Biomedical subjects
J M Lackie
Publications and source records attributed to J M Lackie.
Priming of the oxidative burst in human neutrophils by physiological agonists or cytochalasin B results from the recruitment of previously non-responsive cells.
Using a sensitive flow cytometric assay, which measures the intracellular oxidation of 2'7' dichlorofluorescein (DCFH) by H2O2, we have assessed, at a single-cell level, the effects of a variety of physiological priming agonists and cytochalasin B (CB) on purified populations of neutrophils stimulated at different points along the signal response transduction pathway. Pretreatment of purified neutrophils with the physiological priming agonists monocyte interleukin-8 (IL-8), granulocyte-monocyte colony-stimulating factor (GM-CSF), platelet-activating factor (PAF), IL-1 beta, tumour necrosis factor-alpha (TNF-alpha), IL-6, and non-stimulatory doses of formyl-methionyl-leucyl-phenylalanine (FMLP), resulted in an increased percentage of cells generating an oxidative burst in response to subsequent receptor stimulation with FMLP. CB had a similar but much more pronounced effect on cellular recruitment to a receptor-mediated responsive state. Activation of protein kinase C (PKC) using the phorbol ester phorbol myristate acetate (PMA) resulted in a heterogeneous response, with all cells generating H2O2, but with two populations differing in their magnitude of response. Physiological priming agonists had no effect on the heterogeneity of the PMA response. However, pretreatment with CB dramatically altered the PMA response, producing a homogeneous population highly responsive to stimulation with PKC. In contrast, direct stimulation of G proteins with fluoride (A1F-4) was primed both by physiological priming agonists and by CB. These results demonstrate that priming of neutrophils by physiological agonists involves changes at the level of signal transduction which enable a previously non-responsive cell to respond to a secondary stimulus.(ABSTRACT TRUNCATED AT 250 WORDS)
Agonist-stimulated Cl- efflux from human neutrophils. A common phenomenon during neutrophil activation.
When human peripheral blood neutrophils were stimulated with various agonists which activate and/or prime neutrophils, we found that Cl- efflux was enhanced with a dramatic (50%) loss of intracellular Cl-. Interestingly, the Cl- efflux was enhanced by both agonists which induce a rapid transient increase in intracellular Ca2+ concentration ([Ca2+]i) [class I, e.g. N-formyl-methionyl-leucyl-phenylalanine (fMLP), interleukin-8 (IL8), platelet-activating factor, leukotriene B4 and C5a] and those which do not induce such an [Ca2+]i elevation [class II, e.g. tumor necrosis factor alpha (TNF) and granulocyte-macrophage colony-stimulating factor (GM-CSF)]. The time course of agonist-stimulated Cl- efflux differed depending on the agonist. Class I agonists such as IL8 and fMLP exhibited a 1 min lag phase before the onset of Cl- efflux; class II agonists such as GM-CSF and TNF displayed a 2 and 5 min lag phase, respectively. Both IL8 (class I)- and TNF (class II)-stimulated Cl- efflux exhibited similar sensitivity to inhibition by different types of ion transport inhibitors [ethacrynic acid (EA), amiloride, 4-acetamido-4'-isothiocyanatostilbene-2,2'-disulfonic acid, anthracene-9-carboxylic acid, and 4-4'-diisothiocyanatostilbene-2,2'-disulfonic acid]. On the other hand, natural Cl- efflux, which is thought to be mainly mediated by Cl-/Cl- self exchange, was not inhibited by EA (0.5 mM) or amiloride (0.3 mM). These results imply that both class I and class II agonist-stimulated Cl- efflux occurs via a common Cl- transporter which is different from that reported previously in resting human neutrophils. Although all agonists which induced a Cl- efflux also induced shape change of neutrophils, there did not appear to be a causal relationship between shape change and agonist-stimulated Cl- efflux. However, a temporal correlation was found to exist between agonist-stimulated Cl- efflux and intracellular alkalinization following agonist stimulation. Agonist-stimulated Cl- efflux therefore seems to be a common phenomenon activated by several agonists which act through different signal transduction pathways.
