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Biomedical subjects

S Mattoli

Publications and source records attributed to S Mattoli.

At least 37 records · Page 2Linked to original sources

Bronchoconstrictive responses to inhaled ultrasonically nebulized distilled water and airway inflammation in asthma.

Twenty-two asthmatic patients with a range of airway hyperresponsiveness to methacholine underwent a bronchial challenge with ultrasonically nebulized distilled water (UNDW). The presence of positive responses to this stimulus was related to the extent of airway inflammation, as assessed by histochemical and immunohistochemical evaluation of bronchial biopsy specimens. Twelve patients had airflow obstruction during distilled water inhalation and they showed more severe disease than subjects with no response, as demonstrated by the higher degree of nonspecific bronchial hyperresponsiveness (p < 0.01), higher variability of peak expiratory flow rates (p < 0.01), symptom scores (p < 0.01), and daily use of bronchodilators (p < 0.01). Those patients also had increased numbers of mast cells and eosinophils (p < 0.01) and increased percentage of bronchial epithelial cells expressing endothelin 1 immunoreactivity (p < 0.01). Thus, positive responses to inhaled UNDW reflect the bronchial hyperresponsiveness consistent with moderate to severe asthma and may be due to the release of mediators with bronchoconstrictive properties from inflammatory cells or activated resident cells or both.

Adult↗

Expression of the potent inflammatory cytokines, granulocyte-macrophage-colony-stimulating factor and interleukin-6 and interleukin-8, in bronchial epithelial cells of patients with asthma.

We have previously demonstrated that cultured human bronchial epithelial cells produce cytokines with potent proinflammatory properties on exposure to several stimuli in vitro, and we have hypothesized that these epithelial cell-derived factors may contribute to the pathogenesis of some inflammatory diseases of the bronchial mucosa, particularly asthma, by promoting the infiltration of granulocytes and T cells and their local activation. We provide, in this study, direct evidence of an increased expression of granulocyte-macrophage-colony-stimulating factor, interleukin-6, and interleukin-8 genes and proteins in bronchial epithelium from patients with symptomatic asthma. The up regulation of the production of these cytokines in bronchial epithelial cells of patients with asthma could be abolished in vitro by corticosteroids (hydrocortisone, 10(-7) mol/L), but the up regulation also spontaneously disappeared during a period of 6 days after the removal of the cells from the diseased tissue.

Adrenal Cortex Hormones↗

Protective effect of nedocromil sodium on the IL1-induced release of GM-CSF from cultured human bronchial epithelial cells.

Cultured human bronchial epithelial cells constitutively produce granulocyte-macrophage colony-stimulating factor (GM-CSF). The synthesis and release of GM-CSF is upregulated in bronchial epithelium of patients with symptomatic asthma and this may contribute to the local activation of inflammatory cells in their bronchial mucosa. The cause of this upregulation of GM-CSF expression is unknown, but an increased release of interleukin-1 (IL1) from other airway resident cells might be involved, as an increase in GM-CSF production can be induced in vitro in normal bronchial epithelial cells by IL1 and the airway secretions of asthmatics contain high amounts of this cytokine. In the present study, we have evaluated the effect of the anti-inflammatory and antiasthmatic drug, nedocromil sodium, on the spontaneous and IL1-induced expression of GM-CSF in cultured bronchial epithelial cells. This compound, at the concentration of 10(-5) M, reduced the IL1-induced increase in GM-CSF release from epithelial cells by more than 40%, but it did not affect the constitutive production of GM-CSF.

Anti-Inflammatory Agents, Non-Steroidal↗

Protective effect of nedocromil sodium on the interleukin-1-induced production of interleukin-8 in human bronchial epithelial cells.

Cellular constituents of the bronchial mucosa may participate in the recruitment of polymorphonuclear leukocytes to the inflamed airways through the generation of the neutrophil chemotactic peptide, interleukin-8 (IL-8). One important aspect of this interaction could be represented by the ability of pulmonary monokines, particularly IL-1, to induce gene expression of IL-8 in bronchial epithelial cells. In this study, we have evaluated the constitutive and IL-1-induced production of IL-8 by cultured human bronchial epithelial cells and examined the ability of the anti-inflammatory drug, nedocromil sodium, to inhibit the cytokine synthesis and release. Northern blot analysis demonstrated that IL-1 beta-treated human bronchial epithelial cells expressed appreciable levels of IL-8 mRNA during a period of 8 hours. This finding was associated with an increased release of immunoreactive IL-8 to the culture media, as assessed by specific ELISA. The bronchial epithelial cell-derived IL-8 demonstrated specific biologic activity, since the supernatants of stimulated bronchial epithelial cells possessed neutrophil chemotactic activity that could be inhibited by an antibody against human IL-8. Nedocromil sodium reduced the IL-1-induced release of IL-8 in a dose-dependent manner, but concentrations of the compounds, up to 10(-5) mol/L, did not affect the constitutive production of this cytokine.

