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C Dahlgren

Publications and source records attributed to C Dahlgren.

At least 73 records · Page 4Linked to original sources

Calcium-induced translocation of annexins to subcellular organelles of human neutrophils.

The annexins are Ca(2+)-regulated, phospholipid-binding proteins which have been suggested to take part in cellular events such as exocytosis. The subcellular localization of annexins in human neutrophils was determined using monoclonal antibodies against annexins I, II, IV and VI and a polyclonal peptide antiserum against an annexin consensus sequence. Several annexins were translocated to the light membrane fraction enriched in plasma membranes and secretory vesicles. Annexins were associated also with the azurophil and specific granules. Whereas annexins I, IV and VI and one unidentified 35 kDa protein translocated to each of the isolated organelles, annexin II, a 66 kDa annexin IV-like protein, and a 38 kDa annexin I-like protein exhibited organelle-related differences in their association with membranes. The 38 kDa annexin associated only with specific granules and the secretory vesicles/plasma membrane but not with azurophil granules. Annexin II and the 66 kDa annexin IV-like protein associated with each of the neutrophil organelles, but the binding to specific granules and secretory vesicles/plasma membrane showed a Ca(2+)-dependency different from that of azurophil granules. This observation suggests that these proteins may contribute to the secretory process in neutrophils.

Amino Acid Sequence↗

Effects of five amino-amide local anaesthetic agents on human polymorphonuclear leukocytes measured by chemiluminescence.

The aim of this study was to assess the influence of five amino-amide local anesthetic agents on the production of oxygen metabolites in the human polymorphonuclear leukocyte (PMNL), both intra- and extracellularly. Ropivacaine, a new long-acting amino-amide local anaesthetic agent, bupivacaine, lidocaine, mepivacaine and prilocaine in concentrations 1-5 micrograms.ml-1 up to 500-1000 micrograms.ml-1 were compared to an untreated control. PMNLs were isolated from heparinized blood (healthy adult volunteers). Cells were incubated with the various local anaesthetics (37 degrees C, 30 min), then placed in a Biolumat (luminol-amplified chemiluminescence) and stimulated by formyl-methionyl-leucyl-phenylalanine (FMLP), phorbol myristate acetate (PMA) or ionomycin. Horseradish peroxidase (HRP) was added to discriminate between an intra- or extracellular response. In general, a decrease in chemiluminescence-response was seen with higher concentrations (500-1000 micrograms.ml-1) of the various local anaesthetics. Lidocaine showed a decrease even at lower concentrations. A marked increase in intracellular response for prilocaine 1000 micrograms.ml-1 (3894 mumol.l-1) accompanied by a reduction in extracellular response, using FMLP +/- HRP as a stimuli, was noted. Ropivacaine 1000 micrograms.ml-1 (3216 mumol-l-1) showed a decrease both intra- and extracellularly that was similar to, and even somewhat more pronounced than lidocaine 1000 micrograms.ml-1 (3692 mumol.l-1), when using PMA with or without HRP as the stimuli.

Amides↗

Quartz selectively down-regulates CR1 on activated human granulocytes.

We have investigated the interaction between quartz and granulocytes with respect to complement receptor expression. When N-formylmethionyl-leucyl-phenylalanine (fMLP)-stimulated leukocytes were exposed to quartz at 37 degrees C, CR1 was down-regulated but CR3 was not affected. This was a direct effect on granulocytes because it occurred in a similar fashion when mixed leukocyte suspensions and isolated granulocyte populations were used as targets for quartz. The observed down-regulation by quartz was not affected by the microfilament-disrupting agent cytochalasin B and the total detectable pool of CR1 was reduced after quartz exposure. When protease inhibitors, such as aprotinin or phenylmethanesulfonyl fluoride, were present during quartz exposure, the down-regulation of CR1 was less pronounced, but this was not the case not when protease inhibitors such as EDTA-Na2 and pepstatin were present. Exposure to quartz was not accompanied by a pronounced release of beta-glucuronidase (marker for the primary granules) or vitamin B12 binding protein (marker for the secondary granules). In contrast to quartz, exposure to alumina did not affect the expression of CR1 and CR3. The spontaneous mobilization of CR1 at 37 degrees C was reduced when quartz was present but the CR3 mobilization was unaffected. Our results indicate that quartz induces a granule protease-dependent selective shedding of CR1 but not CR3 despite a low degree of degranulation.

Aprotinin↗

Quantitative slot-blot chemiluminescence assay for determination of myeloperoxidase from human granulocytes.