Recombinant human monocyte IL-8 primes NADPH-oxidase and phospholipase A2 activation in human neutrophils.
We demonstrate for the first time that recombinant human monocyte interleukin-8 (rhMIL-8) primes human neutrophil responses to fMLP. Human neutrophils preincubated for 10 min with 10(-8) M rhMIL-8 and then stimulated with micromolar fMLP show enhanced release of superoxide anions, platelet-activating factor (PAF) and arachidonic acid compared with cells which are not initially exposed to rhMIL-8. We also demonstrate that this enhancement of the neutrophil response is dependent on the dose of rhMIL-8 with the greatest enhancement corresponding with IL-8 levels which cause maximum shape change of neutrophils. Priming of neutrophils occurred after only 30 seconds preincubation with rhMIL-8 indicating that the mechanism of IL-8 priming is extremely rapid as was stimulation of neutrophil shape change by rhMIL-8. Priming of neutrophils with rhMIL-8 did not increase sensitivity to fMLP but enhanced responsiveness to activating concentrations. rhMIL-8 alone at levels used for priming caused no release of superoxide anions, arachidonic acid or PAF. These results suggest that IL-8 primes neutrophil phospholipase A2 and NADPH-oxidase activation in response to fMLP.
Analysis of lymphocyte shape by visual classification, calculated measures of shape or light scattering.
Direct visual assays, calculated measures of shape (Dunn and Brown, 1986) and light scattering were applied to detect shape changes and to identify human peripheral blood lymphocytes displaying different shapes (e.g., spherical cells, polarized cells, non-polar cells with surface projections). Spherical cells could be distinguished from polarized cells and from non-polar cells with surface projections by means of calculated measures of shape obtained from outline drawings, the dispersion parameter being more efficient than extension or elongation parameters. Median values for elongation and extension of polarized cells vs. non-polar cells with surface projections differed significantly provided the cell populations consisted entirely of one particular morphological class. However, if the proportion of cells changing shape is small, this may not be detectable by a significant change in the median values. Therefore, we attempted to apply calculated shape factors to identify individual cells showing a particular type of shape change. Spherical cells could be distinguished relatively easily from non-spherical cells on the basis of the dispersion values. However, it was not possible to distinguish unequivocally between polarized cells and non-polar cells with surface projections because the values overlap to a great extent. For this purpose the visual classification was found to be more reliable. Preliminary experiments with light scattering showed that median values for right angle scatter or forward angle scatter are not sensitive enough to permit the detection of a small proportion of cells changing shape.
The effect of treatment with 13-cis-retinoic acid on the metabolic burst of peripheral blood neutrophils from patients with acne.
The N-formylmethionyl-leucyl-phenylalanine (f-MLP)-induced metabolic burst activity of peripheral blood neutrophils isolated from acne patients undergoing treatment with 13-cis-retinoic acid at a dose of 1.0 mg/kg/day was investigated using a luminol-enhanced chemiluminescence assay. The mean and median chemiluminescence response were significantly greater (P less than 0.05) in patients receiving 13-cis-retinoic acid than in untreated acne patients or age-matched controls. Pre-incubation of neutrophils with 13-cis-retinoic acid (10 nmol/l) did not affect the chemiluminescence response to formyl peptide. A sequential study over 20 weeks in seven patients demonstrated that chemiluminescence peaked after 2-8 weeks of treatment. In three patients this was accompanied by a worsening of their acne. These studies suggest that, in the initial phase, treatment with 13-cis-retinoic acid may exacerbate, through pro-inflammatory priming of neutrophils, certain neutrophil-mediated inflammatory processes in acne.
Bovine retinal explants cultured in collagen gels. A model system for the study of proliferative retinopathy.