Anti-Inflammatory Agents, Non-Steroidal↗

Increased expression of endothelin in bronchial epithelial cells of asthmatic patients and effect of corticosteroids.

We have previously demonstrated that human bronchial smooth muscle cells possess specific binding sites for the potent bronchoconstrictive peptide endothelin 1 and that primary cultures of human bronchial epithelial cells constitutively produce an endothelin-like material that binds to smooth muscle cell receptors with a kinetic ability analogous to that shown by the authentic peptide. To evaluate the potential role of airway epithelium-derived endothelin in the pathogenesis of asthma, we have examined here the expression of endothelin in the bronchial epithelial cells of 6 patients with symptomatic asthma and reversible airflow obstruction. The epithelial cells of 5 normal volunteers and 5 patients with chronic bronchitis and airflow obstruction unaffected by bronchodilators were tested as controls. The bronchial epithelial cells of all the asthmatic patients expressed preproendothelin 1 mRNA, as assessed by in situ hybridization, and released high amounts of mature and biologically active endothelin during a 48-h period of incubation (radioimmunoassay). By contrast, the epithelial cells from normal donors did not contain preproendothelin 1 transcripts, and the endothelin-like material in their supernatants was invariably below the detection limit of the assay. Only a few cells from 2 patients with chronic bronchitis expressed preproendothelin mRNA and endothelin immunoreactivity. When hydrocortisone (10(-6)M) was added to the culture medium of asthmatic bronchial epithelial cells for 48 h, the release of immunoreactive endothelin significantly decreased (p < 0.025), but the numbers of cells expressing preproendothelin 1 mRNA did not change to the same extent.

Adrenal Cortex Hormones↗

Cytokine mRNA profile and cell activation in bronchoalveolar lavage fluid from nonatopic patients with symptomatic asthma.

Recent studies have indicated that airway inflammation in atopic asthma is characterized by T-cell activation and local eosinophilia, but it is unknown whether this also applies to nonatopic asthma. In this study, the cytokine mRNA profile and activation status of inflammatory cells in bronchoalveolar lavage fluid (BALF) of eight nonallergic patients with symptomatic asthma and eight nonallergic healthy controls were compared using the message amplification phenotyping (MAPPing) with the polymerase chain reaction (PCR) procedure and immunocytochemical evaluation. Asthmatics had an increasing number of inflammatory cells in BALF, including activated eosinophils (EG2-positive) (p less than 0.001) and activated T cells (CD25-positive) (p less than 0.001). Activated T cells from five of the eight asthmatic patients and from one control subject expressed high levels of interleukin 5 (IL-5) and granulocyte-macrophage colony-stimulating factor (GM-CSF). All the asthmatic patients had increased numbers of monocytes in their BALF (p less than 0.002) and those cells invariably showed increased expression of interleukin 1 beta (IL1 beta) transcripts. In five patients they also expressed appreciable levels of IL-6 and GM-CSF mRNA. IL-5 and GM-CSF can induce local activation of eosinophils, and IL-1 beta and IL-6 are known to promote T-cell activation and proliferation. Thus, there is an increased production of cytokines with inflammatory properties in the airways of patients with nonatopic symptomatic asthma, which may contribute to the persistence of inflammation, and monocytes and activated T cells are important sources of these cytokines.

Adult↗

Time course of IL1 and IL6 synthesis and release in human bronchial epithelial cell cultures exposed to toluene diisocyanate.

We have previously demonstrated that human bronchial epithelial cells release appreciable amounts of interleukin 1 (IL1) and interleukin 6 (IL6) when exposed to toluene diisocyanate (TDI) in vitro. TDI is an inflammatory and asthmogenic stimulus presumed to act at least in part through immunological mechanisms. The epithelial cell-derived IL1 and IL6 can promote T cell activation and proliferation in culture, and if this also happens in vivo they may contribute to the persistence of the inflammatory response of the bronchial mucosa observed in TDI-sensitive asthmatics. In this study, we confirmed the release of biologically active IL1 beta and IL6-like substances from bronchial epithelial cells exposed to isocyanates in vitro, and related the rate and the magnitude of the cytokine secretion with the pattern of IL1 beta and IL6 gene expression and the extent of epithelial cell injury. In the epithelial cell cultures exposed to TDI, there was a parallel, progressive increase in the expression of IL6 mRNA and in the secretion of IL6 protein between 48 hours and 6 days after exposure. By contrast, although increasing amounts of biologically active IL1 beta were detected in the supernatants of TDI-exposed epithelial cells throughout the 6-day period following exposure, augmented levels of IL1 beta mRNA were only evident 6 days after exposure, suggesting that TDI exposure might have initially affected the enzymatic cleavage of the intracellular IL1 beta precursor and the mechanisms which regulate the secretion of mature IL1 beta.

