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Neutrophil degranulation inhibits potential hydroxyl-radical formation. Relative impact of myeloperoxidase and lactoferrin release on hydroxyl-radical production by iron-supplemented neutrophils assessed by spin-trapping techniques.

Hydroxyl radical (.OH) formation by neutrophils in vitro requires exogenous iron. Two recent studies [Britigan, Rosen, Thompson, Chai & Cohen (1986) J. Biol. Chem. 261, 17026-17032; Winterbourn (1987) J. Clin. Invest. 78, 545-550] both reported that neutrophil degranulation could potentially inhibit the formation of .OH, but differed in their conclusions as to the responsible factor, myeloperoxidase (MPO) or lactoferrin (LF). By using a previously developed spin-trapping system which allows specific on-line detection of superoxide anion (O2-) and .OH production, the impact of MPO and LF release on neutrophil .OH production was compared. When iron-diethylenetriaminepenta-acetic acid-supplemented neutrophils were stimulated with phorbol myristate acetate or opsonized zymosan, .OH formation occurred, but terminated prematurely in spite of continued O2- generation. Inhibition of MPO by azide increased the magnitude, but not the duration, of .OH formation. No azide effect was noted when MPO-deficient neutrophils were used. Anti-LF antibody increased both the magnitude and duration of .OH generation. Pretreatment of neutrophils with cytochalasin B to prevent phagosome formation did not alter the relative impact of azide or anti-LF on neutrophil .OH production. An effect of azide or anti-LF on spin-trapped-adduct stability was eliminated as a confounding factor. These data indicate that neutrophils possess two mechanisms for limiting .OH production. Implications for neutrophil-derived oxidant damage are discussed.

Antibodies↗

Stimulus-response uncoupling in the neutrophil. Adenosine A2-receptor occupancy inhibits the sustained, but not the early, events of stimulus transduction in human neutrophils by a mechanism independent of actin-filament formation.

Generation of superoxide anion (O2-) in response to occupancy of neutrophil chemoattractant receptors requires both early events ('triggering') and sustained signals ('activation'). We have previously demonstrated that occupancy of adenosine A2 receptors inhibits O2- generation by neutrophils. In parallel, adenosine-receptor occupancy promotes association of bound N-formylmethionyl-leucyl-phenylalanine (fMLP) receptors with the cytoskeleton, a process associated with termination of neutrophil activation (stimulus-response uncoupling). We undertook this study to determine whether inhibition of neutrophil function by adenosine-receptor occupancy requires intact actin filaments and to examine the effect of adenosine-receptor occupancy on the stimulated generation of intracellular signals involved in neutrophil triggering and activation. Occupancy of adenosine A2 receptors by 5'-N-ethylcarboxamidoadenosine (NECA, 1 microM) significantly increased (130 +/- 1% of control, P less than 0.001, n = 3) association of [3H]fMLP with cytoskeletal preparations. Cytochalasin B (5 micrograms/ml), an agent which disrupts actin filaments, completely blocked association of [3H]fMLP with cytoskeletal preparations, as previously reported. However, NECA markedly increased association of [3H]fMLP with the cytoskeleton even in the presence of cytochalasin B (P less than 0.0002). Moreover, NECA did not significantly affect either the early (30s) or the late (5 min) formation of actin filaments after stimulation by chemoattractant (fMLP, 0.1-100 nM). Cytochalasin B markedly inhibited actin-filament formation by stimulated neutrophils, and NECA did not reverse the effect of cytochalasin B on actin-filament formation. Adenosine-receptor occupancy did not affect the rapid peak in diacylglycerol generation (less than or equal to 15 s) from either [3H]arachidonate- or [14C]glycerol-labelled phospholipid pools. However, as would be predicted if occupancy of the adenosine receptor was a signal for early termination of cell activation, NECA (1 microM) markedly diminished the slow sustained generation of diacylglycerol. These results suggest that adenosine-A2-receptor occupancy does not affect triggering of the neutrophil, but that occupancy of adenosine receptors is an early signal for the termination of neutrophil activation, i.e. the 'premature' finish of signal transduction. Moreover, these data indicate that at least two pathways are available for increasing the association of ligated chemoattractant receptors with the cytoskeleton of neutrophils: F-actin-dependent and -independent.

