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Pharmacological profile of T-0632, a novel potent and selective CCKA receptor antagonist, in vitro.

The pharmacological profile of a new CCKA receptor antagonist, T-0632 [sodium (S)-3-[1-(2-fluorophenyl)-2,3-dihydro-3-[(3-isoquinolinyl)-carbonyl] amino-6-methoxy-2-oxo-1-H-indole]propanoate], was examined in in vitro studies and compared with those of L-364,718 [3S(-)-N-(2,3-dihydro-1-methyl-2-oxo-5-phenyl-1H-1, 4-benzodiazepine-3-yl)-1H-indole-2-carboxamide] and loxiglumide [D,L-4-(3,4-dichlorobenzoylamino)-5-(N-3-methoxypropyl-pentylam ino)-5- oxopentanoic acid]. T-0632 inhibited the specific binding of [125I]CCK-8 to rat pancreatic CCKA receptor in a concentration-dependent and competitive manner. The Ki value of T-0632 for the CCKA receptor was estimated to be 0.24 nM, which was 23 000-fold less than the Ki value (5600 nM) for guinea pig CCKB receptor. L-364,718 and loxiglumide were 1500- and 64-fold selective for CCKA over CCKB receptor, respectively. T-0632, L-364,718 and loxiglumide inhibited CCK-8 (100 pM)-stimulated amylase release from rat pancreatic acini in a concentration-dependent manner with IC50 values of 5.0 nM, 5.0 nM and 3.0 microM, respectively. In the isolated rabbit gallbladder smooth muscle, T-0632 and loxiglumide competitively inhibited CCK-8-induced contraction with pA2 values of 8.5 and 7.0, respectively. However, L-364,718 showed an apparent non-competitive antagonism. The IC50 values of T-0632, L-364,718 and loxiglumide for CCK-8 (30 nM)-induced contraction were 31 nM, 4.9 nM and 1300 nM, respectively. The inhibitory effects of T-0632 and loxiglumide in gallbladder smooth muscle were readily reversible, but L-364,718 showed a long-lasting inhibition. These results suggest that T-0632 is a potent, reversible and more selective CCKA receptor antagonist compared with L-364,718 and loxiglumide.

Amylases↗

Cytosolic Ca2+ evaluation in rabbit parietal cells: a novel method to screen gastrin receptor antagonists.

We have evaluated the application of the fura-2 method to detect cytosolic Ca2+ increase in gastric cells expressing CCKB/gastrin receptors, in order to screen gastrin receptor antagonists, as an alternative to functional studies. We have characterized the receptors on parietal cell suspension from rabbit gastric mucosa and validated the method using both the CCKB and CCKA receptor agonists and antagonists. Human gastrin I (gastrin) (0.1 nM-4 microM) and sulfated cholecystokinin 26-33 (CCK-8) (0.01 nM-2 microM) dose-dependently augmented cytosolic Ca2+. The efficacies of the two agonists were similar, but the potency of CCK-8 (EC50 1.03 nM) was about 10-fold greater than that of gastrin (11 nM). Response to a submaximal dose of gastrin (50 nM) was dose-dependently blocked by the CCKB-receptor antagonists CAM-1028 (4-[[2-[[3-(1 H-indol-3-yl)-2-methyl-1-oxo-2-[[[1,7,7-trimethylbicyclo[2, 2,1]hept-2-yl)oxy]carbonyl]amino]propyl]amino]-1-phenylethyl]amino-4-oxo -[1 S-1 alpha, 2 beta [S'(S')4 alpha]]-butanoate-N-methyl-D-glucamine) (IC50 1.9 nM), L-365,260 (3 R(+)-N-(2,3-dihydro-1-methyl-2-oxo-5-phenyl-1 H-1, 4-benzodiazepin-3-yl)-N'-(3-methylphenyl)urea) (IC50 10 nM) and spiroglumide ((R)-4-(3,5-dichlorobenzamido)-5-(8-azaspiro[4.5]decan -8-yl)-5-oxopentanoic acid) (IC50 2 microM). The results were in agreement with those obtained from binding studies in guinea-pig cortical membranes. The model was employed to optimize the synthesis of a new class of spiroglumide analogues which led to a new molecule, (S)-4-¿(R)-4'-(3,5-dichlorobenzoylamino)-5'-(8-azaspiro[4.5] decan-8-yl)-5'-oxo)-pentanoylamino-5-(1-naphthylamino)-5-oxo pentanoic acid (CR 2622), whose potency was about 100-fold greater than that of spiroglumide. CR 2622, as well as the other CCKB receptor antagonists tested, exhibited no effect on basal [Ca2+]i. The simplicity and the reproducibility of this method suggest that it is a useful model to screen gastrin and antigastrin activity in parallel or as an alternative to binding studies.

