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Biomedical subjects

S E Overbeek

Publications and source records attributed to S E Overbeek.

At least 37 records · Page 2Linked to original sources

Interleukin 4 receptors on human bronchial epithelial cells. An in vivo and in vitro analysis of expression and function.

Asthma is considered a Th2-like disease, characterized by locally increased levels of interleukin (IL) 4. The bronchial epithelium plays an important role in the initiation and perpetuation of inflammatory reactions within the airways. However, little is known about the presence of IL-4 receptors on human bronchial epithelial cells, or the effects of IL-4 on these cells. In this report, definitive evidence of IL-4 receptor expression on human bronchial epithelial cells using several methods is presented. IL-4 receptor expression on human bronchial epithelial cells in vivo was demonstrated using in situ hybridization and immunohistochemistry. No difference in IL-4 receptor protein expression was observed between bronchial biopsies of healthy subjects compared to allergic asthmatics. Cultured human bronchial epithelial cells also expressed IL-4 receptor mRNA and protein (as determined by RT-PCR analysis and flow cytometry, respectively). IL-4 receptor protein expression by bronchial epithelial cells could be increased by stimulation with PMA+calcium ionophore, whereas IL-1beta and IL-6 decreased IL-4 receptor expression. A cyclic AMP analogue and IL-4 had no effect. Finally, it is shown that the IL-4 receptor is functionally active as IL-4 stimulates the release of IL-8, monocyte chemoattractant protein 1, and particularly IL-1 receptor antagonist by human bronchial epithelial cells. It is concluded that human bronchial epithelial cells express IL-4 receptors both in vivo and in vitro. Stimulation of human bronchial epithelial cells by IL-4 may result in the release of both pro- and anti-inflammatory mediators known to be upregulated in asthmatic airways.

Asthma↗

Expression of aminopeptidase N and dipeptidyl peptidase IV in the healthy and asthmatic bronchus.

BACKGROUND: Asthma is characterized by reversible airway obstruction, airway hyperresponsiveness, and chronic inflammation of the airways. Since peptides are able to produce many of the pathophysiological features which are characteristic of asthma, peptide-mediated inflammation is thought to play a role in this disease. The effects of peptides are modulated by peptidases, which are able to degrade peptides, mostly resulting in their inactivation. OBJECTIVES: In this study, we investigated the distribution of two peptidases, aminopeptidase N and dipeptidyl peptidase IV, in the human bronchus and determined whether their expression was altered in allergic asthmatics. METHODS: We first determined the distribution of aminopeptidase N and dipeptidyl peptidase IV in the human bronchus using immuno- and enzymehistochemistry and compared this with the distribution of neutral endopeptidase. Secondly, the expression of aminopeptidase N and dipeptidyl peptidase IV was determined in bronchial biopsies of healthy subjects (n = 8) and allergic asthmatics (n = 12). RESULTS: Aminopeptidase N was localized in connective tissue, blood vessels, gland ducts, perichondrium, nerves and leucocytes (mainly mononuclear phagocytes, dendritic cells, and eosinophils). Dipeptidyl peptidase IV was localized in serosal glands, blood vessels, and T cells. Immunohistochemistry and enzymehistochemistry gave similar results. Comparison of the expression of aminopeptidase N and dipeptidyl peptidase IV in bronchial biopsies of healthy controls and atopic asthmatics revealed no significant differences in the lamina propria. In contrast, in the bronchial epithelium of atopic asthmatics an increased number of aminopeptidase N-positive cells could be found. Double-staining identified these cells as L25+ dendritic cells and eosinophils. CONCLUSIONS: We conclude that expression of aminopeptidase N and dipeptidyl peptidase IV is restricted to specific sites within the human bronchus. Furthermore, in the bronchial epithelium of allergic asthmatics an increased number of aminopeptidase N-expressing dendritic cells and eosinophils can be found.

Adult↗

Exchange of Pseudomonas aeruginosa strains among cystic fibrosis siblings.