Actins↗

Circulating platelet-neutrophil complexes represent a subpopulation of activated neutrophils primed for adhesion, phagocytosis and intracellular killing.

Platelets play a prominent role in linking the processes of inflammation, haemostasis and thrombosis. Recent studies have shown that platelets form heterotypic aggregates with leucocytes via platelet CD62P and leucocyte beta2 integrins. These interactions have been observed in vitro in blood taken from healthy volunteers and in clinical conditions in which thrombosis and inflammation are prominent. This study investigated the properties of platelet-neutrophil complexes (PNCs) in anticoagulated whole blood. At rest, neutrophils in PNCs exhibit a significantly more activated adhesion molecule profile than free neutrophils with increased CD11b expression and activation (increased binding of the CD11b/CD18 'activation reporter' monoclonal antibody 24) and decreased CD62L expression. In addition, neutrophils in PNCs phagocytosed significantly more Neisseria meningitidis and produced more toxic oxygen metabolites than free neutrophils. Stimulation with the platelet agonist adenosine diphosphate (ADP) led to further increases in CD11b expression and activation, loss of CD62L as well as increased phagocytosis and toxic oxygen metabolite production throughout the whole neutrophil population. When these experiments were repeated with the CD62P blocking antibody G1 the effects were inhibited to a variable extent, dependent upon the parameter under investigation. These results indicate that both soluble and contact-dependent factors contribute to platelet-mediated neutrophil activation. Platelet neutrophil complexes represent a large subpopulation of neutrophils with a more activated adhesion molecule profile, and a greater capacity for phagocytosis and toxic oxygen metabolite production. This study provides further support for a role for PNCs in both health and disease.

Blood Platelets↗

Neutrophil elastase inhibitor reduces neutrophil chemoattractant production after ischemia-reperfusion in rat liver.

BACKGROUND & AIMS: Neutrophils are important in the development of tissue injury induced by ischemia-reperfusion. The ability of an inhibitor of neutrophil elastase (ONO-5046) to protect against ischemia-reperfusion injury in rat liver was investigated by measuring serum concentrations of cytokine-induced neutrophil chemoattractant. METHODS: Liver ischemia was induced in rats by occluding the portal vein for 30 minutes, and ONO-5046 or anticoagulants were injected intravenously 5 minutes before vascular clamping. RESULTS: Serum concentration of cytokine-induced neutrophil chemoattractant increased after reperfusion, reached a maximum at 6 hours, and then gradually decreased. However, pretreatment of animals with heparin (50 U/kg), antithrombin III (250 U/kg), or ONO-5046 (10 mg/kg) resulted in significantly smaller increases in the serum concentration of cytokine-induced neutrophil chemoattractant after reperfusion. Pretreatment with both ONO-5046 and heparin, or both ONO-5046 and antithrombin III, produced additive effects. Pretreatment of rats with both ONO-5046 and heparin or both ONO-5046 and antithrombin III also inhibited the increase in cytokine-induced neutrophil chemoattractant mRNA in liver. These combined treatments significantly reduced the increases in both the number of neutrophils accumulated in the liver and the hepatic activity of myeloperoxidase. CONCLUSIONS: Cytokine-induced neutrophil chemoattractant production after ischemia-reperfusion in the liver is mediated by neutrophil elastase and activation of coagulation within the hepatic microcirculation.

Animals↗

Regulation of Src family tyrosine kinase activities in adherent human neutrophils. Evidence that reactive oxygen intermediates produced by adherent neutrophils increase the activity of the p58c-fgr and p53/56lyn tyrosine kinases.

