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Chemoattractant receptors for interleukin-8 and C5a: expression on peripheral blood leukocytes and differential regulation on HL-60 and AML-193 cells by vitamin D3 and all-trans retinoic acid.

Two homologous high-affinity receptors for the chemoattractant interleukin-8, IL-8RA and IL-8RB, and one for the chemoattractant C5a (C5aR) have been cloned. These membrane proteins are members of the rhodopsin superfamily of G-protein coupled seven-transmembrane segment receptors. New monoclonal antibodies (mAb) directed against the deduced N-terminal sequences of the IL-8RA (mAb SE2) and IL-8RB (mAb HC2) were generated to determine the IL-8R expression on human blood leukocytes and two human myeloid cell lines. The C5aR expression was detected using the mAb W17/1. Approximately 107,000 C5aR, 55,000 IL-8RA, and 25,000 IL-8RB molecules per cell could be detected on human granulocytes by flow cytometric analysis. On peripheral blood monocytes, 42,000 C5aR molecules/cell and 3000 IL-8RB molecules/cell were expressed. However, we were unable to quantitate IL-8RA expression, which was detectable but below 2500 molecules per cell and thus outside the standard range for the quantitation of receptor molecules by flow cytometry. On AML-193 cells, only the IL-8RB was constitutively expressed, whereas on HL-60 cells, we could not detect expression of any of the three receptors. Vitamin D3 (250 ng/ml, 7 days), which has been shown to induce differentiation of AML-193 and HL-60 cells into the monocytic phenotype, led to an up-regulation of IL-8RB and C5aR in both cell lines in the absence of any expression of IL-8RA. In contrast, all-trans retinoic acid (0.1 microM, 7 days), which induces differentiation into the granulocytic phenotype, led to an up-regulation of IL-8RB in AML-193 cells and to an expression of IL-8RB and C5aR in HL-60 cells. Again, neither cell line expressed IL-8RA. These findings suggest that regulation of IL-8RA expression differs from that of its IL-8RB homolog and may be a late event in leukocyte maturation.

Antigens, CD↗

Autoimmunity, complement activation, tissue injury and reciprocal effects.

Proteins of the complement system limit the expression of systemic autoimmunity by raising the threshold for negative selection and, in their absence, autoreactive lymphocytes seem to enter the periphery. On the other hand, complement activation in the course of systemic autoimmunity leads to tissue injury in a number of ways including direct lysis of cells, modification of cell function and by contributing to the formation of immune complexes. Excessive complement activation as a result of a regulator component deficiency leads to tissue injury that mimics that seen in autoimmune disease. Complement activation occurs during tissue injury and contributes in a major way to the expression of pathology. It appears that natural antibodies represent an early culprit in tissue injury following ischemia/reperfusion injury. Natural antibodies and probably autoantibodies present in sera of patients with systemic autoimmune disease bind to tissues already exposed to a damaging insult, activate complement and produce pathology.

Animals↗

Microvascular effects of anaphylatoxins C3a and C5a.

The direct microvascular effects of human C3a and C5a were investigated by using hamster cheek pouches prepared for intravital microscopy. Topical application of 10 nM C3a resulted in pronounced microcirculatory alterations, characterized by vasoconstriction, platelet aggregation, and an increase in macromolecular leakage at postcapillary venules, as assessed by extravasation of intravascular fluorescein-labeled dextran (m.w. 150,000). Exposure of the preparation to 500 nM COOH-terminal octapeptide analogs of C3a resulted in a microvascular response almost identical to that of C3a, supporting the view that the active site of this anaphylatoxin resided within the COOH-terminal portion. Changes similar to those caused by C3a were also induced by 20 or 100 nM C5a and, in addition, the higher concentration of C5a caused accumulation of polymorphonuclear leukocytes (PMNL) in small venules and somewhat prolonged vascular leakage from venules exhibiting PMNL accumulation. Histamine was found to partially mediate the vascular leakage induced by C3a and the initial (first 5 min) permeability response to the high concentration of C5a, whereas the subsequent leakage induced by the latter anaphylatoxin was unaffected by mepyramine pretreatment. In neutropenic and mepyramine-treated animals exposed to the high concentration of C5a, a partial reduction of both the early and the subsequent vascular leakage was seen, indicating that accumulated PMNL play a role in the prolonged phase of leakage. The pronounced microvascular alterations induced by low concentrations of C3a and C5a strengthen the view that these anaphylatoxins act as mediators of inflammatory reactions in which the complement system is activated.