Analysis of Variance↗

Pharmacological profile of T-0632, a novel potent and selective CCKA receptor antagonist, in vivo.

The pharmacological profile of a new CCKA receptor antagonist, T-0632 [sodium (S)-1-(2-fluorophenyl)-2,3-dihydro-3-[(3-isoquinolinylcarbonyl) amino]-6-methoxy-2-oxo-1H-indole-3-propanoate], was examined in in vivo studies and compared with those of L-364, 718 [3S(-)-N-(2,3-dihydro-1-methyl-2-oxo-5-phenyl-1H-1, 4-benzodiazepine-3-yl)-1 H-indole-2-carboxamide] and loxiglumide [D.L-4-(3,4-dichlorobenzoylamino)-5-(N-3-methoxypropyl-pentylam ino)-5- oxopentanoic acid]. In rats, intravenously administered T-0632, L-364,718 and loxiglumide dose dependently inhibited cholecystokinin octapeptide (CCK-8)-stimulated pancreatic exocrine secretion with estimated ED50 values of 0.025, 0.016 and 1.8 mg/kg, respectively. The ED50 values for intraduodenal administration of these compounds were 0.040, 0.26 and 3.0 mg/kg, respectively. In mice, orally administered T-0632 prevented caerulein-induced pancreatitis, CCK-8-induced inhibition of gastric emptying and CCK-8-induced gallbladder emptying in dose-dependent manners with ED50 values of 0.028, 0.04, and 0.12 mg/kg, respectively. The effect of T-0632 for caerulein-induced pancreatitis was 4-fold more potent than that for gallbladder emptying. In contrast, the effects of L-364,718 and loxiglumide for caerulein-induced pancreatitis were 2-4-fold weaker than those for gallbladder emptying. In dogs, T-0632 and loxiglumide maximally inhibited CCK-8-stimulated pancreatic amylase secretion at doses of 0.01 and 10 mg/kg, respectively. At these doses, the effect of T-0632 on CCK-8-induced increase in the gallbladder intraluminal pressure was weaker than that of loxiglumide. These results suggest that T-0632 has a potent antagonistic action on CCKA receptors in several animal species and the effects of T-0632 are more selective for the pancreas over the gallbladder compared with L-364,718 and loxiglumide.

Animals↗

Inhibition of cell proliferation by the cholecystokinin antagonist L-364,718.

Specific cholecystokinin (CCK) receptor and gastrin receptor antagonists were used to assess what role, if any, these receptors have in autocrine cell growth. Although the cholecystokinin receptor antagonist, L-364,718, inhibited cell proliferation in a broad spectrum of cell lines, the gastrin antagonist, L-365,260, had no effect on cell proliferation. In addition neither added gastrin17, nor sulfated cholecystokinin8, could reverse the inhibitory action of L-364,718. It is proposed that L-364,718 inhibits cell proliferation independently of classical gastrin/CCK receptors.

Benzodiazepinones↗

Evidence against cholecystokinin mediation of basal and bombesin-stimulated pancreatic secretion in the rat.

Studies in dogs suggest that bombesin-stimulated pancreatic exocrine function is mediated via endogenous cholecystokinin. We studied (a) the short-term effects of bombesin on pancreatic juice volume and protein output in unconscious rats and (b) whether a potent cholecystokinin-receptor antagonist, L-364,718, affects the pancreatic exocrine response to bombesin. A 4-h i.v. infusion of low-dose (0.2 nmol/kg.h) or high-dose (1.0 nmol/kg.h) bombesin elicited significant increases in pancreatic juice volume and protein output, which were unaltered by treatment with L-364,718 at a dose capable of fully suppressing cholecystokinin-octapeptide-stimulated pancreatic juice volume and protein output. We conclude that the effects of exogenously administered bombesin on the exocrine pancreas in the rat are not mediated via release of endogenous cholecystokinin.

Animals↗

Effects of L-364,718, a new cholecystokinin receptor antagonist, on camostate-induced growth of the rat pancreas.