Src family tyrosine kinases have been implicated in the adhesion-dependent activation of neutrophil functions (Yan, S. R., Fumagalli, L., and Berton, G. (1995) J. Inflamm. 45, 297-312; Lowell, C. A., Fumagalli, L., and Berton, G. (1996) J. Cell Biol. 133, 895-910). Because the activity of tyrosine kinases can be affected by oxidants, we investigated whether reactive oxygen intermediates (ROI) produced by adherent neutrophils regulate Src family kinase activities. Inhibition of ROI production by diphenylene iodonium, an inhibitor of NADPH oxidase, or degradation of H2O2 by exogenously added catalase inhibited the adhesion-stimulated activities of p58(c-fgr) and p53/56(lyn). In addition, adhesion-stimulated p58(c-fgr) and p53/56(lyn) activities were greatly reduced in neutrophils from patients with chronic granulomatous disease (CGD) that are deficient in the production of ROI. Exogenously added H2O2 increased p58(c-fgr) and p53/56(lyn) activities in nonadherent neutrophils. Although ROI regulated the activities of p58(c-fgr) and p53/56(lyn), they did not affect the redistribution of the two kinases to a Triton X-100-insoluble, cytoskeletal fraction that occurs in adherent neutrophils. Tyrosine phosphorylation of proteins in adherent, CGD neutrophils was only partially inhibited, suggesting that the full activation of p58(c-fgr) and p53/56(lyn), which depends on endogenously produced ROI, does not represent an absolute requirement for protein tyrosine phosphorylation. The adhesion-stimulated activity of the tyrosine kinase p72(syk) was not affected by catalase in normal neutrophils, and it was comparable in normal and CGD neutrophils. These findings suggest that ROI endogenously produced by adherent neutrophils regulate Src family kinases activity selectively and establish the existence of a cross-talk between reorganization of the cytoskeleton, production of ROI, and Src family tyrosine kinase activities in signaling by adhesion.

Catalase↗

Elastase and cathepsin G activities are present in immature bone marrow neutrophils and absent in late marrow and circulating neutrophils of beige (Chediak-Higashi) mice.

Elicited peritoneal neutrophils of beige (Chediak-Higashi) mice essentially lack activities of the neutral serine proteinases elastase and cathepsin G, which may explain the increased susceptibility to infection of beige mice and Chediak-Higashi patients. We have examined neutrophils of beige mice at earlier points in their development to determine if the proteinase genes are never expressed or whether they are expressed and then lost during neutrophil maturation. Surprisingly, bone marrow of beige mice had significant elastase and cathepsin G activity (approximately 60% of normal). The results of several experiments indicate that neutrophils were the sole source of elastase and cathepsin G in bone marrow. Neutral proteinase activity was readily demonstrable by histochemical procedures in beige marrow neutrophil precursors up to and including the metamyelocyte stage. However, mature neutrophils of beige marrow had greatly decreased activity. Also mature neutrophils (PMNs) of the peripheral circulation, like peritoneal neutrophils, had very low elastase and cathepsin C activities. Thus we conclude that beige neutrophil precursors express neutral proteinase activity, which is largely and irreversibly depleted by the time they fully mature in marrow.

Animals↗

Identification of human neutrophil-derived cathepsin G and azurocidin/CAP37 as chemoattractants for mononuclear cells and neutrophils.

Macrophage infiltration into inflammatory sites is generally preceded by neutrophils. This suggests neutrophils may be the source of chemotactic factors for monocytes. To identify these putative monocyte attractants, we have systematically prepared neutrophil granules, lysed them, and sequentially purified the released proteins by several reverse phase chromatography procedures. Assays for monocyte chemotactic activity of the chromatography fractions yielded a major peak of activity associated with a protein of 30 kD, according to SDS-PAGE analysis. NH2-terminal sequence of the protein revealed this to be identical to cathepsin G. The monocyte chemotactic activity of human cathepsin G was dose dependent with optimal concentration at 0.5-1 microg/ml. Cathepsin G is chemotactic rather than chemokinetic for monocytes, as demonstrated by checkerboard analysis. Cathepsin G-induced monocyte chemotaxis is partially pertussis toxin sensitive implying the involvement of a G protein-coupled receptor. Enzymatic activity of cathepsin G is associated with its monocyte chemotactic activity, since DFP- or PMSF-inactivated cathepsin G no longer induced monocyte migration. The chemotactic activity of cathepsin G can also be completely blocked by alpha1 antichymotrypsin, a specific inhibitor of chymotrypsin-like proteinases present in human plasma. In addition, cathepsin G is also a potent chemoattractant for neutrophils and a chemokinetic stimulant for T cells. In the course of pursuing these in vitro studies, we established that the T cell chemoattractant, azurocidin/CAP37 from human neutrophil granules, at doses of 0.05 to 5 microg/ml, was chemotactic for monocytes and neutrophils. As predicted from the in vitro chemotactic activity, subcutaneous injection of cathepsin G into BALB/c mice led to infiltration of both mononuclear cells and neutrophils. Thus, the transition of inflammatory exudate from neutrophil to mononuclear cells can be mediated, at least in part, by extracellular release of neutrophil granule proteins such as cathepsin G and azurocidin/CAP37.