Blotting, Northern↗

Levels of endothelin in the bronchoalveolar lavage fluid of patients with symptomatic asthma and reversible airflow obstruction.

We have previously demonstrated that human bronchial smooth muscle cells possess a single class of specific binding sites for the potent bronchoconstrictive peptide, endothelin 1, and that human bronchial epithelial cells constitutively release an endothelin-like material in culture, which binds to smooth muscle cell receptors with a kinetic analogous to that observed with the authentic peptide. To evaluate the potential role of endothelin in the pathogenesis of asthma, we examined in this study the release of endothelin in the airways of six patients with asthma, both at the time when they were symptomatic and had reversible airflow obstruction and during the remission phase of the disease induced by treatment. Five normal volunteers and five patients with chronic bronchitis and airflow obstruction unaffected by bronchodilators were tested as control subjects. The release of endothelin in airway mucosa was assessed by RIA with the bronchoalveolar lavage fluid recovered during bronchoscopy. Patients with asthma had increased amounts of immunoreactive endothelin in bronchoalveolar lavage fluid than normal control subjects or subjects with chronic bronchitis (p less than 0.05) in absence of any significant alteration in the levels of circulating peptide. Treatment of patients with asthma with oral corticosteroids and inhaled beta-agonists for 15 days resulted in improvement of airflow obstruction and in more than threefold reduction in the contents of endothelin in lavage fluid. Our findings indicate that the potent bronchoconstrictive substance, endothelin, may contribute to the pathogenesis of airflow obstruction in asthma.

Adult↗

Cellular and biochemical characteristics of bronchoalveolar lavage fluid in symptomatic nonallergic asthma.

We have undertaken cellular and biochemical examination of bronchoalveolar lavage fluid from nonallergic patients with asthma to determine the nature and degree of inflammatory process in symptomatic asthma. Six patients with asthma (mean methacholine provocative concentration causing a 20% fall in FEV1 was 0.26 mg/ml) and six control subjects underwent fiberoptic bronchoscopy with bronchoalveolar wash. The patients with asthma shed a higher number of epithelial cells into lavage fluid than normal control subjects (p less than 0.05). Their lavage fluid also contained increased numbers of neutrophils (p less than 0.025), eosinophils (p less than 0.025), and basophilic cells (p less than 0.025), and increased proportion of activated T cells (p less than 0.05). The basophilic cells were mast cells, as indicated by positive labeling with the monoclonal antibody MCG35. Biochemical analysis of lavage fluid demonstrated exudation of protein molecules in airways of patients with asthma with increased contents of albumin (p less than 0.05) and fibronectin (p less than 0.05). In the lavage fluid of patients with asthma, there were also increased amounts of interleukin-1-beta (IL-1-beta) (p less than 0.025), interleukin-6 (IL-6) (p less than 0.025), and granulocyte-macrophage, colony-stimulating factor (GM-CSF) (p less than 0.05), as compared with lavage fluid of normal control subjects. Immunocytochemical evaluation of lavage cells demonstrated that IL-1-beta, IL-6, and GM-CSF were mostly produced by nonciliated epithelial cells and/or monocytes. IL-1, IL-6, and GM-CSF can prime granulocytes to respond to other stimuli and can promote T cell activation.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Human bronchial epithelial cells modulate CD3 and mitogen-induced DNA synthesis in T cells but function poorly as antigen-presenting cells compared to pulmonary macrophages.

This study was undertaken to investigate the ability of bronchial epithelial cells (ECs) to function as accessory cells. Pulmonary monocytes were our reference cells. ECs and pulmonary monocytes were isolated from the bronchial mucosa and pulmonary parenchyma of subjects undergoing lobectomy for standard clinical reasons. Circulating autologous T cells were rigorously depleted of accessory cells to the extent that they lost the capacity to respond to mitogenic lectins alone. ECs restored mitogen-induced DNA synthesis and DNA synthesis triggered by CD3 cross-linking in T cells, as did pulmonary macrophages, and this was unrelated to HLA-DR expression. The ability of promoting T cell proliferation after CD3 cross-linking was, in part, due to the secretory products of ECs, since their supernatants were also effective. Interferon-gamma-treated ECs were capable of presenting antigens to autologous T cells. This was an HLA-DR-restricted phenomenon, but EC efficiency in this system was less than 40% of efficiency demonstrated by pulmonary monocytes. However, ECs greatly upregulated antigen-specific responses supported by pulmonary monocytes.

