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Biomedical subjects

C Haslett

Publications and source records attributed to C Haslett.

At least 91 records · Page 5Linked to original sources

Hypoxia prolongs neutrophil survival in vitro.

Neutrophil apoptosis represents a major mechanism involved in the resolution of inflammation. Since hypoxia induces apoptosis in several cell lines and is of particular relevance in many disease states, we studied the effect of oxygen concentration on neutrophil survival in vitro. Hypoxia caused a dramatic decrease in neutrophil apoptosis (% apoptosis 20 h: 78.7 +/- 2.2% in 21% O2, 61.4 +/- 6.5% in 2.5% O2, 23.1 +/- 3.2% in 0% O2, n = 5). This was additive to the effect of GM-CSF (50 U/ml), not associated with induction of bcl-2 expression, and was not mimicked by methionine (5 mM), superoxide dismutase (200 micrograms/ml) or Trolox (10 mM) but was mimicked by catalase (250 micrograms/ml). Hence, hypoxia has a bcl-2-independent effect on neutrophil apoptosis that may adversely affect the clearance of these cells from an inflammatory focus.

Cell Hypoxia↗

Regulation of cell adhesion molecule expression and function associated with neutrophil apoptosis.

We have investigated the adhesive capacity of neutrophils after spontaneous apoptosis, which occurs during in vitro culture. Apoptotic neutrophils show reduced adhesion to E selectin and the CD18 integrin ligand fibrinogen. Neutrophil apoptosis is associated with changes in the levels of surface expression of key receptors that mediate neutrophil adhesion events. Notably, apoptotic neutrophils show reduced expression of L-selectin/selectin ligand. In contrast, CD11b/CD18 and CD11c/CD18 integrins are expressed at increased levels. The reduced capacity for adhesion of apoptotic neutrophils may be achieved by very different mechanisms. Regulation of the levels of surface expression of receptors/ligand may control selectin-mediated adhesion, possibly as a result of protease/sialidase activity. In contrast, modulation of integrin-mediated adhesion may involve functional uncoupling of receptors present on the surface of the apoptotic cell without alteration in levels of surface expression. The altered adhesive potential of the apoptotic neutrophil may serve to limit release of its histotoxic contents and reduce inappropriate tissue injury.

Antigens, CD↗

CD66-dependent neutrophil activation: a possible mechanism for vascular selectin-mediated regulation of neutrophil adhesion.

We have examined the role of CD66 in the modulation of neutrophil adhesion and effector function. Engagement of neutrophil CD66 with anti-carcinoembryonic antigen (anti-CEA) Ig results in activation-associated phenomena including shape change, activation of beta 2-integrins, and priming of the respiratory burst. Anti-CEA Ig-treated neutrophils underwent transient shape change distinct from that induced by formyl-Met-Leu-Phe (fMLP). fMLP stimulated beta 2-integrin up-regulation and 70% loss of L-selectin, whereas only low-level up-regulation of the beta 2-integrins, without loss of L-selectin, occurred with anti-CEA Ig. Anti-CEA F(ab')2 fragments and whole Ig augmented beta 2-integrin-dependent adhesion. Anti-CEA Ig-induced beta 2-integrin activation was transient, whereas fMLP-induced activation persisted longer. Although they did not cause a significant increase in respiratory burst activity, CEA Ig and F(ab')2 fragments of antibody primed neutrophils so that the subsequent fMLP-induced respiratory burst was significantly increased.

Amino Acid Sequence↗

Granulocyte clearance by apoptosis in the resolution of inflammation.

It has recently been recognized that extravasated granulocytes undergo apoptosis or programmed cell death. This process controls the functional longevity of these cells and is exquisitely modulated by environmental inflammatory mediators. By contrast with necrosis, an alternative fate for granulocytes in tissues, during apoptosis the granulocyte membrane remains intact and potentially injurious granule contents are retained. The intact apoptotic cell is removed by macrophages utilizing novel surface recognition mechanisms which fail to trigger a pro-inflammatory macrophage response. The balance between granulocyte apoptosis and necrosis in inflamed tissues may be an important determinant of the degree of tissue injury, and further dissection of the mechanisms of granulocyte apoptosis and removal may lead to new therapeutic strategies in inflammatory disease.

