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D S Postma

Publications and source records attributed to D S Postma.

At least 127 records · Page 7Linked to original sources

Interleukin-15 differentially enhances the expression of interferon-gamma and interleukin-4 in activated human (CD4+) T lymphocytes.

In this study interleukin (IL)-15 was examined for its ability to modulate the expression of interferon-gamma (IFN-gamma) and IL-4 in activated human T lymphocytes. The effect of IL-15 was compared with IL-2 and IL-7, cytokines all known to use the IL-2 receptor gammaC chain. The results demonstrate that the extent of upregulation of IFN-gamma and IL-4 mRNA was dependent on the applied cytokine (IL-2>IL-15>IL-7) and on the stimulatory signal. IFN-gamma and IL-4 mRNAs were upregulated by IL-15 in concanavalin A- (twofold) and anti-CD3 plus anti-CD28- (fivefold) stimulated T lymphocytes. IFN-gamma mRNA accumulation, but not IL-4 mRNA, was additively upregulated by IL-15 plus IL-7 (ninefold) in anti-CD3 stimulated T lymphocytes, and bypassed the requirement of CD28 signalling. Fluorescence-activated cell sorting (FACS) experiments demonstrated that IFN-gamma mRNA was upregulated by IL-15 in both CD4+ and CD8+ T lymphocytes, whereas IL-4 mRNA accumulation predominantly occurred in CD4+ cells. Preincubation of highly purified CD4+ T lymphocytes during 7 days with IL-15 and/or IL-7, followed by activation, also showed enhanced IL-4 protein secretion, but predominantly upregulated IFN-gamma protein. The net effect was a dramatically increased IFN-gamma/IL-4 ratio. Taken together, IL-15 and IL-7 can act as costimulatory signals, which may favour a T helper 1 (Th1) immune response, particularly in the absence of sufficient CD28 costimulation.

Antibodies↗

Nitric oxide selectively decreases interferon-gamma expression by activated human T lymphocytes via a cGMP-independent mechanism.

The role of exogenous nitric oxide (NO) on the expression of interleukin (IL)-2, IL-4, IL-5 and interferon-gamma (IFN-gamma) by freshly isolated human T lymphocytes was investigated. The presence of NO, generated from any of the NO-donor compounds, S-nitroso-N-acetyl-D,L-penicillamine (SNAP), DPTA-nonoate (DPTA) or DETA-nonoate (DETA), added 15 min prior to T-cell stimulation (for 24 hr) with anti-CD3/anti-CD28 monoclonal antibodies (mAbs), resulted in up to 50% inhibition of IL-4, IL-5 and IFN-gamma secretion. In contrast, IL-2 secretion was not inhibited. Using the guanylate cyclase inhibitor, LY83583, it was shown that the inhibition of IL-4 and IL-5 was cGMP dependent, whereas additional mechanisms mediated the inhibition of IFN-gamma. Exposure of T cells to the NO-donor compounds for 24 hr prior to stimulation resulted in a more pronounced inhibition of IFN-gamma secretion by DPTA and DETA (P < 0.01), despite the fact that NO generation could no longer be detected. Under these conditions, IL-4 secretion was not inhibited and IL-5 secretion was inhibited to a lesser extent (P < 0.01 for SNAP and DPTA, P > 0.05 for DETA). IL-2 secretion was inhibited after 24 hr of preincubation with the NO-donor compounds, whereas it was not directly affected by NO. The increased inhibitory effects on IFN-gamma and IL-2 secretion could not be accounted for by the antiproliferative effects of the NO-donor compounds, which were diminished after 24 hr of preincubation relative to 15 min of preincubation. For IFN-gamma, the inhibition was at least partially effected at the transcriptional level as shown by decreased mRNA accumulation. These data show that NO can modulate the balance between the expression, by human T-lymphocytes, of T helper 1- and T helper 2-type cytokines, through selective and persistent inhibition of the expression of IFN-gamma via a cGMP-independent mechanism.

Aminoquinolines↗

Long term effects of inhaled corticosteroids in chronic obstructive pulmonary disease: a meta-analysis.