Animals↗

The dark side of C5a in sepsis.

Sepsis is a major clinical problem for which therapeutic interventions have been largely unsuccessful, in spite of promising strategies that were successful in animals, especially rodents. There is new evidence that sepsis causes excessive activation of the complement system and that this induces paralysis of innate immune functions in phagocytic cells due to effects of the powerful complement-activation product, C5a. This review describes our present understanding of how and why sepsis is a life-threatening condition and how it might be more effectively treated.

Animals↗

Extra- and intracellular Ca2+ requirements for lysosomal enzyme secretion in human neutrophils.

Ca2+-EGTA combinations were utilized in Hank's buffers to fix extracellular free Ca2+ concentrations [Ca2+f] for the study of human neutrophil lysosomal enzyme secretion. Ca2+-dependent neutrophil secretion initiated by formyl-methionyl-leucyl-phenylalanine (FMLP) and C5a required small amounts of [Ca2+f] (1-3 x 10(-6) M) while that caused by ionophore A23187 required 10(-5) M or greater [Ca2+f]. The inhibition of FMLP- and C5a-induced lysosomal enzyme secretion by the intracellular Ca2+ antagonist, 8-(N,N-diethylamino)octyl-3,4,5-trimethoxybenzoate (TMB-8) was additive to lowering extracellular [Ca2+f] from 10(-4) M to 10(-6) M or blocking plasma membrane Ca2+ flux with verapamil. These results suggest that extracellular and intracellular Ca2+ flux may be coupled in the initiation of neutrophil secretion caused by FMLP and C5a.

Calcimycin↗

Complement levels in septic primates treated with anti-C5a antibodies.

During gram-negative sepsis it is known that endotoxin activates complement by the alternate pathway. The complement anaphylatoxin C5a, a result of this activation, is thought to play a key role in attracting and activating neutrophils in the lungs, leading to the adult respiratory distress syndrome. Complement levels were measured in primates made septic by Escherichia coli infusions. Anti-human C5a antibodies were administered to study their effect on neutrophil-mediated lung injury. Control (I), septic (II) and septic + anti-C5a antibody (III) groups (n = 4) were studied. The antibody-treated group (III) demonstrated a significant attenuation of septic shock and pulmonary edema as has been previously reported. All complement profiles were corrected for varying hemoglobin concentrations. C3, C4, and C5 levels were measured by radial immunodiffusion and were depleted in both septic groups. Once the levels were depleted from the plasma, they did not recover. The depletion of C4 indicates that classical pathway activation also occurred. C3a, C4a, and C5a levels were measured by radioimmunoassay. Significantly increased peak levels were reached in the septic groups 15 min after initiation of the E. coli infusion. There were no significant differences in early peak C3a and C4a levels between groups II and III. However, the mean peak C5a level in group III (anti-C5a antibodies) was 42% lower than that in group II, and after this early peak, C5a levels were not elevated above control levels in group III. The antibody to human C5a was thus shown to be cross-reactive with primate C5a and was specific since C3a and C4a levels were not decreased in group III.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Analysis of the binding of fluorescent C5a and C3a to human peripheral blood leukocytes.

