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Ca(2+) transients in submucous neurons during the colonic migrating motor complex in the isolated murine large intestine.

AbstractBACKGROUND:
The colonic migrating motor complex (CMMC) is a spontaneous, rhythmic, and neurally mediated motor pattern generated by myenteric neurons, which can propel fecal pellets in mice. Our aim was to determine whether submucous neurons were also activated during the CMMC.
METHODS:
:The isolated murine colon was opened and sections of mucosa were removed to expose the submucous ganglia, which were then loaded with Fluo-4.
KEY RESULTS:
Colonic migrating motor complexes, which occurred spontaneously or by mechanically stimulating the mucosa, were identified by displacement of the tissue (duration = 23.3 s). Between CMMCs, spontaneous Ca(2+) transients (frequency = 0.9 Hz) were observed in 55% (n = 8) of submucous neurons. During the CMMC, 98% (seven ganglia, n = 7) of submucous neurons within the same ganglion exhibited rapid Ca(2+) transients (1.6 Hz) superimposed on a sustained rise in Ca(2+) (duration ∼23 s) that occurred 1.7 s following the mucosal stimulus; whereas other neurons exhibited a similar, but delayed response that occurred either at 7 or 13 s following the stimulus. The activity in submucous neurons was correlated with activity in adjacent nerve varicosities. Ondansetron (1 mm; 5-HT(3) antagonist) significantly reduced the frequency and duration of the Ca(2+) transient responses.
CONCLUSIONS & INFERENCES:
Activity in the submucous neurons appears to be secondary to that in the myenteric plexus and appears to be generated largely by activity in myenteric descending (serotonergic) interneurons. During the CMMC, there is likely to be an increase in secretion to lubricate and facilitate fecal pellet propulsion.
AuthorsT Okamoto, P O Bayguinov, M J Broadhead, T K Smith
JournalNeurogastroenterology and motility : the official journal of the European Gastrointestinal Motility Society (Neurogastroenterol Motil) Vol. 24 Issue 8 Pg. 769-78, e354 (Aug 2012) ISSN: 1365-2982 [Electronic] England
PMID22632417 (Publication Type: Journal Article, Research Support, N.I.H., Extramural)
Copyright© 2012 Blackwell Publishing Ltd.
Chemical References
  • Calcium
Topics
  • Animals
  • Calcium (metabolism)
  • Immunohistochemistry
  • Intestine, Large (innervation, metabolism)
  • Mice
  • Mice, Inbred C57BL
  • Myoelectric Complex, Migrating (physiology)
  • Neurons (metabolism)
  • Organ Culture Techniques
  • Submucous Plexus (physiology)

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