Antigen-Presenting Cells↗

The protective effect of frusemide on the generation of superoxide anions by human bronchial epithelial cells and pulmonary macrophages in vitro.

Inhaled frusemide has been shown to inhibit bronchoconstriction induced by immunological and nonimmunological stimuli in asthmatic patients. The mechanisms by which this compound exerts its effect in asthmatic airways are unknown, but an inhibitory action on the activation of inflammatory cells or on the responsiveness of sensory epithelial nerves may be involved. In this study, we give evidence that frusemide prevents in part the activation of bronchial epithelial cells and pulmonary macrophages, as it reduces the rate of superoxide anion generation induced by IgE receptor cross-linking and by phorbol myristate acetate by 40-60%. The effect was not specific since we used stimuli which activate different signal transduction pathways for NADPH oxidase stimulation and frusemide was equally effective.

Antigens, Differentiation, B-Lymphocyte↗

A bronchial epithelial cell-derived factor in asthma that promotes eosinophil activation and survival as GM-CSF.

We have examined the in vitro interaction between bronchial epithelial cells and eosinophils derived from five asthmatics by determining the effect of epithelial cell-conditioned medium on the survival and activation of peripheral blood eosinophils. The supernatants of epithelial cells from six normal donors were used as control. The asthmatic epithelial cell-conditioned medium significantly increased the survival of eosinophils cultured for 3 (P less than 0.025) and 6 (P less than 0.05) days. The incubation of eosinophils with the supernatants of asthmatic epithelial cells for 1 h also increased the generation of superoxide anion and the release of leukotriene C4, triggered by phorbol myristate acetate and calcium ionophore, by more than twofold. The preincubation of asthmatic epithelial cell-conditioned media with saturating concentrations of a mono-specific antiserum against granulocyte-macrophage colony-stimulating factor (GM-CSF) completely abolished their activity, whereas the addition of recombinant human GM-CSF restored it. The supernatants of asthmatic epithelial cells contained 0.88 +/- 0.09 (SD) ng/5 X 10(5) cells immunoreactive GM-CSF, and this amount was significantly greater than that measured in the supernatants of normal epithelial cells (0.21 +/- 0.105, P less than 0.025). Bronchial epithelial cells from asthmatics also expressed increased levels of GM-CSF mRNA when compared with normal epithelial cells. Thus both the synthesis and release of GM-CSF by bronchial epithelial cells are upregulated in asthma, and this may contribute to the persistence of eosinophil infiltration and activation in asthmatic airways.

Adult↗

Interleukin-1 binds to specific receptors on human bronchial epithelial cells and upregulates granulocyte/macrophage colony-stimulating factor synthesis and release.

Cultured human bronchial epithelial cells constitutively produce granulocyte/macrophage colony-stimulating factor (GM-CSF). An upregulation of the synthesis and release of GM-CSF from those cells might contribute to the persistence of infiltration and local activation of inflammatory cells in some inflammatory diseases of the airways, such as asthma. Increased levels of immunoreactive and biologically active interleukin-1 (IL-1) have been identified in the airway secretions of asthmatic patients, together with an increase in GM-CSF contents. As IL-1 is known to upregulate GM-CSF production in many cell populations, in this study we investigated the ability of IL-1 to bind to specific receptors on bronchial epithelial cells and promote GM-CSF synthesis and release. Bronchial epithelial cells possessed specific single-class surface receptors for recombinant IL-1. The addition of exogenous IL-1 led to a dose-dependent increase in the accumulation of GM-CSF mRNA and release of immunoreactive GM-CSF to the culture medium. Release of IL-1 in the bronchial mucosa during allergic and nonallergic responses may lead to enhanced GM-CSF synthesis and release by epithelial cells, thus promoting airway inflammation.

Binding, Competitive↗

Mechanisms of calcium mobilization and phosphoinositide hydrolysis in human bronchial smooth muscle cells by endothelin 1.

