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Effects of cholecystokinin and gastrin antagonists on pancreatic exocrine secretion stimulated by gastrin-releasing peptide.

The effects of a specific cholecystokinin (CCK) receptor antagonist (L364,718) and a gastrin receptor antagonist (L365,260) on gastrin-releasing peptide-10 (GRP-10)-stimulated pancreatic secretion were investigated in the anesthetized rat. GRP-10 stimulated pancreatic exocrine secretion in a dose-dependent manner. A dose of 1.0 nmol/kg/h elicited a significant increase in pancreatic protein output. L364,718 (2.0 mg/kg/h), at a dose that completely inhibited the stimulatory effect of exogenous CCK-8 (3.0 nmol/kg/h) on pancreatic secretion, did not suppress the excitatory effect of GRP-10. L365,260 (5.0 mg/kg/h), at a dose that completely inhibited the stimulatory effect of exogenous gastrin (20 micrograms/kg/h) on gastric acid secretion, did not suppress the excitatory effect of GRP-10 either. We concluded that CCK or gastrin do not mediate the excitatory mechanism of bombesin/GRP on pancreatic secretion. Since CCK and gastrin are the most probable candidates for excitatory mediator of bombesin/GRP, these results support the hypothesis that bombesin/GRP directly stimulates the exocrine pancreas in the rat.

Animals↗

Involvement of endogenous cholecystokinin in pancreatic regeneration after cerulein-induced acute pancreatitis.

This study was undertaken to determine the involvement of endogenous cholecystokinin (CCK) in the regeneration of pancreatic tissue after cerulein-induced acute pancreatitis treated by the CCK receptor antagonist L364,718. Acute pancreatitis was induced in rats by s.c. injections of cerulein in gelatin (12 micrograms/kg) three times a day for 2 days with controls receiving saline in gelatin. Rats were then divided into four treatment groups: saline-dimethyl sulfoxide (DMSO) (SD), saline-L364,718 (SA), cerulein-pancreatitis-DMSO (CD), and cerulein-pancreatitis-L364,718 (CA). In the first experiment, rats were treated for 3 or 10 days with DMSO or L364,718 (0.1 mg/kg, twice a day). In the second experiment, rats were treated for 13 days with DMSO or L364,718 (1.0 mg/kg, twice a day). After the rats were killed, pancreata were weighed and evaluated for their total protein, amylase, chymotrypsin, RNA, and DNA. We found that destruction of the pancreatic tissue occurred after cerulein-induced pancreatitis and that regeneration of the tissue was in progress but incomplete after 10 days; the low dose of L364,718 did not prevent regeneration. After 13 days, regeneration was still incomplete but the 1-mg dose of L364,718 strongly inhibited spontaneous regeneration. These data suggest that endogenous CCK is an important and potent trophic factor in the regeneration process of pancreatic tissue following an episode of acute pancreatitis.

Acute Disease↗

Endogenous cholecystokinin, the major factor responsible for dietary protein-induced pancreatic growth.

This study was undertaken to clarify the role of endogenous cholecystokinin (CCK) in induction of pancreatic growth stimulated by a high protein diet. Rats with i.v. jugular cannulae in place and kept in Bollman cages were adapted to 5% casein diet for 9 days and switched to 70% casein for 2 days. MK-329, a CCK receptor antagonist, and SMS 201-995, a somatostatin agonist, were continuously infused at 0.5 mg/kg/h and 5 micrograms/kg/h, respectively, starting at the onset of feeding 70% casein. The 5 and 70% casein control groups were infused with saline. Feeding 70% casein significantly stimulated pancreatic hyperplasia and tissue hypertrophy. MK-329 and SMS 201-995 totally prevented 70% casein-induced increases in pancreatic weight and total RNA and DNA contents. The results indicate that endogenous CCK is the major factor responsible for pancreatic growth induced by a high protein diet.

