Search PubMed⌕ Search

Biomedical subjects

M X Fitzgerald

Publications and source records attributed to M X Fitzgerald.

At least 19 recordsLinked to original sources

Effect of respiratory rate on airway deadspace ventilation during exercise in cystic fibrosis.

Gas exchange during exercise in patients with cystic fibrosis (CF) is characterised by an elevated physiological deadspace to tidal volume ratio. While this has been attributed to alveolar ventilation perfusion mismatch, there are other potential causes of the high proportion of wasted ventilation, including factors relating to the volume and the ventilation of the airway deadspace. CF (n = 6, F = 1, FEV1 26-63% pred) and control (n = 6, F = 2) subjects completed steady-state exercise on a cycle ergometer. Gas exchange was measured breath-by-breath and the volume of the airway deadspace (V(Daw)) determined using the equal areas method. Exercise data were interpolated to a CO2 output of 0.7 l/min. V(Daw) was similar in the two groups both at rest and during exercise. However, the airway deadspace ventilation (V(Daw)) (median (inter-quartile range)), patients, 6.8 (5.1-7.1) l/min; controls, 4.9 (3.5-5.6) l/min, P < 0.05) was significantly greater in the CF group due to a greater respiratory frequency. These results indicate that in CF patients, abnormally increased V(Daw) is an important contributor to the total (physiological) deadspace ventilation. Exercise performance in CF might be enhanced by efforts directed at facilitating an increase in exercise tidal volume and therefore the adoption of a more efficient pattern of breathing.

Adult↗

Secretory leukocyte proteinase inhibitor and elafin are resistant to degradation by MMP-8.

The naturally occurring neutrophil elastase inhibitors, alpha1-proteinase inhibitor (alpha1PI), secretory leukocyte proteinase inhibitor (SLPI), and elafin, are potential therapeutic agents in the treatment of neutrophil-mediated lung disease. However alpha1PI has been shown to be susceptible to inactivation by matrix metalloproteinases (MMPs) released by neutrophils, particularly neutrophil collagenase (MMP-8). The aim of this study was to determine if SLPI and elafin are similarly susceptible to degradation by this neutrophil-specific MMP. The effect of MMP-8 on SLPI and elafin was assessed by determining the neutrophil elastase inhibitory capacity (NEIC) and electrophoretic protein profile of both inhibitors following exposure to purified MMP-8. As a positive control, the effect of MMP-8 alpha1PI was assessed in parallel. Although treatment of alpha1PI with MMP-8 resulted in a significant decrease in its NEIC (P = .025), no similar decrease was observed with SLPI or elatin. Electrophoretic analysis confirmed digestion of alpha1PI by MMP-8 but no digestion of either SLPI or elafin was observed. These results demonstrate that SLPI and elafin are resistant to proteolytic inactivation by MMP-8, a property that may enhance their therapeutic application in neutrophil-mediated inflammatory lung disease.

Humans↗

Matrix metalloproteinases and tissue inhibitor of metalloproteinase-1 in sarcoidosis and IPF.

The purpose of this study was to examine the role of interstitial collagenases, members of the family of matrix metalloproteinases, in the development of pulmonary fibrosis. The activity, levels and molecular forms of collagenases (matrix metalloproteinases (MMP)-1, -8 and -13), gelatinase B (MM P-9) and its main endogenous inhibitor, tissue inhibitor of metalloproteinase-1 (TIMP-1) were assessed in bronchoalveolar lavage fluid (BALF) from patients with idiopathic pulmonary fibrosis (IPF) and sarcoidosis patients with varying degrees of pulmonary parenchymal involvement. Collagenase activity was elevated in IPF and group 3 sarcoidosis patients. A positive correlation between BALF collagenase activity and MMP-8 levels was also observed. Western immunoblotting revealed the presence of two isoforms of MMP-8 in patient samples; an 80 kD form representing latent enzyme from polymorphonuclear neutrophils and a 55 kD form representing the fibroblast-type proform. MMP-9 levels were also elevated in both IPF and group 3 sarcoidosis patients, while TIMP-1 levels remained normal, indicating a shift in the balance between the enzyme and inhibitor, favouring MMP-9. Matrix metalloproteinase-8 is the major contributor to the bronchoalveolar lavage fluid collagenase activity in the airways of patients with idiopathic pulmonary fibrosis and sarcoidosis and may initiate collagen destruction and remodelling leading to the development of pulmonary fibrosis.