Animals↗

Neutrophil nuclear segmentation in mild cobalamin deficiency: relation to metabolic tests of cobalamin status and observations on ethnic differences in neutrophil segmentation.

Neutrophil hypersegmentation is considered the most sensitive peripheral blood cell marker of cobalamin deficiency. However, its diagnostic value in the mild deficiency states that accompany most low cobalamin levels and its relation to metabolic test of cobalamin status are unknown. The authors compared neutrophil lobe averages and percent neutrophils with 5 or more lobes (%5+ lobes) in 169 subjects with their mean corpuscular volume (MCV) and serum cobalamin, methylmalonic acid (MMA), homocysteine, and folate levels and, in 65 cases, with the deoxyuridine suppression test (dUST). Only 9 subjects had hypersegmentation by lobe average and 20 subjects by %5+ lobes. They were not more often cobalamin-deficient than subjects without hypersegmentation. Moreover, only one of 34 subjects with dUST results diagnostic for cobalamin deficiency had neutrophil hypersegmentation. Both indices of neutrophil segmentation in the 169 subjects correlated significantly with homocysteine levels. They also showed weak inverse correlation with cobalamin levels, but did not correlate with MMA, folate, or MCV values. Cobalamin therapy for 6 months did not significantly change neutrophil lobe averages in 35 subjects with mild deficiency, compared with 8 nondeficient controls, and only marginally improved the %5+ lobes. A surprising, incidental observation was that blacks had significantly greater neutrophil segmentation by both criteria than did whites and others. This difference was unrelated to cobalamin or folate status. Our results indicate that dUST abnormalities precede all morphologic changes of deficiency, including hypersegmentation. Although a tendency exists for neutrophil segmentation to increase very slightly as some serum values, especially homocysteine, start to worsen in mild cobalamin deficiency, the metabolic changes precede overt hypersegmentation. Neutrophil nuclear segmentation is insufficiently sensitive in relation to metabolic evidence of deficiency to be used as a clinical tool in the diagnosis of mild cobalamin deficiency.

Asian People↗

Hypertonic saline resuscitation reduces neutrophil margination by suppressing neutrophil L selectin expression.

UNLABELLED: Hypertonic saline (HS) reduces hemorrhage-induced lung injury by suppressing the neutrophil oxidative burst and reducing lung neutrophil influx. This study investigated whether this is caused by the effects of HS on endothelial adhesion molecule expression, the production of chemoattractants in the lung, or a direct effect of HS on neutrophil selectin expression. METHODS: BALB/c mice were made to hemorrhage to 40 mm Hg for 1 hour and resuscitated with shed blood and either 4 mL/kg 7.5% HS or two times the shed blood volume of lactated Ringer's solution (LRS). Neutrophil L selectin expression was determined by flow cytometry, total neutrophil counts were obtained by differential staining, and pulmonary endothelial P and E selectin expression was evaluated by immunohistochemistry. Chemoattractants in lung lavages were determined with a modified Boyden chamber migration assay. RESULTS: Chemotactic activity of lavage fluid of HS-treated animals was not significantly different from that of LRS-treated animals, and endothelial P and E selectin expression was not altered by HS resuscitation. Neutrophils of HS-treated animals, however, expressed significantly less L selectin than those of LRS-treated mice. Concomitantly, circulating neutrophil counts of LRS-treated animals were significantly decreased compared with those of HS-treated mice. CONCLUSION: HS had little effect on endothelial selectin expression and chemoattractant production in the lung. HS significantly decreased neutrophil L selectin expression, however. This suggests that HS resuscitation may reduce lung injury by preventing neutrophil L selectin expression and endothelial adhesion.

Animals↗

Neutrophil-endothelial cell interactions: mechanisms of neutrophil adherence to vascular endothelium.

