Adenosine monophosphate (AMP) may reflect airway inflammation and hyperresponsiveness, but relationship between AMP and histamine (His, a conventional stimulus) bronchial provocation test (BPT) in asthma is not fully elucidated. The investigators aimed to compare both BPTs and determine their usefulness in reflecting changes of asthmatic symptoms. BPTs were performed in cross-over fashion, at 2-4day intervals. Cumulative doses eliciting 20% FEV1fall (PD20FEV1), diagnostic performance and adverse events were compared. Patients with PD20FEV1 lower than geometric mean were defined as responders, otherwise poor responders. Patients with uncontrolled and partly controlled asthma, who maintained their original inhaled corticosteroids therapy, underwent reassessment of airway responsiveness and asthmatic symptoms 3 and 6 months after.
Airway hyperresponsiveness, the pivotal feature of asthma, can be assessed by bronchial provocation tests (BPTs), which may elicit bronchoconstriction via inhalation of stimuli. Histamine has been a direct stimulus for inducing bronchoconstriction via vasodilation, eosinophil chemotaxis and tissue edema. Clinically, histamine BPT (His-BPT) has gained extensive application for decades owing to the assay sensitivity and feasibility, but could not ideally predict anti-inflammatory treatment outcomes in practice. Additionally, mild adverse events (flushing and hoarseness) and insufficient capacity of identifying exercise-induced asthma have hampered further clinical applications. Adenosine monophosphate (AMP) is an inflammatory mediator that serves as an indirect bronchial stimulus for detecting airway hyperresponsiveness in asthma. Compared with histamine, AMP may be pathophysiologically more relevant to airway inflammation and hyperresponsiveness and has been linked to presence and magnitude of atopy. However, differences of response to AMP-BPT and His-BPT in different asthma control levels and their associations with asthmatic symptom scores have not been fully elucidated. We hypothesized that asthmatic patients, regardless of control levels, responded differentially to AMP-BPT and His-BPT, and that greater reduction in airway responsiveness to AMP (esp. responders of AMP-BPT) was associated with significant symptom alleviation. Henceforth, we sought to: 1) compare diagnostic performance and safety of AMP-BPT and His-BPT in different asthma control levels; 2) determine the association between airway responsiveness and asthmatic symptom scores. Currently, His-BPT is recommended by the Chinese guideline and shares considerable similarity with methacholine (another conventional stimulus) BPT, we therefore did not perform the latter in this study.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
DIAGNOSTIC
Masking
NONE
Enrollment
84
Patients with uncontrolled and partly controlled asthma, following accomplishment of study 1, were invited to participate in observational study (study 2), which sought to determine usefulness of both BPTs in reflecting improvement of asthmatic symptoms following 3 and 6 months of moderate-dose ICSs treatment (400\~800μg budesonide or equivalent). Patient continued to administer their original ICS during follow-up. During two follow-up visits (3 months apart), AMP-BPT, His-BPT and Hogg's symptom scores were reassessed.
Cumulative dose eliciting 20% fall in FEV1 (PD20FEV1)
Cumulative dose eliciting 20% fall in FEV1 (PD20FEV1), reported as
Time frame: up to 12 months (Jan 2007 to Dec 2007)
Asthma symptom score as proposed by Hoggs et al
Asthma symptom score recorded within 1 week, with the highest possible score of 42 for the whole week
Time frame: up to 12 months (Jan 2007 to Dec 2007)
Baseline spirometry (FVC, FEV1, FEV1/FVC, MMEF, PEF)
FVC, FEV1, FEV1/FVC, MMEF, PEF
Time frame: up to 12 months (Jan 2007 to Dec 2007)
Maximal decrease in FVC following bronchial provocation (expressed as percentage)
Maximal decrease in FVC following bronchial provocation, expressed as percentage as compared with baseline levels
Time frame: up to 12 months (Jan 2007 to Dec 2007)
Maximal decrease in FEV1 following bronchial provocation (expressed as percentage)
Maximal decrease in FEV1 following bronchial provocation, expressed as percentage as compared with baseline levels
Time frame: up to 12 months (Jan 2007 to Dec 2007)
Maximal decrease in MMEF following bronchial provocation (expressed as percentage)
Maximal decrease in MMEF following bronchial provocation, expressed as percentage as compared with baseline levels
Time frame: up to 12 months (Jan 2007 to Dec 2007)
Maximal decrease in PEF following bronchial provocation (expressed as percentage)
Maximal decrease in PEF following bronchial provocation, expressed as percentage as compared with baseline levels
Time frame: up to 12 months (Jan 2007 to Dec 2007)
Assay positivity of AMP-BPT and His-BPT (expressed as percentage)
Assay positivity of AMP-BPT and His-BPT, expressed as percentage
Time frame: up to 12 months (Jan 2007 to Dec 2007)
Diagnostic performance of AMP-BPT and His-BPT (area under the receiver operation characteristic curve, sensitivity, specificity, Youden index)
area under the receiver operation characteristic curve, sensitivity, specificity, Youden index
Time frame: up to 12 months (Jan 2007 to Dec 2007)
Changes in post-treatment asthma symptom scores
post-treatment minus pre-treatment asthma symptom score
Time frame: up to 12 months (Jan 2007 to Dec 2007)
Changes in post-treatment PD20FEV1
post-treatment minus pre-treatment PD20FEV1
Time frame: up to 12 months (Jan 2007 to Dec 2007)
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