Chronic feeding of rats with camostate results in pancreatic hypertrophy or hyperplasia, or both. Previous studies suggest that this effect of camostate occurs via an increase in endogenous cholecystokinin due to an enteral feedback mechanism involving the inhibition of trypsin in the duodenum. Studies employing proglumide, a weak and relatively nonspecific cholecystokinin antagonist, have failed to fully abolish camostate-induced pancreas growth. We examined the effects of L-364,718, a new and highly potent cholecystokinin receptor antagonist, on camostate-induced pancreas growth in rats. The pancreas weights and the concentrations of ribonucleic acid, protein, and chymotrypsinogen in the pancreas of rats treated with camostate alone were significantly elevated over those of controls. These effects of camostate were completely abolished in rats treated with camostate + L-364,718. The pancreas weights and the concentrations of deoxyribonucleic acid and ribonucleic acid in the pancreas of rats treated with L-364,718 alone were significantly lower than values in control rats. These data indicate that camostate-induced pancreas growth in rats appears to be dependent on the actions of endogenous cholecystokinin and that cholecystokinin may play a role in the maintenance of pancreatic growth in normal rats.

Animals↗

Effects of the cholecystokinin receptor antagonist L-364,718 on experimental pancreatitis in mice.

The effects of the cholecystokinin receptor antagonist L-364,718 was studied in a model of mild pancreatitis induced in mice by repeated injections of the secretagogue caerulein and in a lethal form of pancreatitis induced by feeding mice an ethionine-supplemented choline-deficient diet. L-364,718 prevented the caerulein-induced rise in serum amylase and pancreatic weight in a dose-dependent manner, the most effective dose being 0.1 mg/kg body wt. L-364,718 also prevented the caerulein-induced pancreatic inflammation as seen by light microscopy. L-364,718 offered no protective effects as determined by changes in serum amylase, pancreatic weight, histology, or mortality in the ethionine-supplemented choline-deficient diet model.

Amylases↗

Effects of an antral mucosectomy, L-364,718 and atropine on cephalic phase of gastric and pancreatic secretion in dogs.

The purpose of this study was to determine the role of gastrin and cholecystokinin in the cephalic phase of gastrin release and gastric and pancreatic secretion in conscious dogs. Sham feeding in intact dogs increased gastric acid output to about 65% of histamine maximum and pancreatic protein to 23% of caerulein maximum. Significant increases in plasma gastrin and pancreatic polypeptide but not cholecystokinin occurred. Similar effects were obtained using insulin hypoglycemia or 2-deoxy-D-glucose glucocytopemia. Atropine eliminated gastric acid response to sham feeding, insulin, or 2-deoxy-D-glucose, significantly reduced the pancreatic protein response by about 60%, and abolished plasma pancreatic polypeptide but not plasma gastrin. Blocking of cholecystokinin receptors by L-364,715 did not affect gastric or pancreatic secretory responses to sham feeding, insulin, or 2-deoxy-D-glucose and failed to influence the accompanying increments in plasma gastrin and pancreatic polypeptide. In antral-mucosectomized dogs, sham feeding-induced acid output reached only 17% of histamine maximum but the increase in pancreatic protein output was similar to that in intact dogs. In these animals, background stimulation with G17I (62 pmol/kg per h) potentiated the gastric acid response to sham feeding but had little effect on pancreatic protein output. This study provides evidence that unlike gastric acid, the pancreatic protein response to physiological or pharmacological cephalic stimulation does not depend on vagally released gastrin but probably on direct vagal stimulation of the pancreas.

Animals↗

Cholecystokinin-mediated ileal electrolyte transport in the guinea pig. Characterization of receptor subtype.

Cholecystokinin (CCK) receptors are currently divided into at least two subtypes: a CCK-A subtype, responsive to the sulfated form of cholecystokinin octapeptide (CCK-8) and selectively antagonized by L-364,718, and a CCK-B subtype, which shares equal affinities for gastrin and CCK-8. In the present study the receptor subtype that mediates guinea pig ileal secretion by evaluating the potencies of CCK- and gastrin-related peptides to evoke increases in transmucosal short-circuit current was characterized. The antagonist potencies of L-365,260 (CCK-B selective) and L-364,718 (CCK-A selective) against CCK-8 were also determined. Both CCK-8 and cerulein, when added to the serosal side of the tissue, evoked increases in the short-circuit current, having EC50 values of 0.8 and 0.2 nmol/L, respectively. Desulfated (SO3) CCK-8, CCK-4, gastrin17-I, pentagastrin, gastrin17-II, and gastrin13-I were relatively weak agonists (EC50 greater than 1000 nmol/L. Cholecystokinin octapeptide-induced short-current responses were competitively antagonized by L-364,718 (pA2, 10.3) and L-365,260 (pA2, 7.4). The high selectivity of the tissue for sulfated CCK-8 suggests that the secretory effect of CCK-8 on guinea pig ileal electrolyte transport is mediated by a CCK-A receptor. The potent effect of L-364,718 against CCK-8 is also consistent with an action at the A-subtype receptor.