The molecular epidemiology of Pseudomonas aeruginosa infection in cystic fibrosis (CF) siblings was analysed by DNA fingerprinting using arbitrary primed polymerase chain reaction. A total of 306 strains collected from six pairs of siblings over a period of 20-126 months (median 64) was studied. Fifty-four different P. aeruginosa genotypes were recognized. Two out of six pairs of siblings were ultimately colonized by identical strains, and it was shown that a single P. aeruginosa clone can persist in an individual patient for over ten years. No overlap in P. aeruginosa genotypes was encountered between families, whereas in all families at least transient cross-colonization with the same genotype was observed. This finding demonstrates that P. aeruginosa cross-infection or acquisition of the same strain from an identical environmental source exists within the family situation, but does not always result in a long-term colonization by identical genotypes in all family members suffering from CF.

Adolescent↗

Evaluation studies of the 13C-mixed triglyceride breath test in healthy controls and adult cystic fibrosis patients with exocrine pancreatic insufficiency.

The 13C-mixed triglyceride (13C-MTG) breath test (BT) is a safe and noninvasive method to measure exocrine pancreatic function. We examined the reproducibility of the 13C-MTG BT in a group of 17 healthy controls and 8 adult patients with cystic fibrosis (CF). In controls no statistically significant difference in percentage dose recovered (PDR) was found between the first and the second result of repeated tests: the mean values were 35.5 +/- 5.5 vs. 32.3 +/- 7.4 PDR (n = 17). Also in the group of CF patients (n = 8) no significant difference between duplicate tests was found: mean values 17.5 +/- 7.5 and 17.5 +/- 7.8 PDR, respectively. The coefficient of repeatability is 8 PDR for the controls and CF patients together. Two factors might influence the outcome of the test. First, individually measured CO2 excretion instead of the usually assumed 9 mmol/h/kg CO2 production might alter the result of the 13CO2-MTG BT. Therefore CO2 production was measured by indirect calorimetry in 12 healthy controls and 13 CF patients. Measured CO2 excretion was not significantly different between healthy controls and CF patients. Secondly, exercise might influence BT results due to its separate effects on both CO2 production and excretion. The influence of physical exercise at a level of 25 or 50 W was studied on a bicycle ergometer in 4 healthy controls during the last 5 min of each 30-min sampling period. Exercise gave lower test results, on average 85% of the PDR value at rest. Incidently, it was observed in 1 patient that use of 13C-enriched food during the day preceding the test caused inappropriately low test results in the 13C-MTG BT. The 13C-MTG BT is a test with a fair but less than desirable reproducibility. Test conditions should be standardized to eliminate confounding influences. Exercise should be limited or strictly defined. Diet on the day preceding the test should not contain naturally 13C-enriched food. There is no need to measure individual CO2 production.

Adult↗

Eicosanoids and lipocortin-1 in BAL fluid in asthma: effects of smoking and inhaled glucocorticoids.

Both smoking and asthma are associated with inflammatory changes in the lung, which may be suppressed with the help of exogenous anti-inflammatory drugs or by the endogenous defense system. Lipocortin-1 (LC-1; annexin-1) is an anti-inflammatory protein present in respiratory tract secretions. We report an inverse correlation between extracellular LC-1 concentration and the bronchoconstrictor prostaglandin (PG) D2 [n = 15, Spearman rank correlation coefficient (rS) = -0.597, P < 0.05] in bronchoalveolar lavage fluid (BALF) from allergic asthmatic patients, together with positive correlations between extracellular LC-1 per milliliter BALF and the prostacyclin (PGI2) metabolite 6-keto-PGF1 alpha (n = 15, rS = 0.480, P < 0.05) and between LC-1 per milliliter BALF and concentration of histamine causing a 20% decrease in forced expired volume in 1 s (n = 15, rS = 0.720, P < 0.01) in these subjects. We found no significant difference between the LC-1 concentration in BALF from nonsmoking asthmatic patients who were receiving inhaled glucocorticoid therapy (2 x 100 micrograms beclomethasone 4 times/day for 2.5 yr; median 186 ng LC-1/mg albumin; n = 6) and those who were not (median 126 ng LC-1/mg albumin; n = 12), perhaps because inhaled drugs deposit predominantly in central airways, which are poorly represented in bronchoalveolar lavage. Both asthmatic and healthy volunteers who smoked had higher levels of LC-1 in their BALF than did their nonsmoking counterparts (e.g., asthmatic smokers, median 317 ng LC-1/mg albumin, n = 10; asthmatic nonsmokers, median 162 ng LC-1/mg albumin, n = 18; P < 0.05), perhaps because smokers' lungs contain more alveolar macrophages, cells that release LC-1. We observed a positive correlation between BALF LC-1 and bronchoalveolar lavage cell number (n = 16, rS = 0.821, P < 0.001). Increased extracellular LC-1 may be part of a protective response of the lung to inflammatory insult. Regulation of prostanoid levels might be one mechanism by which LC-1 suppresses inflammation.

