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Pathologic leukocyte infiltration of the rabbit aorta confers a vasomotor effect to chemotactic peptides through cyclooxygenase-derived metabolites.

We determined the effect of chemotactic peptides FMLP and C5a, postulated to be relatively selective activators of phagocytes, on the thoracic aorta of rabbits subjected to experimental pathologies that allowed infiltration by leukocytes, i.e., dietary atherosclerosis and serum sickness. Aortic ring tissues isolated from hypercholesterolemic rabbits, precontracted or not by phenylephrine, exhibited a rapid and relatively sustained (10 to 20 min) contractile response when challenged by FMLP (10 nM and above); precontracted tissues also responded to C5a (2.5 nM and above). Aortic rings from rabbits with serum sickness (13 days post-BSA injection) exhibited brief contractions that were often followed by a relaxation in phenylephrine-precontracted tissues. In both models, tissues from normal weight-matched animals were not consistently responsive to these peptides. The cyclooxygenase inhibitor indomethacin extensively reduced the contractile effect of either peptide on precontracted aortic rings in both models. Chemotactic peptide-induced increased prostanoid secretion was evident only in the fluid bathing atherosclerotic aortic rings. Morphologic correlations included the demonstration of cells positive for the RAM-11 macrophage marker and the C5a receptors in tissues from rabbits with hypercholesterolemia (numerous clusters of cells) or serum sickness (modest infiltration). Control aortic rings responded to FMLP by a significant contraction if cultured for 2 h in the presence of resident peritoneal cells (84% macrophages), but not in the presence of a high density of PBL (less than 0.5% monocytes). Infiltrating or adherent macrophages in the blood vessel wall confer to some phagocyte activating peptides the role of eicosanoid-dependent vasoconstrictor agents.

Animals↗

Direct demonstration of increased intracellular concentration of free calcium in rabbit and human neutrophils following stimulation by chemotactic factor.

An increase in the level of intracellular free calcium concentration in rabbit and human neutrophils stimulated by chemotactic factors has been demonstrated directly using the calcium-sensitive fluorescent probe quin-2. Addition of f-Met-Leu-Phe (10(-9) M), C5a (3 x 10(-9) M) or leukotriene B4 (6 x 10(-8) M) to the neutrophils induces a rapid increase in the intracellular concentration of free calcium that reaches a maximum value 15 seconds following stimulation. At concentrations of f-Met-Leu-Phe less than 10(-8) M the enhancement is dose dependent with an ED50 of 8 x 10(-11) M and is significantly reduced in the presence of EGTA in the suspending medium.

Aminoquinolines↗

Specificity and reversibility of chemotactic deactivation of human monocytes.

The chemotactic deactivation of human monocytes was studied to provide insight into the mechanism of chemotaxis. Deactivation was dependent on the dose of chemoattractant and time of incubation. A concentration in the cell suspension of 10(-8) M N-formylmethionylleucyl phenylalanine (FMLP) for 45 min at 37 degrees C led to 60% suppression of the subsequent specific chemotactic response. Higher concentrations of FMLP led to almost 100% specific suppression. Deactivation was specific under all conditions used. The response to a nonrelated chemoattractant, human serum-derived C5a, was unaffected by incubation in FMLP. Deactivation was also transient. If cells were deactivated at 37 degrees C with FMLP, they recovered within 6 h at 37 degrees C from this deactivation. Both phenomena, deactivation and recovery from deactivation, were temperature dependent. Monocytes could not be deactivated at 0 degrees C, and they did not recover from deactivation when kept at 0 degrees C. Thus, specific deactivation appears to require cellular metabolism, involving loss of receptors or blocking of a step between receptor occupancy and response.

Anaphylatoxins↗

A C5a inhibitor in peritoneal fluid.

