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Biomedical subjects

A Pesci

Publications and source records attributed to A Pesci.

At least 19 recordsLinked to original sources

Bronchoalveolar lavage in bronchiolitis obliterans organizing pneumonia primed by radiation therapy to the breast.

BACKGROUND: Growing evidence indicates that unilateral lung irradiation for breast cancer may "prime" the development of migratory lung infiltrates with histologic features of bronchiolitis obliterans organizing pneumonia. OBJECTIVE: Our purpose was to evaluate the cytologic and immunocytologic features of bronchoalveolar lavage in this condition. METHODS: We analyzed the profile bronchoalveolar lavage cell differentials and lymphocyte subpopulations of 11 women with bronchiolitis obliterans organizing pneumonia syndrome after radiation therapy for breast cancer in comparison to 9 healthy women. RESULTS: The bronchoalveolar lavage analysis demonstrated a significant increase in the percentage of lymphocytes (36.7% +/- 5.4% vs 8.6% +/- 1.1%, P =.0002), neutrophils (3.8% +/- 1.2% vs 0.6% +/- 0.2%, P =.005), eosinophils (2.4% +/- 1% vs 0.3% +/- 0.1%, P =.01), and mast cells (1.4% +/- 0.6% vs 0.1% +/- 0.02%, P =.05) with a significant decrease in the percentage of macrophages (56.1% +/- 6% vs 90.3% +/- 1.4%, P =.0002) in patients with bronchiolitis obliterans organizing pneumonia compared with the control subjects. The percentage of CD3(+) cells was significantly increased in patients with bronchiolitis obliterans organizing pneumonia (93.7% +/- 1.3% vs 70.9% +/- 4%, P =.0004), with a significant decrease in CD4(+) cells (32.7% +/- 4.7% vs 55.4% +/- 2. 6%, P =.002) and a significant increase in CD8(+) cells (61.2% +/- 4. 8% vs 37.5% +/- 2.9%, P =.003) in comparison to control subjects. The CD4/CD8 ratio was significantly reduced in patients with bronchiolitis obliterans organizing pneumonia compared with control subjects (0.6% +/- 0.1% vs 1.5% +/- 0.1%, P =.001). CONCLUSION: These data add to the view that unilateral lung irradiation for breast cancer may "prime" the development of a syndrome quite similar to idiopathic bronchiolitis obliterans organizing pneumonia.

Aged

T-cell cytokine pattern at three time points during specific immunotherapy for mite-sensitive asthma.

BACKGROUND: Several lines of evidence indicate that specific immunotherapy may act by modifying the patterns of cytokines produced by helper T cells. However, different protocols have been used and different results obtained. OBJECTIVES: To quantify the effect of specific immunotherapy on the TH1/TH2 T-cell cytokine pattern at the single cell level. METHODS: We examined the interferon-gamma/interleukin-4 ratio in peripheral blood CD4+ and CD8+ T cells from 12 subjects with house dust mite-sensitive asthma using a flow cytometric method of intracellular cytokine detection. Cytokine production was determined following stimulation with phorbol myristate acetate/ionomycin, a policlonal activator. Subjects were examined at three occasions: before specific immunotherapy, after the 3-months dose increase phase and after 1 year of treatment. During the treatment year patients kept a diary in which they recorded: (a) symptoms of asthma according to a 0-3 grading (0 = absent, 1 = mild, 2 = moderate, 3 = severe); (b) number of puffs (100 microg) per day of salbutamol required to control symptoms; and (c) peak expiratory flow. RESULTS: Specific immunotherapy improved clinical indices of disease activity including symptom scores and medication use during the treatment year, and had a marked effect in increasing the interferon-gamma/interleukin-4 ratio in peripheral blood CD4+ T cells already after the dose increase phase (5.47 +/- 1.5 vs 4.07 +/- 1.49%, P = 0.03) with and a further rise after 1 year's treatment (16.12 +/- 2.8 vs 4.07 +/- 1.49 and 16.12 +/- 2.8 vs 5.47 +/- 1.5%, P = 0.001 and P = 0.002, respectively). There were no significant changes in the interferon-gamma/interleukin-4 ratio in peripheral blood CD8+ T cells at the three times of the study. CONCLUSIONS: These data add to view that the efficacy of specific immunotherapy may be attributed to a modified cytokine secretion of CD4+ T cells.

