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Childhood Asthma Management Program Research Group

Publications and source records attributed to Childhood Asthma Management Program Research Group.

6 recordsLinked to original sources

Childhood Asthma Management Program: lessons learned.

The National Heart, Lung, and Blood Institute Childhood Asthma Management Program was initiated in 1991 and is now the largest and most comprehensive study of long-term intervention with anti-inflammatory therapy in children with mild to moderate asthma. The purpose of this perspective is to review key findings of the study and lessons learned in conducting research in more than 1000 children with persistent asthma for more than 10 years. A key lesson was absence of a continued effect of inhaled corticosteroid on lung growth during long-term follow-up even as symptoms and airway responsiveness remained improved.

Anti-Inflammatory Agents↗

Bronchodilation and bronchoconstriction: predictors of future lung function in childhood asthma.

BACKGROUND: Persistently low levels of lung function are associated with subsequent symptoms in patients with asthma as children. OBJECTIVES: We hypothesized that objective measures of baseline pulmonary function would be independently associated with future lung function in the Childhood Asthma Management Program and that these associations might vary with treatment. METHODS: We evaluated the association of FEV1, airway responsiveness, and bronchodilator response at randomization as predictors of longitudinal growth in FEV1 at the 48-month follow-up visit in the 1041 Childhood Asthma Management Program participants. RESULTS: Baseline levels of airway responsiveness and bronchodilator response were significantly associated with baseline level of lung function. In multivariate models, higher bronchodilator response (beta = 0.22; P < .0001), log PC20 (beta = 1.82; P < .0001), and FEV1 (beta = 0.58; P < .0001) at randomization were each associated with higher levels of prebronchodilator FEV1, as a percent of predicted, after 4 years. Similar associations were noted for prebronchodilator forced vital capacity and FEV1/forced vital capacity ratio. Baseline bronchodilator response was a particularly powerful predictor of lung function improvements while on inhaled corticosteroids, whereas airway responsiveness was a better predictor in subjects not randomized to any controller medications. CONCLUSION: We conclude that baseline bronchodilator response, airway responsiveness, and level of FEV1 are independent predictors of subsequent level of FEV1 in childhood asthma and may have treatment-specific prognostic significance for persistence of symptoms into early adulthood. CLINICAL IMPLICATIONS: In asthma, bronchodilator and bronchoconstrictor responses are independent predictors of future lung function and should not be used interchangeably; bronchodilator response may indicate good response to inhaled corticosteroids.

Asthma↗

Progression of asthma measured by lung function in the childhood asthma management program.

From the Childhood Asthma Management Program cohort, which was randomly assigned to receive budesonide, nedocromil, or placebo for 4-6 years, we determined the prevalence of and factors associated with at least 1% per year loss in postbronchodilator FEV(1)% predicted. Participants who had a significant reduction in postbronchodilator FEV(1)% predicted (SRP), comprised 25.7% of the cohort (n = 990). Using logistic regression, predictors of SRP at baseline were younger age (p = 0.0005), male sex (p < 0.0001), clinic (p = 0.02), and higher postbronchodilator FEV(1)% predicted (p = 0.02). Examination of the SRPs indicated that the effect of baseline lung function was such that the higher the lung function, the less steep the reduction in postbronchodilator FEV(1)% predicted (p < 0.0001). A similar proportion of SRPs was found in each treatment group. Among the SRPs, the rate of reduction in postbronchodilator FEV(1)% predicted was similar in all treatment groups. At a single site where biomarker assessment was performed, SRPs also had more prominent eosinophilic inflammation during the washout period. The course and mechanisms of lung function reduction or slow lung growth velocity in children with asthma must be defined.

Administration, Inhalation↗

Association of body mass with pulmonary function in the Childhood Asthma Management Program (CAMP).

BACKGROUND: While increases in body mass index (BMI) have been associated with the incidence and prevalence of asthma, the mechanisms behind this association are unclear. METHODS: We hypothesised that BMI would be independently associated with measures of asthma severity in a population of children with mild to moderate asthma enrolled in the Childhood Asthma Management Program (CAMP). A multivariable baseline cross sectional analysis of BMI with our outcomes of interest was performed. RESULTS: BMI was generally not associated with symptoms, nor was it associated with atopy. While BMI was positively associated with the methacholine concentration that causes a 20% fall in forced expiratory volume in 1 second (PC(20)FEV(1)), this association did not persist after adjustment for FEV(1). Increasing BMI was associated with increasing FEV(1) (beta = 0.006 l, 95% CI (0.001 to 0.01)) and forced vital capacity (FVC) (beta = 0.012 l, 95% CI (0.007 to 0.017)). However, decrements in the FEV(1)/FVC ratio were noted with increasing BMI (beta = -0.242, 95% CI (-0.118 to -0.366)). Thus, an increase in BMI of 5 units was associated with a decrease in FEV(1)/FVC of over 1%. CONCLUSIONS: Although the association of FEV(1) and FVC with BMI did not support our initial hypothesis, the decrease noted in the FEV(1)/FVC ratio has potential relevance in the relationship between BMI and asthma severity.