Peritoneal fluid was found to contain an inhibitor of neutrophil chemotaxis. The inhibitor was effective only against the chemotactic activity of zymosan-activated serum (including purified C5a) and had no effect when f-met-leu-phe served as chemoattractant. Inhibition was not the result of a direct effect on the neutrophils, since incubation of cells with the peritoneal fluid did not alter their chemotactic response. The inhibitor was found to be a protein with a molecular weight of approximately 40,000 dalton by gel filtration. It resembles the inhibitor previously described by us in synovial fluids, and thus it is proposed to play a role in the regulation of inflammation in serosal tissues.

Ascitic Fluid↗

Expression and regulation of monocyte chemoattractant protein-1 by human eosinophils.

Several recent studies have identified eosinophils as a cellular source of various cytokines, indicating that eosinophils play not only an effector role, but also a regulatory role within the allergic inflammatory cell network. In this study, we demonstrate that eosinophils can generate and secrete monocyte chemoattractant protein-1 (MCP-1), a prototype of C-C chemokines. Eosinophils generated immunoreactive MCP-1 in response to such diverse stimuli as C5a, formyl-methionyl-leucyl-phenylalanine (FMLP) and ionomycin, but MCP-1 production was not induced by interleukin (IL)-1 or tumor necrosis factor-alpha. C5a- and FMLP-induced eosinophil MCP-1 production was absolutely dependent on pretreatment with cytochalasin B. Eosinophils elaborated significantly more MCP-1 than neutrophils. Immunoreactive MCP-1 was detected at 6 h of incubation with C5a or FMLP. Expression of MCP-1 mRNA reached a maximum within the first 3 h after stimulation and then declined rapidly to a very low and stable level by 18 h. Pretreatment with IL-5 markedly amplified C5a-induced MCP-1 production, and the enhancement occurred at the pretranslational level. Eosinophil-active chemokines such as eotaxin failed to induce MCP-1 generation, even when eosinophils were primed by IL-5. Since MCP-1 exerts a potent histamine-releasing effect on human basophils, our results indicate that eosinophils may regulate basophil mediator release with possible consequent contribution to the pathogenesis of allergic inflammation via a paracrine mechanism.

Chemokine CCL2↗

Inhibition of some human neutrophil functions by the cyclooxygenase inhibitor ketorolac tromethamine.

Ketorolac tromethamine, a new nonsteroidal anti-inflammatory agent of the pyrrolo-pyrrole group, was assayed for inhibitory effects on polymorphonuclear leukocytes (PMN) in a variety of systems. Ketorolac inhibited PMN superoxide anion generation, lysozyme release, myeloperoxidase release, adherence to plastic surfaces, and chemotaxis in response to N-formyl-methionyl-leucyl-phenylalanine (fMLP) in a dose-dependent manner. Ketorolac also inhibited phorbol myristate acetate-stimulated adherence of PMN to bovine pulmonary artery endothelial cells. The drug inhibited lysozyme and myeloperoxidase release by PMN in response to C5a but failed to inhibit C5a stimulation of PMN in any of the other assays. Levels of ketorolac required to inhibit PMN function in most systems were in the range of 0.2 to 1.0 mg/ml, but chemotaxis to fMLP was inhibited by concentrations of ketorolac as low as 1 microgram/ml. Ketorolac, currently the only nonsteroidal anti-inflammatory drug available in a parenteral form may have therapeutic usefulness in a variety of conditions thought to be mediated in part by PMN, including sepsis.

Anti-Inflammatory Agents, Non-Steroidal↗

Dissociation of transcription from translation of human IL-1 beta: induction of steady state mRNA by adherence or recombinant C5a in the absence of translation.

Interleukin (IL) 1 is an important mediator of local and systemic disease. Blocking IL-1 using the IL-1 receptor antagonist has reduced the severity of disease in animal models of septic shock, diabetes, graft-vs-host disease, inflammatory bowel disease, and the spontaneous proliferation of leukemia cells. Blocking IL-1 and reduction in the synthesis of IL-1 are important strategies for reducing the progression of inflammatory disease and autoimmune diseases. Nature, however, maintains control over the synthesis of IL-1 by dissociating transcription for translation. In this paper, the basis for the dissociation of IL-1 beta synthesis of mRNA from synthesis of the IL-1 beta protein is reviewed.

