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PMID: 16627682 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Mediator mechanisms involved in TRPV1 and P2X receptor-mediated, ROS-evoked bradypneic reflex in anesthetized rats.

Journal of applied physiology (Bethesda, Md. : 1985) ·Vol. 101 ·No. 2 ·2006-08-00 ·Pages 644-54

Ruan T, Lin YS, Lin KS, Kou YR

Abstract

Inhalation of H2O2 is known to evoke bradypnea followed by tachypnea, which are reflexes resulting from stimulation by reactive oxygen species of vagal lung capsaicin-sensitive and myelinated afferents, respectively. This study investigated the pharmacological receptors and chemical mediators involved in triggering these responses. The ventilatory responses to 0.2% aerosolized H2O2 were studied before and after various pharmacological pretreatments in anesthetized rats. The initial bradypneic response was reduced by a transient receptor potential vanilloid 1 (TRPV1) receptor antagonist [capsazepine; change (Delta) = -53%] or a P2X purinoceptor antagonist [iso-pyridoxalphosphate-6-azophenyl-2',5'-disulphonate (PPADS); Delta = -47%] and was further reduced by capsazepine and iso-PPADS in combination (Delta = -78%). The initial bradypneic response was reduced by a cyclooxygenase inhibitor (indomethacin; Delta = -48%), ATP scavengers (apyrase and adenosine deaminase in combination; Delta = -50%), or capsazepine and indomethacin in combination (Delta = -47%), was further reduced by iso-PPADS and indomethacin in combination (Delta = -75%) or capsazepine and ATP scavengers in combination (Delta = -83%), but was not affected by a lipoxygenase inhibitor (nordihydroguaiaretic acid) or by any of the various vehicles. No pretreatment influenced delayed tachypnea. We concluded that 1) the initial bradypneic response to H2O2 results from activation of both TRPV1 and P2X receptors, possibly located at terminals of vagal lung capsaicin-sensitive afferent fibers; 2) the functioning of the TRPV1 and P2X receptors in triggering the initial bradypnea is, in part, mediated through the actions of cyclooxygenase metabolites and ATP, respectively; and 3) these mechanisms do not contribute to the H2O2-evoked delayed tachypnea.

MeSH Terms
Adenosine Deaminase/pharmacology Adenosine Triphosphate/physiology Animals Apyrase/pharmacology Arachidonic Acid/metabolism Capsaicin/analogs & derivatives,pharmacology Cyclooxygenase Inhibitors/pharmacology Hydrogen Peroxide/pharmacology Hyperventilation/chemically induced,physiopathology Hypoventilation/chemically induced,physiopathology Indomethacin/pharmacology Lipoxygenase Inhibitors/pharmacology Male Oxidants/pharmacology Purinergic P2 Receptor Antagonists Pyridoxal Phosphate/analogs & derivatives,pharmacology Rats Rats, Sprague-Dawley Reactive Oxygen Species Receptors, Purinergic P2/drug effects,physiology Receptors, Purinergic P2X Reflex/physiology Respiratory Mechanics/drug effects,physiology TRPV Cation Channels/antagonists & inhibitors,drug effects,physiology
Chemicals
Cyclooxygenase Inhibitors Lipoxygenase Inhibitors Oxidants Purinergic P2 Receptor Antagonists Reactive Oxygen Species Receptors, Purinergic P2 Receptors, Purinergic P2X TRPV Cation Channels Trpv1 protein, rat pyridoxal phosphate-6-azophenyl-2',4'-disulfonic acid Arachidonic Acid Pyridoxal Phosphate Adenosine Triphosphate Hydrogen Peroxide Adenosine Deaminase Apyrase capsazepine Capsaicin Indomethacin
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Ruan Ting
Dept. of Physiology, School of Medicine, National Yang-Ming Univ., Shih-Pai, Taipei 112, Taiwan.
Lin You Shuei
Lin Kae-Shin
Kou Yu Ru
Article Info
Journal
Journal of applied physiology (Bethesda, Md. : 1985)
Abbr.
J Appl Physiol (1985)
ISSN
8750-7587
Published
2006-08-00
Epub
2006-00-20
Pages
644-54
Language
English
Region
United States
NLM ID
8502536
Subset
IM
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