6-Ketoprostaglandin F1 alpha↗

Immunolocalization of interleukin-4 in eosinophils in the bronchial mucosa of atopic asthmatics.

Several studies have shown that human eosinophils can synthesize and release a number of cytokines. The aim of this study was to investigate whether eosinophils contain interleukin (IL)-4 protein. We examined the ultrastructural localization of IL-4 in eosinophils in bronchial mucosal biopsies of 29 nonsmoking atopic asthmatics and 7 controls. No eosinophils were detected in the bronchial mucosa of controls. In the eosinophils (n = 42) of the asthmatics, IL-4 was localized to the electron-dense crystalloid core compartment of 85% of the secondary or specific eosinophil granules (n = 468). Other structures in the eosinophils were unlabeled. Control sections, incubated with an irrelevant primary antibody, were negative. This study demonstrates that pre-formed IL-4 is stored in the secondary eosinophil granules. These results were extended by light microscopic immunodouble-staining for IL-4 protein and eosinophil cationic protein, which showed that a subpopulation of activated eosinophils express IL-4 immunoreactivity in bronchial mucosal biopsies of asthmatics as well as controls. These data indicate that eosinophils may be an important source of IL-4 in allergic inflammation.

Allergens↗

Ultrastructural immunogold localization of interleukin 5 to the crystalloid core compartment of eosinophil secondary granules in patients with atopic asthma.

Bronchial biopsies from two patients with atopic asthma were analyzed by immunogold labeling to detect the ultrastructural location of interleukin 5 (IL-5). In eosinophils, IL-5 was localized to the electron-dense crystalloid core compartment of the secondary or specific eosinophil granules. Other structures in the eosinophils were unlabeled. No IL-5 was detected in mast cells. Control sections incubated with an irrelevant primary antibody were negative. This study demonstrates that pre-formed IL-5 is stored within the major population of secondary granules in human eosinophils.

Asthma↗

Effects of fluticasone propionate on methacholine dose-response curves in nonsmoking atopic asthmatics.

Methacholine is frequently used to determine bronchial hyperresponsiveness (BHR) and to generate dose-response curves. These curves are characterized by a threshold (provocative concentration of methacholine producing a 20% fall in forced expiratory volume in one second (PC20) = sensitivity), slope (reactivity) and maximal response (plateau). We investigated the efficacy of 12 weeks of treatment with 1,000 microg fluticasone propionate in a double-blind, placebo-controlled study in 33 atopic asthmatics. The outcome measures used were the influence on BHR and the different indices of the methacholine dose-response (MDR) curve. After 2 weeks run-in, baseline lung function data were obtained and a MDR curve was measured with doubling concentrations of the methacholine from 0.03 to 256 mg x mL(-1). MDR curves were repeated after 6 and 12 weeks. A recently developed, sigmoid cumulative Gaussian distribution function was fitted to the data. Although sensitivity was obtained by linear interpolation of two successive log2 concentrations, reactivity, plateau and the effective concentration at 50% of the plateau value (EC50) were obtained as best fit parameters. In the fluticasone group, significant changes occurred after 6 weeks with respect to means of PC20 (an increase of 3.4 doubling doses), plateau value fall in forced expiratory volume in one second (FEV1) (from 58% at randomization to 41% at 6 weeks) and baseline FEV1 (from 3.46 to 3.75 L) in contrast to the placebo group. Stabilization occurred after 12 weeks. Changes for reactivity were less marked, whereas changes in log, EC50 were not significantly different between the groups. We conclude that fluticasone is very effective in decreasing the maximal airway narrowing response and in increasing PC20. However, it is likely that part of this increase is related to the decrease of the plateau of maximal response.

Administration, Topical↗

Is delayed introduction of inhaled corticosteroids harmful in patients with obstructive airways disease (asthma and COPD)? The Dutch CNSLD Study Group. The Dutch Chronic Nonspecific Lung Disease Study Groups.