BACKGROUND: The role of inhaled corticosteroids in the long term management of chronic obstructive pulmonary disease (COPD) is still unclear. A meta-analysis of the original data sets of the randomised controlled trials published thus far was therefore performed. The main question was: "Are inhaled corticosteroids able to slow down the decline in lung function (FEV1) in COPD?" METHODS: A Medline search of papers published between 1983 and 1996 was performed and three studies were selected, two of which were published in full and one in abstract form. Patients with "asthmatic features" were excluded from the original data. Ninety five of the original 140 patients treated with inhaled corticosteroids (81 with 1500 micrograms beclomethasone daily, six with 1600 micrograms budesonide daily, and eight with 800 micrograms beclomethasone daily) and 88 patients treated with placebo (of the initial 144 patients) were included in the analysis. The effect on FEV1 was assessed by a multiple repeated measurement technique in which points of time in the study and treatment effects (inhaled corticosteroids compared with placebo) were investigated. RESULTS: No baseline differences were observed (mean age 61 years, mean FEV1 45% predicted). The estimated two year difference in prebronchodilator FEV1 was +0.034 l/year (95% confidence interval (CI) 0.005 to 0.063) in the inhaled corticosteroid group compared with placebo. The postbronchodilator FEV1 showed a difference of +0.039 l/year (95% CI -0.006 to 0.084). No beneficial effect was observed on the exacerbation rate. Worsening of the disease was the reason for drop out in four patients in the treatment group compared with nine in the placebo group. In the treatment group six of the 95 subjects dropped out because of an adverse effect which may have been related to the treatment compared with two of the 88 patients in the placebo group. CONCLUSIONS: This meta-analysis in patients with clearly defined moderately severe COPD showed a beneficial course of FEV1 during two years of treatment with relatively high daily dosages of inhaled corticosteroids.

Administration, Inhalation↗

Effects of inhaled fluticasone and oral prednisolone on clinical and inflammatory parameters in patients with asthma.

BACKGROUND: Guidelines state that oral and inhaled corticosteroids are the cornerstone of asthma treatment. The effect of both types of treatment can be assessed by measuring lung and systemic parameters. Treatment for two weeks with either oral prednisolone (30 mg/day), high dose fluticasone propionate (2000 microg/day, FP2000), or lower dose FP (500 microg/day, FP500), both given by a dry powder inhaler, were compared. METHODS: One hundred and twenty patients with asthma were treated for two weeks in a double blind parallel group design. Lung function, asthma symptoms, airway hyperresponsiveness (PC(20) methacholine and adenosine-5'-monophosphate), sputum eosinophil and eosinophilic cationic protein (ECP) levels were measured as lung parameters. In addition, morning serum blood cortisol, blood eosinophil, and serum ECP levels were measured as systemic parameters. RESULTS: PC(20) methacholine and adenosine-5'-monophosphate showed significantly greater improvement with FP2000 (1.99 and 4.04 doubling concentrations (DC), respectively) than prednisolone (0.90 DC, p = 0.02; 2.15 DC, p = 0. 05) and marginally more than with FP500 (1.69 and 3.54 DC). Changes in sputum eosinophil and ECP concentrations showed similar trends; the decrease in ECP was significantly greater with FP2000 than with FP500. In contrast, the systemic parameters of steroid activity (cortisol, peripheral blood eosinophils, and serum ECP) decreased to a similar extent with FP2000 and prednisolone but significantly less with FP500. CONCLUSIONS: Oral prednisolone (30 mg/day) was inferior to FP2000 in improving airway hyperresponsiveness to both methacholine and AMP, with similar trends in forced expiratory volume in one second (FEV(1)), sputum eosinophil and ECP concentrations. Systemic effects were similar with prednisolone and FP2000 and less with FP500.

Administration, Inhalation↗

Can peak expiratory flow measurements reliably identify the presence of airway obstruction and bronchodilator response as assessed by FEV(1) in primary care patients presenting with a persistent cough?

