-alpha and IL-1 beta synthesis.

The complement activation products C3a and C3a desArg are generated in the course of trauma, infection, tissue injury, and ischemia. We have investigated the effects of C3a and C3a desArg on gene expression and protein synthesis of TNF-alpha and IL-1 beta in PBMC. Neither C3a nor C3a desArg alone induced detectable protein or mRNA levels for TNF-alpha and IL-1 beta. C3a modulated LPS-induced TNF-alpha and IL-1 beta synthesis. In nonadherent PBMC, C3a suppressed LPS-induced synthesis of TNF-alpha (20-71% decrease by 0.2-10 microgram/ml of C3a, p less than 0.01) and IL-1 beta (19-57% decrease by 0.5-10 microgram/ml of C3a, p less than 0.01), independently of endogenous production of PGE2. C3a also suppressed LPS-induced mRNA levels for TNF-alpha and IL-1 beta. In contrast, in adherent PBMC, C3a at 5 to 20 microgram/ml enhanced LPS-induced TNF-alpha (75-188% increase, p less than 0.001) and IL-1 beta (119-274% increase, p less than 0.001) synthesis. C3a enhanced TNF-alpha and IL-1 beta mRNA levels in LPS-stimulated adherent cells. Furthermore, C3a desArg shared with C3a the ability to modulate LPS-induced mRNA and protein synthesis for TNF-alpha and IL-1 beta. These results suggest that C3a, thought to be proinflammatory, and C3a desArg, thought to be biologically inactive, are modulators of inflammation. Both C3a and C3a desArg may enhance cytokine synthesis by adherent monocytes at local inflammatory sites, while inhibiting the systemic synthesis of proinflammatory cytokines by circulating cells.

Cell Adhesion↗

Determination of plasma C3a des Arg levels after blood contact with foreign surfaces.

The products of complement activation, including C3a, C4a, C5a, and their des Arg derivatives, have been used by many investigators as indicators of blood or foreign surface bioincompatibility, e.g., during hemodialysis. One problem encountered is that after extracorporeal circulation over some dialysis membranes very high C3a levels (5,000-10,000 ng/ml) are generated. To the authors' knowledge the only presently available C3a des Arg RIA kit is provided by Upjohn Diagnostics (Kalamazoo, MI, U.S.A.), which covers an assay standard range of 20-500 ng/ml. Since Upjohn's assay procedure manual does not contain a recommended dilution technique the authors undertook a study to determine the best method. The diluents tested include physiologic saline, normal plasma, phosphate-buffered saline-gelatin, and the Upjohn precipitating agent provided in their kit. The results show that only dilution by normal plasma gave reliable results. The use of the other three diluents resulted in an overestimation of C3a levels. Therefore it is important to know the dilution technique used when comparing the results of membrane C3a generating ability presented by different authors. Furthermore, comparison of different membranes where plasma samples in some cases do not require dilution (e.g., polyacrylonitrile membranes) with those requiring dilution (e.g., regenerated cellulose membranes) will lead to distorted results if an accurate technique is not used.

Biocompatible Materials↗

Involvement of complement in psoriasis and atopic dermatitis--measurement of C3a and C5a, C3, C4 and C1 inactivator.

Normal complement components and activation products were determined in the peripheral blood of 35 patients with atopic dermatitis (AD) and 24 patients with psoriasis at a mild to intermediate stage. None of the patients had received systemic or local steroid therapy 6 weeks prior to blood collection. Levels of C3, C4 and C1 inactivator (C1 INA) were determined in serum by radial immunodiffusion, whereas C3a and C5a levels were measured by radioimmunoassay. In comparison to healthy non-atopic controls, the levels of C3, C4 and C1 INA were found to be significantly increased in both diseases. No substantial differences were detected between patients with psoriasis vulgaris and psoriasis guttata, which suggests that the dissimilarities found were not due to preceding or concomitant infections. In AD, there was a tendency towards increased C3a levels, whereas in psoriasis, C3a levels were significantly increased. In both diseases, no measurable amounts of C5a could be detected. The results indicate that, in both AD and psoriasis, the complement participates in the inflammatory process. Elevated levels of C3a suggest that there is a continuous activation of the complement system leading to the generation of inflammatory mediators.

Adolescent↗

Complement activation during cardiopulmonary bypass: evidence for generation of C3a and C5a anaphylatoxins.