Cell Adhesion↗

Morphological polarization of human polymorphonuclear leucocytes in response to three different chemoattractants: an effector response independent of calcium rise and tyrosine kinases.

Chemoattractants such as interleukin-8, C5a and N-formylmethionyl-leucyl-phenylalanine induce a cytosolic calcium rise involved in triggering the secretory functions of human polymorphonuclear leucocytes. We studied the possible role of calcium rise in membrane ruffling, actin polymerization, filamentous actin distribution, and morphological polarization, which are all events contributing to chemotaxis. Membrane ruffling was assessed by right-angle light-scatter changes, the cellular content of polymerized actin by fluorescence of bodipy phallacidin, the intracellular distribution of filamentous actin by fluorescence microscopy and image digitization, and morphological polarization by scanning electron microscopy. Pretreatment of polymorphonuclear leucocytes with 50 microM BAPTA/AM, an intracellular calcium chelator, lowered the basal level in cell calcium and inhibited the transient calcium rise stimulated by 2 nM interleukin-8, 2 nM C5a, and 10 nM N-formylmethionyl-leucyl-phenylalanine. However, BAPTA pretreatment of polymorphonuclear leucocytes did not modify membrane ruffling, actin polymerization, filamentous actin distribution, and morphological polarization stimulated by chemoattractants. Downstream effectors may be protein tyrosine kinases. However, the tyrosine kinase inhibitor tyrphostin did not affect the cytoskeletal characteristics elicited by chemoattractants. Taken together, our results suggest that the transductional pathway leading to cytoskeleton organization and morphological polarization of polymorphonuclear leucocytes is different from that leading to secretion.

Actins↗

Differences in potency of CXC chemokine ligand 8-, CC chemokine ligand 11-, and C5a-induced modulation of integrin function on human eosinophils.

The hypothesis was tested that different chemoattractants have different effects on the activity of integrins expressed by the human eosinophil. Three chemoattractants, CXCL8 (IL-8), CCL11 (eotaxin-1), and C5a were tested with respect to their ability to induce migration and the transition of eosinophils from a rolling interaction to a firm arrest on activated endothelial cells under flow conditions. CCL11 and C5a induced a firm arrest of eosinophils rolling on an endothelial surface, whereas CXCL8 induced only a transient arrest of the cells. The CXCL8- and CCL11-induced arrest was inhibited by simultaneously blocking alpha4 integrins (HP2/1) and beta2 integrins (IB4). In contrast, the C5a-induced arrest was only inhibited by 30% under these conditions. The potency differences of C5a>CCL11>CXCL8 to induce firm adhesion under flow condition was also observed in migration assays and for the activation of the small GTPase Rap-1, which is an important signaling molecule in the inside-out regulation of integrins. Interestingly, only C5a was able to induce the high activation epitope of alphaMbeta2 integrin recognized by MoAb CBRM1/5. The C5a-induced appearance of this epitope and Rap activation was controlled by phospholipase C (PLC), as was shown with the PLC inhibitor U73122. These data show that different chemoattractants are able to induce distinct activation states of integrins on eosinophils and that optimal chemotaxis is associated with the high activation epitope of the alphaMbeta2 integrin. Furthermore, PLC plays an important role in the inside-out signaling and, thus, the activation status of integrins on eosinophils.

CD18 Antigens↗

Protein synthesis dependent and independent mechanisms of neutrophil emigration. Different mechanisms of inflammation in rabbits induced by interleukin-1, tumor necrosis factor alpha or endotoxin versus leukocyte chemoattractants.