BACKGROUND: In general practice airway obstruction and the bronchodilator response are usually assessed using peak expiratory flow (PEF) measurements. A study was carried out in patients presenting with persistent cough to investigate to what extent PEF measurements are reliable when compared with tests using forced expiratory volume in one second (FEV(1)) as the measure of response. METHODS: Data (questionnaire, physical examination, spirometry, PEF) were collected from 240 patients aged 18-75 years, not previously diagnosed with asthma or chronic obstructive pulmonary disease (COPD), who consulted their general practitioner with cough of at least two weeks duration. The relationship between low PEF (PEF < PEFpred - 1.64RSD) and low FEV(1) (FEV(1) < FEV(1)pred - 1.64RSD) was tested. A positive bronchodilator response after inhaling 400 microg salbutamol was defined as an increase in FEV(1) of > or = 9% predicted and was compared with an absolute increase in PEF with cut off values of 40, 60, and 80 l/min and DeltaPEF % baseline with cut off values of 10%, 15%, and 20%. RESULTS: Forty eight patients (20%) had low FEV(1), 86 (35.8%) had low PEF, and 32 (13.3%) had a positive bronchodilator response. Low PEF had a positive predictive value (PPV) for low FEV(1) of 46.5% and a negative predictive value (NPV) of 95%. DeltaPEF of > or = 10%, > or = 15%, or > or = 20% baseline had PPVs of 36%, 52%, and 67%, respectively, and DeltaPEF of > or = 40, > or = 60, and > or = 80 l/min in absolute terms had PPVs of 39%, 45%, and 57%, respectively, for DeltaFEV(1) > or = 9% predicted; NPVs were high (88-93%). CONCLUSIONS: Although PEF measurements can reliably exclude airway obstruction and bronchodilator response, they are not suitable for use in the assessment of the bronchodilator response in the diagnostic work up of primary care patients with persistent cough. The clinical value of PEF measurements in the diagnosis of reversible obstructive airway disease should therefore be re-evaluated.

Adolescent↗

Markers of nitric oxide metabolism in sputum and exhaled air are not increased in chronic obstructive pulmonary disease.

BACKGROUND: Nitric oxide (NO) is involved in inflammation and host defence of the lung. It has been found in increased concentrations in the airways in asthmatic subjects but its levels in patients with chronic obstructive pulmonary disease (COPD) have not been investigated. A study was undertaken to determine whether markers of NO metabolism (NO in exhaled air, iNOS expression in sputum cells, and nitrite + nitrate (NO2-/NO3-) in sputum supernatant) are increased in subjects with COPD, and whether they correlate with inflammatory indices in induced sputum. The associations of these markers with smoking were also assessed. METHODS: Sixteen subjects with COPD (median age 66 years, median forced expiratory volume in one second (FEV1) 63% predicted, eight current smokers) and 16 healthy subjects (median age 63 years, median FEV1 113% predicted, eight current smokers) participated in the study. NO was measured during tidal breathing and sputum was induced by inhalation of hypertonic saline. RESULTS: No differences were observed between subjects with COPD and healthy controls in exhaled NO excretion rate (median 5.15 and 6.25 nmol/min), sputum macrophage iNOS expression (14% and 12%), and sputum supernatant NO2-/NO3- (46 and 73 microM). NO in exhaled air correlated with the percentage of sputum eosinophils in patients with COPD (rho = 0.65, p = 0.009) but not in healthy individuals. Exhaled NO and supernatant NO2-/NO3- levels were lower in healthy smokers than in healthy non/ex-smokers. CONCLUSIONS: Our findings indicate that NO metabolism is not increased in patients with stable COPD. The close association between exhaled NO levels and sputum eosinophils suggests a role for NO in airway inflammation in COPD. Studies performed during exacerbations may clarify this role.

Aged↗

The relationship of skin test positivity, high serum total IgE levels, and peripheral blood eosinophilia to symptomatic and asymptomatic airway hyperresponsiveness.

The relationships of skin test positivity, high serum total IgE levels (> 100 kU/L), and peripheral blood eosinophilia (>/= 275 cells/microliter) to symptomatic (either chronic cough, chronic phlegm, bronchitis episodes, dyspnea, wheeze, or asthma) and asymptomatic bronchial hyperresponsiveness (BHR) were studied cross-sectionally in 620 adult subjects who participated in the Vlagtwedde-Vlaardingen Study of 1989 and 1990. Eosinophilia (OR = 2.06, 95% CI = 1.28 to 3.31) and skin test positivity (OR = 1.66, 95% CI = 1.02 to 2.71) were both significantly associated with BHR independent of age, sex, smoking, and urban area of residence. High serum total IgE levels were not associated with BHR (OR = 1.29, 95% CI = 0.81 to 2.03). Separate analyses for symptomatic and asymptomatic subjects showed that the higher risk of BHR with skin test positivity applied only to symptomatic subjects (OR = 5.78, 95% CI = 1.63 to 20.51), independent of eosinophilia and high serum total IgE levels. The higher risk of BHR with eosinophilia was not different between symptomatic and asymptomatic subjects, and independent of skin test positivity and high serum total IgE levels. The results of this study show that, in the general adult population, eosinophilia is associated with BHR both in symptomatic and asymptomatic persons, whereas skin test positivity is associated with BHR only in symptomatic subjects.

