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Inflammatory cytokines in the BAL of patients with ARDS. Persistent elevation over time predicts poor outcome.

BACKGROUND: Inflammatory cytokines (ICs) are important modulators of injury and repair. ICs have been found to be elevated in the BAL of patients with both early and late ARDS. We tested the hypothesis that recurrent injury to the alveolocapillary barrier and amplification of intra-alveolar fibroproliferation observed in nonresolving ARDS is related to a persistent inflammatory response. For this purpose, we obtained serial measurements of BAL IC and correlated these levels with lung injury score (LIS), BAL indexes of endothelial permeability (albumin, total protein [TP]), and outcome. METHODS: We prospectively studied 27 consecutive patients with severe medical ARDS. Using enzyme-linked immunosorbent assay methods, levels of tumor necrosis factor-alpha (TNF-alpha) and interleukins (IL) 1 beta, 2, 4, 6, and 8 were measured at frequent intervals in both plasma and BAL. In 22 patients, bilateral BAL was obtained on day 1 of ARDS and at weekly intervals when possible. Right and left BALs were analyzed separately for IC levels, total cell count and differential, albumin, TP, and quantitative bacterial cultures. RESULTS: On day 1 of ARDS, the 10 nonsurvivors had significantly higher (p = 0.0002) BAL TNF-alpha, IL-1 beta, IL-6, and IL-8 levels, which remained persistently elevated over time, indicating a continuous injury process. In contrast, the 12 survivors had a lesser elevation and a rapid reduction over time. Initial BAL IL-2 and IL-4 levels were significantly higher in patients with sepsis (p = 0.006); both increased over time in survivors and nonsurvivors. BAL levels of TNF-alpha, IL-1 beta, IL-6, and IL-8 correlated with BAL albumin and TP concentrations but not with LIS or ratio of arterial oxygen tension to inspired oxygen concentration. BAL: plasma ratios were elevated for all measured cytokines, suggesting a pulmonary origin. On day 1 of ARDS, nonsurvivors had significantly higher (p = 0.04) BAL: plasma ratios for TNF-alpha, IL-1 beta, IL-6, and IL-8. Over time, BAL:plasma ratios for TNF-alpha, IL-1 beta and IL-6 remained elevated in nonsurvivors and decreased in survivors. CONCLUSIONS: Our findings indicate that an unfavorable outcome in ARDS is associated with an initial, exaggerated, pulmonary inflammatory response that persists unabated over time. Plasma IC levels parallel changes in BAL IC levels. The BAL:plasma ratio results suggest, but do not prove, a pulmonary origin for IC production. BAL TNF-alpha, IL-1 beta, and IL-8 levels correlated with BAL indices of endothelial permeability. In survivors, reduction in BAL IC levels over time was associated with a decline in BAL albumin and TP levels, suggesting effective repair of the endothelial surface. These findings support a causal relationship between degree and duration of lung inflammation and progression of fibroproliferation in ARDS.

Adult↗

Impact of BAL data on the therapy and outcome of ventilator-associated pneumonia.

