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Biomedical subjects

W J Snape

Publications and source records attributed to W J Snape.

At least 19 recordsLinked to original sources

Effect of cell culture on rabbit colonic smooth muscle bradykinin receptors.

The aim of this study was to assess the effect of cell culture on the bradykinin receptor of rabbit colon myocytes. In longitudinal muscle strips prepared from distal colon, bradykinin stimulated dose-dependent contraction that was 62% of the maximal response to bethanecol. At 4 degrees C, [3H]bradykinin binding to fresh muscle homogenates from the distal colon was time dependent, saturable, and linearly related to tissue concentration. Specific binding of 0.6 nmol/L [3H]bradykinin was 80% +/- 2% of total binding. In competitive binding studies, Hill coefficients approached unity, suggesting the presence of a single class of receptors. The order of potency was bradykinin greater than [D-Phe7]bradykinin much greater than des-Arg9, [Leu8]bradykinin, which is consistent with results of a B2 receptor subclass. Colon myocytes from the longitudinal muscle layer achieved confluence and were harvested for studies after 12-14 days in culture. Bradykinin receptors were of high affinity [disassociation constant (Kd) = 672 pmol/L] and numbered 10,217 +/- 2567/cell. To show that the receptors on cultured myocytes were functional, the effect of bradykinin was measured (a) on intracellular calcium concentration using Fura 2 and (b) on prostaglandin E2 concentration in the culture media using radioimmunoassay. In cells grown to confluence on cover slips and preloaded with Fura 2, bradykinin stimulated the threshold response at 1 nmol/L and maximal response (increased intracellular calcium concentration from 229 to 633 nmol/L) at 1 mumol/L. Bradykinin, 100 nmol/L, increased Prostaglandin E2 in the culture media threefold. In summary, colon myocytes express functioning bradykinin receptors, which, unlike muscarinic receptors, persist in culture. Bradykinin appears to be a suitable agonist for studies of receptor-mediated intracellular events in cultured colon myocytes.

Animals

Mechanisms of cAMP-mediated relaxation of distal circular muscle in rabbit colon.

Photolytic release of free adenosine 3',5'-cyclic monophosphate (cAMP) from its caged form was used to evaluate the physiological role of several proposed mechanisms of cAMP-mediated relaxation of circular smooth muscle in the distal rabbit colon. Photolysis of caged cAMP produced a rapid relaxation of bethanechol-contracted distal circular muscle strips that was dependent on ultraviolet exposure time. An increase in release of free cAMP, associated with increased ultraviolet exposure, was confirmed with high-performance liquid chromatography. Vanadate (an ATPase inhibitor) (3 mM) caused a 48% decrease in cAMP-mediated relaxation, while ouabain and a zero K+ bath solution failed to affect relaxation. cAMP-mediated relaxation of KCl-contracted strips was significantly less effective than that of bethanechol-contracted strips. Although this finding suggested that cAMP-mediated relaxation may involve K+ channel modulation, specific (glibenclamide, charybdotoxin) and nonspecific (TEA) K+ channel blockade failed to affect cAMP-mediated relaxation of bethanechol-contracted strips. The photolytic release of cAMP failed to relax Ca(2+)-contracted saponin skinned muscle strips. These studies suggest 1) modulation of Ca2+ pumps plays an important role in this model of relaxation of distal colonic circular muscle in the rabbit colon, 2) modulation of the Na+ pump or sarcolemmal K+ channels may not play an important physiological role in relaxation induced by a rapid rise in intracellular cAMP, and 3) cAMP does not seem to have a significant physiological effect on the Ca2+ sensitivity contractile apparatus.

Animals

Postnatal changes in the substance P receptor on rabbit gastric smooth muscle.

