Peak nasal inspiratory flow as outcome for provocation studies in allergen exposure chambers: a GA2LEN study

نویسندگان

  • Georg Boelke
  • Uwe Berger
  • Karl-Christian Bergmann
  • Carsten Bindslev-Jensen
  • Jean Bousquet
  • Julia Gildemeister
  • Marek Jutel
  • Oliver Pfaar
  • Torsten Sehlinger
  • Torsten Zuberbier
چکیده

BACKGROUND The GA2LEN chamber has been developed as a novel mobile allergen exposure chamber (AEC) allowing standardized multicenter trials in allergy. Hitherto, subjective nasal symptom scores have been the most often used outcome parameter, but in standardized modern trials objective parameters are preferred. Despite its practicability, the objective parameter peak nasal inspiratory flow (PNIF) has been rarely used for allergy trials in the setting of allergen exposure chambers. This study aims to evaluate PNIF as an outcome parameter for provocation studies in AECs. METHODS In a randomized controlled blinded setting subjects suffering from allergic rhinitis were exposed to grass pollen, birch pollen, house dust mite and/or placebo in the GA2LEN chamber. Different allergen concentrations were used to evaluate symptom severities. Patients had to perform PNIF before and every 30 min during a challenge using a portable PNIF meter. RESULTS 86 subjects participated in 203 challenges, altogether. House dust mite provocations caused the greatest reduction in PNIF values, followed by grass pollen and birch pollen. Provocations with every allergen or pollen concentration led to a significant decrease (p < 0.05) in PNIF compared to baseline. Furthermore, positive correlations were obtained between PNIF and peak expiratory flow, height and weight, and inverse correlations between PNIF and total nasal symptom score, nasal congestion score and visual analog scale of overall subjective symptoms. CONCLUSION PNIF is a helpful and feasible tool for conducting provocation trials with allergens, especially grass pollen and house dust mite, in an AEC.

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عنوان ژورنال:

دوره 7  شماره 

صفحات  -

تاریخ انتشار 2017