STUDY OBJECTIVE: To define the impact of BAL data on the selection of antibiotics and the outcomes of patients with ventilator-associated pneumonia (VAP). DESIGN: Prospective observation and bronchoscopy with BAL, performed within 24 h of establishing a clinical diagnosis of a new episode of hospital-acquired VAP or progression of a prior episode of nosocomial pneumonia (NP). SETTING: A 15-bed medical and surgical ICU. PATIENTS: One hundred thirty-two patients hospitalized for more than 72 h, who were mechanically ventilated and had a new or progressive lung infiltrate plus at least two of the following three clinical criteria for VAP: abnormal temperature (> 38 degrees C or < 35 degrees C), abnormal leukocyte count (> 10,000/mm3 or < 3,000/mm3), purulent bronchial secretions. INTERVENTIONS: Bronchoscopy with BAL within 24 h of establishing a clinical diagnosis of VAP or progression of an infiltrate due to prior VAP or NP. All patients received antibiotics, 107 prior to bronchoscopy and 25 immediately after bronchoscopy. RESULTS: Sixty-five of the 132 patients were BAL positive (BAL[+]), satisfying a microbiologic definition of VAP (> 10(4) cfu/mL), while 67 were BAL negative (BAL[-]). The BAL(+) patients had no differences in mortality, prior antibiotic use, and demographic features when compared with the BAL(-) patients. More of the BAL(+) patients (38/65) satisfied all three clinical criteria of VAP than did BAL(-) patients (24/67) (p < 0.05). A total of 50 BAL(+) patients received antibiotic therapy prior to bronchoscopy, and when this prior therapy was adequate (n = 16), as defined by the results of BAL, then mortality was 38%, while if prior therapy was inadequate (n = 34), mortality was 91% (p < 0.001), and if no therapy was given (n = 15), mortality was 60%. When therapy changes were made after bronchoscopy, more patients (n = 42) received adequate therapy, but mortality in this group was comparable to mortality among those who continued to receive inadequate therapy (n = 23). A total of 46 of the 65 BAL(+) patients died, with 23 of these deaths occurring during the 48 h after the bronchoscopy, before BAL results were known. When BAL data became available, 37 of the 42 surviving patients received adequate therapy, but their mortality was comparable to the patients who continued to receive inadequate therapy. CONCLUSIONS: Patients with a strong clinical suspicion of VAP have a high mortality rate, regardless of whether BAL cultures confirm the clinical diagnosis of VAP. When adequate antibiotic therapy is initiated very early (ie, before performing bronchoscopy), mortality rate is reduced if this empiric therapy is adequate, compared to when this therapy is inadequate or no therapy is given. If adequate therapy is delayed until bronchoscopy is performed or until BAL results are known, mortality is higher than if it had been given at the time of first establishing a clinical diagnosis of VAP. When patients were changed from inadequate antibiotic therapy to adequate therapy, based on the results of BAL, mortality was comparable to those who continued to receive inadequate therapy. Thus, even if bronchoscopy can accurately define the microbial etiology of VAP, this information becomes available too late to influence survival.

Aged↗

Diagnostic value of protected BAL in diagnosing pulmonary infections in immunocompromised patients.

STUDY OBJECTIVES: To assess the diagnostic utility of protected BAL (P-BAL) in respiratory infections in immunocompromised patients and to examine whether P-BAL alone could substitute the combined use of protected specimen brush (PSB) and BAL in such patients. PATIENTS AND STUDY DESIGN: Thirty-seven immunocompromised patients who underwent PSB, P-BAL, and BAL simultaneously for the diagnosis or exclusion of bacterial or nonbacterial opportunistic respiratory infections were studied prospectively. The P-BAL was performed through the inner catheter of a telescoping plugged catheter with 60 mL of saline solution. MAIN RESULTS: Thirteen (35%) cases of bacterial pneumonia were diagnosed. PSB obtained seven true-positive (TP) results, P-BAL obtained nine, and BAL obtained eight TP. Results of the three techniques were positive and concordant in 6 of the 13 cases. PSB remained free of contamination from oropharyngeal flora in all cases, P-BAL was contaminated twice, and BAL was contaminated in four cases. Opportunistic respiratory infections were diagnosed in 19 patients. P-BAL results were identical to those with BAL in all cases: 18 TP and 1 false-negative. The average volume of P-BAL fluid retrieved was 19 mL, sufficient for all microbiologic and cytologic processings. P-BAL was more time-consuming than both PSB and BAL procedures and was technically more complex. CONCLUSION: P-BAL alone can substitute the combined use of both PSB and BAL in immunocompromised patients and attains a higher sensitivity than PSB in diagnosing bacterial pneumonia. The combined strategy continues to be a good choice, but due to the high incidence of bacterial pneumonia in these patients, a highly efficient diagnostic procedure is required not only for nonbacterial opportunistic respiratory infections but also for bacterial pneumonia.

Adult↗

[Correlation between proportion of BAL cells and ventilatory function in patients with asthma].

