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May 1, 2003Journal of Applied Physiology37 citations

Afferent vagal pathways mediating respiratory reflexes evoked by ROS in the lungs of anesthetized rats

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TRTing RuanCHChing-Yin HoYKYu Ru Kou

Structured PICO

What are the afferent vagal pathways mediating respiratory reflexes evoked by reactive oxygen species in the lungs of anesthetized rats?

P
Population
Anesthetized rats
I
Intervention
Spontaneous inhalation of 0.2% aerosolized H(2)O(2) combined with nerve treatments (perivagal capsaicin treatment, vagal cooling, vagotomy) or antioxidants (catalase, dimethylthiourea, deferoxamine)
C
Comparator
Sham nerve treatment, heat-inactivated catalase, saline vehicle, or iron-saturated deferoxamine
O
Outcome
Respiratory reflexes (initial bradypnea and delayed tachypnea)surrogate

H2O2-evoked initial and delayed airway reflexes are antagonistic and may result from stimulation of lung C fibers and rapidly adapting receptors, respectively, partly due to the action of hydroxyl radicals.

Abstract

We investigated the afferent vagal pathways mediating respiratory reflexes evoked by reactive oxygen species (ROS) in the lungs of anesthetized rats. Spontaneous inhalation of 0.2% aerosolized H(2)O(2) acutely evoked initial bradypnea followed by delayed tachypnea, which was frequently mixed with delayed augmented inspiration. The initial response was abolished after perivagal capsaicin treatment (PCT), but was prolonged during vagal cooling (VC) to 7 degrees C; PCT and VC are known to differentially block the conduction of unmyelinated C and myelinated fibers, respectively. The delayed responses were eliminated during VC but emerged earlier after PCT. Vagotomy, catalase (an antioxidant for H(2)O(2)), dimethylthiourea (an antioxidant for. OH), or deferoxamine (an antioxidant for. OH) largely or totally suppressed these reflexive responses, whereas sham nerve treatment, heat-inactivated catalase, saline vehicle, or iron-saturated deferoxamine failed to do so. These results suggest that 1) the H(2)O(2)-evoked initial and delayed airway reflexes are antagonistic and may result from stimulation of lung C fibers and rapidly adapting receptors, respectively, and 2) the reflex effects of H(2)O(2) are, in part, due to the action of. OH on these afferents.

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Cite This Study

Ruan et al. (2003) studied this question.

synapsesocial.com/papers/6a718b1826770c2b8de1252fhttps://doi.org/10.1152/japplphysiol.01047.2002
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