BACKGROUND: The institution of inhaled corticosteroids is generally advocated for effective treatment of patients with asthma. It is yet unknown what is the best time to start inhaled corticosteroid therapy and especially whether delayed introduction is harmful. PHASE 1: In a previous study in patients with asthma and COPD, we found that 2.5 years of treatment with a beta 2-agonist plus inhaled corticosteroid (BA + CS) was more effective in improving the FEV1 and the provocative concentration of histamine causing a 20% reduction in FEV1 (PC20) than treatment with a beta 2-agonist plus anticholinergic (BA + AC) or placebo (BA + PL). PHASE 2: We extended this study with 6 months to investigate whether delayed introduction of inhaled CS therapy (800 micrograms beclomethasone dipropionate) in the groups previously not treated with inhaled CS (BA +/- AC) could also improve FEV1 and PC20 to the same degree. A distinction was made between patients with predominantly asthma (high baseline reversibility, delta FEV1 > or = 9% of predicted), and predominantly COPD (low baseline reversibility, delta FEV1 < 9% of predicted). RESULTS: Improvement of FEV1 percent predicted by inhaled CS was comparable both in the asthmatics between phase 1 (13.8% predicted) and phase 2 (8.5% predicted; p = 0.31) as well as in the patients with COPD (2.5% and 1.5% predicted, respectively). PC20, however, increased significantly more in the asthmatics in phase 1 (1.77 doubling concentration [DC]) than in phase 2 (0.79 DC; p = 0.03). Improvement of PC20 in the patients with COPD was not significantly higher in phase 1 (0.74 DC) than in phase 2 (0.00 DC; p = 0.19). CONCLUSIONS: Our study indicates that although delayed introduction of inhaled CS in asthmatics leads to similar improvements in FEV1, improvements in PC20 are significantly less. These findings in patients with longer-existing asthma concur with other findings in newly detected asthma. We suggest that institution of inhaled CS therapy should not be postponed in asthmatics with documented airways obstruction and reversibility.

Administration, Inhalation↗

Increased numbers of dendritic cells in the bronchial mucosa of atopic asthmatic patients: downregulation by inhaled corticosteroids.

BACKGROUND: Dendritic cells (DC) are the most potent antigen-presenting cells (APC) and stimulators of T cells. Dendritic cells are also likely to be essential for the initiation of allergic immune responses in the lung. However, there are not many data on the presence of dendritic cells in the airways of patients with atopic asthma and on the effects of corticosteroid-treatment on such dendritic cells. OBJECTIVE: We investigated the distribution of dendritic cells in the bronchial epithelium and mucosa of 16 non-smoking atopic asthmatic patients and eight healthy control subjects using detailed immunohistochemistry (CD1a, HLA-DR, L25 as markers for dendritic cells). METHODS: Eleven asthmatics were treated for 2.5 years with bronchodilators only and five with bronchodilators and inhaled beclomethasone dipropionate (BDP), 800 micrograms daily. The patients were randomly sampled from a double-blind multicentre study. RESULTS: There were higher numbers of CD1a+ DC (P = 0.003), L25+ DC (P = 0.002) and HLA-DR expression (P = 0.042) in the bronchial mucosa of asthmatic patients compared with healthy controls. After 2.5 years of treatment, we found a significant increase in flow expiratory volume in 1 second (FEV1) (P = 0.009) and a significant decrease in hyperresponsiveness (PC20 histamine) (P = 0.013) in the corticosteroid group (n = 5) compared with the bronchodilator group (n = 11). This clinical improvement in the corticosteroid-treated group was accompanied by significantly lower numbers of CD1a+ DC (P = 0.008), and HLA-DR expression (P = 0.028) in the bronchial mucosa than in the bronchodilator-treated group. CONCLUSION: Our data suggest that dendritic cells are involved in asthmatic inflammation and that corticosteroids may downregulate the number of dendritic.

Administration, Inhalation↗

A cystic fibrosis mutation associated with mild lung disease.