Using slot blot, we show that myeloperoxidase (MPO), a constituent of azurophil granules of neutrophil polymorphonuclear leukocytes, can be measured quantitatively using a commercially available chemiluminescence kit, originally developed for detection of specific proteins on Western blots. MPO is determined through its ability to catalyze the oxidation of luminol, resulting in the emission of light which is recorded on a photographic film. The sensitivity of the method is high and allows MPO from less than 100 cells to be detected. This method was used to determine MPO in exudate fluid and in neutrophil fractions following disintegration and subcellular fractionation of the postnuclear supernatant on two-layer Percoll gradients.

Adult↗

Propofol decreases random and chemotactic stimulated locomotion of human neutrophils in vitro.

We have studied the influence of clinical concentrations of propofol (2,6-diisopropyl phenol), emulsified propofol (Diprivan) and the emulsifier of propofol (Intralipid 10%) on random and chemotactic locomotion of human polymorphonuclear leucocytes in an agarose assay. Random locomotion was decreased (P < 0.001) to a similar extent by the three drugs. Concentrations of propofol 2.5 micrograms ml-1 and greater, and of Diprivan 3.33 micrograms ml-1 and greater, also reduced chemotaxis (P < 0.05) against both zymosan-activated human serum (C5a) and N-formyl-methionyl-leucylphenylalanine (FMLP), used as chemoattractants. Intralipid reduced chemotaxis towards C5a but not towards FMLP. We conclude that propofol in clinically relevant concentrations may adversely affect leucocyte locomotion in vitro.

Adult↗

Activation of the oxygen-radical-generating system in granules of intact human neutrophils by a calcium ionophore (ionomycin).

Subcellular fractionation studies were performed on human neutrophils stimulated with ionomycin (a Ca(2+)-specific ionophore). The results of these studies revealed NADPH-oxidase activity, without any additive, both in the plasma membrane and in the specific granule fractions. After comparing these results with the NADPH oxidase activity induced by the ionophore in intact neutrophils, in differentiated HL-60 cells and in neutrophil cytoplasts, we conclude that ionomycin preferentially activates the NADPH oxidase pool located in the membrane of specific granules. Furthermore, we suggest that incorporation of granule membrane into the plasma membrane makes the associated NADPH oxidase less sensitive to activation induced by a rise in [Ca(2+)]i.

Adult↗

Differentiation of human peripheral blood monocytes to macrophages is associated with changes in the cellular respiratory burst activity.

When phagocytic leukocytes, e.g. neutrophils, monocytes and macrophages, interact with soluble or particulate stimuli, the cells respond with an increased production of reactive oxygen metabolites. This production can be measured with the luminol-amplified chemiluminescence (CL) technique. In the present study, the CL reaction induced in monocyte-derived macrophages was investigated and compared to the responses of neutrophils and monocytes. In systems without additives the CL response of macrophages to soluble stimuli (FMLP, PMA and ionomycin) was very low. Addition of a peroxidase (HRP) to the reaction mixtures resulted in a pronounced increase in CL activity. The cellular CL response in macrophages is thus limited by the amount of peroxidase available. The macrophage response differs qualitatively from the responses of neutrophils and monocytes, in that the intracellular phase of the response is missing.

Adult↗

Phagocytosis by lipopolysaccharide-primed human neutrophils is associated with increased extracellular release of reactive oxygen metabolites.

The effect of priming human neutrophils with lipopolysaccharide was investigated regarding the respiratory burst activity generated during phagocytosis of IgG- or C3b-opsonized yeast particles. LPS pretreatment significantly enhanced the respiratory burst activity, measured as luminol-amplified chemiluminescence, of both types of opsonized particles. In control cells most of the activity was produced intracellularly, probably in the phagosomes. In the primed cells, however, extracellular release of reactive oxygen metabolites was significantly increased during Fc- and CR3-mediated phagocytosis (P less than 0.01 and P less than 0.002, respectively). The release was most pronounced when using C3b-opsonized particles. Potent oxygen metabolites acting together with lysosomal enzymes are of importance in inflammatory-induced tissue damage. An increased extracellular release of reactive oxygen species by phagocytizing primed neutrophils can therefore lead to greater damage to the surrounding tissues.

Extracellular Space↗

Phagocytosis following translocation of the neutrophil b-cytochrome from the specific granule to the plasma membrane is associated with an increased leakage of reactive oxygen species.

The effect of neutrophil b-cytochrome translocation on the respiratory burst activation generated during phagocytosis of yeast particles was investigated. Secretion of neutrophil specific granules was induced by the calcium ionophore ionomycin prior to phagocytosis. The secretory process is associated with a translocation from the specific granules to the plasma membrane of the respiratory burst b-cytochrome. Respiratory burst activity was measured as release of hydrogen peroxide in the absence of azide (extracellular leakage) and in the presence of azide (total production). The subcellular localization of the b-cytochrome was found to affect the extracellular release of hydrogen peroxide in that a plasma membrane localization was associated with a significantly increased release during phagocytosis. It should be pointed out, however, that most of the hydrogen peroxide, both in control and in ionomycin-treated cells, is produced intracellularly, probably in the phagosomes.

