Literature DB >> 12604706

A role for TRPV1 in bradykinin-induced excitation of vagal airway afferent nerve terminals.

Michael J Carr1, Marian Kollarik, Sonya N Meeker, Bradley J Undem.   

Abstract

Using single-unit extracellular recording techniques, we have examined the role of the vanilloid receptor-1 (VR1 aka TRPV1) in bradykinin-induced activation of vagal afferent C-fiber receptive fields in guinea pig isolated airways. Of 17 airway C-fibers tested, 14 responded to bradykinin and capsaicin, 2 fibers responded to neither capsaicin nor bradykinin, and 1 fiber responded to capsaicin but not bradykinin. Thus, every bradykinin-responsive C-fiber was also responsive to capsaicin. Bradykinin (200 microl of 0.3 microM solution) evoked a burst of approximately 130 action potentials in C-fibers. In the presence of the TRPV1 antagonist capsazepine (10 microM), bradykinin evoked 83 +/- 9% (n = 6; P < 0.01) fewer action potentials. Similarly, the TRPV1 blocker, ruthenium red (10 microM), inhibited the number of bradykinin-evoked action potentials by 75 +/- 10% (n = 4; P < 0.05). In the presence of 5,8,11,14-eicosatetraynoic acid (10 microM), an inhibitor of lipoxygenase and cyclooxygenase enzymes, the number of bradykinin-induced action potentials was reduced by 76 +/- 10% (n = 6; P < 0.05). Similarly, a combination of the 12-lipoxygenase inhibitor, baicalein (10 microM) and the 5-lipoxygenase inhibitor ZD2138 [6-[3-fluoro-5-[4-methoxy-3,4,5,6-tetrahydro-2H-pyran-4-yl])phenoxy-methyl]-1-methyl-2-quinolone] (10 microM) caused significant inhibition of bradykinin-induced responses. Our data suggest a role for lipoxygenase products in bradykinin B(2) receptor-induced activation of TRPV1 in the peripheral terminals of afferent C-fibers within guinea pig trachea.

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Year:  2003        PMID: 12604706     DOI: 10.1124/jpet.102.043422

Source DB:  PubMed          Journal:  J Pharmacol Exp Ther        ISSN: 0022-3565            Impact factor:   4.030


  44 in total

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Authors:  Bradley J Undem; Marian Kollarik
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Review 2.  Basic mechanisms of cough: current understanding and remaining questions.

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3.  Melittin activates TRPV1 receptors in primary nociceptive sensory neurons via the phospholipase A2 cascade pathways.

Authors:  Yi-Ru Du; Yong Xiao; Zhuo-Min Lu; Jing Ding; Fang Xie; Han Fu; Yan Wang; Judith A Strong; Jun-Ming Zhang; Jun Chen
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Review 4.  Targeting peripheral afferent nerve terminals for cough and dyspnea.

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Review 5.  Anandamide and vanilloid TRPV1 receptors.

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Review 6.  Breathtaking TRP channels: TRPA1 and TRPV1 in airway chemosensation and reflex control.

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7.  Jejunal afferent nerve sensitivity in wild-type and TRPV1 knockout mice.

Authors:  Weifang Rong; Kirk Hillsley; John B Davis; Gareth Hicks; Wendy J Winchester; David Grundy
Journal:  J Physiol       Date:  2004-08-26       Impact factor: 5.182

8.  Nociceptors lacking TRPV1 and TRPV2 have normal heat responses.

Authors:  C Jeffery Woodbury; Melissa Zwick; Shuying Wang; Jeffrey J Lawson; Michael J Caterina; Martin Koltzenburg; Kathryn M Albers; H Richard Koerber; Brian M Davis
Journal:  J Neurosci       Date:  2004-07-14       Impact factor: 6.167

Review 9.  Interaction between TRPA1 and TRPV1: Synergy on pulmonary sensory nerves.

Authors:  Lu-Yuan Lee; Chun-Chun Hsu; Yu-Jung Lin; Ruei-Lung Lin; Mehdi Khosravi
Journal:  Pulm Pharmacol Ther       Date:  2015-08-14       Impact factor: 3.410

Review 10.  Coughing precipitated by Bordetella pertussis infection.

Authors:  Matthew Hewitt; Brendan J Canning
Journal:  Lung       Date:  2010-01       Impact factor: 2.584

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