Inflammation constitutes the body's principal mode of defense against infection and other harmful agents. Neutrophil leukocytes are the primary effector cells in this process. The role of protein synthesis in neutrophil emigration into acute inflammatory lesions was examined. Local intradermal injections of actinomycin D, cycloheximide or puromycin could inhibit in a dose- and time-dependent manner neutrophil emigration induced by interleukin-1, tumor necrosis factor alpha or endotoxin, but not by the leukocyte chemoattractants C5a des arg (zymosan-activated plasma), n-formyl-methionyl-leucyl-phenylalanine or leukotriene B4. Maximal inhibition, measured at the time of peak emigration, was greater than 90%. The onset of neutrophil emigration induced by the cytokines or by endotoxin was delayed by 30 to 60 minutes in comparison to the leukocyte chemoattractants. These results demonstrate at least two mechanisms of neutrophil emigration: one with a slower onset and dependence on local RNA transcription and translation and the other rapid in onset and independent of protein synthesis.

Animals↗

Regulation of cytokine expression and leukotriene formation in human basophils by growth factors, chemokines and chemotactic agonists.

Basophils stimulated with IL-3 plus C5a selectively express IL-4 and IL-13 and continuously produce leukotrienes (LT) for hours. C5a combined with IL-5 or granulocyte-macrophage colony-stimulated factor was, however, much less effective in promoting cytokine expression and a late continuous phase of LTC4 production, possibly due to lower expression levels of their receptor alpha chains. Basophils also express several chemoattractant receptors, including high levels of C5a receptors, macrophage chemotactic protein (MCP) receptors (CCR2) and eotaxin receptors (CCR3), intermediate levels of CXCR1, CXCR2 and platelet-activating factor receptors, and lower levels of N-formyl-Met-Leu-Phe (fMLP) receptors. However, among the corresponding agonists, only C5a, fMLP and much more weakly MCP1, were found to induce cytokine expression and continuous LTC4 release, and only when combined with IL-3. CCR3, which is highly expressed on basophils and has been shown to mediate strong migratory but weak release responses, does not regulate cytokine expression. The weakly expressed fMLP receptor is an efficient activator of several cell functions including LTC4 formation, while CXCR2 hardly affects basophil function despite considerable expression. Thus, chemoattractant-receptors mediate different cellular responses unrelated to their expression levels.

Basophils↗

Eosinophil degranulation in the presence of lung fibroblasts.

BACKGROUND: Although eosinophils (Eos) and fibroblasts (Fb) are closely approximated in the bronchial submucosae of asthmatics, and are believed to play important roles in the pathogenesis of bronchial asthma, the interaction between Eos and Fb has not been thoroughly elucidated. In this study, we have examined eosinophil cationic protein (ECP) release from human Eos cultured in the presence of human lung Fb. METHODS: Eos from healthy donors were cultured with or without C5a for 16 h in the presence of human fetal lung Fb which had previously been incubated with or without some cytokines for 4 h. ECP in supernatants was measured by RIA. RESULTS: ECP release was potentiated only when both Eos and Fb were activated by C5a and TNF, respectively, while it was not significantly potentiated when either Eos or Fb were activated. ECP release from Eos activated by C5a was also potentiated when Fb were stimulated by IL-1beta. The enhancement of ECP release in cocultured Eos and Fb with stimulation was partly inhibited by monoclonal antibodies against GM-CSF and was accompanied by the enhancement of adhesion of Eos to Fb. CONCLUSIONS: This study shows that the stimulation of both Eos and Fb increases ECP release. It is suggested that Fb may influence Eos degranulation and play a role in the pathogenesis of bronchial asthma.

Asthma↗

Regulation of neutrophil superoxide production in sepsis.

