Indomethacin and FPL-57231 inhibit antigen-induced airway hyperresponsiveness in sheep

Author:

Lanes S.,Stevenson J. S.,Codias E.,Hernandez A.,Sielczak M. W.,Wanner A.,Abraham W. M.

Abstract

We compared the development of antigen-induced airway hyperresponsiveness (AHR) 24 h after challenge with Ascaris suum antigen in allergic sheep with acute (n = 7) and with dual (n = 7) airway responses and then attempted to modify this AHR. Cholinergic airway responsiveness was determined by measuring the carbachol dose required to increase specific lung resistance (sRL) 150% (i.e., PC150). Subsequently the sheep were challenged with antigen and sRL was measured at predetermined times to document the presence or absence of a late response. PC150 was redetermined 24 h later followed by bronchoalveolar lavage (BAL) to assess inflammation. Only dual responders developed AHR (PC150 decreased, P less than 0.05). There were no significant differences in BAL between the two groups. Six dual responders were then, on separate occasions (greater than or equal to 3 wk), pretreated with placebo, indomethacin (2 mg/kg iv), or a leukotriene antagonist, FPL-57231 (30 mg inhaled). Neither agent significantly affected the acute response to antigen. Only FPL pretreatment blocked the late response, but both agents blocked the antigen-induced AHR 24 h later. BAL at 24 h showed no significant differences. These results indicate that only dual responders develop AHR 24 h after antigen challenge. This AHR appears independent of the late increase in sRL or the severity of pulmonary inflammation. AHR appears to be sensitive to agents that interfere with the early release or actions of cyclooxygenase and lipoxygenase metabolites in dual responders.

Publisher

American Physiological Society

Subject

Physiology (medical),Physiology

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1. The Immune Basis of Allergic Lung Disease;Comparative Biology of the Normal Lung;2015

2. Prostanoids;Asthma and COPD;2009

3. Modeling of asthma, COPD and cystic fibrosis in sheep;Pulmonary Pharmacology & Therapeutics;2008-10

4. Animal models of asthma;Clinical & Experimental Allergy;2007-07

5. Hyaluronan blocks porcine pancreatic elastase-induced mucociliary dysfunction in allergic sheep;Journal of Applied Physiology;2007-06

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