Animals↗

Role of hypothalamic cholecystokinin octapeptide in the colonic motor response to a meal in rats.

The effects of hypothalamic microinfusions of cholecystokinin octapeptide and its antagonist L364,718 on cecocolonic myoelectrical activity were evaluated by electromyography in fasted and fed rats. The rats were chronically fitted with electrodes implanted on the cecum and proximal colon and cannulas placed bilaterally in either the ventromedial or lateral hypothalamus. In fasted rats, microinfusion of cholecystokinin octapeptide (10 ng/kg) into the ventromedial hypothalamus increased the spike-burst frequency of the cecum and the colon by 45.6% and 43.7%, respectively, during the 30-minute period after treatment. The injection of cholecystokinin octapeptide (10 ng/kg) into the lateral hypothalamus had no effect on either cecal or colonic motility. Feeding increased the frequency of cecal and colonic spike bursts by 52.1% and 50.1% for 30 minutes postprandially. When infused bilaterally into the ventromedial hypothalamus 10 minutes before feeding, L364,718 (1 or 5 micrograms/kg) abolished the increase of the frequency of cecal and colonic contractions induced by the meal. Infused into the lateral hypothalamus at similar dosages, L364,718 had no effect on the postprandial enhancement of cecocolonic motility. Increase of cecocolonic spike-burst frequency induced by feeding or by cholecystokinin octapeptide injected into the ventromedial hypothalamus was abolished by previous intracerebroventricular but not intraperitoneal administration of atropine (1 microgram) and 4-diphenylacetoxy-N-methylpiperidine (1 microgram), a selective muscarinic M2-receptor antagonist. In contrast, pirenzepine (1 microgram, intracerebroventricularly) did not significantly reduce the meal- or cholecystokin octapeptide-induced increase in cecal and colonic motility. These results suggest that, in rats, (a) cholecystokinin octapeptide is involved in the generation of the cecocolonic motor response to a meal and these effects are mediated through cholecystokinin octapeptide receptors located in the ventromedial hypothalamic nuclei, and (b) these postprandial colonic motor changes involve central cholinergic activation through muscarinic M2 receptors.

Animals↗

Effects of short-term pancreatic duct obstruction in rats.

The short-term effects of rat pancreatic duct obstruction were evaluated and compared with those recently reported to follow obstruction of the rabbit pancreatic duct. In both species pancreatic edema and hyperamylasemia are noted, and the lysosomal hydrolase cathepsin B is redistributed from the lysosome-enriched to the zymogen granule-enriched subcellular fraction. Theoretically, this redistribution phenomenon might lead to digestive enzyme activation because cathepsin B is known to be capable of activating trypsinogen. The hyperamylasemia and pancreatic edema (but not the cathepsin B redistribution) that follow rat pancreatic duct obstruction were increased by infusion of a submaximally stimulating dose of the cholecystokinin analogue cerulein. Administration of the cholecystokinin-receptor antagonist L-364,718 reduced the hyperamylasemia but did not alter the pancreatic edema or cathepsin B redistribution. These observations indicate that cholecystokinin may modulate some but not all of the effects of duct obstruction. Secretin administration increased the degree of pancreatic edema and had no demonstrable protective effect. The rat duct-obstruction model described in this report may prove particularly useful in future studies designed to clarify the early events underlying the development of acute pancreatitis.

Amylases↗

Mediation of trypsin inhibitor-induced pancreatic hypersecretion by secretin and cholecystokinin in rats.

We investigated a hormonal mechanism in a trypsin inhibitor-induced pancreatic hypersecretion in rats. Intraduodenal administration of a synthetic trypsin inhibitor, camostat, resulted in significant increases in plasma concentration of both secretin and cholecystokinin in a dose-related manner that paralleled a significant increase in exocrine pancreatic secretion. To eliminate the effect of circulating secretin in rats, a rabbit antisecretin serum was given IV that resulted in a 77% reduction in bicarbonate secretion stimulated by intraduodenal camostat. A cholecystokinin receptor antagonist, MK-329, also inhibited significantly the camostat-induced increase in pancreatic secretion; volume and bicarbonate output were reduced by 35% each and amylase output by 73%. The combined administration of antisecretin serum and MK-329 completely abolished the pancreatic exocrine secretion stimulated by camostat. These observations indicate that the camostat-stimulated pancreatic exocrine secretion is mediated by the increased release of both secretin and cholecystokinin in rats.