Amylases↗

Effect of L-364,718 (CCK receptor antagonist) on exocrine pancreatic secretion of adrenalectomized rats.

The exocrine pancreatic secretion of control and adrenalectomized rats treated with L-364,718 was studied. The blockade of the action of endogenous cholecystokinin (CCK) in the control animals was reflected in a reduction of basal pancreatic secretion. This effect was reversed by the administration of submaximal doses of CCK-8. Under treatment with L-364,718, no decrease in pancreatic weight was observed. From this it may be deduced that factors other than CCK act on the pancreas to maintain the processes of enzyme synthesis and storage. Adrenalectomy reduced the weight of the pancreata; the main cause of this was the depletion of zymogen granules, which has been reported in adrenalectomized rats and is accompanied by a reduction in enzyme secretion, especially that of amylase. By contrast, the administration of L-364,718 from the very first moments after adrenalectomy leads to a retention of pancreatic enzymes. This effect is reflected in the maintenance of pancreatic weight and a secretory capacity in response to submaximal doses of CCK-8 similar to that of nonadrenalectomized animals. Accordingly, in the absence of glucocorticoids, endogenous CCK dominates the secretory process because when the action of this secretagogue is prevented by the administration of L-364,718, the discharge of proteins able to be secreted in response to a suitable stimulus is inhibited.

Adrenalectomy↗

Characterization of a persistent inhibitory action of L-364,718 on cholecystokinin-stimulated enzyme secretion in pancreatic acini.

Examining the actions of L-364,718 on rat pancreatic acini, we found that L-364,718 causes persistent inhibition of cholecystokinin (CCK)-8-stimulated enzyme secretion in acini that were first incubated with L-364,718, washed repeatedly, and then reincubated with CCK-8. This inhibition is maximal after as little as 5 s of first incubation with L-364,718, is unaltered by reducing the temperature of the first incubation from 37 to 4 degrees C and is specific for CCK-8 in that carbachol-stimulated enzyme secretion is unaltered. The inhibitory potency of L-364,718 added to the first incubation followed by washing and reincubation with CCK-8 is nearly the same as when L-364,718 is added together with CCK-8 in the same incubation. The persistent inhibitory action of L-364,718 is not attributable to residual free L-364,718 in the bulk phase of the second incubation medium. In addition, L-364,718 does not cause persistent inhibition by binding irreversibly to CCK receptors because the binding reaction is completely reversible and the persistent inhibition can be surmounted with appropriate concentrations of CCK-8. When acini are first incubated with L-364,718 and washed repeatedly, approximately 0.2% of the original L-364,718 remains trapped in a microenvironment within the acini. This trapping presumably results in a sufficiently high concentration of L-364,718 to produce its persistent, albeit surmountable inhibition.

Amylases↗

Effect of L-364,718 (CCK receptor antagonist) on exocrine pancreatic secretion of hydrocortisone-treated rats.

Exocrine pancreatic function was studied in control rats and animals subjected to treatment with hydrocortisone (10 mg/kg/day) over 7 days. In both cases, the cholecystokinin (CCK) receptor antagonist L-364,718 (0.1 mg/kg/day) had been administered. The administration of this nonpeptide CCK antagonist significantly reduced the basal pancreatic flow of secretion and enzymes in the control rats but did not cause a decrease in pancreatic weight. From this it may be inferred that factors other than CCK are able to exert the trophic effects of this hormone. Also, the processes of enzyme synthesis and storage, which contribute to maintaining the weight of the organ, continued to occur under conditions of deprivation of the action of endogenous CCK because pancreatic secretion in response to the infusion of CCK was similar in the animals treated and not treated with L-364,718. In contrast, no significant changes were observed either regarding pancreatic weight or basal pancreatic secretion in the animals treated with hydrocortisone and simultaneously with L-364,718, as compared with the rats treated only with hydrocortisone. This points to a predominant effect of glucocorticoids on the action of CCK during the phases of enzyme synthesis and storage, accompanied by a blockade of exocytosis due to hydrocortisone treatment. The secretagogue effect of CCK alone becomes possible with high levels of this hormone of exogenous origin, whose interaction with its specific receptors is in turn positively modulated by an excess of glucocorticoids.