Adult↗

Risk factors from childhood to adulthood for bronchial responsiveness at age 32-42 yr.

UNLABELLED: Bronchial responsiveness (BR) is an important risk factor for the development and outcome of asthma. This study assessed childhood risk factors for both the severity of BR in adulthood and either improvement or worsening of BR over time. Finally, we studied cross-sectional risk factors of BR in adulthood. Between 1966 and 1969, 119 allergic asthmatic children (5-14 yr of age) were studied. Of these, 101 (85%) subjects were reinvestigated at age 22-32 yr (visit 2), and at age 32-42 yr (visit 3). Spirometry, PC10 histamine, skin tests, blood eosinophils, and serum total IgE were measured and a questionnaire was used. Higher FEV1 values in childhood were associated with less severe BR at age 32-42 yr independent of other potential risk factors. Larger increases in FEV1 values both from visit 1 to 2 and from visit 2 to 3, a longer time interval from visit 1 to 3, and having pets in childhood were associated with less severe BR at age 32-42 yr. The same factors were found to be associated with less deterioration of BR from visit 2 to 3. In nonsmokers a higher IgE level at visit 2 was a risk factor for an increase in BR. At age 32-42 yr, a low level of lung function and the presence of asthma symptoms were associated with more severe BR, and older age and having pets were associated with less severe BR. IgE was related to more severe BR only in nonsmokers. CONCLUSIONS: A lower lung function in childhood and less improvement in FEV1 over time were associated with more severe BR in adulthood.

Adolescent↗

Smoking and airway hyperresponsiveness especially in the presence of blood eosinophilia increase the risk to develop respiratory symptoms: a 25-year follow-up study in the general adult population.

Airway hyperresponsiveness (AHR) constitutes a risk for development of respiratory symptoms. We assessed whether blood eosinophilia (>/= 275 eosinophils/microliters), skin test positivity (sum score >/= 3) and cigarette smoking (never, ex-smoker, 1-14 cig/d, 15-24 cig/d, >/= 25 cig/d) at the first of two successive surveys are related to the development of respiratory symptoms (chronic cough or phlegm, bronchitis, persistent wheeze, dyspnea, and asthma) at the second survey, and whether these relations are the same in subjects with (PC10 </= 8 mg/ml histamine) and without AHR. We analyzed data of the longitudinal Vlagtwedde-Vlaardingen Study (1965 to 1990) using logistic regression analyses with paired observations, taking multiple measurements within a person into account. In total, 995 men and 792 women contributed 4,403 paired observations. Eosinophilia in hyperresponsive subjects significantly increased the risk to develop one or more respiratory symptoms (odds ratio [OR] = 3.67, 95% confidence interval [CI] = 1.79 to 7.52), wheeze (OR = 5. 06, 95% CI = 2.11 to 12.13), and dyspnea (OR = 2.73, 95% CI = 1.13 to 6.60), independent of smoking, age, sex, area of residence, and time between two successive surveys. Smoking at the first of two successive surveys increased the risk to develop symptoms in a dose-dependent relation. Subjects with positive skin tests in the past were less likely to develop one or more respiratory symptoms (OR = 0.64, 95% CI = 0.46 to 0.88) and chronic phlegm (OR = 0.65, 95% CI = 0.42 to 1.00), independent of AHR. This longitudinal study in the general adult population shows that cigarette smoking and hyperresponsive subjects are at increased risk to develop respiratory symptoms, and especially so when eosinophilia is present in hyperresponsive persons.

Adolescent↗

Exacerbations of asthma: a descriptive study of 425 severe exacerbations. The FACET International Study Group.

