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Role of tachykinins in airway responses to ozone in rats
Authors:Takebayashi  Toru; Abraham  Joseph; Murthy  G GKrishna; Lilly  Craig; Rodger  Ian; Shore  Stephanie A
Abstract:Previousstudies that used neonatal capsaicin (Cap) treatment toablate C fibers indicate that C fibers act to inhibit lung damage andairway hyperresponsiveness after ozone(O3) exposure in rats. Thepurpose of this study was to determine1) the role of tachykinins in theseprotective effects and 2) whetherdifferences in minute ventilation (VE)during O3 exposure might accountfor the effect of Cap. In the first study, male Sprague-Dawley rats were exposed to 1 part/million O3or air for 3 h. Four hours later, a bronchoalveolar lavage (BAL) wasperformed or airway responsiveness was measured. Rats were treated withCP-99994 and SR-48968, selective neurokinin-1- and -2-receptorantagonists, respectively, or with vehicle (Veh).O3 caused an increase in thenumber of neutrophils recovered from BAL fluid in both the Veh-treatedand tachykinin-receptor antagonist (TKRA)-treated rats, but the numberof neutrophils was approximately twofold greater in the TKRA-treatedrats. In contrast, TKRA treatment had no effect on baseline pulmonarymechanics or airway responsiveness. AfterO3 exposure, the number ofneutrophils in BAL fluid was also greater in Cap- than in Veh-treatedrats. O3 reducedVE in both Veh- and Cap-treated rats,but the response was greater (reduction of 44.7 ± 3.7 vs. 27.8 ± 6.8%) and occurred earlier (10 vs. 70 min) in Cap- than inVeh-treated rats (P < 0.02). Theseresults suggest that tachykinins mediate protective effects of C fibersagainst O3-induced lunginflammation. The results also indicate that the more pronounced effectof O3 on BAL neutrophils inCap-treated rats is not the result of a greater inhaled dose ofO3 resulting from greaterVE.

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