We used radioligand binding to tissue homogenates and isometric contraction of muscle strips to characterize the substance P (SP) receptor on gastric smooth muscle from 1- (newborn) and 7-day-old and 4- and 11-wk-old (weanling) rabbits. Scatchard analysis for newborns was curvilinear, suggesting the presence of multiple binding sites. In newborns the dissociation constant (Kd) of high-affinity binding site was 2.2 +/- 0.3 nM, and the maximum binding (Bmax) was 0.57 +/- 0.06 pmol/mg DNA. The number of high-affinity binding sites decreased with age, disappearing by 11 wk. The Kd for the low-affinity site was more than two orders of magnitude greater than that of the high-affinity site. In competitive binding studies with [3H]SP, the order of potency for the neurokinins was SP much greater than neurokinin A (NKA) greater than neurokinin B (NKB), suggesting that the high-affinity binding sites were NK-1 receptors. [125I]NKA is also bound to newborn tissue homogenate with high affinity. With [125I]NKA the order was NKA greater than SP greater than NKB, suggesting that NK-2 receptors were also present. In contraction studies, atropine and tetrodotoxin had no effect on tachykinin-stimulated contraction, suggesting solely myogenic tachykinin effects on this tissue. In newborn rabbits, the potency and efficacy of SP and NKA were similar. The half-maximal effective dose (ED50) of SP was nearly two orders of magnitude less in newborn rabbits than in weanlings; the potency of NKA did not change.(ABSTRACT TRUNCATED AT 250 WORDS)

Aging

An abnormal rate of actin myosin cross-bridge cycling in colonic smooth muscle associated with experimental colitis.

Previous studies showed that colonic smooth muscle develops less contractile force to neurohumoral stimulation when associated with mucosal inflammation. This study evaluated 1) the Ca2+ dependence for colonic smooth muscle contraction, 2) the maximum velocity of muscle shortening (Vmax), and 3) changes in 20-kDa myosin light-chain (MLC) phosphorylation in distal circular colonic muscle from healthy rabbits and from rabbits with experimental colitis, induced by Formalin and immune complexes. The isometric tension of unskinned muscle stimulated with bethanechol or KCl was less (P less than 0.05) in animals with colitis compared with the control group. In saponin-skinned muscle, the amplitude of the maximal tension at [Ca2+] of 3 x 10(-7) M was decreased (P less than 0.05) in colitis animals (4.3 +/- 0.9 x 10(4) N/m2, n = 7) compared with healthy animals (10.5 +/- 2.4 x 10(4) N/m2, n = 6). However, the ED50 for Ca2+ stimulation was similar (P greater than 0.05) in both groups. When MLC was thiophosphorylated with ATP gamma S, the tension development was decreased in colitis (2.1 +/- 0.3 x 10(4) N/m2, n = 5; P less than 0.01) compared with normals (5.0 +/- 1.4 x 10(4) N/m2, n = 5). In healthy animals, phosphorylation of 20-kDa MLC increased rapidly to 51.2 +/- 3.1% within 15 s after stimulation and subsequently declined to 19.0 +/- 2.1% at 5 min. Vmax was maximal (0.14 Lo/s) 13 s after stimulation and declined before maximal active isometric stress. In colitis animals, the 20-kDa MLC phosphorylation (P less than 0.05) and the Vmax (P less than 0.01) were decreased.(ABSTRACT TRUNCATED AT 250 WORDS)

Actins

Characterization of colonic circular smooth muscle cells in culture.

The receptor-binding properties of isolated rabbit colonic circular smooth muscle cells in primary culture have been investigated. In intact smooth muscle, acetylcholine, acting through M2 muscarinic receptors, and vasoactive intestinal polypeptide (VIP), acting through VIP receptors, are two of the principal neurotransmitters mediating contraction and relaxation, respectively. The muscarinic receptor was present in very high levels (600,000 receptors/cell) on freshly isolated colonic smooth muscle cells as shown by binding of the muscarinic receptor antagonist N-methylscopolamine (NMS). However, NMS binding sites decreased rapidly when the cells were placed in primary culture. After 21 h in culture, specific binding of [3H]NMS decreased to 20%, and after 48 h to less than 10% that of preculture values. This loss was not associated with a change in receptor affinity, since Kd was unchanged for the receptors still present. In contrast, high-affinity VIP receptors were expressed on cultured smooth muscle cells but could not be detected on freshly isolated cells. Cultured cells responded to VIP with an increase in intracellular adenosine 3',5'-cyclic monophosphate (cAMP), indicating that the VIP receptors were functionally coupled to adenylate cyclase. Cultured cells also responded to calcitonin gene-related peptide (CGRP) and forskolin with increased production of intracellular cAMP. In contrast, neither VIP nor CGRP elicited an increase in intracellular cAMP when added to freshly isolated cells. Furthermore, freshly isolated cells had a greatly diminished response to forskolin, suggesting that the isolation procedure not only destroyed cell surface receptors for VIP and CGRP, but also damaged the cells sufficiently to decrease cellular adenylate cyclase activity.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Effect of 5-hydroxytryptamine and its antagonists on colonic smooth muscle of the rabbit.