The identification, prevention, and prompt treatment of exacerbations are major objectives of asthma management. We looked at change in PEF, symptoms, and use of rescue beta-agonists during the 425 severe exacerbations that occurred during a 12-mo parallel group study (FACET) in which low and high doses of budesonide with and without formoterol were compared in patients with asthma. Oral corticosteroids were prescribed for severe exacerbations, the main study end point, defined as the need for a course of oral corticosteroids (n = 311) or a reduction in morning PEF of > 30% on two consecutive days. PEF, symptoms, and bronchodilator use over the 14 d before and after the exacerbation were obtained from diary cards. Exacerbations were characterized by a gradual fall in PEF over several days, followed by more rapid changes over 2 to 3 d; an increase in symptoms and rescue beta-agonist use occurred in parallel, and both the severity and time course of the changes were similar in all treatment groups. Exacerbations identified by the need for oral corticosteroids were associated with more symptoms and smaller changes in PEF than those identified on the basis of PEF criteria. Female sex was the main patient characteristic associated with an increased risk of having a severe exacerbation. Exacerbations may be characterized predominantly by change in symptoms or change in PEF, but the pattern was not affected by the dose of inhaled corticosteroid or by whether the patient was taking formoterol.

Adolescent↗

Asthma attacks with eosinophilia predict mortality from chronic obstructive pulmonary disease in a general population sample.

We studied the association between allergy defined as eosinophilia (>/= 275 cells/mm(3)) and/or positive skin tests (sum score >/= 3) and mortality from chronic obstructive pulmonary disease (COPD) after adjustment for major risk factors. In addition, we investigated this association in subgroups of respiratory symptoms and lung function. We used data from 7,556 participants of the respiratory surveys in 1964 -1972 in the general populations of Vlagtwedde, Vlaardingen, and Meppel (The Netherlands; mean age +/- SD: 39.3 yr +/- 14 in the 1960s). In 1995, the vital status was available (5,135 alive, 106 lost to follow-up, 121 primary deaths from COPD, and 2,194 other primary causes of which 137 had a secondary death cause from COPD. Positive skin tests were not associated with increased COPD mortality. The association between eosinophilia and COPD mortality was restricted to those who had reported asthma attacks and was present for both COPD as a primary cause (relative risk [RR] = 4.80; 95% confidence interval [CI] 1.9 to 11.9) and combined primary and secondary causes of death (RR = 3. 90; 95% CI 2.05 to 7.40). We conclude that eosinophilia with asthma attacks is a risk factor for COPD mortality in addition to known risk factors also found in our study such as male gender, older age, current smoking, low lung function, underweight, and dyspnea.

Adolescent↗

Risk factors for growth and decline of lung function in asthmatic individuals up to age 42 years. A 30-year follow-up study.

Little is known about factors determining the outcome of childhood asthma. The purpose of this longitudinal study was to assess the factors in childhood that determine the level of FEV(1) in early adulthood in asthmatic individuals, and to examine factors associated with decline in FEV(1) during adulthood. Between 1966 and 1969, 119 allergic asthmatic subjects aged 5 to 14 yr were studied (Visit 1). Of these subjects, 101 (85%) were reinvestigated at ages 22 to 32 yr (Visit 2) and 32 to 42 yr (Visit 3). At the first survey and during follow-up, a standardized questionnaire was used, serum total IgE and peripheral blood eosinophils were measured, and physical examination, skin tests, lung function tests, and histamine challenge (provocative concentration causing a 10% decline in FEV(1); PC(10)) tests were performed according to the same protocol. Multiple linear regression analyses were performed with FEV(1) at Visit 2 and with the change of FEV(1) from Visit 2 to Visit 3 as outcome variables. A low FEV(1)% predicted at Visit 1 and PC(10) </= 16 mg/ml at Visit 1 were significantly associated with a lower level of FEV(1) at Visit 2. Subjects who quit smoking and subjects who continued to use inhaled corticosteroids had a significantly smaller annual decline in FEV(1) from Visit 2 to Visit 3, adjusted for attained level of FEV(1) at Visit 2. In conclusion, bronchial hyperresponsiveness and a low level of lung function in childhood are independent risk factors for a low level of FEV(1) in early adulthood. A smaller decline in FEV(1) after ages 22 to 32 yr occurs in asthmatics who quit smoking and who continue to use inhaled corticosteroids. Our data stress the importance of studying intervention strategies for asthma in young childhood and early adulthood in order to prevent or postpone further lung function deficits.

Adolescent↗

Are inhaled glucocorticosteroids effective in chronic obstructive pulmonary disease?