Adult

Predominant TH1 cytokine pattern in peripheral blood from subjects with chronic obstructive pulmonary disease.

BACKGROUND: Previous studies have provided evidence for an inflammatory process in the large airways of subjects with chronic obstructive pulmonary disease (COPD), consisting predominantly of activated T cells. No data are available on the TH1 /TH2 T-cell cytokine pattern in this disease. OBJECTIVE: We sought to characterize the TH1 /TH2 T-cell cytokine pattern in subjects with COPD. METHODS: We examined the IFN-gamma and IL-4 expression in peripheral blood CD4+ and CD8+ T cells from 20 patients with COPD and 25 control subjects by using a flow cytometric method of intracellular cytokine detection. We also examined the expression of 2 surface activation markers (CD25 and HLA-DR) on peripheral blood CD4+ and CD8+ T cells. RESULTS: There was an increased percentage of IFN-gamma-producing cells (30.3% [range, 12.9% to 60.4%] vs 19.1% [range, 4% to 31.2%], P =.003) and a decreased percentage of IL-4-producing cells (4.55% [range, 0.6% to 11.3%] vs 9.5% [2.1% to 21.3%], P =.0008) among peripheral blood CD4+ T cells from the patients with COPD compared with control subjects. There was no significant difference between the 2 groups in the percentage of peripheral blood CD8+ T cells producing IFN-gamma or IL-4 or in the percentage of peripheral blood CD4+ and CD8+ T cells expressing CD25 and HLA-DR. CONCLUSION: These findings provide evidence for a TH1 -like immune response of peripheral blood CD4+ T cells in subjects with COPD.

Adult

Increased exhaled nitric oxide in patients with stable chronic obstructive pulmonary disease.

BACKGROUND: Nitric oxide (NO) plays an important role as an inflammatory mediator in the airways. Since chronic obstructive pulmonary disease (COPD) is characterised by airway inflammation, a study was undertaken to determine NO levels in the exhaled air of patients with COPD. METHODS: Two groups of patients with clinically stable COPD were studied, 10 current smokers and 10 ex-smokers. Two control groups of healthy subjects consisting of 10 current smokers and 20 non-smokers were also studied. Exhaled NO levels were measured by the collection bag technique and NO chemiluminescence analyser. RESULTS: Mean (SE) levels of exhaled NO in ex-smokers and current smokers with COPD (25.7 (3.0) ppb and 10.2 (1.4) ppb, respectively) were significantly higher than in non-smoker and current smoker control subjects (9.4 (0.8) ppb and 4.6 (0.4) ppb, respectively). In current smokers with COPD exhaled levels of NO were significantly lower than in ex-smokers. In this latter group of patients there was a significant negative correlation between smoking history (pack years) and levels of exhaled NO (r = -0.8, p = 0.002). A positive correlation was seen between forced expiratory volume in one second (FEV1) and levels of exhaled NO (r = 0.65, p = 0.001) in patients with COPD. CONCLUSIONS: These data show that exhaled NO is increased in patients with stable COPD, both current and ex-smokers, compared with healthy control subjects.

Adult

Neutrophils infiltrating bronchial epithelium in chronic obstructive pulmonary disease.

In order to characterize neutrophil and eosinophil presence in the airways of patients with chronic obstructive pulmonary disease (COPD), bronchoscopy with bronchial washings and bronchial biopsies was performed in 12 smoking stable COPD subjects and 18 normal non-smoking control subjects. Bronchial biopsies were examined by light microscopy using plastic embedding and histochemical techniques to identify different cell types. Bronchial washing fluid of COPD patients was characterized by a predominance of neutrophils (P = 0.001), and a slight, but significant (P = 0.03), increase of eosinophil fraction. Subjects with COPD had higher number of neutrophils in the epithelium (P = 0.01), and eosinophils in the lamina propria (P = 0.01) than did control subjects. The thickness of reticular basement membrane was increased for COPD patients in comparison to control subjects (P = 0.01). The present study provides evidence of neutrophil infiltration both in bronchial washing and bronchial epithelium of patients with COPD, suggesting that the source of neutrophils in airway lumen may be the bronchial mucosa. Although less common than in asthma, airways of COPD subjects reveal eosinophil presence and airway remodelling.

Aged

Influence of atmospheric nitric oxide concentration on the measurement of nitric oxide in exhaled air.