The correlation between proportions of cells in bronchoalveolar lavage (BAL) fluid and ventilatory function was examined in 52 patients with asthma. 1. There was no significant correlation between the proportion of BAL lymphocytes and ventilatory function. 2. The proportion of BAL eosinophils correlated to a certain extent with ventilatory function: the values of %MMF, %V50 and %V25 were lower in patients with BAL eosinophils of 10-19.9% than in those with BAL eosinophils below 4.9%, and %V25 value was significantly lower in patients with a high proportion of BAL eosinophils (10-19.9%) compared with those with a low proportion of BAL eosinophils (0-4.9%). However, ventilatory function was not decreased in patients with BAL eosinophils of more than 20%. 3. The values of ventilatory parameters showed a tendency to decrease with increase in BAL neutrophils. The values of all parameters of obstructive ventilatory dysfunction were significantly lower in patients with BAL neutrophils of > 10% than in those with BAL neutrophils < 4.9%. A significant difference between patients with BAL neutrophils > 10% and < 9.9% was found in values of %V50 and %V25, and the values of %V50 and %V25 were significantly lower in patients with a high proportion of BAL neutrophils (> 10%) than in those with BAL neutrophils < 9.9%. These results suggest that the proportion of BAL eosinophils is to a certain extent related to ventilatory function of asthma patients and that the increase in proportion of BAL neutrophils is closely related to a decrease in values of obstructive ventilatory parameters.

Adult↗

Proline-rich domain and glycosylation are not essential for the enzymic activity of bile salt-activated lipase. Kinetic studies of T-BAL, a truncated form of the enzyme, expressed in Escherichia coli.

We have expressed and purified a truncated recombinant human milk bile salt-activated lipase (T-BAL) from the T7 expression system in Escherichia coli. This T-BAL contains the N-terminal 538 residues of the 722-residue native enzyme. The purified T-BAL, when assayed with PANA (p-nitrophenyl acetate), had a specific activity of 64 +/- 2 units/mg (n = 4), as compared to 52 units/mg for the native enzyme. Because the recombinant T-BAL expressed in E. coli is not glycosylated, these results indicated that the highly glycosylated C-terminal region of BAL is not essential for catalytic function. Heat inactivation patterns of native BAL and T-BAL were found to be similar, further suggesting that the folding of T-BAL is similar to that of the catalytic domain of the native enzyme. With the availability of a sufficient amount of recombinant T-BAL, the specificity and kinetics of T-BAL and native BAL were compared. Fluorescence studies of T-BAL indicated that it has a slightly higher affinity for the monomeric form of taurocholate with a dissociation constant (KA) of 0.32 mM, compared with the reported 0.37 mM for the native enzyme. Further kinetic analysis indicated that there are enzyme specificity changes revealed with the use of PANA and PANB (p-nitrophenyl butyrate) as substrates. When assayed in the presence of taurocholate, T-BAL has a higher turnover rate constant with p-nitrophenyl acetate than with p-nitrophenyl butyrate, which was found to be in contrast to native BAL.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acid Sequence↗

Bronchoalveolar lavage in the normal volunteer subject. 2. Safety and results of repeated BAL, and use in the assessment of intrasubject variability.

To investigate the safety of repeated bronchoalveolar lavage (BAL) and the variability of commonly measured parameters from BAL to BAL in the same subject, we performed a total of 59 BALs in 16 normal volunteer subjects. The BAL was performed with 120 ml (three aliquots of 40 ml) of room temperature, normal saline in a lingular subsegment. Four subjects had five BAL, three had four BAL, and nine had three BAL performed at minimal intervals of six weeks. The BAL analysis included percentage of lavageate returned, cell number, and percentage of alveolar macrophages, lymphocytes, neutrophils and eosinophils. Relatively similar percentages of lavageate were returned on each lavage. There was considerable variability in the cell numbers obtained both within and between subjects, although some subjects had consistently high, low, or normal cell numbers returned from each lavage. Cell differential was the most consistent parameter on repeated BAL analyses, but isolated "abnormal" elevations in the percentage of one or another cell type were occasionally noted. These were unrelated to either the number or relative sequence of the BALs. Pulmonary function tests performed both before and after the repeated BAL showed no significant change and participants noted no subjective deterioration in pulmonary function. This study supports the safety of repeated BALs in the normal subject, but the variability in cell numbers obtained and isolated, "abnormal" elevations of inflammatory cells occasionally noted in this normal population indicate that BAL parameters in patients need to be interpreted with extreme caution.

Adult↗

Intrapulmonary cytokine accumulation following BAL and the role of endotoxin contamination.