Animals↗

Plasma elastase levels and the development of the adult respiratory distress syndrome.

Inflammatory cells, particularly neutrophil granulocytes, have been implicated in the pathogenesis of the adult respiratory distress syndrome (ARDS). In this study, we investigated whether a relationship exists between neutrophil elastase in the plasma of multiple-trauma patients on initial hospital presentation and the subsequent development of lung injury and ARDS. Sixty-one multiple-trauma patients were enrolled prospectively. Neutrophil elastase was measured by a specific radioimmunoassay, and analysis was performed by nonparametric statistical methods. A highly significantly elevated plasma elastase level was found in patients who progressed to ARDS (median 217 ng/ml, range 127 to 480) (n = 8) compared with those who did not (median 117 ng/ml, range 21.4 to 685) (n = 53) (p = 0.009). Significant correlation was found between initial elastase values and subsequent requirement for mechanical ventilation (p = 0.01), lowest arterial oxygen saturation/oxygen supplementation recorded (p = 0.003), and organ failure score (p = 0.006). This study shows that within minutes of the initiating trauma event, there is evidence of enhanced neutrophil degranulation as manifested by elevated levels of immunoreactive neutrophil elastase in the peripheral blood. The level of this enzyme correlates with the degree of subsequent lung injury and ARDS. These findings reinforce the importance of neutrophils and their secretory products in early ARDS disease pathogenesis.

Adolescent↗

Apoptotic neutrophils are phagocytosed by fibroblasts with participation of the fibroblast vitronectin receptor and involvement of a mannose/fucose-specific lectin.

The fate of neutrophils (PMNs) at sites of inflammation is important to our understanding of many disease processes. Previously, it had been widely assumed that extravasated PMNs inevitably disintegrated before their fragments were removed by local phagocytes, but we have recently described an alternative process whereby senescent PMNs undergo apoptosis (programmed cell death). This process leads to macrophage (Mphi) ingestion of the intact cell by a novel phagocytic recognition process. In this study, we show that monolayers of fibroblasts also can selectively phagocytose apoptotic PMNs and that the recognition of apoptotic PMNs by fibroblasts involves two distinct mechanisms: one uses the vitronectin receptor, as in Mphi ingestion of PMNs; the other uses a mannose/fucose-specific lectin, which plays no part in Mphi phagocytosis of apoptotic PMNs. The direct interactions between PMNs and fibroblasts demonstrated herein may have implications for our understanding of the relationship between inflammation and scarring in many diseases.

Amino Acid Sequence↗

Granulocyte apoptosis and the control of inflammation.

We have described a novel pathway available for the clearance of extravasated granulocytes from inflamed tissues whereby aging granulocytes undergo apoptosis, a process which leads to their phagocytosis by inflammatory macrophages. By contrast with necrosis, which may also be seen at inflamed sites, apoptosis represents a granulocyte fate which by a number of mechanisms would tend to limit inflammatory tissue injury and promote resolution rather than progression of inflammation: (i) apoptosis is responsible for macrophage recognition of senescent neutrophils with intact cell membranes which exclude vital dyes and retain their potentially histotoxic granule contents; (ii) the apoptotic neutrophil loses its ability to secrete granule enzymes on deliberate external stimulation; (iii) the macrophage possesses a huge phagocytic capacity for apoptotic neutrophils which it rapidly ingests and degrades without disgorging neutrophil contents; and (iv) the macrophage utilizes a novel phagocytic recognition mechanism which fails to trigger the release of pro-inflammatory macrophage mediators during the phagocytosis of apoptotic neutrophils. Preliminary characterization of the recognition mechanism implicates the integrin alpha v beta 3 (vitronectin receptor) and CD36 (thrombospondin receptor) on the macrophage surface. Macrophage phagocytosis of apoptotic neutrophils is greatly influenced by the microenvironmental pH and by the presence of cationic molecules. Moreover, it can be specifically modulated by external cytokines and intracellular second messenger systems. By controlling the functional longevity of neutrophil and eosinophil granulocytes and their subsequent removal by macrophages, granulocyte apoptosis, with its potential for modulation by external mediators, is likely to play a key dynamic role in the control of the 'tissue load' of granulocytes at inflamed sites.(ABSTRACT TRUNCATED AT 250 WORDS)

Apoptosis↗

Neutrophil apoptosis is associated with a reduction in CD16 (Fc gamma RIII) expression.