Analysis of Variance↗

The effect of the cholecystokinin receptor antagonist MK-329 on meal-stimulated pancreaticobiliary output in humans.

To determine the physiological role of circulating cholecystokinin (CCK), the effect of the CCK receptor antagonist MK-329 on upper digestive processes was investigated in six normal volunteers after a mixed meal. In a double-blind, two-period, randomized crossover design, the subjects received either 10 mg MK-329 or placebo orally 3 hours 15 minutes before the meal, which contained 51CrCl3 as food marker. A five-lumen tube with the tip in the distal duodenum allowed continuous marker infusion (57Co-B12) and duodenal aspiration as well as recordings of antral and duodenal motility patterns via three pressure sensors. Postprandially, MK-329 caused a significant reduction of 30%-60% (P less than 0.05) in pancreatic trypsin output during the initial three 15-minute periods; thereafter, the output was virtually the same than after placebo. Thus, the integrated enzyme response was only reduced by 15% (NS) during the 3-hour period beginning 15 minutes after the meal. In contrast, gallbladder contraction, determined by total bile acid excretion, was inhibited by 77% (P less than 0.05), indicating a crucial role of CCK in regulating gallbladder motility. Except for the initial 30 minutes postprandially, MK-329 also induced a significant reduction in duodenal pH with mean values ranging from 3.5 +/- 0.2 to 4.1 +/- 0.3 compared with 4.5 +/- 0.3 to 5.0 +/- 0.4 after placebo (P less than 0.05), probably because of lowered secretion of pancreatic bicarbonate. Gastric emptying rate was significantly accelerated by MK-329 during the initial 75 minutes after the meal, but the time for 50% emptying did not differ from placebo [127.5 +/- 7.7 vs. 140.0 +/- 9.0 minutes (NS)]. No changes were observed in the motility pattern of the proximal duodenum after feeding. Whereas MK-329 only caused a slight increase of the basal plasma CCK concentrations, the postprandial levels were markedly enhanced. Peak concentrations were 10.0 +/- 1.3 vs. 4.0 +/- 0.5 pmol/L after placebo (P less than 0.001), and the integrated response exceeded the control value by 175% (P less than 0.01). The results suggest that circulating CCK is not an essential mediator of the postprandial pancreatic enzyme secretion in humans, whereas it plays a critical role in gallbladder emptying.

Adult↗

Cholecystokinin receptor antagonist MK-329 blocks intestinal fat-induced inhibition of meal-stimulated gastric acid secretion.

MK-329, a selective type A cholecystokinin (CCK) receptor antagonist, was given to dogs to test the hypothesis that CCK is one of the principal physiological enterogastrones mediating fat-induced decreases in gastric acid secretion. Gastric acid secretion in response to 300 mL 8% peptone meals was measured by intragastric titration to pH 5.5 in six awake dogs with chronic gastric, duodenal, and jejunal fistulas. Gastric emptying was measured by a dye-dilution technique. During the last hour of peptone stimulation, the intestine was perfused with either control solution or 20% lipid (Intralipid; Kabi Vitrum, Alamedo, CA) intraduodenally or intrajejunally. Compared with control perfusions, mean gastric acid outputs were decreased significantly after lipid perfusion of the duodenum (47% of control) and jejunum (24% of control). Similarly, mean gastric emptying rates were significantly less after lipid perfusion of the duodenum (56%) and jejunum (26%). Oral pretreatment with MK-329 (1 mg/kg) significantly reversed the inhibition of gastric acid output caused by lipid perfusion of the duodenum and jejunum, but fat-induced inhibition of gastric emptying was not significantly affected. These studies provide evidence for an important inhibitory role for CCK as an enterogastrone but do not implicate CCK as being important in fat-induced delayed gastric emptying of a liquid meal in dogs.

Animals↗

Vagal stimulation of rat exocrine pancreatic secretion occurs via multiple mediators.