Adult↗

N-acetylcysteine enhances receptor-mediated phagocytosis by human neutrophils.

The effect of the sulphur compound N-acetylcysteine (NAC) on certain receptor-mediated cellular functions [chemiluminescence (CL), phagocytosis and degranulation] in human neutrophils was studied, to evaluate how a scavenger of certain toxic oxygen product can protect the phagocyte and the bystander tissue cells from oxidative damage. When using IgG-opsonized yeast particles as stimulating agent, preincubating the neutrophils with NAC (0.25 mg/ml = 1.5 mM) increased both the CL response and phagocytosis. Higher concentrations of NAC (0.50-1.00 mg/ml = 3-6 mM) decreased the CL response, whereas the phagocytic capacity was still enhanced. This effect was more pronounced with adherent neutrophils than with neutrophils in suspension. No increased CL or phagocytic activity was, however, induced by NAC when C3bi-opsonized particles were used as a prey. From the fact that NAC (i) inhibited extracellularly localized myeloperoxidase dependent activities, and (ii) had no effect on neutrophils from patients with chronic granulomatous disease (CGD), we conclude that the scavenger effect of NAC not only reduces the accumulation of oxidative metabolites per se, but also enhances receptor-mediated phagocytosis by protecting Fc(IgG)-receptors from oxidative damage mediated by myeloperoxidase (MPO) and hydrogen peroxide (H2O2). Since NAC can increase phagocytosis and reduce the extracellularly produced oxidative metabolites, we furthermore conclude that NAC possesses some ideal properties as an anti-inflammatory agent.

Acetylcysteine↗

Phagocyte killing of Campylobacter jejuni in relation to oxidative activation.

When studying the interaction between Campylobacter jejuni and human neutrophils, we found that four different clinical isolates showed a great variability in this association. Also the ability to induce neutrophil production of oxidative metabolites, measured as chemiluminescence (CL), differed between the strains. Surprisingly, strain 1, which showed weak interaction with neutrophils and high resistance to killing, induced the highest CL response. All strains evoked an intracellular CL response, and three strains also gave rise to an extracellular response. This extracellular release of toxic oxygen species might contribute to the local tissue damage during infection. There was no clear correlation between association, killing and oxidative response. However, one strain that only evoked an intracellular generation of oxygen metabolites also showed the highest sensitivity to killing. Phagocytosis was increased up to ten times after opsonization with normal human serum. The intracellular CL production increased several fold, whereas the extracellular generation of oxygen species disappeared or was considerably decreased after opsonization. These results indicate that complement-opsonized C. jejuni are phagocytosed and readily attacked by the oxidative defence system within the phagosome.

Campylobacter jejuni↗

Intracellular production of reactive oxygen species in human neutrophils following activation by the soluble stimuli FMLP, dioctanoylglycerol and ionomycin.

The stimuli, sn-1, 2-dioctanoylglycerol; (DG8) the calcium specific ionophore, ionomycin, and the chemotactic peptide formylmethionyl-leucyl-phenylalanine (FMLP) can interact with normal human neutrophils and activate their superoxide/hydrogen peroxide generating NADPH-oxidase. In response to the peptide as well as DG8, the neutrophils produced both superoxide (O2-) and hydrogen peroxide (H2O2). Since interaction between the cells and ionomycin was not associated with any notable superoxide production and hydrogen peroxide was induced only in the presence of azide, a potent inhibitor of the hydrogen peroxide-consuming enzymes catalase and myeloperoxidase, we conclude that this stimulus can generate oxygen metabolites intracellularly. Since the DG8-induced production of hydrogen peroxide was increased in the presence of azide, whereas the FMLP-induced response was largely unaffected, we concluded that the three stimuli differ in their capacity to generate oxygen metabolites intracellularly. The use of sn-1,2-didecanoylglycerol (DG10) as stimulating agent did not result in any detectable activation of the NADPH-oxidase. However, preincubation caused an increased (primed) response during stimulation with the chemotactic peptide FMLP. The response of primed neutrophils to FMLP proceeds with a time-course different from that seen in normal cells. From the results presented on FMLP-induced activity in the presence of azide, we conclude that FMLP causes normal cells to produce oxygen radicals which are released from the cells. However, the primed cells are also capable of generating oxygen metabolites that are retained inside the cells. In fact, measurement of the intracellularly generated metabolites discloses this to be the predominant part of the response.

Adult↗

Actin assembly and regulation of neutrophil function: effects of cytochalasin B and tetracaine on chemotactic peptide-induced O2- production and degranulation.