We have developed a model system for studying proliferative retinopathy in vitro using bovine retinal explants cultured in collagen gels. Cellular outgrowth from retinal explants occurred after 7 days as single cells from peripapillary explants or as cell sheets and tubular outgrowths from peripheral retinal explants. Single cell outgrowths were shown immunohistochemically to be endothelial cells or macrophages; sheetlike and tubular outgrowths also constituted cords of endothelial cells with stromal macrophages, but in addition glial cells were closely associated with the endothelial cells. Cellular outgrowths were preceded by extensive macrophage activation within the ischemic retinal explant, suggesting that macrophage-derived angiogenic factors may be important in inducing retinal endothelial cell proliferation. In addition, glial cell-derived factors may have a role in the development of vessellike tubular structures from endothelial cell outgrowths.
The behaviour of BHK cells and neutrophil leukocytes on collagen gels of defined mechanical strength.
This study demonstrates how the mechanical strength of a series of collagen/composite gels can be measured using a penetrometer. It was found that the presence of fibrin in collagen gels resulted in increased gel strength. Similarly hyaluronic acid was found to increase the strength of collagen gels. Addition of heparin weakened collagen gels as did chondroitin-6-sulphate. Neutrophil migration into collagen gels was found to be inversely proportional to gel strength. Fibrin and hyaluronic acid containing gels inhibited neutrophil migration while the presence of heparin and chondroitin sulphate increased neutrophil migration. BHK gel contraction experiments demonstrated how the presence of fibrin prevents gel contraction. Despite increasing gel strength the presence of hyaluronic acid appeared to have no effect on BHK contraction of collagen gels. Similarly the presence of heparin or chondroitin sulphate had no effect on gel contraction by BHK cells.
The oxidative response of rabbit peritoneal neutrophils to leishmanias and other trypanosomatids.
Luminometry has been used to measure the respiratory burst of rabbit peritoneal neutrophils that is elicited by different forms and species of Leishmania and Herpetomonas. Mid-log phase and metacyclic promastigotes of L. major evoked large responses; that due to metacyclics was lower and slower, but they also bound in smaller numbers than mid-log phase cells. Promastigotes of L. mexicana mexicana also stimulated a large respiratory burst whereas amastigotes elicited little or none. Leishmania donovani promastigotes and culture forms of H. muscarum muscarum and H. m. ingenoplastis all evoked large responses by neutrophils. There was, however, very little response to L. mexicana mexicana promastigotes, L. donovani promastigotes or H. muscarum muscarum when they were added in large numbers. This 'inhibition' was not apparent with L. major.
Glycosaminoglycans facilitate the movement of fibroblasts through three-dimensional collagen matrices.
The effect of glycosaminoglycans on the invasion of choroid fibroblasts into type I collagen gels was studied. Both hyaluronate and chondroitin sulphate, when incorporated into the gel, facilitated invasion of the collagen matrix, although hyaluronate was considerably more effective. Hyaluronate-induced fibroblast invasion was markedly concentration-dependent, being reduced at both high and low concentrations. Increased cell invasion appeared to correlate with denser packing of collagen fibrils within the gel, since the same effect could be achieved by increasing the collagen concentration of native, i.e. glycosaminoglycan-free gels. Scanning electron microscopy of the interior of the collagen gels suggested that changes in packing arrangement of fibrils in gels that had polymerized in the presence of glycosaminoglycans might account in part for different rates of cell invasion.
Interaction of Bordetella pertussis virulence components with neutrophils: effect on chemiluminescence induced by a chemotactic peptide and by intact bacteria.