Neutrophil superoxide production has been recognized as an important pathway for microbicidal activity and regulation of the local inflammatory environment. To investigate neutrophil superoxide production in sepsis, we studied 22 patients with intra-abdominal infections, and correlated superoxide production with chemotactic response and granular enzyme content. Our results showed that neutrophils from infected patients had specific loss of chemotactic response to C5a, and were deficient in the granular enzymes, lysozyme, and beta-glucuronidase. Superoxide production in response to opsonized zymosan was intact, but response to the chemoattractant N-formyl-methionyl-leucyl-phenylalanine was markedly depressed. This could be reversed in vitro by the addition of cytochalasin B. These results suggest that down regulation of exocytosis of superoxide to nonphagocytic stimuli occurs during sepsis, possibly protecting the host from tissue injury due to oxide radical release. Superoxide response to phagocytic stimulation was intact.

Abdomen↗

Mechanisms of beta 1 integrin-dependent adherence of granulocytic HL60 to fibronectin.

We investigated the mechanism of beta 1 integrin-mediated adherence of stimulated granulocytic HL60 cells to fibronectin using a monoclonal antibody (15/7) that recognizes beta 1 integrins only when the receptors are active for ligand binding. Phorbol myristate acetate (PMA) stimulated expression of the 15/7 epitope on granulocytic HL60 by nearly fivefold but had an insignificant effect on the expression of the epitope on undifferentiated HL60 cells. These results paralleled the effect of PMA on HL60 and granulocytic HL60 adhesion to fibronectin, indicating that activation of beta 1 integrins is important for beta 1-mediated adherence of granulocytic HL60 cells to fibronectin. Agonists that stimulate alpha 5 beta 1-dependent human polymorphonuclear leukocyte (PMN) adhesion to fibronectin (C5a and PMA) also upregulated the 15/7 epitope on purified human PMNs. Although PMA rapidly induces increased levels of filamentous actin (F-actin) in granulocytic HL60 cells and a decrease in F-actin levels in undifferentiated HL60 cells, depolymerization of the actin cytoskeleton with cytochalasin B did not affect increased expression of the 15/7 epitope on granulocytic HL60 cells. Cytochalasin B did, however, inhibit granulocytic HL60 adherence to fibronectin by 50%, demonstrating that actin polymerization is important for optimal beta 1-dependent granulocytic adherence.

Actins↗

Influence of porcine natural modified surfactant on chemotaxis and oxidative metabolism of polymorphonuclear leukocytes.

Surfactant has been shown to influence a variety of immune functions. However, for in vitro studies most investigators used a single surfactant concentration often far below what has to be expected in bronchoalveolar fluid following surfactant replacement therapy. We studied the chemotactic activity and the oxygen metabolite release of human polymorphonuclear leukocytes (PMN) following incubation with Curosurf, a porcine modified natural surfactant preparation, at concentrations ranging from 1 to 16 mg/ml. In the presence of 1% bovine serum albumin, surfactant at 1 and 4 mg/ml enhanced anaphylatoxin C5a-related chemotaxis, whereas a higher dose of 16 mg/ml was inhibitory. Furthermore, Curosurf itself demonstrated a concentration-dependent chemotactic effect. Oxygen metabolite release, as measured by nitroblue tetrazolium reduction, was significantly diminished at surfactant concentrations of 8 and 16 mg/ml. This effect was most pronounced when group B streptococci at concentrations 5 x 10(9) CFU/ml were applied for PMN stimulation. We conclude that the effects of surfactant on PMN immune functions are not only concentration-dependent but also influenced by the degree of PMN stimulation.

Animals↗

Role of petasin in the potential anti-inflammatory activity of a plant extract of petasites hybridus.

