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Am J Physiol Gastrointest Liver Physiol 287: G1017-G1027, 2004. First published July 15, 2004; doi:10.1152/ajpgi.00039.2004
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NEUROREGULATION AND MOTILITY

Synaptic transmission in simple motility reflex pathways excited by distension in guinea pig distal colon

X.-C. Bian,* L. F. Heffer,* R. M. Gwynne, J. C. Bornstein, and P. P. Bertrand

Department of Physiology, University of Melbourne, Parkville, Victoria 3010, Australia

Submitted 22 January 2004 ; accepted in final form 8 July 2004

We examined specific receptor/transmitter combinations used at functionally identified synapses in ascending and descending reflex pathways of guinea pig distal colon. Excitatory (EJPs) or inhibitory junction potentials (IJPs) were recorded intracellularly from nicardipine-paralyzed circular smooth muscle in either the oral or anal recording chamber of a three-chambered organ bath, respectively. Blockade of synaptic transmission in the central chamber with a 0.25 mM Ca2+/12 mM Mg2+ solution abolished EJPs evoked by distension applied either in the central or the far (anal) chamber. IJPs evoked by distension in the central or the far (oral) chamber were depressed to ~50% of control. Hexamethonium (nicotinic receptor antagonist, 200 µM) in the central chamber reduced IJPs evoked by far or central distension to 50%, whereas EJPs evoked by far distension were abolished and EJPs evoked by central distension were reduced to 70% of control. Hexamethonium in the recording chambers reduced both IJPs and EJPs evoked by central distension to ~50%. EJPs in the ascending pathway were unaffected by blockade of muscarinic receptors in the central chamber or blockade of neurokinin 3 tachykinin receptors in this or the recording chamber. In the descending pathway, blockade of P2 receptors in the same chambers had only a minor effect on distension-evoked IJPs. Thus some intrinsic sensory neurons of guinea pig colon have long descending projections (>30 mm), but ascending projections of <15 mm. In contrast to the ileum, transmission between ascending or descending interneurons and from sensory neurons to descending interneurons is predominantly via nicotinic receptors; but transmission to inhibitory or excitatory motoneurons and from sensory neurons to ascending interneurons involves nicotinic and other unidentified receptors.

enteric nervous system; electrophysiology; smooth muscle; enteric reflex



Address for reprint requests and other correspondence: P. P. Bertrand, Dept. of Physiology, Univ. of Melbourne, Parkville, VIC 3010, Australia (E-mail: p.bertrand{at}unimelb.edu.au)




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P. P. Bertrand
Real-time measurement of serotonin release and motility in guinea pig ileum
J. Physiol., December 1, 2006; 577(2): 689 - 704.
[Abstract] [Full Text] [PDF]




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