Aged↗

Human endothelial cells cultured on microporous filters used for leukocyte transmigration studies form monolayers on both sides of the filter.

A growing number of studies on the mechanism of leukocyte transendothelial migration use endothelial cells grown on microporous filters as an in vitro model of endothelium. Ultrastructural examination of such a model system previously demonstrated that human pulmonary artery endothelial cells (HPAEC) formed confluent monolayers on both sides of the 3-microm-pore filter (Mackarel et al., 1999). To determine whether this was a characteristic specific to pulmonary artery endothelial cells, the growth characteristics of a human pulmonary microvascular endothelial cell type (HMVEC-L) and the widely used human umbilical vein endothelial cells (HUVEC) on 3-microm microporous filters were examined by transmission electron microscopy (TEM). Similar to HPAEC, HMVEC-L and HUVEC were also found to grow on both sides of the filter. All three endothelial cell types were capable of migrating through the 3 microm pores of the filter to form a monolayer on the filter underside. The endothelial cells on the underside were orientated in an inverted position with the luminal surface facing away from the filter. Such 'bilayer' formation was observed at a range of seeding densities and in different culture media. Despite the presence of a bilayer of endothelial cells, TEM demonstrated that neutrophils migrated successfully across the cell-filter-cell system. Previous transmigration reports in which an in vitro model similar to ours was used have often assumed only one layer of endothelial cells. The observations reported here indicate that while endothelial cells on microporous filters are useful models for examining leukocyte-endothelial interactions, they are not appropriate for studies examining endothelial cell 'sidedness.'

Cell Culture Techniques↗

Neutrophil adhesion molecule surface expression and responsiveness in cystic fibrosis.

The neutrophil-dominated inflammation of the lung in cystic fibrosis (CF) has traditionally been seen as a physiological response to continuous opportunistic infection. Recent studies suggest, however, that regulation of the inflammatory response itself may be altered in CF. Neutrophil migration from the bloodstream involves alterations in surface expression of the adhesion molecules L-selectin and Mac-1 (CD11b/CD18). The aim of this study was to assess neutrophil adhesion molecule expression and responsiveness in CF. Neutrophils from chronic (n = 16) and acutely infected (n = 13) CF patients and 15 normal control subjects were directly assessed by Fluorescence-activated cell sorter (FACS) analysis for surface expression of L-selectin and CD11b before and after stimulation with interleukin 8 (IL-8) or f-Met-Leu-Phe (fMLP). Neutrophils from stable (n = 5) and acutely infected (n = 5) non-CF bronchiectasis patients were also assessed. Surface upregulation of CD11b was similar in all groups. Basal levels of L-selectin were also comparable among all groups, however, when stimulated, neutrophils from both stable and acutely infected CF patients shed significantly less L-selectin than those from control subjects (p < 0.05 and p < 0.01, respectively). This decreased responsiveness was not observed in either stable or acutely infected non-CF bronchiectasis patients. These results add to the accumulating evidence suggestive of a defective inflammatory response in CF.

Acute Disease↗

Total sputum nitrate plus nitrite is raised during acute pulmonary infection in cystic fibrosis.

Nitric oxide (NO) can be detected in exhaled gas in human subjects. It is produced by nitric oxide synthase (NOS) and is rapidly metabolized to nitrite and nitrate (NO2/NO3). Exhaled NO is reported to be elevated in patients with asthma, bronchiectasis, or upper respiratory tract infection. Recent reports have shown no increase of exhaled NO in stable cystic fibrosis (CF). We hypothesized that NOS activity is increased in patients with acute pulmonary exacerbation of CF. We therefore measured exhaled NO and sputum NO2/NO3 in three subject categories: patients with acute pulmonary exacerbation of CF, patients with stable CF, and healthy control subjects. Mean +/- SD exhaled NO was significantly higher in control subjects (8.8 +/- 4.9 ppb) than in both acute (3.8 +/- 3.9 ppb) and stable (5.0 +/- 2.5 ppb) patients. Sputum NO2/NO3 was significantly higher in acute patients (774 +/- 307 micromol/L) when compared with both stable patients (387 +/- 203 micromol/L) and control (421 +/- 261 micromol/L) subjects. Sputum NO2/NO3 did not return to normal in a subgroup of patients assessed after 2 wk of intensive antibiotic and glucocorticoid treatment. These results confirm that exhaled NO is not a useful measure of airway inflammation in CF. Elevated levels of sputum NO2/NO3 suggest that NOS is activated during acute pulmonary exacerbations of CF.