Fluorescein-labeled human C5a and C3a were prepared and utilized to analyze the binding of C5a and C3a to human neutrophils and mononuclear cells. The fluorescein derivatives of C5a (Fl-C5a) and C3a (Fl-C3a) contained approximately one fluorescein molecule per molecule of protein. Fl-C5a retained biologic activity as determined by neutrophil O2- production, enzyme release, receptor binding, and reaction with rabbit anti-C5a antibody. Fl-C3a was biologically active as measured by contraction of guinea pig ileal strips, and maintained 87% of its antigenic character when reacted with rabbit anti-human C3a. The binding of Fl-C5a and Fl-C3a to human neutrophils and mononuclear cells was assessed with the use of flow cytometry. Fl-C5a bound to greater than 90% of neutrophils, with an average ED50 ranging from 2.8 to 6.8 nM, depending on the method of analysis. Fl-C5a binding to neutrophils was specific and was not inhibited by the presence of formyl-methionyl-leucyl-phenylalanine (f-MLP), C3a, or casein. Fl-C5a binding was totally blocked by an excess of C5a. C5a des arg partially inhibited the binding of Fl-C5a to neutrophils, but was 1000-fold less effective than C5a. Similar experiments with mononuclear cells showed that Fl-C5a was bound by monocytes but not by lymphocytes. Fl-C5a binding to monocytes was blocked totally by C5a but not by C3a or f-MLP. Comparative binding studies with neutrophils, monocytes, and lymphocytes showed that Fl-C5a was bound by an average of 93% +/- 4 of neutrophils, 68% +/- 9 of monocytes, and 6% +/- 3 of lymphocytes. Fl-C3a did not show significant binding to neutrophils, monocytes, or lymphocytes. These studies demonstrate that fluorescein derivatives of C5a and C3a can be prepared with retention of biologic activity, and provide a means to evaluate the binding of C5a to individual cells.

Adult↗

Density changes in leukocytes following hemodialysis or exposure to chemotactic factors.

Analysis of standard Ficoll-Hypaque separation profiles of peripheral WBC from patients undergoing hemodialysis (HD) demonstrated that dialysis caused a marked alteration in the number of cells found at both the interface between the Ficoll-Hypaque and plasma which normally contains mononuclear cells and the cell pellet which normally contains granulocytes. By 30 min into dialysis, there was a 175% increase in white blood cells in the mononuclear band with a corresponding decrease in the number of cells obtained from the cell pellet. When peripheral blood samples from normal donors were pumped through various types of hemodialyzers, a shift in the cell separation profiles similar to that of patients undergoing HD was observed. Differential analysis of the cells obtained from both the interface between the Ficoll-Hypaque and plasma and the cell pellet showed that by 30 min into dialysis, the 'mononuclear' band contained 40-50% polymorphonuclear neutrophils (PMN). To ascertain whether the cell separation changes were possibly due to C5a generation resulting from complement activation by the HD membrane, whole blood was incubated with the purified chemotactic factors C5a, C5ades arg, and formyl-methionyl-leucyl-phenylalanine. This resulted in similar alterations in PMN densities. This study demonstrates that both in vivo and in vitro exposure of human peripheral blood to HD membranes as well as the chemotactic factors C5a, C5ades arg, and formyl-methionyl-leucyl-phenylalanine results in density changes in PMN.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

C5a anaphylatoxin is a major regulator of activating versus inhibitory FcgammaRs in immune complex-induced lung disease.

IgG Fc receptors (FcgammaRs, especially FcgammaRIII) and complement (in particular, C5a anaphylatoxin) are critical effectors of the acute inflammatory response to immune complexes (ICs). However, it is unknown whether and how these two key components can interact with each other in vivo. We use here a mouse model of the acute pulmonary IC hypersensitivity reaction to analyze their potential interaction. FcgammaRIII and C5aR are coexpressed on alveolar macrophages (AMs), and both FcgammaRIII and C5aR mutant mice display impaired immune responses. We find that recombinant human C5a (rhC5a) can control inverse expression of various FcgammaRs, and costimulation of ICs with rhC5a results in strong enhancement of FcgammaRIII-triggered cellular activation in vitro and in vivo. Moreover, we show here that early IC-induced bioactive C5a, and its interaction with C5aR, causes induction of activating FcgammaRIII and suppression of inhibitory FcgammaRII on AMs that appears crucial for efficient cytokine production and neutrophil recruitment in lung pathology. Therefore, C5a, which is a potent chemoattractant, has a broader critical function in regulating the inhibitory/activating FcgammaRII/III receptor pair to connect complement and FcgammaR effector pathways in immune inflammation.

Animals↗

Surprisingly high levels of anaphylatoxin C5a des Arg are extractable from psoriatic scales.