BACKGROUND: Measurement of nitric oxide (NO) in exhaled air shows promise as a non-invasive method of detecting lung inflammation. However, variable concentrations of NO are measured in environmental air. The aim of this study was to verify a possible relationship between exhaled NO and atmospheric NO values during high atmospheric NO days. METHOD: Exhaled air from 78 healthy non-smokers of mean age 35.3 years was examined for the presence of NO using a chemiluminescence NO analyser and NO levels were expressed as part per billion (ppb). The exhaled air from all the subjects was collected into a single bag and into two sequential bags. Before each test atmospheric NO was measured. RESULTS: The mean (SE) concentration of exhaled NO collected into the single bag was 17.1 (0.6) ppb while the mean values of exhaled NO in bags 1 and 2 were 16.7 (1.3) ppb and 13.8 (1.2) ppb, respectively. The atmospheric NO concentrations registered before each test varied from 0.4 to 71 ppb. There was a significant correlation between exhaled NO in the single bag and atmospheric NO (r = 0.38, p = 0.001). The atmospheric NO concentration also correlated with exhaled NO both in bag 1 (r = 0.44, p = 0.0001) and in bag 2 (r = 0.42, p = 0.0001). These correlations disappeared with atmospheric NO concentrations lower than 35 ppb. CONCLUSIONS: These results indicate a relationship between atmospheric NO and NO levels measured in exhaled air, therefore exhaled NO should not be measured on very high atmospheric NO days.

Adult

Specific immunotherapy downregulates peripheral blood CD4 and CD8 T-lymphocyte activation in grass pollen-sensitive asthma.

Several lines of evidence indicate that specific immunotherapy may act by modifying the immune responses of T-lymphocytes to the antigen. To evaluate the effect of specific immunotherapy on the activation of T-lymphocytes by cluster of differentiation cells (CD4+ and CD8+) in peripheral blood, the expression of two surface activation markers, the p55 interleukin-2 receptor (CD25) and human leucocyte antigen (HLA)-DR, was studied prospectively on circulating CD4+ and CD8+ T-cell subsets in subjects with grass-pollen sensitive asthma before and after 1 yr of treatment with specific immunotherapy. Twenty five asthmatic patients with pollen sensitivity other than grass, studied out of their pollen season, served as the control group. Specific immunotherapy improved clinical indices of disease activity including symptom scores and medication use during the pollen season of the treatment year. It had a marked effect in reducing the expression of the two activation markers, CD25 and HLA-DR, in both CD4+ (p=0.002 and p=0.005, respectively) and CD8+ (p=0.01 and p=0.01, respectively) T-cell subsets, in parallel with a significant decrease in CD23 expression on B-cells (p=0.008) and in grass-specific immunoglobulin E levels (p=0.01) in the peripheral blood of subjects with grass pollen-sensitive asthma. The decreased T-lymphocyte activation observed in immunotherapy-treated subjects after the treatment year was significant (p=0.05) in comparison with the control group. These data add to the view that the efficacy of specific immunotherapy may be attributed to the downregulation of T-cell responses.

Adult

Inflammatory cells and mediators in bronchial lavage of patients with chronic obstructive pulmonary disease.

Cigarette smoking is the most important cause of chronic obstructive pulmonary disease (COPD). Although the precise sequence of events that leads a smoker to experience airway obstruction is not completely clear, airway inflammation is a relevant factor. To investigate airway inflammation, 12 nonatopic smoking COPD patients with a forced expiratory volume in one second (FEV1) < or = 75% predicted and 10 normal nonsmoking subjects (NS) were studied with bronchoscopy and bronchial lavage (BL). Serum immunoglobulin (Ig)E levels of COPD patients correlated with the smoking history (r=0.7, p=0.008). In BL of COPD patients there was an increase of neutrophils (median, range) (COPD 62.6x10(3), 1.2-323, NS 1.35, 0-19.2, p=0.001), eosinophils (COPD 1.6, 0-6.9, NS 0.15, 0-3.7, p=0.035), the levels of interleukin (IL)-8 (COPD 1079 pg x mL(-1), 121-2,500, NS 20.4, 7.2-59, p=0.001), myeloperoxidase (MPO) (COPD 752 microg x L(-1), 11-5,500, NS 22.1, 8-70, p=0.001) and eosinophil cationic protein (ECP) (COPD 21.5 microg x L(-1), 1.8-161, NS 2, 1.8-4.9, p=0.001). Significant correlations were found in BL of COPD patients between IL-8 and neutrophils (p=0.02), MPO and neutrophils (p=0.02), IL-8 and MPO (p=0.0001) and ECP and eosinophils (p=0.02). In addition, the ratios between the BL levels of MPO and the number of neutrophils and between ECP levels and eosinophils were higher in COPD patients than in NS (p=0.03 and 0.01, respectively). These data suggest that cigarette smoke is associated with increased amounts of airway interleukin-8, a chemotactic factor for neutrophils and eosinophils. Recruited neutrophils and eosinophils are activated and they release increased amounts of inflammatory mediators capable of damaging the bronchial tissue.