Acute Disease↗

Exhaled nitric oxide and bronchoalveolar lavage nitrite/nitrate in active pulmonary sarcoidosis.

Increased exhaled nitric oxide (NO) may reflect respiratory tract inflammation in untreated asthmatics. We compared exhaled NO and bronchoalveolar lavage (BAL) nitrate/nitrite (NO3-/NO2-) in 10 patients who had untreated, active pulmonary sarcoidosis with those of normal control subjects. Exhaled NO concentrations, determined by chemiluminescence, were similar in patients and control subjects (peak NO concentration of patients [mean +/- SD]: 13.6 +/- 5.9 parts per billion [ppb], peak NO concentration of control subjects: 11.2 +/- 5.7 ppb, p = 0.32; mean alveolar NO concentration of patients: 7.8 +/- 4.4 ppb, mean alveolar NO concentration of control subjects: 7.1 +/- 4.2 ppb, p = 0.70; end-tidal NO concentration of patients: 6.9 +/- 4.5 ppb, end-tidal NO concentration of control subjects: 6.6 +/- 4.0 ppb, p = 0.60). BAL NO2- was assayed using a modified Griess reaction after reduction of NO3- to NO2-. There was no significant difference in mean BAL NO2- concentrations, expressed as nanomoles per milliliter of epithelial lining fluid (patients: 544 nmol/ml, control subjects: 579 nmol/ml, p = 0.81) or as nanomoles per milliliter of BAL fluid (patients: 6.7 nmol/ml, control subjects: 5.7 nmol/ml, p = 0.41). These data suggest that excess NO generation does not accompany the respiratory tract inflammation of pulmonary sarcoidosis.

Adult↗

Neutrophil activation in fibrosing alveolitis: a comparison of lone cryptogenic fibrosing alveolitis and systemic sclerosis.

Fibrosing alveolitis complicating systemic sclerosis (FASSc) carries a better prognosis than lone cryptogenic fibrosing alveolitis (CFA). We wanted to determine whether this improved prognosis is associated with differential neutrophil migration and activation in the lower respiratory tract. We therefore compared bronchoalveolar lavage (BAL) neutrophil numbers and levels of neutrophil-derived enzymes in FASSc, CFA and normal individuals. Bronchoalveolar lavage was performed on 45 subjects (FASSc n = 20; CFA n = 15; normals n = 10); cell counts and levels of neutrophil-derived enzymes, myeloperoxidase, elastase (total elastase and elastase/alpha 1 antitrypsin complexes), collagenase and lactoferrin were measured. Lung function testing was performed in subjects with fibrosing alveolitis. Significant differences in the levels of collagenase, myeloperoxidase and elastase/ alpha 1-antitrypsin complexes were present in the BAL fluid from the three groups. Patients with CFA had significantly higher neutrophil percentages and levels of collagenase and myeloperoxidase than those with FASSc. Disease extent, as judged by lung volumes and gas transfer, was comparable in the CFA and FASSc groups. Forced vital capacity (% predicted) was significantly lower in patients with evidence of increased neutrophil enzyme release than those without. We conclude that: 1) increased neutrophil migration to the lung is accompanied by release both of primary and secondary granule enzymes in cryptogenic fibrosing alveolitis; and 2) the lower amounts of neutrophil products in fibrosing alveolitis complicating systemic sclerosis may account for the improved prognosis, even when disease is as extensive as in cryptogenic fibrosing alveolitis.

Adult↗

Serum IgA and IgG subclasses during treatment for acute respiratory exacerbation in cystic fibrosis: analysis of patients colonised with mucoid or non-mucoid strains of pseudomonas aeruginosa.