Water-soluble extracts from psoriatic scales and normal human skin were prepared using either phosphate-buffered saline, pH 7.2, or 0.1 M carbonate buffer, pH 10.8. Anaphylatoxin C5a des Arg was quantified using a novel sandwich enzyme-linked immunosorbent assay (ELISA) using neoepitope-specific monoclonal antibodies. Alkali was about five to eight times more efficient than PBS in extracting C5a des Arg from scales, probably via dissociation of bound C5a des Arg. C5a des Arg concentration in scales from three patients suffering from psoriasis vulgaris varied between 2.5 and 4.6 ng/mg scale. No C5a des Arg was detectable in normal skin extracts. The biological activity of alkali-extractable C5a des Arg, i.e. chemotaxis, was preserved. The concentration of C5a des Arg relative to the concentration of albumin was taken as a parameter of the degree of complement activation in the psoriatic lesions, and was found to be more than six times higher than values attained in serum after maximum complement activation by zymosan. We conclude that complement activation may play a quantitatively important role in the inflammatory process in psoriasis.

Antibodies, Monoclonal↗

Transient absence of C5a-specific neutrophil function in inflammatory disorders of the skin.

Chemotactic migration, production of superoxide anion (O2-), and the release of beta-glucuronidase from azurophilic granules were determined in polymorphonuclear leukocytes (PMN) from 135 patients with infectious (e.g., pyoderma, acne conglobata, erysipelas) as well as noninfectious (psoriasis) skin diseases. Purified C5a and the formylated tripeptide FMLP were used as stimuli. In addition, longitudinal profiles of PMN activities were performed at daily intervals in several patients. There was a complete absence of PMN responses (chemotaxis, O2--production, and enzyme release) specifically induced by C5a in 25 patients suffering from various inflammatory diseases of the skin. In these patients PMN responsiveness for the tripeptide FMLP was either normal or increased. The C5a-dependent defect of PMN was transient and correlated with disease activity. When normal PMN were incubated with sera from C5a-defective patients, no inherent stimulatory or inhibitory activities compared to control sera were seen. Pretreatment of normal PMN in vitro with various concentrations of C5a failed to completely deactivate PMN without affecting FMLP dependent functions. These observations demonstrate the presence of a functional defect in circulating PMN during acute cutaneous inflammation. The in vitro experiments suggest transient blocking of C5a-dependent PMN functions by a cell-bound factor which seems not to be C5a or C5adesarg.

Acne Vulgaris↗

Increased C5a receptor expression in sepsis.

Excessive production of the complement activation product C5a appears to be harmful during the development of sepsis in rodents. Little is known about the role of the C5a receptor (C5aR) and its presence in different organs during sepsis. Using the cecal ligation/puncture (CLP) model in mice, we show here that C5aR immunoreactivity was strikingly increased in lung, liver, kidney, and heart early in sepsis in both control and neutrophil-depleted mice. C5aR mRNA expression in these organs was also significantly increased during sepsis. Immunohistochemical analysis revealed patterns of increased C5aR expression in parenchymal cells in all four organs following CLP. Mice injected at the start of CLP with a blocking IgG to C5aR (alphaC5aR) showed dramatically improved survival when compared with animals receiving nonspecific IgG, as did mice injected with alphaC5a. In alphaC5aR-treated mice, serum levels of IL-6 and TNF-alpha and bacterial counts in various organs were significantly reduced during CLP when compared with control CLP animals. These studies demonstrate for the first time that C5aR is upregulated in lung, liver, kidney, and heart during the early phases of sepsis and that blockade of C5aR is highly protective from the lethal outcome of sepsis.

Animals↗

Hemodynamic changes induced by liposomes and liposome-encapsulated hemoglobin in pigs: a model for pseudoallergic cardiopulmonary reactions to liposomes. Role of complement and inhibition by soluble CR1 and anti-C5a antibody.