Age Distribution↗

Hospitalization for asthma: atopic, pulmonary function, and psychological correlates among participants in the Childhood Asthma Management Program.

BACKGROUND: Asthma in childhood has a significant impact on children and families, in part because of the frequent need for hospital-based care for acute exacerbations. Sensitization and exposure to inhalant allergens have been identified as risk factors for asthma hospitalization. OBJECTIVE: The Childhood Asthma Management Program (CAMP), comprised of 1041 children aged 5 to 12 with mild-to-moderate asthma, provides the opportunity to identify specific risk factors for prior hospitalization for asthma. METHODS: Data gathered during the screening period from CAMP were evaluated to elucidate differences between patients who had ever been hospitalized for asthma before enrollment in CAMP and those who had never been hospitalized. RESULTS: Univariate analyses indicated that prior hospitalization for asthma was associated with a younger age of asthma onset, longer duration of asthma, greater number of positive allergy skin tests, higher serum immunoglobulin E level, greater peripheral blood eosinophilia, greater recent inhaled corticosteroid use, greater airflow obstruction, greater airway hyperresponsiveness, and lower patient intelligence quotient (IQ). Gender, race, and family income did not differ between hospitalized and never-hospitalized patients. The combination of both sensitization and exposure to high levels of dog allergen (Can f1) was associated with greater likelihood of prior hospitalization. Forward multivariate logistic regression analysis identified younger age of asthma onset, longer duration of asthma, recent use of asthma controller therapy, greater airflow obstruction, and lower patient IQ as significant risk factors for prior hospitalization when all risk factors identified by univariate analysis were included in the model. CONCLUSIONS: Children with mild-to-moderate asthma who had a past hospitalization for acute asthma had greater asthma severity, younger age of onset, and lower patient IQ at the time of entry into CAMP. They also had more markers of atopy than children without prior hospitalization, although atopy was not associated with prior hospitalization on multivariate analysis. Although we have identified these risk factors in a retrospective manner, one can speculate that the persistence of these features should alert the clinician to closely follow abnormalities on pulmonary function tests and general features of atopy to potentially identify patients at risk for future hospitalization.

Age of Onset↗

Long-term effects of budesonide or nedocromil in children with asthma.

BACKGROUND: Antiinflammatory therapies, such as inhaled corticosteroids or nedocromil, are recommended for children with asthma, although there is limited information on their long-term use. METHODS: We randomly assigned 1041 children from 5 through 12 years of age with mild-to-moderate asthma to receive 200 microg of budesonide (311 children), 8 mg of nedocromil (312 children), or placebo (418 children) twice daily. We treated the participants for four to six years. All children used albuterol for asthma symptoms. RESULTS: There was no significant difference between either treatment and placebo in the primary outcome, the degree of change in the forced expiratory volume in one second (FEV1, expressed as a percentage of the predicted value) after the administration of a bronchodilator. As compared with the children assigned to placebo, the children assigned to receive budesonide had a significantly smaller decline in the ratio of FEV1 to forced vital capacity (FVC, expressed as a percentage) before the administration of a bronchodilator (decline in FEV1:FVC, 0.2 percent vs. 1.8 percent). The children given budesonide also had lower airway responsiveness to methacholine, fewer hospitalizations (2.5 vs. 4.4 per 100 person-years), fewer urgent visits to a caregiver (12 vs. 22 per 100 person-years), greater reduction in the need for albuterol for symptoms, fewer courses of prednisone, and a smaller percentage of days on which additional asthma medications were needed. As compared with placebo, nedocromil significantly reduced urgent care visits (16 vs. 22 per 100 person-years) and courses of prednisone. The mean increase in height in the budesonide group was 1.1 cm less than in the placebo group (22.7 vs. 23.8 cm, P=0.005); this difference was evident mostly within the first year. The height increase was similar in the nedocromil and placebo groups. CONCLUSIONS: In children with mild-to-moderate asthma, neither budesonide nor nedocromil is better than placebo in terms of lung function, but inhaled budesonide improves airway responsiveness and provides better control of asthma than placebo or nedocromil. The side effects of budesonide are limited to a small, transient reduction in growth velocity.

Administration, Inhalation↗