Patients with cystic fibrosis (CF) have a high prevalence of Pseudomonas aeruginosa infection which causes chronic infection of the mucosal surfaces of the lung. This results in recurrent immune stimulation and hypergammaglobulinemia. The present study examines the levels of circulating Ig classes, IgG and IgA subclasses in 13 adult patients with CF during acute pulmonary infection and post-exacerbation. Total serum IgG levels were raised in the patients during infection and post-treatment when compared to the normal range (mean +/- SEM: 17.21 +/- 1.4 g/l vs 16.45 +/- 1.5 g/l respectively; normal range 8-16 g/l). In contrast, total IgM (2.6 +/- 0.26 vs 2.69 +/- 2.74 g/l; normal range 0.6-2.8 g/l) and IgA levels (2.5 +/- 0.52 vs 2.41 +/- 0.48 g/l; normal range 0.5-4 g/l) remained unchanged when examined during all stages of the disease. Of the 13 patients studied, 69%, 39% and 31% had IgG, IgM and IgA levels respectively raised above the normal range values. The mean levels of individual IgG subclasses examined in this group of patients revealed values within the normal ranges, however IgG2 and IgG3 were increased in 31% and 46% of patients. Individual IgG3 levels fell in 77% (10/13) and IgG4 in 62% (8/13) of the patients post-exacerbation. With regard to IgA subclasses, significant reduction in the IgA1 levels were observed post treatment (3687 +/- 539 mg/l vs 2713 +/- 498 mg/l, p < 0.01). In contrast, IgA2 levels were increased from 279 +/- 49 mg/l to 421 +/- 69 mg/l, although statistical significance was not reached. Upon antibiotic treatment for infection, the findings in this study show that IgA1 which is susceptible to bacterial proteases is reduced with a concommitant increase in the protease resistant IgA2 subclass. Moreover, patients colonised with non-mucoid strains of P. aeroginosa had higher total IgA levels due to the raised IgA1 subclass whereas they had lower IgG levels due to low IgG2 and IgG4 subclasses.

Acute Disease↗

Spontaneous in vitro production of rheumatoid factor during infectious exacerbations of cystic fibrosis: correlation with circulating immune complex levels.

Rheumatoid factor (RF) production has been demonstrated during infections, including infectious exacerbations of cystic fibrosis (CF). The aim of this study was to evaluate the relationship of RF production to infection, and examine the mechanisms involved. Serial peripheral blood mononuclear cell (PBMC) cultures with measurement of spontaneous production of IgM RF, IgA RF, total IgM and IgA, and measurement of serum levels of immune complexes were carried out during exacerbations of CF. The percentage of B cells expressing CD5 was examined in a second cohort of acutely infected CF patients, and related to IgM RF production. IgM RF production was significantly elevated during acute infection compared with convalescence (P < 0.05), stable CF subjects (P < 0.005) and normal controls (P < 0.05). IgM RF production did not correlate with total IgM production in the majority of patients, but was closely related to circulating immune complex levels in 8/10 subjects. IgA RF production did not increase significantly during infection, and did not correlate with total IgA or IgM RF production, or with circulating immune complex levels. CD5+ B cells were not increased in the CF group, and the percentage of CD5+ B cells did not correlate with IgM RF synthesis. These observations suggest that RF production during infection is specifically induced, possibly by immune complex autoimmunization, and is not simply the result of polyclonal B cell activation. Different patterns of IgM RF and IgA RF synthesis suggest different mechanisms of induction.

Acute Disease↗

alpha 1-Proteinase inhibitor, elastase activity, and lung disease severity in cystic fibrosis.

The potential role of neutrophil elastase in exacerbating pulmonary infection and tissue damage in cystic fibrosis (CF) has led to proposals for treatment of lung disease in CF with the elastase inhibitor, alpha 1-proteinase inhibitor (alpha 1PI). Reports that alpha 1PI is inactivated in the CF lung suggest that the effectiveness of alpha 1PI therapy depends on the quantity of elastase present and the extent of alpha 1PI inactivation, both of which are expected to vary with disease severity. In this study we assessed the elastase-alpha 1PI profile in sputum and plasma from CF patients with various degrees of pulmonary involvement. Levels of active elastase in sputum samples increased with severity of pulmonary disease (F ratio = 5.63, p < 0.01), as did sputum levels of alpha 1PI (F ratio = 4.88, p < 0.01). A positive correlation was observed between sputum levels of active elastase and alpha 1PI (r = 0.68, p < 0.005). Plasma alpha 1PI levels were also elevated in CF patients compared with control subjects (p < 0.005), indicating a compensatory increase in plasma and sputum levels of alpha 1PI in response to increased elastase load. Molar levels of total immunogenic neutrophil elastase were, on average, 12 times higher than alpha 1PI in CF sputum. These results suggest that the major contributor to the elevated levels of active elastase observed in the CF lung is an increase in elastase release rather than inactivation of alpha 1PI.

Adolescent↗