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Transient receptor potential vanilloid 4 inhibits mouse colonic motility by activating NO-dependent enteric neurotransmission.

Publication ,  Journal Article
Fichna, J; Poole, DP; Veldhuis, N; MacEachern, SJ; Saur, D; Zakrzewski, PK; Cygankiewicz, AI; Mokrowiecka, A; Małecka-Panas, E; Krajewska, WM ...
Published in: J Mol Med (Berl)
December 2015

UNLABELLED: Recent studies implicate TRPV4 receptors in visceral pain signaling and intestinal inflammation. Our aim was to evaluate the role of TRPV4 in the control of gastrointestinal (GI) motility and to establish the underlying mechanisms. We used immunohistochemistry and PCR to study TRPV4 expression in the GI tract. The effect of TRPV4 activation on GI motility was characterized using in vitro and in vivo motility assays. Calcium and nitric oxide (NO) imaging were performed to study the intracellular signaling pathways. Finally, TRPV4 expression was examined in the colon of healthy human subjects. We demonstrated that TRPV4 can be found on myenteric neurons of the colon and is co-localized with NO synthase (NOS-1). In vitro, the TRPV4 agonist GSK1016790A reduced colonic contractility and increased inhibitory neurotransmission. In vivo, TRPV4 activation slowed GI motility and reduced stool production in mouse models mimicking pathophysiological conditions. We also showed that TRPV4 activation inhibited GI motility by reducing NO-dependent Ca(2+) release from enteric neurons. In conclusion, TRPV4 is involved in the regulation of GI motility in health and disease. KEY MESSAGES: • Recent studies implicate TRPV4 in pain signaling and intestinal inflammation. • Our aim was to characterize the role of TRPV4 in the control of GI motility. • We found that TRPV4 activation reduced colonic contractility. • Our studies also showed altered TRPV4 mRNA expression in IBS-C patients. • TRPV4 may be a novel pharmacological target in functional GI diseases.

Duke Scholars

Published In

J Mol Med (Berl)

DOI

EISSN

1432-1440

Publication Date

December 2015

Volume

93

Issue

12

Start / End Page

1297 / 1309

Location

Germany

Related Subject Headings

  • TRPV Cation Channels
  • Synaptic Transmission
  • Sulfonamides
  • Nitric Oxide Synthase
  • Nitric Oxide
  • Myenteric Plexus
  • Muscle, Smooth
  • Muscle Contraction
  • Models, Biological
  • Middle Aged
 

Citation

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Fichna, J., Poole, D. P., Veldhuis, N., MacEachern, S. J., Saur, D., Zakrzewski, P. K., … Storr, M. A. (2015). Transient receptor potential vanilloid 4 inhibits mouse colonic motility by activating NO-dependent enteric neurotransmission. J Mol Med (Berl), 93(12), 1297–1309. https://doi.org/10.1007/s00109-015-1336-5
Fichna, J., D. P. Poole, N. Veldhuis, S. J. MacEachern, D. Saur, P. K. Zakrzewski, A. I. Cygankiewicz, et al. “Transient receptor potential vanilloid 4 inhibits mouse colonic motility by activating NO-dependent enteric neurotransmission.J Mol Med (Berl) 93, no. 12 (December 2015): 1297–1309. https://doi.org/10.1007/s00109-015-1336-5.
Fichna J, Poole DP, Veldhuis N, MacEachern SJ, Saur D, Zakrzewski PK, et al. Transient receptor potential vanilloid 4 inhibits mouse colonic motility by activating NO-dependent enteric neurotransmission. J Mol Med (Berl). 2015 Dec;93(12):1297–309.
Fichna, J., et al. “Transient receptor potential vanilloid 4 inhibits mouse colonic motility by activating NO-dependent enteric neurotransmission.J Mol Med (Berl), vol. 93, no. 12, Dec. 2015, pp. 1297–309. Pubmed, doi:10.1007/s00109-015-1336-5.
Fichna J, Poole DP, Veldhuis N, MacEachern SJ, Saur D, Zakrzewski PK, Cygankiewicz AI, Mokrowiecka A, Małecka-Panas E, Krajewska WM, Liedtke W, Steinhoff MS, Timmermans J-P, Bunnett NW, Sharkey KA, Storr MA. Transient receptor potential vanilloid 4 inhibits mouse colonic motility by activating NO-dependent enteric neurotransmission. J Mol Med (Berl). 2015 Dec;93(12):1297–1309.
Journal cover image

Published In

J Mol Med (Berl)

DOI

EISSN

1432-1440

Publication Date

December 2015

Volume

93

Issue

12

Start / End Page

1297 / 1309

Location

Germany

Related Subject Headings

  • TRPV Cation Channels
  • Synaptic Transmission
  • Sulfonamides
  • Nitric Oxide Synthase
  • Nitric Oxide
  • Myenteric Plexus
  • Muscle, Smooth
  • Muscle Contraction
  • Models, Biological
  • Middle Aged