BACKGROUND: Cystic fibrosis is the most common lethal autosomal recessive disorder among whites. Among Dutch patients with cystic fibrosis, delta F508 is the most common mutation and A455E the second most common mutation of the cystic fibrosis transmembrane conductance regulator gene on chromosome 7. A455E is associated with preserved pancreatic function and residual secretion of chloride across membranes. We investigated whether it is also associated with less severe pulmonary disease in patients with cystic fibrosis. METHODS: A total of 33 patients with compound heterozygosity for the A455E mutation were matched according to age and sex with patients who were homozygous for the delta F508 mutation. The pairs were analyzed with respect to the following outcome variables: age at diagnosis, pulmonary-function values, and the frequency of pseudomonas colonization, pancreatic sufficiency, and diabetes mellitus. RESULTS: Cystic fibrosis was diagnosed at a later age in the patients with the A455E mutation than in the delta F508 homozygotes (mean age at diagnosis, 15.0 vs. 3.1 years; P < 0.001). Fewer patients with the A455E mutation had pancreatic insufficiency (21.2 percent vs. 93.9 percent, P < 0.001), and none had diabetes mellitus (0 percent vs. 27.3 percent, P = 0.004). Forced expiratory volume in one second (FEV1) and forced vital capacity (FVC) were significantly higher in the patients with the A455E mutation (mean FEV1, 73.9 percent of the predicted value vs. 54.3 percent of the predicted value; P = 0.002; mean FVC, 88.7 percent of the predicted value vs. 76.3 percent of the predicted value; P = 0.04). Fewer patients with the A455E mutation were colonized with Pseudomonas aeruginosa (33.3 percent vs. 60.6 percent, P = 0.02). CONCLUSIONS: A455E is a common mutation causing cystic fibrosis in the Netherlands. Although several mutations are known to be associated with less severe pancreatic disease, our findings demonstrate a correlation between the A455E mutation and mild pulmonary disease. Because mortality in this disease depends primarily on the progression of pulmonary disease, patients with the A455E mutation have a better prognosis than patients who are homozygous for the delta F508 mutation.

Adolescent↗

Pressure-volume analysis of the lung with an exponential and linear-exponential model in asthma and COPD. Dutch CNSLD Study Group.

The prevalence of abnormalities in lung elasticity in patients with asthma or chronic obstructive pulmonary disease (COPD) is still unclear. This might be due to uncertainties concerning the method of analysis of quasistatic deflation lung pressure-volume curves. Pressure-volume curves were obtained in 99 patients with moderately severe asthma or COPD. These patients were a subgroup from a Dutch multicentre trial; the entire group was selected on the basis of a moderately lowered % predicted forced expiratory volume in one second (FEV1), and a provocative concentration of histamine producing a 20% decrease in FEV1 (PC20) < 8 mg.mL-1 obtained with the 2 min tidal breathing technique. The curves were fitted with an exponential (E) model and an exponential model which took the linear appearance in the mid vital capacity range into account (linear-exponential (LE)). The linear-exponential model showed a markedly better fit ability, yielding additional parameters, such as the compliance at functional residual capacity (FRC) level as slope of the linear part (b), and the volume at which the linear part changed into the exponential part of the curve (transition volume (Vtr)). Vtr (mean value Vtr/total lung capacity (TLC) = 0.79 (SD 0.07)) showed a close positive linear correlation with obstruction and hyperinflation variables, which might be due to airway closure, already starting at elevated lung volumes. The exponential shape factor K was closely correlated with b and mean values (K = 1.32 (SD 0.05) kPa-1; b = 2.96 (SD 1.16) L,kPa-1) and the relationship with age was comparable with data reported in healthy individuals. The shape factor of the linear-exponential fit showed no correlation with any elasticity related variable. Neither the elastic recoil at 90% TLC, as obtained from the linear-exponential fit, nor its relationship with age were significantly different from healthy individuals. We conclude that, for a more accurate description of the lung pressure-volume curve, a linear-exponential fit is preferable to an exponential model. However, the physiological relevance of the shape parameter (KLE) is still unclear. These results indicate that patients with moderately severe asthma or COPD had, on average, no appreciable loss of elastic lung recoil as compared with healthy individuals.

Adolescent↗

Extrapolation of methacholine log-dose response curves with a Cumulative Gaussian Distribution function.