Adherence of circulating neutrophils to the microvascular endothelium is the initial step in diapedesis, the process by which leukocytes migrate through blood vessels to accumulate at sites of cutaneous disease or injury. The mechanisms underlying neutrophil-endothelial cell interactions are currently under intense investigation. It has now been clearly shown that human neutrophil adherence in vitro to cultured human endothelial cell monolayers can be enhanced by a variety of mediators of inflammation, that both the neutrophil and the endothelial cell may actively contribute to the adhesive interaction depending on the stimuli involved, and that the Mac-1, LFA-1, p150,95 glycoprotein family (CD11/CD18) plays a critical role. Chemotactic peptides (FMLP, C5a) and lipid mediators (LTB4, PAF) act primarily on the neutrophil to enhance its adherence to endothelium. The effect occurs quickly (maximal response within 2 min), can be rapidly modulated, and is dependent on the expression of CD11/CD18 on the neutrophil surface. In contrast, the cytokines, interleukin-1 (IL-1) and tumor necrosis factor (TNF), as well as bacterial lipopolysaccharide (LPS), induce cultured human endothelial cells to increase their adhesivity for human neutrophils by a process that is time-dependent, requiring 4 to 6 h for maximal response, and involves de novo RNA and protein synthesis. Two adhesion molecules are induced on the surface of endothelium in response to cytokine activation: endothelial-leukocyte adhesion molecule-1 (ELAM-1) and intercellular adhesion molecule-1 (ICAM-1). ICAM-1 is a ligand for LFA-1 (CD11a/CD18). Thus, CD11/CD18 plays a central role in neutrophil adherence to endothelium stimulated by chemotactic factors or cytokines. However, much still remains to be explored to further understanding of the fascinating but complex interaction of circulating neutrophils and the microvascular endothelium during acute inflammatory reactions in the skin.

Biomechanical Phenomena↗

Evidence that neutrophil accumulation induced by interleukin-1 requires both local protein biosynthesis and neutrophil CD18 antigen expression in vivo.

1. Mechanisms involved in neutrophil accumulation induced by intradermal injection of interleukin-1 (IL-1) in the rabbit were investigated using intravenously-injected 111In-labelled neutrophils. C5a des Arg, N-formyl-methionyl-leucyl-phenylalanine (FMLP) and leukotriene B4 (LTB4) were included for comparison. 2. Local inhibition of protein biosynthesis in the skin using actinomycin-D or cycloheximide blocked 111In-neutrophil accumulation induced by IL-1, but not that induced by the other mediators. 3. Actinomycin-D and cycloheximide had no effect on local plasma protein leakage induced by intradermally-injected C5a des Arg, or that induced by zymosan. 111In-neutrophil accumulation induced by zymosan was, however, partially suppressed. 4. A monoclonal antibody, MoAb 60.3, recognising neutrophil surface CD18 antigen, was preincubated with 111In-neutrophils before intravenous injection. This pretreatment did not affect circulating numbers of radiolabelled cells, but it inhibited their accumulation in response to IL-1, C5a des Arg and the other mediators. 5. The results suggest that neutrophil accumulation induced by IL-1, but not the other mediators, requires local protein biosynthesis, probably in the microvascular endothelium. Neutrophil accumulation to IL-1 and the other mediators appears to require neutrophil surface antigen, CD18. The inflammatory response to zymosan may be mediated by both endogenous C5a des Arg and IL-1.

Animals↗

[Determination of the neutrophil function in the respiratory infection by chemiluminescence (CL). III: Changes in neutrophil and whole blood CL after chemotherapy against the acute respiratory infection].

We measured the chemiluminescent activity (CL-index) in both the whole blood and isolated neutrophils from 12 patients with acute respiratory infection (7 cases; pneumonia, 4 cases; in the exacerbated phase, chronic lower tract infection, and one; acute bronchitis) two times per each case: before and after chemotherapy. Before the initiation of chemotherapy, neutrophil and whole blood CL was high but whole blood CL was higher. After the completion of chemotherapy, whole blood CL was decreased more significantly than neutrophil CL. There was no correlation between neutrophil CL and whole blood CL. However the neutrophil CL-index.N (neutrophil numbers x neutrophil CL-index) was correlated with the whole blood CL. Thus, we think the number of neutrophils is a critical factor for phagocytic function of neutrophils as determined by CL.

Acute Disease↗

Role of epithelial interleukin-8 (IL-8) and neutrophil IL-8 receptor A in Escherichia coli-induced transuroepithelial neutrophil migration.