We observed complement activation in 15 adults undergoing total cardiopulmonary bypass. Plasma levels of C3a were significantly elevated (P < 0.0001) at the beginning of the procedure, and they continued to increase steadily thereafter. At the end of the procedure, C3a levels were more than five times higher than preoperative levels. Plasma levels of C5a (a factor that binds avidly to neutrophils) did not change significantly during cardiopulmonary bypass. Instead, there was significant neutrophilia (P = 0.03) during bypass, and significant transpulmonary neutropenia (P = 0.0002) occurred when cardiopulmonary circulation was reestablished at partial bypass. The neutropenia is consistent with pulmonary-vascular sequestration of C5a-activated granulocytes. We also found that incubation of blood with the nylon-mesh liner of bubble oxygenators, as well as vigorous oxygenation of whole blood, promotes conversion of complement. We conclude that the complement-derived inflammatory mediators C3a and C5a produced during extracorporeal circulation may contribute to the pathogenesis of "post-pump syndromes."

Adult↗

Expression of high- and low-affinity receptors for C3a on the human mast cell line, HMC-1.

The proteolytic cleavage product of complement component 3, (C3a), is like C4a and C5a, is a potent anaphylatoxin and induces the production of inflammatory mediators in phagocytes. Notably, mast cells respond to C3a with the release of vasoactive substances, including histamine. We have examined the function and receptor binding of C3a in a human leukemic mast cell line, HMC-1. Similar to chemoattractant agonists in leukocytes, C3a induced rapid cytosolic free calcium concentration increases in HMC-1 cells. EGTA did not diminish this response, indicating that mobilizable Ca2+ was from intracellular stores. Receptors of C3a in HMC-1 cells couple in part to Bordetella pertussis toxin-sensitive G-proteins and, therefore, appear to belong to the family of serpentine receptors that require G-proteins for signal transduction. HMC-1 cells express two types of C3a receptors, C3aR1 and C3aR2, that were shown to bind 125I-C3a with high-(Kd1 = 2.1-4.8 nM) or low-affinity (Kd2 = 30-150 nM), and both receptors are expressed at high level: 3 x 10(5)-6 x 10(5) C3aR1/cell and 5 x 10(5)-2.3 x 10(6) C3aR2/cell. Results from cross-linking experiments with 125I-C3a fully agree with the presence of two different classes of C3a receptors in HMC-1 cells. Two membrane proteins with apparent molecular masses of 54-61 kDa (p57) and 86-107 kDa (p97) could be covalently modified with 125I-C3a, and this cross-linking was inhibited with an excess of unlabeled C3a. Many of the known agonists for leukocytes including 13 chemokines (IL-8, NAP-2, GRO alpha, ENA-78, IP10, PF4, MCP-1, 2 and 3, RANTES, MIP-1 alpha, MIP-1 beta and I309), three neuropeptides (neuropeptide Y, somatostatin and calcitonin), as well as C5a, did not activate HMC-1 cells, indicating that C3a is one of a few protein ligands for which this cell line expresses specific receptors. The apparent selectivity for C3a and the abundant expression of C3a receptors make the HMC-1 cell line an excellent choice for the cloning of the receptor genes.

Anaphylatoxins↗

The role of prostaglandins in C3a-mediated suppression of human in vitro polyclonal antibody responses.

Suppression of polyclonal antibody responses in human peripheral blood mononuclear cell cultures by human C3a appears to involve the release of endogenous prostaglandins from monocytes. C3a was found, under the experimental conditions employed, to activate the cyclooxygenase pathway of arachidonic acid metabolism with the release of large amounts of the prostaglandin E2 species. Suppression of the protein A-induced polyclonal antibody response by C3a is abrogated by the prostaglandin synthesis inhibitor indomethacin. In addition, physiologic amounts of exogenous PGE2 were able to inhibit polyclonal antibody secretion in a manner similar to the suppression observed when C3a was added to culture. These results suggest that C3a-induced release of prostaglandins could be a major element in immunosuppression induced by C3a.

Antibody Formation↗

C3a is made by proximal tubular HK-2 cells and activates them via the C3a receptor.