Methacholine provocation tests are aimed at determining bronchial responsiveness. Recent investigations stress the importance of considering the entire log-dose response curve, yielding not only the provocative dose producing a 20% change in forced expiratory volume in one second (FEV1) (PC20), but also the plateau value and the steepest slope of the curve (reactivity). In three control subjects and seven patients with mild to moderate asthma, we have obtained methacholine log-dose response curves in which a plateau was reached. A new model, the Cumulative Gaussian Distribution (CGD) function was fitted to the whole curve. The upper part of the curve was also analysed with the Hofstee equation, which has been used in a number of other investigations and aimed at plateau estimation. The plateau values obtained by the fits were compared with the values actually measured (average response of last 3 points with a variation coefficient < 5% of the mean value) by using the coefficient of determination (R2) (Applied Statistics. Sachs). If all data points were considered, both fits yielded a plateau which slightly overestimated the measured plateau values. R2 for the CGD fit ranged from 0.93-0.99, indicating a highly significant correlation between actual and fitted data points. If the curves were truncated, such that the last four provocative doses were omitted from the analysis, the CGD fit still yielded plateau values; the mean difference from the measured plateaux, in % of the measured plateau values, was -2.6% (SD 18.2). In only three out of the 10 cases did the Hofstee equation yield plateau values with a deviation from 'measured' < 47% of the measured value.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Airways hyperresponsiveness, bronchodilator response, allergy and smoking predict improvement in FEV1 during long-term inhaled corticosteroid treatment. Dutch CNSLD Study Group.

Although most patients with obstructive airways disease show some amelioration with long-term inhaled corticosteroid therapy, the extent of improvement may vary considerably between patients. Patients with mild to moderately severe obstructive airways disease (asthma and COPD) were selected if provocative concentration producing a 20% fall in forced expiratory volume in one second (PC20) < or = 8 mg.ml-1, and forced expiratory volume in one second (FEV1) < 95% confidence intervals (CI) of predicted normal. The independent influences of baseline PC20FEV1, inspiratory vital capacity (IVC), bronchodilator response, smoking habits, and allergy both on the "immediate" (within 3 months) response in FEV1 and the change in long-term (from 3 months onwards) slope of FEV1 with inhaled corticosteroids were analysed. Patients had a larger "immediate" improvement in their FEV1 with inhaled corticosteroids with each doubling doses lower PC20, with each ten-fold higher immunoglobulin E (IgE), and if they did not smoke. Total IgE proved a better independent predictor of "immediate" response than specific IgE for house dust mite, skin tests, or blood eosinophils. A more favourable long-term slope of FEV1 was predicted by a larger baseline bronchodilator response, but not by smoking. In conclusion, PC20, total IgE, and smoking habits are independent predictors of immediate treatment response to inhaled corticosteroids. Bronchodilator response is the single independent predictor of changes in long-term slope of FEV1 with corticosteroid treatment.

Administration, Inhalation↗

Cystic fibrosis in a 70 year old woman.

A 68 year old woman with a lifelong history of chronic bronchitis was diagnosed as having cystic fibrosis. The diagnosis was based on a suggestive family history, steatorrhoea, bronchiectasis with respiratory insufficiency, and very high sweat sodium content. The patient was found to be heterozygous for the delta F 508 gene defect.

Aged↗

Nasal and paranasal disease in adult cystic fibrosis patients.

Children with cystic fibrosis frequently have nasal polyps and sinusitis. This study addresses (para-) nasal disease in 39 adult cystic fibrosis patients. Fifteen patients (39%) had recently had serious nasal symptoms and 26% sinusitis. Seventeen (44%) had nasal polyposis. Almost all sinus radiographs taken showed opacification, which was unrelated to symptoms. Polypectomies and antral irrigations were usually ineffective, whilst more extensive surgery generally gave better results. It is concluded that a substantial number of adult cystic fibrosis patients frequently have upper airway symptoms. Sinus radiographs have little or no diagnostic value. Treatment of (para-) nasal disease in cystic fibrosis patients can be difficult; a guideline for treatment is suggested, calling for simple interventions coupled with intranasal steroids and nasal irrigation in early disease and for endoscopic to radical sinus surgery in recurrent advanced disease.

Adolescent↗

Cystic fibrosis, pathophysiological and clinical aspects.

Cystic fibrosis is a lethal, hereditary, until recently little understood disease, which leads to progressive functional disturbances in various organs, including the lungs, liver and pancreas. Knowledge of the genetic and cellular abnormalities is rapidly progressing, but therapy is still symptomatic and based on insufficiently controlled and short-term studies. At present the therapeutic approach aims to combat respiratory infections by optimal antibiotic therapy, combined with techniques to promote sputum evacuation. Additional measures attempt to optimise both nutritional state and physical condition. Median survival has improved from approximately 1 year to about 25 years during the past 3 decades. This article summarises present information on disease mechanisms and treatment.

Cystic Fibrosis↗