Escherichia coli stimulates neutrophil migration across human uroepithelial cell layers. This study investigated the role of the neutrophil chemokine interleukin-8 (IL-8) in this process. E. coli and IL-1alpha stimulated urinary tract epithelial layers to secrete IL-8 and induced transepithelial neutrophil migration. Anti-IL-8 antibody reduced neutrophil migration across epithelial cell layers, indicating a central role for this chemokine in the migration process. Furthermore, addition of recombinant IL-8 to unstimulated cell layers was sufficient to induce migration. The IL-8 dependence of neutrophil migration was maintained after removal of soluble IL-8 by washing of the cell layers. Flow cytometry analysis with fluorescein isothiocyanate-labelled IL-8 confirmed IL-8's ability to bind to the epithelial cell surface. Indirect immunofluorescence with confocal laser scanning microscopy showed that IL-8 associated with the epithelial cell layers. Prior incubation of neutrophils with antibodies to IL-8 receptor A (IL-8RA) reduced neutrophil migration. Anti-IL-8 RB antibody had no effect on neutrophil migration. These results demonstrate that IL-8 plays a key role in E. coli- or IL-1alpha-induced transuroepithelial migration and suggest that epithelial cell-produced IL-8 interacts with IL-8RA on the neutrophil surface.

Antigens, CD↗

Human neutrophil lipocalin is a unique marker of neutrophil inflammation in ulcerative colitis and proctitis.

BACKGROUND AND AIM: Accumulation and infiltration by neutrophil granulocytes is a prominent feature in the local inflammatory process in ulcerative colitis (UC). The present study was performed to evaluate human neutrophil lipocalin (HNL) as a specific neutrophil marker in the inflamed lesions of the colon and rectum in patients with colitis and proctitis. METHODS: The activity of intestinal neutrophils with respect to release of granule proteins was studied in 18 patients with UC (10 with colitis and eight with isolated proctitis) and in 18 healthy controls using perfusion fluid and biopsies from the sigmoid colon and rectum. The released amounts of the neutrophil granule proteins HNL and myeloperoxidase (MPO) were determined by radioimmunoassays, and the location of HNL and MPO in biopsies from colonic mucosa was examined by immunohistochemistry. RESULTS: Mucosal release of HNL and MPO was increased 10-55-fold in patients with colitis and proctitis compared with controls. Their bowel biopsies demonstrated that only neutrophils were stained with anti-HNL. We also found correlations between HNL and levels of granulocyte/macrophage-colony stimulating factor (GM-CSF) and interleukin 8 (IL-8) in perfusion fluids from the sigmoidal segments of patients with proctitis, between HNL and GM-CSF in rectal segments in patients with proctitis, and in sigmoidal segments in patients with colitis. CONCLUSION: We conclude that the increased release of HNL and MPO in colorectal perfusion fluids indicates neutrophil involvement in the local inflammatory process, and suggest that HNL may serve as a specific marker of intestinal neutrophil activation in UC. GM-CSF, and to some extent IL-8, may play a role in neutrophil accumulation and priming in this disease.

Acute-Phase Proteins↗

Contributions of capillary pathway size and neutrophil deformability to neutrophil transit through rabbit lungs.

Neutrophil margination within the pulmonary capillary is due to a delay in their transit compared with that of red blood cells (RBC). This delay has been attributed to the large fraction of capillary segments that are narrower than spherical neutrophils and differences between the time required for deformation of neutrophils and that required for deformation of RBC. This study investigated the characteristics of neutrophil deformation in vivo and the perfusion patterns of segments within capillary pathways. Studies comparing the extraction of neutrophils with that of nondeformable microspheres in one transit through the pulmonary circulation suggest that neutrophils can undergo a rapid deformation from 6.4 to 5.0-5.1 microns, whereas larger deformations require a delay. Effective diameters of the perfused capillary pathways were larger than expected for a random distribution of capillary segment diameters within these pathways. The longer transit times of neutrophils in the upper regions of the lung were associated with a greater fraction of pathways containing narrow segments. These studies suggest that neutrophil deformability and capillary pathway diameters are important in determining the size of the marginated pool of neutrophils within the pulmonary capillaries.

Animals↗

Neutrophil-derived TNF-related apoptosis-inducing ligand (TRAIL): a novel mechanism of antitumor effect by neutrophils.