STUDY OBJECTIVES: BAL induces alveolar inflammation, but its effects on intrapulmonary cytokines and the mechanisms causing inflammation are uncertain. The objectives of this study were: (1) to characterize cytokine response in the lungs to BAL, and (2) to determine whether endotoxin is introduced into the lungs during BAL, which could promote BAL-induced inflammation. DESIGN AND METHODS: We performed two BAL procedures in healthy volunteers separated by 4 (n=6), 24 (n=5), or 72 h (n=3). The initial BAL was performed in the right middle lobe (RML) and the second BAL was performed in the same location and the lingula. Concentrations of interleukin-8 (IL-8), interleukin-1 (IL-1beta), and transforming growth factor-beta were measured by enzyme-linked immunosorbent assay and tumor necrosis factor-alpha (TNF-alpha) bioactivity was determined. Endotoxin contents of saline (10 and 20 mL) infused through bronchoscopes as well as BAL fluids recovered from six subjects were assessed by limulus amebocyte assay. RESULTS: At 4 h after the initial lavage, but not at later times, BAL fluid recovered from the RML contained increased concentrations of IL-8 and IL-1beta, and increased TNF-alpha bioactivity. BAL fluid recovered from the lingula contained increased concentrations of TNF-alpha only at 4 h. All BAL samples tested contained detectable endotoxin as did all saline aliquots instilled through bronchoscopes. CONCLUSIONS: There is intrapulmonary accumulation of the cytokines TNF-alpha, IL-8, and IL-1beta in the lavaged lung within 4 h after BAL; this accumulation resolves by 24 h. Endotoxin contamination of the lungs during bronchoscopy may contribute to BAL-induced lung inflammation.

Adult↗

BAL neutrophilia in asthmatic patients. A by-product of eosinophil recruitment?

Although neutrophil number may be increased in the airways of patients with asthma, its pathogenetic role in this disorder remains unclear. We evaluated BAL of 8 normal control subjects, 30 +/- 2 years of age, and 24 patients with mild asthma: 17 patients with allergic asthma, 24 +/- 1 years of age, and 7 patients with nonallergic asthma, 30 +/- 1 years of age. The BAL of asthmatic patients showed increased numbers of neutrophils (p < 0.01), eosinophils (p < 0.01), and ciliated epithelial cells (p < 0.05) and increased concentrations of myeloperoxidase (MPO) (p < 0.01) compared with control subjects. Positive correlations were observed between the number of BAL neutrophils and eosinophils (Rs = 0.780, p < 0.0001) and between BAL neutrophil numbers and BAL MPO levels (Rs = 0.40, p < 0.05). No correlations were found between the following: (1) BAL eosinophils or neutrophils and BAL epithelial cells (p > 0.05, each comparison); (2) BAL neutrophils or eosinophils and log Pd15 methacholine (MCh) (p > 0.05, each comparison); or (3) BAL epithelial cells or log Pd15 MCh and BAL MPO (p > 0.05, each comparison). Dividing the patient population into two groups, allergic asthmatics and nonallergic asthmatics, similar BAL neutrophil, eosinophil, and epithelial cell numbers and similar MPO levels were found (p > 0.05, each comparison). In addition, the correlations between BAL neutrophils and eosinophils showed similar significance in the two patient subgroups (p > 0.05, each comparison). These results suggest that, both in allergic and nonallergic asthma, airway recruitment and activation of neutrophils occur as does parallel eosinophil migration. However, airway neutrophils do not seem to contribute significantly to epithelial cell injury or to airway hyperresponsiveness in the steady state.

Adolescent↗

BAL neopterin : a novel marker for cell-mediated immunity in patients with pulmonary tuberculosis and lung cancer.