Chronic obstructive pulmonary disease (COPD) constitutes an enormous, and growing, health problem, the treatment of which has been less than satisfactory so far. COPD is a chronic inflammatory process in the airway wall of the large and peripheral airways as well as in the parenchyma. Because of this inflammation, glucocorticosteroids (steroids) have been investigated in more than 100 studies. By tradition, the forced expiratory volume in 1 s (FEV(1)) has been utilized as the main outcome parameter. More recently, exacerbation frequency and health status (quality of life) have been added as end points. Oral steroids have been demonstrated to be useful during exacerbations, although the effects are smaller than in exacerbations of asthma. In stable COPD, 10% more patients respond favorably to a 2-wk course of steroids than to placebo. The long-term effects of oral steroids have not been evaluated in randomized controlled trials. There have now been 10 studies of inhaled steroids of short duration, defined as up to 3 mo. In general, there was no effect on FEV(1). No other parameters of lung function were consistently measured. Several studies showed a small effect on some inflammatory parameters, but none of these were comparable between studies and therefore await further confirmation and elaboration. In total, eight studies evaluated inhaled steroids over a long period, i.e., at least 6 mo. Five of these have been published, and three major large-scale studies have been presented as abstracts at major meetings but not yet published in full. On the basis of these studies, there seems to be an effect of inhaled steroids during the first 3-6 mo of use, but thereafter no effect on the subsequent decline of lung function has been found. Two studies have documented a reduction in exacerbation frequency and an improvement in health status. In summary, as far as FEV(1) is concerned, there is only a short-term benefit of inhaled steroids at best. The improvements in exacerbations and health status need to be confirmed and valued, but could well be important to patients. There is an urgent need to identify those patients within the large heterogeneous group of patients with COPD who benefit from steroids. For this, it would be useful to pool data from the long-term studies. Postma DS, Kerstjens HAM. Are inhaled glucocorticosteroids effective in chronic obstructive pulmonary disease?

Administration, Inhalation↗

Physiotherapy and bronchial mucus transport.

Cough and expectoration of mucus are the best-known symptoms in patients with pulmonary disease. The most applied intervention for these symptoms is the use of chest physiotherapy to increase bronchial mucus transport and reduce retention of mucus in the airways. Chest physiotherapy interventions can be evaluated using different outcome variables, such as bronchial mucus transport measurement, measurement of the amount of expectorated mucus, pulmonary function, medication use, frequency of exacerbation and quality of life. Measurement of the transport rate of mucus in the airways using a radioactive tracer appears to be an appropriate outcome variable for short-term studies. Evaluation of chest physiotherapy only with pulmonary function tests appears to be inadequate in short-term studies. The popularity of using pulmonary function tests is probably based more on the availability of the instruments than on a theoretical basis related to the question of chest physiotherapy improving mucus transport. Quality of life and progression of the disease are not often used as outcome variables, but it may be worthwhile to use these in the future.

Bronchi↗

Asthma quality of life during 1 year of treatment with budesonide with or without formoterol.

The Formoterol and Corticosteroids Establishing Therapy (FACET) study has provided the first opportunity to examine the long-term effects of inhaled steroids and long-acting beta2-agonists on asthma-specific quality of life. The objectives of the present study were to: evaluate the effects of long-term (1 yr) formoterol and increasing doses of budesonide on asthma quality of life; 2) to determine whether initial improvements in quality of life are sustained when improvements in clinical indices persist; and 3) to evaluate the long-term relationship between changes in clinical indices and changes in quality of life. Of the 852 asthmatic adults enrolled, 470 from five countries participated in this quality of life evaluation. After a 4-week run-in on 1,600 microg budesonide, patients were randomized to either 200 microg (Bud200) or 800 microg budesonide (Bud800) in combination with either 24 microg formoterol (F) or placebo daily for 1 yr. The Asthma Quality of Life Questionnaire (AQLQ) was completed and conventional clinical indices measured at enrolment and randomization and on seven occasions during the following 12 months. During the run-in, there was an improvement in AQLQ score (changes (delta) in overall score approximately 0.50; p<0.0001). After randomization, there was a further improvement in the Bud800+F group (delta=0.21; p=0.028). One month post-randomization, improvements in all groups stabilized and were sustained throughout the 12 months in a pattern very similar to that observed for the conventional clinical indices. The correlation of individual patient changes in clinical indices and changes in AQLQ score during the 12-month randomized period were weak to moderate (maximum r=0.51). Improvements in quality of life, which were greatest in the 800 microg budesonide plus 24 microg formoterol group, were sustained throughout the 12 months in a similar manner to the clinical indices. Long-term changes in conventional clinical indices cannot be used to predict the effect of treatment on individual patient experience.

Adrenergic beta-Agonists↗