The effect of 5-hydroxytryptamine (5HT) was studied in circular and longitudinal muscle from the proximal and distal colon of New Zealand white rabbits. 5HT stimulated a dose-dependent isometric contraction of distal and proximal circular muscle that was greater than in distal longitudinal muscle (P less than 0.01). 5HT did not stimulate taenia coli longitudinal muscle. The EC50 for 5HT stimulation of distal circular muscle (-7.0 +/- 0.1), distal longitudinal muscle, and proximal circular muscle was similar. Methysergide dose-dependently inhibited the 5HT stimulation of both proximal and distal circular muscle. The IC50 for methysergide inhibition of 5HT (5 x 10(-7) M) stimulation was -5.5 +/- 0.2. Ketanserine and ICS 205-930 did not inhibit 5HT stimulation of colonic muscle. Tetrodotoxin (TTX) decreased the potency, but not the efficacy of 5HT stimulation of proximal and distal circular muscle. Atropine decreased the potency (EC50 = -6.6 +/- 0.1) (P less than 0.05) and the efficacy by 40%. Electrical field stimulation (EFS) caused an on-contraction and off-contraction of distal circular muscle and an on-contraction of proximal circular muscle. 5HT decreased the off-contraction of the distal circular muscle but did not affect the on-contraction of the other muscle strips. 5HT receptor antagonists did not affect EFS of the tissue. The studies suggest: (1) 5HT stimulates circular colonic muscle with greater efficacy than longitudinal muscle, (2) 5HT stimulates circular muscle through a 5HT1 receptor, (3) there is atropine-sensitive and atropine-insensitive 5HT stimulation of circular colonic muscle, (4) 5HT inhibits neurons responsible for the off-contraction in distal circular muscle without affecting the on-contraction.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

U.S. experience with omeprazole in duodenal ulcer. Multicenter double-blind comparative study with ranitidine. The Omeprazole DU Comparative Study Group.

To assess the comparative efficacy of omeprazole 20 mg, a proton pump inhibitor, versus ranitidine 150 mg twice a day, an H2-receptor antagonist, in healing duodenal ulcers we performed a randomized, double-blind, multicenter trial in 309 patients with endoscopically diagnosed ulcers. Patients were treated for up to four weeks and were seen at week 2 and at week 4, if unhealed at week 2, for determination of ulcer status by endoscopy, review of daily self-assessment symptom diaries, and clinical laboratory including fasting serum gastrin. Gastrin levels were repeated two weeks after cessation of study medication. Evaluation of baseline demographic and laboratory parameters demonstrated no significant differences between the two groups at entry. At week 2, 42% of the omeprazole and 34% of the ranitidine-treated patients were healed (P = NS). At week 4, there was a 19% advantage in ulcer healing for the omeprazole-treated patients in comparison to those treated with ranitidine (82% vs 63%, respectively, P less than 0.05). Healing of ulcers greater than or equal to 1.0 cm occurred in 83% of those treated with omeprazole versus 37% treated with ranitidine (P less than 0.01). There were no significant differences in rate of pain relief or incidence of clinical laboratory abnormalities. Mean fasting serum gastrin value during treatment increased over the baseline in both groups, (P less than 0.05). The percent change was significantly greater with omeprazole but few patients had elevations above the upper limit of normal for the assay. Both drugs were well tolerated. Omeprazole 20 mg demonstrated superiority in healing duodenal ulcers at four weeks in comparison to ranitidine 150 mg twice daily and was more effective in healing ulcers greater than or equal to 1.0 cm.

Double-Blind Method

Colonic motility and transit in health and ulcerative colitis.

Preprandial and postprandial colonic motility and transit (scintigraphy), with respect to the splenic flexure, were studied in 10 patients with ulcerative colitis and in 9 healthy subjects. The healthy subjects had a postprandial increase in intraluminal pressure that was significantly (P less than 0.03) greater in the descending colon than in other regions of the colon. In ulcerative colitis, the pressure was decreased in all regions compared with healthy subjects, with no significant pressure gradient among different regions. In normal subjects, transit was quiescent during fasting; eating stimulated both antegrade and retrograde transit. In ulcerative colitis, transit was variable before as well as after the meal. Both healthy subjects and patients with ulcerative colitis had more rapid emptying from the splenic flexure into the sigmoid than into the transverse colon. More frequent, low-amplitude, postprandial propagating contractions occurred in ulcerative colitis (P less than 0.05) than in healthy subjects. Propagating contractions were always antegrade and caused a rapid movement of the tracer into the sigmoid. In conclusion, ulcerative colitis is characterized by (a) decreased contractility, (b) increased low-amplitude propagating contractions, and (c) variable transit. These disturbances may accentuate the diarrhea in ulcerative colitis.