Bronchoalveolar Lavage Fluid

Clinical and subclinical alveolitis in connective tissue diseases assessed by bronchoalveolar lavage.

Subclinical alveolitis, as assessed by bronchoalveolar lavage (BAL) cell analysis, may be present in the lower respiratory tract of a high proportion of symptomless patients with connective tissue diseases (CTDs) with normal chest roentgenograms. The distribution of BAL cell types, mainly macrophages, lymphocytes, and polymorphonuclear neutrophils, varies according to type of CTD and to the presence of associated interstitial lung disease (ILD). Nevertheless, subclinical alveolitis can be classified into two major groups: lymphocyte and neutrophil alveolitis. A mixed, lymphocyte and neutrophil alveolitis may be detected as well. Subclinical alveolitis, particularly in systemic sclerosis, frequently is associated with abnormalities of lung parenchyma as assessed by computed tomography (CT) scan, supporting the hypothesis that it may be associated with the development of overt ILD. Close follow-up of these patients is needed to better determine whether subclinical alveolitis precedes ILD and whether early detection of subclinical alveolitis in CTDs may identify those patients who are at risk for the development of ILD in the future.

Bronchoalveolar Lavage Fluid

Inhaled beclomethasone dipropionate downregulates CD4 and CD8 T-lymphocyte activation in peripheral blood of patients with asthma.

BACKGROUND: Previous studies demonstrated a downregulation of T-lymphocyte (CD3+ cells) activation in peripheral blood after treatment with inhaled corticosteroids in patients with asthma. OBJECTIVE: This study was carried out to evaluate the effect of inhaled corticosteroids on CD4 and CD8 T-lymphocyte activation, respectively. METHODS: We examined the expression of three surface activation markers (CD25, HLA-DR, and very late activation antigen 1) on circulating CD4+ and CD8+ T-cell subsets in subjects with asthma (n = 23) before and 8 weeks after treatment with inhaled beclomethasone dipropionate dry powder (daily dose, 800 microg). RESULTS: Beclomethasone dipropionate treatment had a marked effect in reducing the expression of the activation marker CD25 (p < 0.01) in both CD4+ and CD8+ T-cell subsets in peripheral blood of patients with asthma. However, no correlation was found between the downregulation of CD4 and CD8 T-lymphocyte activation and the improvement in physiologic indices of disease activity. CONCLUSIONS: These data add to the view that CD4+ and CD8+ T lymphocytes in peripheral blood of patients with asthma are in an activated state that is downregulated by inhaled corticosteroids.

Administration, Inhalation

Lymphocyte activation markers in peripheral blood before and after natural exposure to allergen in asthmatic patients.

Activated T cells and their cytokine products are involved in the pathogenesis of asthma. However, little is known about changes in circulating T cell subsets in allergic asthma during natural exposure to allergens. We examined whether natural allergen exposure of patients with atopic asthma is associated, in vivo, with changes of lymphocyte subtypes and activation markers in peripheral blood. Ten patients with atopic mild asthma sensitized only to grass pollen had peripheral venous blood lymphocyte analyses before and during the pollen season. No significant changes were observed. There was an inversion in the CD4/CD8 ratio in the peripheral blood both before (p < 0.05) and during (p < 0.01) seasonal exposure when compared to a group of healthy, age-matched control subjects. Evaluation of T cells expressing CD25 activation marker also demonstrated a significant reduction of CD4+25+ cells and a significant increase of CD+25+ cells compared to the controls. CD23+ cells (B lymphocytes with low affinity Fc IgE receptor) in the asthmatic group out of the pollen season correlated negatively with hyperreactivity to methacholine (p < 0.05). We conclude that in mild allergic asthmatic patients sensitized to grass pollen, blood lymphocyte subsets and their activation markers do not reflect seasonal exposure. Moreover, our findings show that these patients have higher proportions of CD8+ cells expressing higher levels of CD25 in their blood compared to normal subjects both before and during the pollen season.