BACKGROUND: The vagus nerve contains cholinergic and noncholinergic neurons that interact with peptidergic neurons of the enteric nervous system, which stain immunohistochemically for cholecystokinin, vasoactive intestinal polypeptide, and gastrin-releasing peptide. METHODS: The role of these pancreatic exocrine secretagogues during electrical vagal stimulation was studied using specific inhibitors in urethane-anesthetized rats. RESULTS: The pancreatic secretory response to vagal stimulation was blocked significantly by each of the following: the ganglionic blocker hexamethonium (100% inhibition); the muscarinic, cholinergic blocker atropine (85% inhibition); the specific cholecystokinin A-receptor antagonist L-364,718 (84% inhibition); a gastrin-releasing peptide-receptor blocker (91% inhibition); and a vasoactive intestinal polypeptide polyclonal antibody (89% inhibition). The response was not altered by a monoclonal antibody to somatostatin. A subthreshold dose of cholecystokinin octapeptide augmented the response to electrical vagal stimulation. CONCLUSIONS: Suppression of tonic somatostatin release is not the final common event. The findings that subthreshold cholecystokinin augments vagal stimulation, together with marked inhibition by each antagonist used, are consistent with the hypothesis that potentiating interactions among several agonists mediate the vagal response in anesthetized rats. However, this study does not exclude acetylcholine as the final common mediator. Studies in conscious animals are needed to determine the physiological significance of these observations.

Animals↗

Regulation of somatostatin-14 and -28 secretion by gastric acid in dogs: differential role of cholecystokinin.

BACKGROUND: Prosomatostatin-derived peptides include two principle bioactive molecular forms, somatostatin 28 (S-28) and somatostatin 14 (S-14). This study examined whether there is a functional relationship between gastric acid secretion and the release of S-28 and S-14 into the circulation. METHODS: In conscious dogs with gastric and duodenal cannulas, S-28 and S-14 responses, measured after extraction of acidified plasma and separation by gel chromatography, were evaluated by administration of nutrients and acid-inducing secretagogues without and with omeprazole. RESULTS: Ingestion of a solid meal caused equivalent plasma elevations of S-28 and S-14, whereas infusions of histamine and gastrin selectively increased plasma S-14. Omeprazole decreased meal-stimulated S-28 (-67% +/- 8%; P < 0.01) and S-14 (-56 +/- 9%; P < 0.01) and abolished S-14 increases to histamine and gastrin. Intraduodenal perfusions of a liquid protein meal increased S-28 above S-14, comprising approximately 71% of total somatostatin-like immunoreactivity released, and omeprazole suppressed S-28 (-87% +/- 5%; P < 0.01) without influencing S-14. Similar responses occurred after exogenous cholecystokinin. Moreover, pretreatment of the intraduodenal protein meal with the cholecystokinin-A receptor antagonist MK-329 abolished increases of S-28 and S-14 and caused a further twofold increase of gastric acid (P < 0.025). CONCLUSIONS: In the fed state, gastric acid causes direct release of S-14 from the stomach, but the acid-dependent component of S-28 secretion requires cholecystokinin as a cofactor. Negative feedback regulation between somatostatin and gastric acid secretory responses to nutrients may include S-28 modulated, in part, by cholecystokinin.

Animals↗

Endogenous cholecystokinin stimulates pancreatic enzyme secretion via vagal afferent pathway in rats.

BACKGROUND/AIMS: Recently we showed that doses of cholecystokinin octapeptide (CCK-8) that produce physiological plasma CCK levels act via stimulation of afferent vagal pathway to mediate pancreatic enzyme secretion. In this study we investigated if endogenous CCK also acts via similar pathway. METHODS: In anesthetized rats, plasma CCK levels were elevated by diversion of bile pancreatic juice and duodenal casein feeding. The effects of acute vagotomy as well as that of chemical ablation of the afferent vagal pathway on pancreatic enzyme secretion evoked by increased endogenous plasma CCK levels were investigated. RESULTS: Diversion of bile pancreatic juice elevated plasma CCK levels from a basal level of 0.6 +/- 0.1 pmol/L to 8.9 +/- 2.1 pmol/L and caused a more than twofold increase in pancreatic protein secretion. Similar increases in plasma CCK levels and pancreatic secretion were observed with duodenal administration of casein. Vagotomy or perivagal application of capsaicin, a sensory neurotoxin, abolished increases in pancreatic secretion but not plasma CCK levels in response to diversion of bile pancreatic secretion or duodenal administration of casein. In contrast, pancreatic protein responses to 2-deoxy-D-glucose, a central vagal stimulant, remained intact in rats with perivagal capsaicin treatment indicating capsaicin did not affect efferent vagal function. CONCLUSIONS: Endogenous CCK under physiological conditions act via stimulation of vagal afferent pathway to mediate pancreatic enzyme secretion.

Afferent Pathways↗