Adult

Effect of eating on colonic motility and transit in patients with functional diarrhea. Simultaneous scintigraphic and manometric evaluations.

The aim of this study was to correlate colonic motility with transit in 8 patients with functional diarrhea compared to 12 healthy subjects. Intraluminal pressure was measured with perfused catheter ports in the transverse colon, splenic flexure, and descending and sigmoid colons. Transit of the luminal contents was measured by following the movement of 99mTC-diethylenetriaminepentaacetic acid instilled as a bolus in the splenic flexure. In patients with diarrhea, the intraluminal marker moved in and out of the transverse and sigmoid colon regions of interest during fasting, unlike healthy subjects, in whom the marker remained in the splenic flexure. After eating, radioactivity immediately increased in both the transverse and sigmoid colons in healthy subjects. In the patients with diarrhea, eating did not alter the marker movement into the different regions of the colon compared with fasting. Within 100 minutes of eating, the intraluminal marker almost disappeared from the regions of interest in patients with diarrhea. Postprandial colonic nonpropagating contractions increased in each region of the colon in healthy subjects; there was only a small postprandial increase in colonic motility in patients with diarrhea. However, the numbers of fasting and postprandial propagating contractions were increased in patients with diarrhea compared with healthy subjects (P less than 0.02). Each propagating contraction moved more tracer in patients with diarrhea than in healthy subjects (P less than 0.05). These studies suggest that (a) in patients with diarrhea, the fluctuation of marker in both transverse and sigmoid colons during the fasting and postprandial periods is associated with decreased nonsegmenting contractions and frequent propagating contractions; and (b) in healthy subjects, the intraluminal marker moved after eating because of a pressure gradient caused by nonpropagating contractions.

Adult

Perinatal changes in bombesin-stimulated muscle contraction in rabbit stomach and colon.

Bombesin and its mammalian homologue, gastrin-releasing peptide, stimulate smooth muscle contraction and may promote the growth of gastrointestinal tissues. Isometric contraction of strips from circular muscle of the gastric fundus and longitudinal muscle of the distal colon were used to compare changes in the response to bombesin in newborn and weanling rabbits. There was an age-related qualitative change in gastric muscle from biphasic contractions including phasic and tonic components in the newborn to phasic contractions alone in the weanling. The colon contractions were tonic at both ages. In both tissues there was an age-related fivefold increase in stress in response to maximally effective concentrations of bethanechol (P less than 0.05). In contrast, in the stomach age-related decreases in the response to maximally effective concentrations of bombesin were observed, from 2930 +/- 179 mN/cm2 (98% of the maximal response to bethanechol) in the newborn to 565 +/- 81 mN/cm2 (4% of the maximal response to bethanechol) in the weanling (P less than 0.005). In the colon, a twofold increase in response to bombesin was observed, from 446 +/- 59 mN/cm2 (82% of the response to bethanechol) in the newborn to 862 +/- 11 mN/cm2 (29% of the response to bethanechol) in the weanling (P less than 0.05). No age-related changes were observed in the potency of bombesin in either tissue. Neither atropine nor tetrodotoxin altered the contractions in either tissue, suggesting that bombesin interacted directly with myocytes. There was three times as much bombesinlike immunoreactivity in the stomach compared with the colon, but no age-related changes in either tissue. In summary, by the age of weanling the stomach lost the tonic component of contraction and 80% of the efficacy of bombesin-stimulated phasic contraction that had been present in the newborn. The loss of efficacy, absolute in the stomach and relative to bethanechol in the colon, suggest that bombesin may be most important in stimulating motility in the neonatal period.

Animals

Anatomic contribution to differences in rabbit colonic muscle contraction.