Adult

Selection of T lymphocytes bearing limited TCR-Vbeta regions in the lung of hypersensitivity pneumonitis and sarcoidosis.

Hypersensitivity pneumonitis (HP) and sarcoidosis are interstitial lung disorders (ILD) characterized by a lymphocytic alveolitis that, in the active phase of the disease, is sustained by different T-cell subsets, i.e., CD8+ cells in HP and CD4+ lymphocytes in sarcoid patients. To address the question of whether a bias in T-cell selection occurs in the lung of patients with HP and sarcoidosis, we analyzed the T-cell receptor beta chain variable region (TCR-Vbeta) repertoire by flow cytometry and polymerase chain reaction (PCR) analyses in blood and lung lymphocytes of 14 HP and 25 sarcoid patients. To verify whether these cells can be activated in vitro through the TCR, blood and lung lymphocytes were also assessed for their responsiveness to different superantigenic stimuli represented by staphylococcal enterotoxins, including SEA, SEB, SEC1, SEC2, SED, and SEE. Flow cytometry and PCR analyses demonstrated an overexpression of cells bearing Vbeta2, Vbeta3, Vbeta5, Vbeta6, and Vbeta8 gene segments in the lung of HP patients as compared with the peripheral blood. In sarcoid patients cells bearing Vbeta2, Vbeta5, and Vbeta6 gene segments in the lung of HP patients as compared with the peripheral blood. In sarcoid patients cells bearing Vbeta2, Vbeta5, and Vbeta6 gene segments were overrepresented in the lung rather than in the blood. Both in HP and sarcoid patients almost all T cells bearing the dominant Vbeta segment belonged to the T-cell subset that sustains the alveolitis, i.e., CD8 in HP patients and CD4 in sarcoid subjects. Follow-up studies demonstrated that the recovery of the alveolitis was characterized by the disappearance of cells bearing a limited T-cell repertoire. Interestingly, T-lymphocyte response to different superantigens demonstrated that the proliferation elicited by different staphylococcal toxins was more pronounced in the lung than in the blood. Taken together, our findings indicate a compartmentalization of cells bearing discrete Vbeta gene products in the pulmonary microenvironment and suggest that the expansion of specific Vbeta region subsets occurring in the lung might result from triggering by a specific antigen. In fact, the removal from exposure in HP patients or specific treatment in sarcoidosis resulted in the decrease of the overrepresented cell population accounting for the lymphocytic alveolitis.

Adult

Effect of short-term treatment with low-dose inhaled fluticasone propionate on airway inflammation and remodeling in mild asthma: a placebo-controlled study.

In a double-blind, parallel-group study, we examined the effect of short-term treatment with inhaled fluticasone propionate (FP) in a group of 20 nonsmoking asthmatic patients who required only beta2-agonists to control their symptoms. We administered FP (250 microg twice daily) or matched placebo for 6 wk. Methacholine challenge was performed before treatment, after 3 wk, and at the end of treatment. Each patient underwent bronchoscopy with bronchoalveolar lavage (BAL) and bronchial biopsy before and after treatment. Eight patients in the placebo group and nine patients in the FP group completed the study. Bronchial responsiveness to methacholine decreased significantly only after 6 wk of treatment with FP (p < 0.05). When we compared the FP group with the placebo group, we observed a significant decrease only in the number of cells expressing intracellular adhesion molecule-1 (ICAM-1) and MAC-1 (p < 0.04 and p < 0.03, respectively). Moreover, we saw that the tryptase level in BAL decreased (p < 0.001), whereas the eosinophil cationic protein (ECP) level did not change significantly. Additionally, the number of eosinophils and mast cells in the lamina propria in bronchial biopsies specimens was significantly smaller in the FP group than in the placebo group (p < 0.02 and p < 0.01, respectively). Additionally, in the FP group, we found that basement-membrane thickness was significantly decreased when compared with that of the placebo group (p < 0.05). In conclusion, our results show that short-term treatment with low-dose FP reduces inflammatory cell infiltration into the lamina propria in bronchial biopsy specimens. Moreover, short-term low-dose FP treatment might control the intensity of airway remodeling in mild asthma.