A large production of leukotrienes (LTs) can be induced in human eosinophils or neutrophils by priming with granulocyte-macrophage colony-stimulating factor and subsequent stimulation with platelet-activating factor (PAF) or the anaphylatoxin C5a. Here, we investigated the effects of a plant extract of petasites hybridus (Ze339) and its isolated active sesquiterpene ester petasin in these two in vitro cell models. Zileuton, a 5-lipoxygenase inhibitor, was used as a positive control. All compounds inhibited both cysteinyl-LT synthesis in eosinophils and LTB(4) synthesis in neutrophils. In contrast, only Ze339 and petasin, but not zileuton, abrogated PAF- and C5a-induced increases in intracellular calcium concentrations. These data suggest that Ze339 and petasin may block, compared to zileuton, earlier signalling events initiated by G protein-coupled receptors in granulocytes, perhaps at the level of or proximal to phospholipase C(beta). Taken together, petasin appears to be one major active compound of petasites hybridus extract, since it demonstrates the same inhibitory activities on calcium fluxes and subsequent LT generation in both eosinophils and neutrophils as Ze339 does.

Anti-Inflammatory Agents↗

Impaired actin polymerization and depolymerization in neutrophils from patients with thermal injury.

Acquired neutrophil dysfunction is considered an important cause of increased susceptibility to infection in patients with burns. In the early postinjury phase, large amounts of circulating chemo-attractants, cytokines and endotoxins induce strong systemic activation of neutrophils which may impair their motile functions. Actin is the most prevalent component of the microfilament lattice that generates force for the neutrophil motile responses, and in the present study we examined the dynamics of actin polymerization and depolymerization in neutrophils from 11 patients with large burns. At admission, the amount of polymerized actin in unstimulated neutrophils was 39.9 per cent higher than that of parallel controls. In addition, there was a positive correlation between the amount of polymerized actin and the total body surface area (TBSA) burn. The time course of patient neutrophil actin polymerization in response to FMLP, C5a, (Ser-IL-8)72, (Ala-IL-8)77 and crosslinking of surface Fc gamma RII was similar to that of controls, and the maximal amount of neutrophil F-actin was demonstrated after 30 s stimulation. At the peak of actin polymerization, however, patient neutrophils contained 27.3, 24.0, 24.7 and 25.6 per cent more polymerized actin than control cells stimulated with FMLP, (Ser-IL,-8)77, (Ala-8)77 and Fc gamma RII crosslinking, respectively. However, the relative increase of neutrophil F-actin following stimulation was significantly lower in patients than in controls. Moreover, the rate of patient neutrophil actin depolymerization was 39.0, 23.5, 63.3 and 51.7 per cent lower than that of controls after stimulation with FMLP, C5a (Ser-IL-8)72 and Fc gamma RII crosslinking, respectively. At discharge, the dynamics of neutrophil actin polymerization and depolymerization were similar to that of controls. The results demonstrate that in neutrophils during the early postburn phase, there are increased basal levels of polymerized actin, a lower responsiveness to stimulation and a reduced rate of actin depolymerization. As periodic polymerization and depolymerization of actin is essential for all neutrophil motile responses, it is probable that the alterations observed may contribute significantly to the overall neutrophil dysfunction following thermal injury.

Actins↗

Pertussis toxin shows distinct early signalling events in platelet-activating factor-, leukotriene B4-, and C5a-induced eosinophil homotypic aggregation in vitro and recruitment in vivo.

The present study was performed to investigate the early signalling events responsible for eosinophil activation in response to platelet-activating factor (PAF), C5a, and leukotriene B4 (LTB4). We evaluated the effect of pertussis toxin (PTX) on eosinophil aggregation in vitro and cutaneous eosinophil recruitment in vivo. Further studies using the protein kinase inhibitors Ro 31-8220 and staurosporine were performed in vitro to assess in more detail the early signalling events induced by these three mediators. Our results show that C5a and LTB4 signal predominantly or exclusively through a PTX-sensitive G protein that is negatively modulated by protein kinase C, possibly at the level of phospholipase C-beta. In contrast, PAF activates eosinophils independent of Gi by a mechanism that is abolished by Ro 31-8220, a selective protein kinase C inhibitor. In addition, these results show for the first time that a receptor-operated event on the eosinophil is essential for chemoattractant-induced eosinophil recruitment in vivo.

Animals↗