Resolution of inflammation involves removal of recruited neutrophils from inflamed sites via a noninflammatory mechanism, possibly involving neutrophil apoptosis and engulfment/phagocytosis by macrophages. In this study, we describe the reduction in surface expression (> 90%) of the neutrophil molecule Fc gamma RIII (CD16) during in vitro culture at 37 degrees C, which was found to be temporally associated with the appearance of neutrophils with apoptotic morphology during in vitro culture and inhibitable by granulocyte-macrophage colony-stimulating factor (GM-CSF), which postpones apoptosis in the neutrophil. By using dual fluorescence analysis, CD16 "low" expressing neutrophils showed reduced staining with the DNA-binding dye propidium iodide, suggesting that CD16 low expressing neutrophils were apoptotic. Separation of CD16 "high" and CD16 "low" expressing neutrophils by fluorescence-activated cell sorting revealed that morphologically apoptotic cells exhibited the CD16 low phenotype. We did not observe similar marked changes in expression of other neutrophil surface molecules (including other phosphatidylinositol (PI)-linked molecules), indicating that generalized loss of surface molecules does not occur during apoptosis. We believe this to be the first reported cell type-specific membrane alteration in a surface glycoprotein associated with apoptosis, suggesting that the program of cell death in the neutrophil, in addition to morphologic and nuclear changes, includes alterations in expression of surface receptors.

Apoptosis↗

Role of selectins in development of adult respiratory distress syndrome.

The acute lung injury of adult respiratory distress syndrome (ARDS) is characterised by inflammatory cell accumulation and activation in the lung. Selectins are a family of adhesion molecules implicated in leucocyte-endothelial adhesion, whose receptors can exist in a cleaved, soluble form. We investigated whether circulating soluble selectin adhesion molecules, obtained from ARDS at-risk patients, were associated with subsequent ARDS development. 82 patients, at risk of ARDS, were enrolled from three well-defined groups (multiple trauma, pancreatitis, perforated bowel). Plasma samples were obtained on hospital presentation and soluble L, E, and P, selectins were quantified with a sandwich enzyme-linked immunosorbent assay (ELISA). 14 patients subsequently developed ARDS. Initial plasma soluble L-selectin (sL-selectin) levels were significantly lower in patients who progressed to ARDS compared to those who did not (p = 0.0001; 95% Cl for mean in ARDS patients as percent of that in non-ARDS patients, 27-61%). Moreover concentrations were lower than in 62 normal volunteers (range 0.37-6.55, median 1.83 micrograms/mL, n = 62), suggesting that a selective reduction of sL-selectin correlates with susceptibility. In addition, a significant correlation was found between low values of sL-selectin and indices of subsequent lung injury including requirement for ventilation (p = 0.0001) and degree of respiratory failure (p = 0.0001). A significant correlation was also found between low values of sL-selectin and patient mortality (p = 0.002). These results elucidate the inflammatory cell endothelial interactions in the early stages of ARDS and may be of prognostic value.

Acute Disease↗

In vivo measurement of neutrophil activity in experimental lung inflammation.

Positron emission tomography (PET) was used to quantify 18fluorodeoxyglucose (18FDG) uptake in rabbits with experimental pneumonitis localized to the right upper lobe. In Streptococcus pneumoniae-induced pneumonia, which causes a profound inflammatory response lasting several days before it resolves, 18FDG uptake was pronounced at 15 h after the onset of inflammation, but by 48 h there was little uptake. In bleomycin injury, which progresses from an acute inflammatory stage to chronic inflammation and scarring, 18FDG uptake detectable by PET persisted for up to 21 d. Autoradiography of histologic sections after intravenous administration of [3H]deoxyglucose 15 h after streptococcal instillation and 2 wk after bleomycin instillation showed that, in both models, deoxyglucose uptake was localized to neutrophils. In the streptococcal model there was little 18FGD signal at 6 h, when major neutrophil migration occurs. At 15 h, [3H]deoxyglucose-labeled neutrophils were present in the airspaces but not in the alveolar septa, suggesting that the deoxyglucose signal reflected a postmigratory neutrophil event, probably the respiratory burst. Thus, PET of 18FDG uptake may provide a novel and readily repeatable, noninvasive approach to the in vivo study of neutrophil activity at otherwise inaccessible sites.