The effect of secreted virulence components of Bordetella pertussis on chemiluminescence (CL) of rabbit peritoneal neutrophils was determined with the chemotactic peptide N'-formyl-L-methionyl-L-leucyl-L-phenylalanine (fMLP) or intact B. pertussis as the stimulus. Pertussis toxin (PT) inhibited the response to fMLP in a dose-dependent manner, although only after the neutrophils had been exposed to the toxin for greater than 15 min. Both filamentous haemagglutinin (FHA) and lipopolysaccharide (LPS) markedly enhanced the CL response to fMLP after greater than or equal to 15 min incubation with the neutrophils. Similar effects to those of B. pertussis LPS were also seen with smooth and rough LPS from Salmonella minnesota. With the lowest dose of each component which elicited a maximal effect on CL, the inhibitory effect of PT overrode the enhancing effect of FHA and B. pertussis LPS. Pre-incubation of neutrophils with PT, FHA or B. pertussis LPS caused a slight reduction in the subsequent CL response to virulent B. pertussis Tohama. Virulent (phase I, or X-mode) organisms of B. pertussis 18334 and B. pertussis Tohama induced greater neutrophil CL than their avirulent (C-mode) derivatives. There appeared to be an inverse correlation between bacterial hydrophilicity and the ability to induce neutrophil CL: X-mode bacteria were significantly less hydrophilic than C-mode organisms. Three mutants, the adenylate cyclase (AC)- and haemolysin (HLY)-deficient B. pertussis BP348, the FHA-deficient B. pertussis BP353, and the PT-deficient B. pertussis BP357, generated similar levels of CL and had similar hydrophilicity values. The hydrophilicity value of the avirulent mutant B. pertussis BP347 (deficient in AC, HLY, FHA and PT) and the CL induced by this strain were similar to those of B. pertussis C-mode organisms. Thus, the interaction of B. pertussis with neutrophils appears to be complex, reflecting both the alteration of leucocyte function by secreted virulence components of the organism and, in the absence of opsonins, the surface properties of the bacterium.
A sensitive chemiluminescence assay for pertussis toxin and for evaluation of cell-free pertussis toxoids.
Pertussis toxin (PT) inhibited luminol-enhanced chemiluminescence induced in rabbit peritoneal neutrophils by N'-formyl-L-methionyl-L-leucyl-L-phenylalanine (fMLP) at doses as low as 0.8 ng.ml-1, even in the presence of a 10-fold higher concentration of filamentous haemagglutinin (FHA). A cell-free extract of Bordetella pertussis, containing predominantly PT and FHA, suppressed the neutrophil response to fMLP. After toxoiding with carbodiimide, the inhibitory activity of the extract was abolished and an enhancement of neutrophil chemiluminescence was observed due to FHA activity. Abrogation of the chemiluminescent response of neutrophils to fMLP is proposed as a sensitive, in vitro assay for pT, and may be useful for monitoring the residual toxin activity in pertussis toxoids and for determining the anti-toxic effects of anti-PT antibodies.
The behavioural repertoire of neutrophils requires multiple signal transduction pathways.
Explore the source record for details and available documents.
Effects of phorbol esters on shape and locomotion of human blood lymphocytes.
The effects of phorbol esters on shape change and locomotion of human blood lymphocytes were studied both immediately after separating the cells from blood and after overnight culture. Phorbol myristate acetate (PMA), phorbol dibutyrate (PDB) and related esters produced complex shape changes in lymphocytes at both times. These shapes were analysed quantitatively using objective measurements derived from the moments of cell shapes. Immediately after removal from blood, many lymphocytes (20-60% of the total) protruded and retracted veils or spikes at more than one point on the cell surface. The morphology of these cells was not typical of locomotor cells. Usually, formation of a veil was not followed by a contraction wave moving down the cell, though some cells did show contraction waves, and some moved into collagen gels or filters. After overnight culture, a high proportion (70-80%) of cells had changed shape in PMA and PDB. Although the shapes were still atypical, they resembled classical locomotor morphology more closely; veils formed at one point on the cell surface tended to persist, and contraction waves and constriction rings were seen in many cells. These cells moved in large numbers into collagen gels or filters. Comparison of the paths traversed by PMA-treated lymphocytes in collagen gels suggested that cells cultured in PMA for 24 h pursued more persistent paths that those in short-term culture, but the difference was not marked. We suggest that phorbol esters induce immediate shape change without inducing the complete sequence of motor events necessary for efficient locomotion, whereas after prolonged culture in phorbol esters, locomotion is more efficient, possibly because phorbol esters, like other growth activators, stimulate events during the G1 phase of growth that are necessary for full expression of locomotor capacity.