BACKGROUND: Neopterin is derived from guanosine triphosphate and is produced by stimulated macrophages under the influence of gamma-interferon of lymphocyte origin. It has been suggested that it is an excellent marker for the activation of the monocyte/macrophage axis in some clinical situations. However, to our knowledge, the relationship of BAL neopterin levels to disease states has not been studied. AIM: To assess the usefulness of BAL neopterin levels as an index of disease activity in patients with pulmonary tuberculosis and lung cancer. METHODS: BAL and serum neopterin levels were evaluated in 20 patients with pulmonary tuberculosis, 20 patients with bronchogenic carcinoma, and 10 healthy individuals. The concentration of neopterin was evaluated by radioimmunoassay technique. The BAL level of neopterin was standardized using the BAL urea level. RESULTS: The neopterin levels (mean +/- SD) in the BAL and serum of tuberculous patients (88.6 +/- 27.4 nmol/L epithelial lining fluid [ELF], 61.3 +/- 29.4 nmol/L, respectively) were significantly higher when compared with those in lung cancer patients (40.7 +/- 16.6 nmol/L ELF, 26.8 +/- 6.58 nmol/L, respectively, p < 0.001) and when compared with those in control subjects (26.3 +/- 11.3 nmol/L ELF, 6.8 +/- 2.7 nmol/L, respectively, p < 0.001). In the tuberculous group, BAL and serum neopterin levels in patients with far-advanced disease were significantly higher when compared with those in patients with moderately and minimally advanced diseases (p < 0.001). BAL and serum neopterin levels were significantly higher in patients with small cell carcinoma than in those with adenocarcinoma (p < 0.05). BAL neopterin levels were significantly (p < 0.001) higher than serum levels in all patients and control groups. In addition, there were significant positive correlations between BAL and serum neopterin levels in tuberculous (r = 0.92, p < 0.001), lung cancer (r = 0.62, p < 0.001), and control groups (r = 0.93, p < 0.001). CONCLUSIONS: The levels of neopterin in BAL fluid may reflect the degree of disease activity in pulmonary tuberculous patients. In addition, BAL neopterin levels are elevated in patients with lung cancer, especially the small-cell carcinoma type.

Adult↗

Temperature and serum proinflammatory cytokine changes in patients with NSCLC after BAL.

We examined the effects of bronchoalveolar lavage (BAL) and BAL fluid characteristics on the systemic proinflammatory cytokine expression and their relation to clinical and laboratory findings. Thirty patients suspected to have lung cancer were subjected to fiber-optic bronchoscopy (FOB) and BAL. Clinical and laboratory findings were determined at baseline, 4 h, and 24 h, including lung auscultation, temperature, chest X-ray, WBC, neutrophils, and serum IL-1beta, IL-6, and TNF-alpha. BAL fluid characteristics were determined including cytokine levels. Fifteen volunteers served as controls to determine serum variation of the same cytokines. Significant temperature elevation was defined as 1 degrees C increase compared to baseline. BAL was associated with temperature and serum TNF-alpha and IL-6 but not IL-1beta increase at 4 h. Four patients (13.3%) developed temperature over 38 degrees C. In controls there were no significant changes between baseline and 24 h measurements for the same cytokines. Eleven patients (36.6%) developed a significant temperature elevation 4 h after BAL. These patients had a statistically significant ( p < 0.05) increase in serum IL-6 at 4 h and in TNF-alpha at both 4 and 24 h after BAL compared with the nonsignificant temperature increase group. BAL characteristics were not different between the two groups. On the other hand, BAL fluid IL-6 and TNF-alpha levels were significantly higher ( p < 0.05) in the nonfever group. Significant temperature increase was observed in 36.6% of the patients undergoing BAL and associated with significant serum TNF-alpha and IL-6 increase at 4 h. Lung cytokines levels, alveolar macrophages, and BAL fluid characteristics are not related to temperature and serum proinflammatory cytokine increase. The hypothesis of alveolar macrophages derive from cytokine production and shift to the systemic circulation cannot be supported by our data.

Adenocarcinoma↗

BAL induces an increase in peripheral blood neutrophils and cytokine levels in healthy volunteers and patients with pneumonia.

STUDY OBJECTIVES: To examine the peripheral effects of BAL on the neutrophil counts and cytokine levels in the circulation. DESIGN AND METHODS: WBC counts and plasma cytokines were measured before and 4 h after fiberoptic bronchoscopy (FOB) without further interventions (n = 6), or combined with BAL in normal volunteer subjects (n = 6), and in patients with bacterial pneumonia (n = 4). The bronchus of the right middle lobe was wedged, and three 50-mL aliquots of sterile saline solution was instilled. There was no endotoxin contamination in the saline solution or the fluid obtained through the working channel of bronchoscope. RESULTS: In volunteers, peripheral WBC counts and the number of nonsegmented and segmented neutrophils increased after the BAL procedure (p < 0.05) associated with the increase in plasma concentration (mean +/- SEM) of interleukin (IL)-6 (0.99 +/- 0.32 pg/mL before BAL and 20.38 +/- 13.42 pg/mL after BAL; p < 0.05) and granulocyte colony-stimulating factor (G-CSF; 14.1 +/- 1.7 pg/mL before BAL and 38.5 +/- 9.7 pg/mL after BAL; p < 0.05). The increase in WBC counts and neutrophil counts was positively correlated to the increase in IL-6 (p < 0.05) and the increase in G-CSF (p < 0.05). In patients with pneumonia, IL-6 and G-CSF levels were higher after BAL than in normal volunteer subjects (p < 0.05). There was no increase in plasma concentration of IL-1beta, tumor necrosis factor-alpha, or IL-8 after BAL in normal volunteer subjects or in patients with pneumonia. FOB without BAL did not increase the WBC count, neutrophil count, or plasma cytokine levels. CONCLUSION: The BAL procedure increases the number of WBCs, and segmented and nonsegmented neutrophils in the peripheral circulation as well as circulating IL-6 and G-CSF levels.