Acute Disease↗

Impairment of function in aging neutrophils is associated with apoptosis.

Neutrophil apoptosis or programmed cell death permits neutrophil recognition and ingestion by macrophages and represents a mechanism capable of promoting resolution of inflammation. The consequences of apoptosis for neutrophil function are the subject of these investigations. A direct relationship between apoptosis and loss of cytoskeletal functions, phagocytosis, degranulation, and respiratory burst was demonstrated by counterflow centrifugation of neutrophils (aged for 24 h in culture) into fractions with varying proportions of apoptosis. Apoptotic neutrophils displayed a loss of background functions: ability to spread and change shape and random migration. They also showed a reduced ability to respond to deliberate stimulation with the receptor-dependent stimulus, FMLP, by undergoing shape change, chemotaxis, degranulation, and respiratory burst, and showed an inability to phagocytose opsonized zymosan. Loss of FMLP binding to apoptotic neutrophils was demonstrated by analysis of FML[3H]P binding and by autoradiography. Superoxide anion production, but not shape change or degranulation response, to the receptor-independent stimulus, PMA, was preserved in apoptotic neutrophils, implying some retention of intracellular signaling pathways relevant to superoxide production. Apoptosis thus marks a loss of neutrophil functional responsiveness and defines the cell as effectively "isolated" from its external milieu. Neutrophil apoptosis may represent an important event in the control of inflammation, marking the neutrophil both for disposal and as a cell with profound loss of its capacity to generate and release histotoxic products on external stimulation.

Apoptosis↗

Interleukin-8 and development of adult respiratory distress syndrome in at-risk patient groups.

Neutrophils have been implicated in the pathogenesis of the adult respiratory distress syndrome (ARDS). We have measured concentrations of the neutrophil attractant interleukin-8 in blood and bronchoalveolar lavage fluid (BAL) from patients at risk of ARDS. We studied 29 patients from three groups at risk of developing ARDS: multiple trauma (n = 16), perforated bowel (n = 6), and pancreatitis (n = 7). ARDS developed in 7 of these patients. Interleukin-8 in BAL and blood samples taken on initial hospital presentation was measured by a sandwich enzyme-linked immunosorbent assay. The mean BAL interleukin-8 concentration was significantly higher for the patients who subsequently progressed to ARDS than for the non-ARDS group (3.06 [SE 2.64] vs 0.053 [0.010] ng/mL, p = 0.0006). There was no difference between the groups in plasma interleukin-8 (6.23 [2.60] vs 5.12 [2.22] ng/mL, p = 0.31). Immunocytochemistry suggested that the alveolar macrophage is an important source of interleukin-8 at this early stage in ARDS development. This study provides evidence of a relation between the presence of interleukin-8 in early BAL samples and the development of ARDS. The early appearance of interleukin-8 in BAL of patients at risk of ARDS may be an important prognostic indicator for the development of the disorder and reinforces the likely importance of neutrophils and the effects of their accumulation and activation in the pathogenesis of many cases of ARDS.

Adolescent↗

Phagocyte recognition of cells undergoing apoptosis.

A key feature of apoptosis is that cells undergoing this programmed form of death are recognized by phagocytes and ingested while still intact, protecting tissues from the potentially harmful consequences of exposure to the contents of the dying cells. This article reviews recent data which indicate that phagocyte recognition of apoptotic cells as 'senescent-self' involves at least three classes of receptors on the phagocyte surface, while apoptotic cells may display their 'edible' status in a number of different ways.

Amino Acid Sequence↗