Effect of pentoxifylline on neutrophil behaviour: stimulation of movement without adhesion changes.
The movement of rabbit and human polymorphonuclear leucocyte neutrophils, both over a 2-D substratum and through a 3-D deformable matrix, has been analysed by time-lapse filming and visual migration assays, and the effect of the drug pentoxifylline on their movement has been investigated. This drug may affect cell deformability. At low doses of pentoxifylline, the speed of movement of the neutrophil leucocytes is enhanced, both in 3-D matrices and on a 2-D substratum. In addition, adhesion assays were performed on neutrophils from both species; the drug does not affect adhesion, ruling out an enhancement of movement through adhesion modulation. The implications of these findings for the penetration of connective tissues are discussed.
Signal response transduction in rabbit neutrophil leucocytes. The effects of exogenous phospholipase A2 suggest two pathways exist.
Rabbit neutrophils stimulated by chemotactic peptide (fMLP) or phorbol ester (PMA) respond with a metabolic burst which can be assayed by following luminol-enhanced chemiluminescence. Depending upon the agonist used, exogenous bee-venom phospholipase A2 (PLA2) will enhance or inhibit the response. Neutrophil activation by fMLP is enhanced by PLA2 or by the addition of arachidonic acid, but unaffected by lysophosphatide. The cellular response to PMA is markedly inhibited by PLA2 or by lysophosphatide, though not completely abrogated, but is enhanced by arachidonic acid. The lysophosphatide inhibition overrides the arachidonic acid potentiation of the PMA-induced response. Neither PLA2 nor arachidonic acid alone will activate the cells; it seems that agonist is essential. We interpret these results to mean that at least two signal-response transduction systems are involved in agonist-induced metabolic activation of rabbit neutrophil leucocytes.
A simple microcomputer-based system for real-time analysis of cell behaviour.
An image analysis package based on a BBC microcomputer has been developed, which can simultaneously track many moving cells in vitro. Cells (rabbit neutrophil leucocytes, BHK C13 fibroblasts, or PC12 phaeochromocytoma cells) are viewed under phase optics with a monochrome TV camera, and the signal digitized. Successive frames are acquired by the computer as a 640 X 256 pixel array. Under controlled lighting conditions, cells can readily be isolated from the background by binary filtering. In real-time tracking, the positions of a given cell in successive frames are obtained by searching the area around the cell's centroid in the previous frame. A simple box-search algorithm is described, which proves highly successful at low cell densities. The resilience of different search algorithms to various exceptional conditions (such as collisions) is discussed. The success of this system in real-time tracking is largely dependent upon the leisurely speed of movement of cells, and on obtaining a clean, high quality optical image to analyse. The limitations of this technique for different cell types, and the possible configurations of more sophisticated hardware, are outlined. This system provides a versatile and automated solution to the problem of studying the movement of tissue cells.
Type I collagen permits invasive behaviour by retinal pigmented epithelial cells in vitro.
Epithelial cells cultured on type I collagen gels adopt a typical apical--basal polarity and undergo differentiation. We have compared the behaviour of chick embryo retinal pigmented epithelial (RPE) cells on collagen and on plastic with and without gelatin coats. RPE cell proliferation was similar on all three substrata, and post-confluent cultures exhibited multilayering. On plastic and gelatin-coated plastic, dome formation, typical of transporting epithelia, occurred. On type I collagen gels, however, dome formation did not occur, but rather invasion of the gel matrix by cords of epithelial cells took place. In contrast, invasive behaviour of the cells was markedly reduced on type IV coated collagen gels, particularly in the presence of laminin. These results illustrate the prominent role of the extracellular matrix on phenotypic expression by RPE cells and may represent a more general phenomenon.