Administration, Inhalation

Airways remodeling is a distinctive feature of asthma and is related to severity of disease.

PURPOSE: Airways remodeling, evaluated as the subepithelial layer thickness, was compared in asthmatic patients with that of healthy subjects, and was related to clinical grading of disease, presence of atopy, and length of asthmatic history. SUBJECTS AND METHODS: Thirty-four patients with stable asthma (mean age+/-SD: 26.5+/-9.2 years; 10 female) treated with only inhaled beta2-agonists and eight healthy volunteers (mean age+/-SD: 24.6+/-2.5 years; four female) were recruited for the study. Twenty-seven of 34 asthmatics had atopy. Eleven patients had newly diagnosed conditions (duration of disease < or = 1 year), nine patients had long asthmatic history (> 1 year and < or = 10 years), and 14 had prolonged asthmatic history (> 10 years). Bronchial responsiveness to methacholine (M) was expressed as provocative concentration of M causing a 20% fall in FEV1 (PC20) (mg/mL). Degree of asthma severity was assessed using a 0- to 12-point score based on symptoms, bronchodilator use, and daily peak expiratory flow variability over a 3-week period. Bronchoscopy and bronchial biopsy were performed successfully for all subjects; the subepithelial layer thickness, in biopsy samples, was measured from the base of bronchial epithelium to the outer limit of reticular lamina. RESULTS: In asthmatics, baseline FEV1 values (percent of predicted) ranged from 75.7 to 137.0%, and PC20 M ranged from 0.15 to 14.4 mg/mL. According to the asthma severity score, 14 asthmatics were classified as having mild disease, 14 as having moderate disease, and six as having severe disease. The mean values of subepithelial layer thickness were 12.4+/-3.3 microm (range, 6.8 to 22.1 microm) in asthmatics, and 4.4+/-0.5 microm (range, 3.8 to 5.2 microm) in healthy subjects (p<0.001). Subepithelial layer thickness of those with severe asthma differed significantly from that of patients with moderate and mild asthma (16.7+/-3.1 microm vs 12.1+/-2.7 microm and 10.8+/-2.4 microm, p<0.01 and p<0.003, respectively). Moreover, in asthmatics, degree of thickening was positively correlated to asthma severity score (Spearman rank correlation coefficient [rs]=0.581; p<0.001), and negatively correlated with baseline FEV1 (rs=-0.553; p<0.001) and PC20 M (rs=-0.510; p<0.01). No difference was found between degree of thickening observed in atopic asthmatics, compared with that of nonatopic asthmatics, or between degree of thickening in patients with different lengths of asthmatic history. Lastly, multiple regression analysis revealed that asthma severity score was the significant predictive factor for thickness of subepithelial layer. CONCLUSIONS: We confirmed that airways remodeling is a very distinctive and characteristic pathologic finding of asthma. We also demonstrated that it is related to the clinical and functional severity of asthma, but not to atopy or length of asthmatic history.

Adolescent

Increased bronchoalveolar granulocytes and granulocyte/macrophage colony-stimulating factor during exacerbations of chronic bronchitis.

Although inflammatory changes are found throughout the airways of patients with chronic bronchitis, the mechanisms of the pathogenesis of chronic bronchitis are still unclear. The aim of this study was to investigate airways inflammation in patients with and without an exacerbation of bronchitis. Thirteen chronic bronchitic patients and nine normal subjects were studied. Eight of the patients were studied under baseline conditions (B), and five during an exacerbation of bronchitis (E). Bronchoscopy and bronchoalveolar lavage (BAL) with cytological analysis were performed, and the levels of granulocyte/macrophage colony-stimulating factor (GM-CSF) were determined in sera and in BAL supernatants by a solid phase enzyme immunoassay. Compared with patients under baseline conditions, chronic bronchitic patients with an exacerbation had increased numbers of BAL neutrophils (10+/-3 and 83+/-18x10(3) cells x mL(-1), respectively; p<0.0001) and of BAL eosinophils (1.9+/-0.5 and 6.7/-1.9x10(3) cells x mL(-1), respectively; p=0.014). Patients with chronic bronchitis, as a whole, had significantly increased levels of BAL GM-CSF compared to control subjects (36+/-5 and 19+/-4 pg x mL(-1), respectively; p=0.035), and similar levels of serum GM-CSF. Serum levels of GM-CSF were markedly increased in chronic bronchitic patients with an exacerbation, as compared with patients under baseline conditions (1.4+/-0.4 and 13+/-1 pg x mL(-1), respectively; p <0.0001). BAL levels of GM-CSF were also increased in chronic bronchitic patients with an exacerbation (25+/-5 and 54+/-8 pg x mL(-1), respectively; p=0.009). During exacerbations of chronic bronchitis there are changes in the cell populations in bronchoalveolar lavage of patients consistent with a recruitment of polymorphonuclear leucocytes in the airway lumen. The increased levels of granulocyte/macrophage colony-stimulating factor might suggest a role for this cytokine in the inflammatory processes of chronic bronchitis.