BACKGROUND: Some individual components of complement are synthesized by the kidney. However, it is not known whether these form functional pathways that are able to mediate more fundamental cellular events. We examined the ability of HK-2 tubular cells to produce an intact alternative pathway of complement and to respond to the C3a fragment thus produced through the C3a receptor. METHODS: The production of mRNA for alternative pathway components was detected by reverse transcription-polymerase chain reaction, whereas protein synthesis was investigated by probing Western blots of concentrated culture supernatants with polyclonal antisera. Levels of C3a and inositol phosphate produced by HK-2 cells were determined by radioimmunoassay, whereas those of transforming growth factor-beta1 (TGF-beta1) were measured by ELISA. Intracellular tyrosine phosphorylation in response to C3a was evaluated by Western blotting and chemiluminescence. RESULTS: HK-2 cells produce the complement polypeptides C3a, C3, and factors B and H. They also contain mRNA for all components of the alternative pathway and the C3a receptor. mRNA levels were up-regulated by interleukin-1alpha, interleukin-1beta, and tumor necrosis factor-alpha. Incubation of HK-2 cells with C3a led to an increase in intracellular inositol phosphate and to tyrosine phosphorylation of at least two proteins in a pertussis-toxin-sensitive fashion. C3a and C3a desarg also up-regulated the secretion of TGF-beta1 by these cells. CONCLUSION: HK-2 cells produce an intact alternative pathway of complement. In addition, both locally produced and urinary C3a have the potential to activate these cells, resulting in inflammatory events such as TGF-beta1 production.

Cells, Cultured↗

Inhibition of cleavage of the third component of human complement (C3) by its small cleavage fragment, C3a: inhibition occurs with the classical-pathway, but not the alternative-pathway, C3 convertase.

Activation of the third component of complement (C), C3, is central to the functioning of the C system in inflammation. Cleavage of C3 by the C3 convertases of both the classical and alternative pathways results in the formation of two split products, C3b and C3a. C3a inhibited cleavage of C3 by the classical-pathway C3 convertase. The inhibition varied in a concn-dependent relationship, with a concn of approximately 40 micrograms/ml yielding 50% inhibition. Removal of the carboxy terminal arginine from the C3a did not alter the inhibition. C3a did not inhibit cleavage of C3 by the alternative C pathway C3 convertase, or cleavage of C5 by C5 convertase. The C3-cleaving capacity of EAC142oxy that had been previously incubated with C3a could be recovered completely by washing the cells, indicating that the C3a binding to the EAC42oxy cell must have been reversed without having had an effect on the amount of C2 bound. Ribonuclease, a molecule of similar size and charge to C3a, did not affect C3 cleavage and C3a inhibition was not reduced by providing a surface for non-specific adsorption of the C3a, suggesting that the effect of C3a on C3 cleavage was not mediated by non-specific interaction with cell surfaces. C3a inhibited the C3-cleaving capacity of the fluid-phase enzyme, C42oxy, to the same degree as it inhibited the cell-bound enzyme, EAC42oxy, indicating that the C3a must interact with the C42 complex directly. Inhibition of C3 cleavage by C3a is the first demonstration of product inhibition of a complement enzyme. It may provide another control of C3 activation.

Arginine↗

Genomic organization of the human C3a receptor.

The human C3a receptor (C3aR) mediates the activation of cells by the potent proinflammatory chemoattractant C3a, an anaphylatoxin, generated in the early phase of an inflammatory reaction by proteolytic cleavage of the complement component C3. To understand the molecular mechanisms that regulate C3aR gene expression, we initiated studies to determine its genomic and mRNA organization. We now report the following novel findings: (1) The C3aR is a single-copy gene as shown by Southern hybridization of human genomic DNA. (2) Using PCR amplification of DNA from monochromosomal somatic cell hybrid and radiation hybrid panels, the C3aR locus was mapped to chromosome 12p13. (3) Genomic DNA clones encompassing the C3aR locus were isolated from a human genomic DNA library and characterized by restriction mapping, Southern blotting, PCR analysis and DNA sequencing. Comparison of the genomic with the known cDNA sequences revealed a single 6-kb intron sequence located 1 1 bp upstream of the ATG initiation codon. The open reading frame and the complete 3' untranslated region are encoded on a single exon.

Base Sequence↗

Complement cleavage products in the phototoxic reaction of porphyria cutanea tarda.

We have measured C3, C4, CH50 and complement cleavage products C3a and C5a in in sera and plasma from PCT patients and normal controls 10 min and 1, 4 and 24 h after UVA irradiation. We found elevated C3a concentrations in PCT patients immediately after UVA irradiation and 24 h later. The same was true for CH50, whereas C3, C4 and C5a did not change significantly. No such changes occurred in normal controls. Our data suggest that activation of the complement cleavage product C3a by porphyrin and UV light triggers a series of events that cause tissue damage.

Adult↗