BACKGROUND: Intravenous administration of some liposomal drugs can trigger immediate hypersensitivity reactions that include symptoms of cardiopulmonary distress. The mechanism underlying the cardiovascular changes has not been clarified. METHODS AND RESULTS: Anesthetized pigs (n=18) were injected intravenously with 5-mg boluses of large multilamellar liposomes, and the ensuing hemodynamic, hematologic, and laboratory changes were recorded. The significant (P<0.01) alterations included 79+/-9% (mean+/-SEM) rise in pulmonary arterial pressure, 30+/-7% decline in cardiac output, 11+/-2% increase in heart rate, 236+/-54% increase in pulmonary vascular resistance, 71+/-27% increase in systemic vascular resistance, and up to a 100-fold increase in plasma thromboxane B2. These changes peaked between 1 and 5 minutes after injection, subsided within 10 to 20 minutes, were lipid dose-dependent (ED50=4. 5+/-1.4 mg), and were quantitatively reproducible in the same animal several times over 7 hours. The liposome-induced rises of pulmonary arterial pressure showed close quantitative and temporal correlation with elevations of plasma thromboxane B2 and were inhibited by an anti-C5a monoclonal antibody (GS1), by sCR1, or by indomethacin. Liposomes caused C5a production in pig serum in vitro through classic pathway activation and bound IgG and IgM natural antibodies. Zymosan- and hemoglobin-containing liposomes and empty liposomes caused essentially identical pulmonary changes. CONCLUSIONS: The intense, nontachyphylactic, highly reproducible, complement-mediated pulmonary hypertensive effect of minute amounts of intravenous liposomes in pigs represents a unique, unexplored phenomenon in circulation physiology. The model provides highly sensitive detection and study of cardiopulmonary side effects of liposomal drugs and many other pharmaceutical products due to "complement activation-related pseudoallergy" (CARPA).

Animals↗

Defective release of C5a related chemo-attractant activity from complement in Crohn's disease.

Complement was studied in 20 untreated cases of Crohn's disease and in 20 healthy volunteers by an in vitro activation of the cascade reaction. Total haemolytic complement was normal in all patients. In contrast, activation of the alternative pathway lead to a decreased release of C5a related chemo-attractant activity together with a subnormal utilisation of the main complement component C3. This abnormality of complement function was not related to the activity of the disease, site of involvement or to disease duration. The results suggest that an inadequate stimulation of important neutrophil functions may result when bacterial lipopolysaccharides and other macromolecules activating the alternative pathway penetrate the gut mucosa. A delayed clearance from the tissue of such foreign material could be a further pathogenic factor in Crohn's disease leading to granulomatous inflammation by a foreign body reaction.

Chemotaxis, Leukocyte↗

Effect of anti-C5a antibody on blood-lung and blood-brain barrier in rabbits after decompression.

The complement activation product C5a may be an important mediator of tissue injury after decompression stress. This study investigated whether the administration of anti-C5a antibody may reduce changes after decompression in the lung and in the brain. Two groups of rabbits were used; one receiving anti-C5a monoclonal antibody (n = 7) and the other receiving a sham antibody as control (n = 7) before pressure exposure. Five rabbits (4 in the anti-C5a group and 1 in the control group) died during the 2-h observation period postdive due to massive bubbling. Polymorphonuclear leukocyte (PMN) infiltration of lung tissue and pulmonary edema was observed, but this accumulation was unaffected by anti-C5a pretreatment. However, a significant positive correlation was observed between PMN accumulation and survival time postdive. Brain-specific gravity was lower for the group treated with anti-C5a antibody compared to the control group. Further, it was lower for those rabbits that died early compared to the ones that survived the 2-h period. This study was unable to prove a protective effect on the blood-brain and blood-lung barrier by injecting anti-C5a antibody. A possible beneficial effect of anti-C5a antibody may be masked by the mechanical damage caused by the gas bubbles.

Animals↗

Role of the neutrophil in oral disease: receptor deficiency in leukocytes from patients with juvenile periodontitis.

In many diseases in which cellular abnormalities of neutrophil locomotion are found, patients have oral complications. Localized juvenile periodontitis (LJP) is used as an example of a severe periodontal disease that is related to compromised neutrophil function. Studies of chemotaxis and binding of LJP neutrophils in response to chemotactic factors N-formylmethionylleucylphenylalanine (FMLP), a structural analogue of a bacterial product, and complement fragment C5a were carried out to identify the molecular basis of the compromised neutrophil function. The rate of chemotaxis in LJP neutrophils was significantly lower than that of control neutrophils, and LJP neutrophils demonstrated fewer binding sites for these chemotactic factors than did normal neutrophils. The respective numbers of binding sites for FMLP on LJP neutrophils and normal neutrophils were 9,200 and 20,000 and for C5a were 133,000 and 218,000. However, for both chemotactic substances, the dissociation constants for LJP and normal neutrophils were similar. The expression of FMLP receptors was altered in LJP neutrophils, but no modulation abnormality was noted for the C5a receptor.

Aggressive Periodontitis↗