Effects of NMDA receptor antagonists on visceromotor reflexes and on intestinal motility, in vivo

被引:7
作者
Shafton, A. D.
Bogeski, G.
Kitchener, P. D.
Sanger, G. J.
Furness, J. B. [1 ]
Shimizu, Y.
机构
[1] Univ Melbourne, Dept Anat & Cell Biol, Ctr Neurosci, Parkville, Vic 3010, Australia
[2] GlaxoSmithKline Inc, Neurol & GI CEDD, Harlow, Essex, England
[3] Gifu Univ, Sch Vet Sci, Dept Vet Basic Sci, Gifu, Japan
关键词
intestinal motility; NMDA receptors; visceromotor reflexes;
D O I
10.1111/j.1365-2982.2007.00942.x
中图分类号
R57 [消化系及腹部疾病];
学科分类号
摘要
Antagonists of NMDA receptors can inhibit both the transmission of pain signals from the intestine and enteric reflexes. However, it is unknown whether doses of the NMDA antagonist, ketamine, that are used in anaesthetic mixtures suppress motility reflexes and visceromotor responses (VMRs). In fact, whether intestinal motility is affected by NMDA receptor blockers in vivo has been little investigated. We studied the effects of ketamine and memantine, administered intravenously or intrathecally. Rats were maintained under alpha-chloralose plus xylazine or pentobarbitone anaesthesia; VMR and jejunal motility were measured. Under alpha-chloralose/xylazine anaesthesia, i.v. ketamine inhibited VMRs at 6 mg kg h(-1), but not at 3 mg kg h(-1). It did not inhibit propulsive reflexes in the jejunum at 10 mg kg h(-1), but reduced them by 30% at 20 mg kg h(-1). Under alpha-chloralose/pentobarbitone anaesthesia, i.v. ketamine reduced propulsive reflexes at 40 mg kg h(-1) and VMR at 10 mg kg h(-1). Memantine inhibited VMRs at 20 mg kg h(-1) and propulsion at 2 mg kg h(-1). Ketamine and memantine, intrathecally, prevented VMRs, but not jejunal propulsion. We conclude that peripherally administered ketamine reduces both VMR and motility reflexes, but not at doses used in anaesthetic mixes (1.8-2.4 mg kg h(-1)). Effects on motility reflexes are likely to be due to non-NMDA receptor actions, possibly on nicotinic receptors.
引用
收藏
页码:617 / 624
页数:8
相关论文
共 35 条
[1]   Memantine blocks α7*nicotinic acetylcholine receptors more potently than N-methyl-D-aspartate receptors in rat hippocampal neurons [J].
Aracava, Y ;
Pereira, EFR ;
Maelicke, A ;
Albuquerque, EX .
JOURNAL OF PHARMACOLOGY AND EXPERIMENTAL THERAPEUTICS, 2005, 312 (03) :1195-1205
[2]   A quantitative approach to recording peristaltic activity from segments of rat small intestine in vivo [J].
Bogeski, G ;
Shafton, AD ;
Kitchener, PD ;
Ferens, DM ;
Furness, JB .
NEUROGASTROENTEROLOGY AND MOTILITY, 2005, 17 (02) :262-272
[3]   Open-channel blockers at the human α4β2 neuronal nicotinic acetylcholine receptor [J].
Buisson, B ;
Bertrand, D .
MOLECULAR PHARMACOLOGY, 1998, 53 (03) :555-563
[4]   Ketamine, an N-methyl-D-aspartate receptor antagonist inhibits the reflex responses to distension of the rat urinary bladder [J].
Castroman, PJ ;
Ness, TJ .
ANESTHESIOLOGY, 2002, 96 (06) :1401-1409
[5]   Intracolonic zymosan produces visceral hyperalgesia in the rat that is mediated by spinal NMDA and non-NMDA receptors [J].
Coutinho, SV ;
Meller, ST ;
Gebhart, GF .
BRAIN RESEARCH, 1996, 736 (1-2) :7-15
[6]   The pharmacology of excitatory and inhibitory amino acid-mediated events in the transmission and modulation of pain in the spinal cord [J].
Dickenson, AH ;
Chapman, V ;
Green, GM .
GENERAL PHARMACOLOGY-THE VASCULAR SYSTEM, 1997, 28 (05) :633-638
[7]   Motor patterns and propulsion in the rat intestine in vivo recorded by spatio-temporal maps [J].
Ferens, DM ;
Chang, EC ;
Bogeski, G ;
Shafton, AD ;
Kitchener, PD ;
Furness, JB .
NEUROGASTROENTEROLOGY AND MOTILITY, 2005, 17 (05) :714-720
[8]   Intravenous anesthetics differentially modulate ligand-gated ion channels [J].
Flood, P ;
Krasowski, MD .
ANESTHESIOLOGY, 2000, 92 (05) :1418-1425
[9]   No inhibition of gastro-intestinal propulsion after propofol- or propofol/ketamine-N2O/O2 anaesthesia -: A comparison of gastro-caecal transit after isoflurane anaesthesia [J].
Freye, E ;
Sundermann, S ;
Wilder-Smith, OHG .
ACTA ANAESTHESIOLOGICA SCANDINAVICA, 1998, 42 (06) :664-669
[10]   Multiple mechanisms of fast excitatory synaptic transmission in the enteric nervous system [J].
Galligan, JJ ;
LePard, KJ ;
Schneider, DA ;
Zhou, XP .
JOURNAL OF THE AUTONOMIC NERVOUS SYSTEM, 2000, 81 (1-3) :97-103