We have previously demonstrated that human bronchial smooth muscle cells possess a single class of high-affinity binding sites for endothelin 1. In this study, we further characterized the receptor for endothelin 1 and evaluated the signal transduction mechanisms of this peptide. Stimulation of cultured human bronchial smooth muscle cells with endothelin 1 induced mobilization of Ca2+ from both intracellular and extracellular pools with a biphasic increase in cytoplasmic free Ca2+ concentration. Endothelin 1 increased cellular levels of inositol phosphates and diacylglycerol, indicating activation of phospholipase C, but induced production of inositol phosphates in smooth muscle cell membranes only in the presence of guanosine 5'-O-(thiotriphosphate) (GTP gamma S). Treatment of smooth muscle cells with pertussis toxin failed to block the endothelin 1-induced increase in inositol phosphate production and Ca2+ mobilization. These results suggest that the receptor for endothelin 1 in bronchial smooth muscle is coupled to phospholipase C through a pertussis toxin-insensitive G protein. Affinity crosslinking experiments identified the endothelin 1 receptor as a single band with an apparent molecular weight of approximately 70,000 on sodium dodecyl sulfate polyacrylamide gel electrophoresis, further supporting the functional evidence that endothelin 1 receptor belongs to the G protein-linked rhodopsin type of receptor superfamily.

Bronchi↗

Eicosanoid release from human bronchial epithelial cells upon exposure to toluene diisocyanate in vitro.

Epithelial injury and inflammation are involved in airway hyperresponsiveness and asthma induced by toluene diisocyanate. In that isocyanates are insoluble and highly reactive compounds, bronchial epithelial cells may represent the most important target cells of their toxic effect. We hypothesized that damage to airway epithelium by toluene diisocyanate may result in the release of metabolites of arachidonic acid, which are known to promote inflammation and to alter epithelial cell function and airway smooth muscle responsiveness. To test this hypothesis we examined eicosanoid products in the culture media of bronchial epithelial cells exposed in vitro to 8 and 18 ppb toluene diisocyanate. Epithelial cells derived from human bronchi obtained at surgery were cultured to confluency on collagen-coated microporous membranes. Those cells, which expressed differentiated characteristics of epithelial cells (they showed keratin-containing filaments and had a cobblestone appearance), were alternatively exposed to toluene diisocyanate or air for 30 min in a specially designed in vitro chamber. The production of metabolites of arachidonic acid was assessed by measuring the release of immunoreactive products into the cell medium at the end of the exposure and during a 2 hr period after exposure. This method revealed a predominant isocyanate-induced release of immunoreactive 15-hydroxyeicosatetraenoic acid. Release rate of this compound tended to be dose-related and was associated with cell damage as assessed by the release of lactate dehydrogenase in the medium.

Arachidonic Acid↗

Bronchial epithelial cells exposed to isocyanates potentiate activation and proliferation of T-cells.

Bronchial epithelial cells release chemotactic factors for lymphocytes and express HLA-DR antigens. Thus they may contribute to the T-cell-mediated inflammatory responses involved in a number of pulmonary diseases such as asthma. In this study, the in vitro exposure of human bronchial epithelial cells to toluene 2,4-diisocyanate (TDI), an inflammatory and asthmogenic stimulus presumed to act at least in part through immunological mechanisms, provoked cell damage followed by proliferation of the cells that survived the injury. At the time of the proliferative response, epithelial cells released factors that upregulated the activation and proliferation of T lymphocytes presensitized by antigen receptor triggering. The T-cell activating factors were interleukin (IL) 1- and 6-like substances, as demonstrated by the ability of specific antisera to inhibit most of the biological effect, and by the ability of recombinant IL-1 and IL-6 to reproduce it. Appreciable amounts of immunoreactive IL-1 and IL-6 were indeed recovered in the supernatants of TDI-exposed epithelial cells. The release of these cytokines may represent an important mechanism by which epithelial cells respond to some environmental stimuli and contribute to the persistence of inflammatory responses in the airways.

Alkaline Phosphatase↗

Nedocromil sodium prevents the release of 15-hydroxyeicosatetraenoic acid from human bronchial epithelial cells exposed to toluene diisocyanate in vitro.

The in vivo exposure to an asthmogenic stimulus, toluene diisocyanate (TDI), causes airway epithelial damage associated with inflammation and increased bronchial hyperresponsiveness. The latter mechanisms might partly be mediated by the release of eicosanoids from bronchial epithelial cells. We have previously demonstrated that the in vitro exposure of bronchial epithelial cells to TDI results in the release of immunoreactive 15-hydroxyeicosatetraenoic acid (15-HETE), a product of activation of the 15-lipoxygenase pathway with inflammatory properties. In the present study we show that TDI-induced release of 15-HETE from epithelial cells can be prevented by nedocromil sodium, an anti-asthmatic drug with anti-inflammatory properties. This mode of action of the compound may explain its clinical effectiveness in asthma.

Anti-Inflammatory Agents, Non-Steroidal↗