The aim of this study was to determine if differences in the force of contraction in different regions of the rabbit colon are associated with variations in the histology of the corresponding muscle tissues. Circular and longitudinal muscles were isolated from strips of proximal and distal colonic muscle. Muscle strips stretched to L0 were either stimulated to contract or were processed for electron microscopy. Cross-sections of the smooth muscle cells of the taenia coli had a larger perimeter (P less than 0.001) and were surrounded by increased extracellular matrix (28% of the standardized box) compared with the muscle cells from the other sites in the colon (7%-13%) (P less than 0.001). Cross-sections of the proximal circular muscle cells had a smaller perimeter and were present in a greater number than the cells from other areas of the colon. The distal circular muscle generated a larger force than the other muscles after stimulation with bethanechol or K+ (P less than 0.05). The taenia developed less force than the other muscles (P less than 0.05). Bethanechol was a less potent stimulant for the longitudinal muscles than for the circular muscles (P less than 0.05). This study suggests that (1) the decreased efficacy of bethanechol and K+ stimulation of the taenia coli is caused in part by the smaller number of cells that are available to contract and (2) the increased efficacy for the stimulation of the distal circular muscle compared with the proximal circular muscle is unrelated to the mass of muscle and seems to be related to an inherent property of the muscle.

Animals

Defect in colonic smooth muscle contraction in patients with ulcerative colitis.

Patients with ulcerative colitis have decreased postprandial colonic contractions. The purpose of this study was to determine whether the smooth muscle from patients with ulcerative colitis responds abnormally in vitro to different stimuli. Circular colonic smooth muscle strips from patients with ulcerative colitis, acute diverticular disease, or adenocarcinoma were stretched to the optimal length and stimulated with electrical field stimulation (EFS), bethanechol, or increased concentrations of extracellular K+. The EFS-stimulated on-contraction was similar in each group, but the off-contraction was decreased in patients with colitis compared with patients with cancer (P less than 0.02) or diverticular disease (P less than 0.01). Bethanechol stimulated a dose-dependent colonic contraction, which was less in the strips from patients with colitis compared with cancer (P less than 0.02) or diverticular disease (P less than 0.05). The response to increased extracellular K+ was less in muscle from patients with colitis (P less than 0.01) than in the other tissues. Muscle from diverticular disease developed greater stress to K+ stimulation than did muscle from cancer (P less than 0.05). These studies suggest that there is a decrease in the force of muscle contraction in colonic muscle obtained from patients with colitis compared with normal muscle resected from patients with cancer or with muscle associated with diverticular disease of the colon. The similar relatively low amplitude of the on-contraction in each group suggests the physiological release of an inhibitory neurotransmitter.

Adenocarcinoma

Developmental changes in agonist-mediated colonic smooth muscle contraction in the rabbit.

We studied smooth muscle strips from rabbit distal colon to determine age-related changes in length-tension properties and agonist-mediated contraction. Strips from newborn (1-d-old) and weanling (11-wk-old) rabbits were oriented to measure isometric tension in longitudinal muscle. Active tension comprised 47 +/- 4 and 75 +/- 5% of the total tension in the newborn and weanling, respectively. Total and active tensions in the weanling were greater than in the newborn (p less than 0.001). Although the potencies for bethanechol were similar, the maximal response was nearly 9-fold greater in weanlings (6900 +/- 292 mN/cm2) versus newborns (753 +/- 112 mN/cm2), p less than 0.001. Maximal stress increased with age for bethanechol, high extracellular potassium, substance P, neurokinin A, cholecystokinin octapeptide, bombesin, and serotonin. ED50 for bethanechol, substance P, neurokinin A, and bombesin did not change with age. Serotonin was 12 times more potent in newborns versus weanlings (p less than 0.05). In contrast, cholecystokinin octapeptide was five times less potent in newborns (18.6 nM versus 3.4 nM, respectively, p less than 0.05). Substance P-induced contractions were inhibited partially by atropine. We conclude that length-tension properties of longitudinal colonic smooth muscle differ, and responses to agonists increase with age.

Animals

Active idiopathic ulcerative colitis in a patient with ongoing HIV-related immunodepression.

It is suspected that immune mechanisms are important in the pathogenesis of ulcerative colitis. The following is a case report of a patient with human immunodeficiency virus-related immunodeficiency whose ulcerative colitis ran a course independent of the depression of his peripheral CD4 cells. Thus, peripheral CD4 cells may have little role in the pathogenesis of ulcerative colitis.

Adult

The role of a colonic motility disturbance in ulcerative colitis.