Several studies indicate that the actin filament system is not only involved in cell motility, but also in the regulation of other neutrophil functions. The aim of the present investigation was to examine the mechanisms by which actin filament formation participates in the control of the respiratory burst and degranulation in human neutrophils. The approach taken was to use both an inhibitor (cytochalasin B) and a potentiator (tetracaine) of formylmethionyl-leucyl-phenylalanine (fMet-Leu-Phe)-induced actin polymerization. The total inhibition of fMet-Leu-Phe-induced actin polymerization in cytochalasin B-treated cells was accompanied by an impressive potentiation of both oxidase activity and degranulation (azurophilic and specific granules). However, preincubation with tetracaine, which causes an enhanced accumulation of F-actin in the periphery of fMet-Leu-Phe-stimulated cells, also augmented the rate and duration of peptide-induced superoxide anion production, but inhibited degranulation (specific granules). A likely explanation for the potentiating effects of cytochalasin B and tetracaine is provided by our observation that both of these substances reduced the acid-resistant binding of fMet-Leu-Phe (interpreted as a decrease in the internalization of fMet-Leu-Phe-receptor-complexes), resulting in an enhanced formation of second messengers (diacylglycerol). The findings that tetracaine potentiated the activity of the oxidase, whereas it inhibited degranulation (specific granules), suggest that actin polymerization per se plays a role in the latter process. Consequently, this study argues against the idea of a direct inhibitory effect of F-actin on chemotactic factor-induced oxidase activation, but supports an active role of actin filaments in the translocation and release of granule components.

Actins↗

Anti-granulocyte antibodies (C-ANCA, P-ANCA, GS-ANA) studied by confocal scanning laser fluorescence microscopy, ELISA, and chemiluminescence techniques.

Fifty-nine patient sera with antibodies against human polymorphonuclear neutrophil granulocyte (PMN) antigens, as determined primarily by indirect immunofluorescence microscopy (IIF) screening, were further analysed by enzyme-linked immunosorbent assays (ELISA). The antibodies were primarily characterized by their immunomorphological staining patterns on ethanol-fixed PMN as judged by conventional IIF microscopy, i.e. anti-neutrophil cytoplasmic antibodies (ANCA) giving a pancytoplasmic granular staining pattern (C-ANCA) or a diffuse perinuclear cytoplasmic pattern (P-ANCA), or granulocyte-specific anti-nuclear antibodies (GS-ANA) producing a homogeneous or peripheral nuclear staining pattern. The three distinct patterns were confirmed by confocal scanning laser IIF microscopy. As antigen substrates in the ELISA tests we used an extract from azurophil PMN granules, myeloperoxidase (MPO), and lactoferrin. As expected, most (but not all) of the C-ANCA positive sera turned out positive in the alpha-ELISA assay. Both P-ANCA and GS-ANA positive sera had high frequencies of antibodies against MPO. Occasional P-ANCA positive sera contained antilactoferrin antibodies. Although P-ANCA and GS-ANA in general probably represent the same type of auto-antibodies, we regard it appropriate to make a distinction between the two patterns, until the existence of 'true' granulocyte-specific ANAs has been ruled out. All sera were analysed for their ability to activate PMN in vitro as judged by the generation of a chemiluminescence (CL) response. Sera containing C-ANCA, as well as sera containing P-ANCA or GS-ANA, showed high frequencies of positive CL tests using 'resting' isolated PMN. The reactions were diminished, but not always abolished, by heat-treatment of the sera.

Autoantibodies↗

Mechanisms in neutrophil priming: characterization of the oxidative response induced by formylmethionyl-leucyl-phenylalanine in human exudated cells.

Exudate human polymorphonuclear neutrophils were isolated and investigated regarding oxidative responsiveness and priming ability. The exudate neutrophils were found to produce an increased amount of O2- and H2O2 when stimulated with formylmethionyl-leucyl-phenylalanine (fMLP), i.e. these cells were metabolically primed. Cytochalasin B (cyt B) pretreatment affected the production of O2- by exudate cells, although to a lesser extent than the production by peripheral blood cells, in which a substantial increase was induced. Addition of N-ethylmaleimide (NEM) to activated exudate and peripheral blood cells revealed no difference in oxidase inactivation rate. To induce further priming, the cells were incubated in vitro with a synthetic diacylglycerol (sn-1,2-didecanoylglycerol; diC10), or the Ca2+ ionophore ionomycin. Results of this procedure showed significant differences between exudate and peripheral blood neutrophils: the peripheral cells expressed a primed response, which was measured as increased fMLP-induced O2- production following incubation with both these substance; whereas the metabolic activity of exudated cells was not affected by diC10, but was significantly primed by ionomycin (P less than 0.01). The exact route for diacylglycerol priming is unknown. However, our results with human neutrophils primed during exudation indicate an exhausted diC10-priming pathway, with a retained sensitivity for priming [Ca2+]i rises.

Cytochalasin B↗