To detect the novel genes expressed uniquely in neutrophils and elucidate their function, the gene expression pattern was compared by using cDNA microarray containing 240 cytokine genes between the neutrophils and peripheral blood mononuclear cells (PBMCs) obtained from healthy human donors. Twenty-six genes, including tumor necrosis factor-related apoptosis-inducing ligand (TRAIL), were expressed in neutrophils at a level >10 times higher than that seen in phytohemagglutinin-stimulated PBMCs. The amounts of mRNA and protein of TRAIL were quantified by real-time reverse transcription-PCR and ELISA, respectively. TRAIL was expressed in resting neutrophils at the mRNA and protein levels, and its expression was enhanced after stimulation with IFN-gamma. Neutrophils expressed TRAIL on the cell surface and released it into the culture media. The cytotoxicity of neutrophil-derived TRAIL against Jurkat cells was determined by flow cytometry using FITC-conjugated annexin V. When Jurkat cells were cultured with neutrophils in the presence of IFN-gamma, the number of Jurkat cells undergoing apoptosis increased, and such increase depended on the effector:target ratio. This cytotoxicity was suppressed partially by adding anti-TRAIL antibody to the media. Neutrophils may exert their own antitumor effect by TRAIL. A microarray analysis was found to be a useful tool for detecting novel genes that are suggested to play unknown roles in the neutrophil function.

Apoptosis Regulatory Proteins↗

Platelet-neutrophil interactions in uremic patients: effects on neutrophil superoxide anion production and chemiluminescence.

Isolated resting platelets are able to limit neutrophil activation and then can control the tissue-damaging potential of activated neutrophils. In the present study, platelet-neutrophil interactions have been evaluated in 10 uremic patients; the blood samples have been collected before the hemodialysis session. Twelve normal subjects served as controls. Platelets and neutrophils have been isolated and recombined in an autologous ex vivo system. Anion superoxide production and chemiluminescence (which is related to hypochlorous acid production) have been evaluated after stimulation with N-formyl-methionyl-leucyl-phenylalanine. Coincubation of platelets from normal subjects with autologous neutrophils led to a dose-dependent inhibition of both superoxide anion generation induced by N-formyl-methionyl-leucyl-phenylalanine and chemiluminescence. Instead, platelets from uremic patients have not affected superoxide anion production by autologous neutrophils. The chemiluminescence was reduced by coincubation with autologous platelets only at the highest platelet-neutrophil ratio (100:1). In conclusion, the modulation exerted by platelets towards neutrophil activation can be impaired in chronic uremia. Therefore, the tissue-damaging potential of circulating neutrophils, due to toxicity by superoxide anion and hypochlorous acid, may be increased.

Adult↗

Inhibition of neutrophil elastase by alpha-1-proteinase inhibitor oxidized by activated neutrophils.

The present study was aimed at testing whether neutrophil-oxidized alpha 1-proteinase inhibitor (alpha 1PI) is a slow-binding inhibitor of neutrophil elastase like N-chlorosuccinimide-oxidized alpha 1PI or whether it does not inhibit this enzyme at all as currently thought. alpha 1PI was reacted with phorbol-myristate-acetate-activated neutrophils and isolated from the oxidation medium by fast protein liquid chromatography on an anion exchange column. When sufficient time was allowed for oxidized alpha 1PI to react with neutrophil elastase (2 h), enzyme-inhibitor complex formation could be demonstrated by three means: (1) inhibition of elastase activity, (2) detection of the complex using an enzyme-linked immunosorbent assay specific for the native alpha 1PI-elastase complex, and (3) SDS-polyacrylamide gel electrophoresis, which evidenced a complex with a molecular weight of 80,000. Porcine pancreatic elastase was not inhibited. Neutrophil-oxidized alpha 1PI behaved as an irreversible inhibitor of neutrophil elastase, as revealed by the kinetic analysis of the inhibition reaction. The rate constant for the inhibition of neutrophil elastase by neutrophil-oxidized alpha 1PI (0.76 +/- 0.22 x 10(4) M-1 s-1) was close to that for the inhibition of the enzyme by N-chlorosuccinimide-oxidized alpha 1PI (0.96 +/- 0.24 x 10(4) M-1 s-1), but it was more than three orders of magnitude lower than that for the reaction of native alpha 1PI with neutrophil elastase. Both native and oxidized alpha 1PI were temporary elastase inhibitors: the enzyme slowly and spontaneously escaped the complex with formation of an inactive alpha 1PI derivative with a molecular weight of 49,000.(ABSTRACT TRUNCATED AT 250 WORDS)

Blood Proteins↗