Alterations in colonic motility appear to exacerbate the symptom of increased frequency of bowel movements in patients with ulcerative colitis. Decreased segmenting contractions allow rapid forward movement of luminal contents accentuating the diarrhea. The decrease in segmenting colonic motility is further exacerbated by increased numbers of propagating contractions. The rapid transport of intraluminal contents with a propagating contractions into a nondistensible rectum may be one explanation for the relative high incidence of fecal incontinence in these patients. The pathogenesis of the decreased segmenting contractions appears due to an electromechanical dissociation resulting from inhibition of myosin light chain phosphorylation. It is possible that several inflammatory mediators including free oxygen radicals decrease smooth muscle cell function.

Animals

The activation of calcium and calcium-activated potassium channels in mammalian colonic smooth muscle by substance P.

1. The regulation of Ca2(+)-activated K+ channels by the agonist substance P in freshly dissociated smooth muscle cells from the rabbit longitudinal colonic muscle was characterized using the patch clamp technique. 2. In the cell-attached recording mode, when pipette and bath solutions contained equal [K+] (126 mM), the Ca2(+)-activated K+ channels showed a linear current-voltage relationship (between -50 mV and 50 mV) with a slope conductance of 210 +/- 35 pS (n = 12). Reversal potential measurements indicated that the channel was highly selective for K+ over Na+ (PK/PNa = 110). 3. Channels were activated by depolarizing membrane voltages and cytosolic Ca2+, and in inside-out patches channel activation depended sigmoidally on voltage and [Ca2+]. The potential for half-activation at a cytosolic [Ca2+] of 5 x 10(-6) M was 0 mV. A tenfold increase in cytosolic Ca2+ resulted in a 60 mV shift of the sigmoidal voltage activation curve to more negative potentials. 4. Threshold concentrations of substance P (10(-12) M), which did not result in cell contraction, caused a prolonged activation of K+ channels. The K+ channels were observed to open in clusters: simultaneous opening of multiple channels was interrupted by complete, prolonged channel closure. 5. Lowering bath [Ca2+] to submicromolar concentrations abolished the effect of substance P. The activation of K+ channels by substance P (10(-12) M) was also inhibited by the dihydropyridine nifedipine (10(-6) M), a blocker of L-type Ca2+ channels. 6. In the whole-cell recording mode, with the pipette solution containing 126 mM-KCl, 0.77 mM-EGTA and 1 mM-ATP, depolarization from a holding potential of -70 mV elicited outward currents which increased to steady-state values. These were K+ currents as they were blocked by TEA (tetraethylammonium, 30 mM) and Ba2+ (1 mM) and were abolished when pipette K+ was replaced by Cs+. 7. The depolarization-activated outward current was not affected by lowering extracellular [Ca2+] or by the Ca2+ channel antagonists Cd2+ (200 microM), nifedipine (10(-6)-10(-5) M) or verapamil (10(-6) M). The current was greatly reduced when the EGTA concentration in the pipette solution was increased from 0.77 to 10 mM. 8. When the pipette solution contained CsCl, membrane depolarization activated inward currents. The peak inward current was identified as current through L-type Ca2+ channels based on its voltage- and time-dependent kinetics, and its modulation by dihydropyridines.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals

Neurokinin inhibition of cholinergic myenteric neurons in canine antrum.

Neurokinins regulate gastrointestinal motility by interacting with receptors on both muscle layers and on myenteric plexus neurons. To determine if specific neurokinin (NK) receptor agonists can mediate inhibitory effects on myenteric neurons, we studied the effect of the NK-1 agonist substance P methylester (SPME) and the putative endogenous NK-2 receptor ligand neurokinin A (NKA) on [3H]acetylcholine [( 3H]ACh) release induced by electrical field stimulation from muscle strips cut from the canine gastric antrum. SPME but not NKA caused a dose-dependent inhibition of stimulated [3H]ACh release in tissues containing the myenteric plexus. The inhibition was not seen in longitudinal muscle without myenteric plexus. Pretreatment of tissues with indomethacin or antiserum to vasoactive intestinal polypeptide (VIP) but not naloxone or adrenergic or cholingergic blockade abolished the SPME-induced inhibition. Exogenous VIP stimulated the release of prostaglandin E2 (PGE2) from full thickness strips, and both VIP and PGE2 inhibited [3H]ACh release induced by electrical depolarization. These findings suggest that NK-1 receptor agonists can selectively inhibit stimulated [3H]ACh release and that this inhibition may involve the release of VIP and PGE2 from neurons within the myenteric plexus.

Acetylcholine