Literature DB >> 32877218

Shifting into high gear: how interstitial cells of Cajal change the motility pattern of the developing intestine.

Nicolas R Chevalier1, Yanis Ammouche1, Anthony Gomis1, Clémence Teyssaire1, Pascal de Santa Barbara2, Sandrine Faure2.   

Abstract

The first contractile waves in the developing embryonic gut are purely myogenic; they only involve smooth muscle. Here, we provide evidence for a transition from smooth muscle to interstitial cell of Cajal (ICC)-driven contractile waves in the developing chicken gut. In situ hybridization staining for anoctamin-1 (ANO1), a known ICC marker, shows that ICCs are already present throughout the gut, as from embryonic day (E)7. We devised a protocol to reveal ICC oscillatory and propagative calcium activity in embryonic gut whole mount and found that the first steady calcium oscillations in ICCs occur on (E14). We show that the activation of ICCs leads to an increase in contractile wave frequency, regularity, directionality, and velocity between E12 and E14. We finally demonstrate that application of the c-KIT antagonist imatinib mesylate in organ culture specifically depletes the ICC network and inhibits the transition to a regular rhythmic wave pattern. We compare our findings to existing results in the mouse and predict that a similar transition should take place in the human fetus between 12 and 14 wk of development. Together, our results point to an abrupt physiological transition from smooth muscle mesenchyme self-initiating waves to ICC-driven motility in the fetus and clarify the contribution of ICCs to the contractile wave pattern.NEW & NOTEWORTHY We reveal a sharp transition from smooth muscle to interstitial cell of Cajal (ICC)-driven motility in the chicken embryo, leading to higher-frequency, more rhythmic contractile waves. We predict the transition to happen between 12 and 14 embryonic wk in humans. We image for the first time the onset of ICC activity in an embryonic gut by calcium imaging. We show the first KIT and anoctamin-1 (ANO1) in situ hybridization micrographs in the embryonic chicken gut.

Entities:  

Keywords:  calcium imaging; contraction wave; embryo; interstitial cells of Cajal; intestine; motility; pacemaker; smooth muscle

Mesh:

Substances:

Year:  2020        PMID: 32877218     DOI: 10.1152/ajpgi.00112.2020

Source DB:  PubMed          Journal:  Am J Physiol Gastrointest Liver Physiol        ISSN: 0193-1857            Impact factor:   4.052


  6 in total

1.  DOG1 overexpression is associated with mismatch repair deficiency and BRAF mutations but unrelated to cancer progression in colorectal cancer.

Authors:  Kristina Jansen; Martina Kluth; Niclas C Blessin; Claudia Hube-Magg; Michael Neipp; Hamid Mofid; Hannes Lárusson; Thies Daniels; Christoph Isbert; Stephan Coerper; Daniel Ditterich; Holger Rupprecht; Albert Goetz; Christian Bernreuther; Guido Sauter; Ria Uhlig; Waldemar Wilczak; Ronald Simon; Stefan Steurer; Eike Burandt; Daniel Perez; Jakob R Izbicki; Frank Jacobsen; Till S Clauditz; Andreas H Marx; Till Krech
Journal:  Histol Histopathol       Date:  2022-06-01       Impact factor: 2.130

Review 2.  Insights on gastrointestinal motility through the use of optogenetic sensors and actuators.

Authors:  Bernard T Drumm; Caroline A Cobine; Salah A Baker
Journal:  J Physiol       Date:  2022-06-14       Impact factor: 6.228

3.  DOG1 is commonly expressed in pancreatic adenocarcinoma but unrelated to cancer aggressiveness.

Authors:  Kristina Jansen; Franziska Büscheck; Katharina Moeller; Martina Kluth; Claudia Hube-Magg; Niclas Christian Blessin; Daniel Perez; Jakob Izbicki; Michael Neipp; Hamid Mofid; Thies Daniels; Ulf Nahrstedt; Christoph Fraune; Frank Jacobsen; Christian Bernreuther; Patrick Lebok; Guido Sauter; Ria Uhlig; Waldemar Wilczak; Ronald Simon; Stefan Steurer; Eike Burandt; Andreas Marx; Till Krech; Till Clauditz
Journal:  PeerJ       Date:  2021-08-03       Impact factor: 2.984

4.  Phenotypic switch of smooth muscle cells in paediatric chronic intestinal pseudo-obstruction syndrome.

Authors:  Delphine Martire; Sarah Garnier; Sébastien Sagnol; Annick Bourret; Stéphane Marchal; Norbert Chauvet; Amandine Guérin; Dominique Forgues; Dominique Berrebi; Christophe Chardot; Marc Bellaiche; John Rendu; Nicolas Kalfa; Sandrine Faure; Pascal de Santa Barbara
Journal:  J Cell Mol Med       Date:  2021-03-03       Impact factor: 5.310

5.  Distribution Map of Peristaltic Waves in the Chicken Embryonic Gut Reveals Importance of Enteric Nervous System and Inter-Region Cross Talks Along the Gut Axis.

Authors:  Yuuki Shikaya; Yuta Takase; Ryosuke Tadokoro; Ryo Nakamura; Masafumi Inaba; Yoshiko Takahashi
Journal:  Front Cell Dev Biol       Date:  2022-02-04

6.  Commentary: Localization of contractile wave nucleation sites as an emerging phenomenon of stochastic myogenic gut motility.

Authors:  Nicolas R Chevalier
Journal:  Front Cell Dev Biol       Date:  2022-08-29
  6 in total

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