Adult

Bronchoalveolar lavage in mixed cryoglobulinaemia associated with hepatitis C virus.

In order to evaluate the presence of an inflammatory process of the lower respiratory tract in patients with mixed cryoglobulinaemia (MC) associated with hepatitis C virus (HCV), bronchoalveolar lavage (BAL) was performed in 16 non-smoking females free of clinical pulmonary symptoms and with normal chest roentgenograms. Pulmonary function tests including diffusion capacity for carbon monoxide (DLCO) were also carried out. Thirteen healthy subjects were evaluated as the control group. Patients with MC had a lower percentage of alveolar macrophages (75% vs 92%, P = 0.001) and a higher percentage of lymphocytes (19.7% vs 7%, P = 0.001) than healthy controls. The percentage of CD3+ lymphocytes was higher in MC patients than in controls (86.5% vs 70%, P = 0.004). No significant differences in the percentage of CD4+, CD8+ and CD19+ lymphocytes, neutrophils and eosinophils were found. Pulmonary function tests showed significantly lower values of forced expiratory flow (FEF) 25-75 (P = 0.05) and DLCO (P = 0.05) in MC patients than in healthy controls. No correlations between BAL results and pulmonary function tests were found. The 5 yr follow-up of five patients did not demonstrate deterioration in lung function. Thus, BAL results indicate a subclinical T-lymphocytic alveolitis in MC HCV+ patients that is not associated with a risk of deterioration in lung function.

Adult

Bronchial responsiveness to distilled water and methacholine and its relationship to inflammation and remodeling of the airways in asthma.

Although bronchial hyperresponsiveness in asthma is associated with inflammation within the airways, it is not known whether the degree and type of inflammation influence the response to different stimuli and whether pathologic changes of airway structure influence the bronchoconstrictive responses. Therefore, number of inflammatory cells in the epithelium and the lamina propria and the basement membrane thickness were estimated from bronchial biopsies taken in 27 asthmatic subjects (range percent predicted FEV1: 75.6 to 132.1, range of daily PEF variability: 1.9% to 20%) and related to the degree of bronchial responsiveness to ultrasonically nebulized distilled water (UNDW) and methacholine (M). PD20UNDW (provocative dose) was measurable in 15 of 27 patients and ranged between 1.01 and 20.4 ml. PC20M (provocative concentration) ranged between 0.15 and 31.7 mg/ml. In the 15 responders to UNDW, total inflammatory cells (p<0.04) and eosinophils (p<0.015) within the epithelium were higher than in 12 nonresponders to UNDW (PD20 > 34.8 ml). There was no correlation between PD20UNDW and any cell counts whereas negative correlations were found between PC20M and both total inflammatory cells (rs = -0.57; p<0.005) and eosinophils (rs = -0.63; p< 0.0015) within the epithelium. The degree of thickening of subepithelial layer ranged between 7 and 16 micrometers+ (n=26). Thickness correlates both with total inflammatory cells (rs = 0.49; p<0.025) and eosinophils (rs = 0.61; p< 0.003) within the epithelium. Moreover, it was correlated with baseline FEV1 (rs = -0.57; p<0.003) and daily peak expiratory flow (PEF) variability (rs = 0.51; p<0.01). A weak but significant correlation was also found between subepithelial layer thickness and PC20M (rs = -0.42; p<0.04). The results of this study demonstrate that eosinophilic inflammation of bronchial epithelium plays a role in determining UNDW and M responsiveness in asthma. Moreover, they suggest that remodeling of the airways such as thickening of subepithelial layer correlates with indices of asthma severity and could contribute to the degree of M but not to UNDW responsiveness.

Adolescent