Adult↗

[Cytokines TNF-alpha and GM-CSF in BAL from two different segments of lungs defined by high resolution computerized tomography (HRCT) in patients with sarcoidosis].

The aim of the study was to evaluate the concentrations of TNF-alpha and GM-CSF in double BAL (2 x 120 ml) from two different lung segments: (s.A) from upper lobe with the most and (s.B) from lower lobe with the least extensive involvement estimated by high resolution computed tomography (HRCT). Examined group consisted of 28 non-smoking sarcoid patients with homogenous, regular distribution of nodular opacities in conventional chest X-ray (14 F, 14M aged 19-54). In examined patients 16 had nonhomogenous distribution (ND) and 12 had regular distribution (RD) of HRCT changes. Eleven healthy volunteers served as controls. In patients with sarcoidosis we observed the significantly higher concentrations (p < 0.01) of TNF-alpha (3.18 pg/ml, 2.64 pg/ml) and GM-CSF (1.01 pg/ml, 0.95 pg/ml) respectively in BAL fluid from s.A and s.B in comparison with BAL from s.Abis and s.Bbis in control group (TNF-alpha: 0.46 pg/ml, 0.47 pg/ml and GM-CSF: 0.28 pg/ml, 0.31 pg/ml respectively). Mean concentration of TNF-alpha in BAL from s.A (3.77 pg/ml) in ND group was significantly higher than in BAL from s.B in RD group (2.91 pg/ml). TNF-alpha in BAL from s.A in active sarcoidosis was higher than in BAL from s.A and s.B in non-active sarcoidosis. Concentrations of TNF-alpha in BAL from both s.A and s.B correlated positively with CD4/CD8 ratio, percentage of lymphocytes, lymphocytes HLA-DR+ and absolute number of CD4 cells and negatively with CD8 cells estimated in BAL from these lung segments. In patients with indications to therapy the level of GM-CSF in BAL from s.A (1.44 pg/ml) was significantly higher (p < 0.05) than in BAL from s.A (0.64 pg/ml) in patients without indications to treatment. We conclude that TNF-alpha and GM-CSF may be involved in sarcoidosis pathogenesis and TNF-alpha may be useful in estimation of sarcoidosis activity.

Adult↗

BAL surfactant protein A and Clara cell 10-kDa protein levels in healthy subjects.

Lung surfactant protein A (SP-A) and Clara cell 10-kDa protein (CC10) are the most abundant proteins produced locally in the lower respiratory tract, as assessed in bronchoalveolar lavage (BAL) analysis. However, it is not known what factors influence SP-A and CC10 levels in BAL fluids, and the relationship between SP-A and CC10 levels in BAL fluids has been unclear. We measured SP-A and CC10 concentrations in BAL fluids from 11 healthy nonsmokers and 12 healthy smokers by enzyme-linked immunosorbent assays using specific antibodies. Mean SP-A and CC10 levels in BAL fluids of healthy smokers were significantly lower than those of healthy nonsmokers. SP-A values correlated significantly with CC10 and phospholipid values in BAL fluids. On BAL examinations using three 50-ml aliquots, the mean SP-A level in the second lavage was 2.0-fold and 2.4-fold, respectively, of that in the first and third lavages, and the mean CC10 level in the first lavage was 5.0-fold and 5.6-fold, respectively, of that in the second and third lavages. We conclude that BAL fluid SP-A and CC10 levels are influenced by the BAL methods and by cigarette smoking. There is a significant positive correlation between SP-A and CC10 values in BAL fluids of healthy subjects.

Adult↗