Amylases↗

Therapeutic and protective effect of subcutaneous injections of L-364,718 on caerulein-induced acute pancreatitis.

The prophylactic and therapeutic effects of a potent cholecystokinin (CCK) receptor antagonist, L-364,718, on acute pancreatitis induced by caerulein were evaluated, analyzing morphologic and functional pancreatic parameters jointly. Edematous pancreatitis was induced by four subcutaneous injections of caerulein (20 micrograms/kg) in rats at 1-h intervals. Prophylactic administration of L-364,718 (0.1 mg/kg) prevented rise in serum amylase levels, interstitial edema, vacuolization, and impairment of pancreatic enzyme secretion that accompany caerulein-induced acute pancreatitis. After 7 days, a spontaneous regression of the morphologic alterations caused by caerulein-induced acute pancreatitis occurs; however, recovery of the secretory function of the pancreas was only reached after this period of time when L-364,718 was administered therapeutically (0.1 mg/kg/day). Prophylactically or therapeutically administered, L-364,718 exerts a beneficial effect on caerulein-induced acute pancreatitis, indicating that CCK (exogenous or endogenous) plays an important role in the development of this pathology.

Acute Disease↗

Characterization of a new cholecystokinin receptor antagonist FK480 in in vitro isolated rat pancreatic acini.

Biochemical and pharmacologic characteristics of a newly developed benzodiazepine derivative (S)-N-[1-(2-fluorophenyl)-3,4, 6,7-tetrahydro-4-oxo-pyrrolo-[3,2,1-jk] [1,4]benzodiazepine-3-yl]-1H-indole-2-carboxamide (FK480) as a cholecystokinin (CCK) receptor antagonist were examined in the isolated rat pancreatic acini and compared with those of MK-329 and loxiglumide. FK480, MK-329, and loxiglumide inhibited CCK octapeptide (CCK-8)-stimulated amylase release and binding of [125I]CCK-8 in a concentration-dependent manner, with a half-maximal inhibition (ID50) at 1.30 +/- 0.12 nM, 1.33 +/- 0.21 nM, and 1.27 +/- 0.23 microM, respectively, for amylase release, and 0.40 +/- 0.06 nM, 0.68 +/- 0.08 nM, and 0.38 +/- 0.03 microM, respectively, for [125I]CCK-8 binding. The antagonism was competitive in nature because these three compounds caused a parallel rightward shift of the dose-response curve for CCK-8-stimulated amylase secretion, without altering the maximal increase. The antagonism produced by FK480 was specific for CCK in that the effects of other receptor secretagogues or agents bypassing receptors were not altered. FK480 not only prevented but also reversed CCK-8-stimulated amylase release. This compound caused a residual inhibition of the action of CCK-8. When acini were preincubated with 100 nM FK480 for 30 min, the subsequent dose-response curve to CCK-8 was shifted 10-fold toward higher concentration. Similar results were obtained with MK-329 but not with loxiglumide. FK480 appeared to be bound to the receptors on acinar cells in a slowly dissociating state.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Early adaptation of pancreas to a protein-enriched diet: role of cholecystokinin and gastrin-releasing peptide.

Feeding rats a diet containing high levels of protein (as casein) increases the secretion and biosynthesis of pancreatic serine proteases. Cholecystokinin (CCK) presumably plays a role in this process although other GI peptides such as the gastrin-releasing peptide (GRP) may be involved. In this article, we describe the kinetics of pancreatic adaptation to a diet containing 45% protein as soybean and fish. Then we report the effect of treatment with either a cholecystokinin-receptor antagonist (MK-329) or a gastrin-releasing peptide-receptor antagonist ([D-F5 Phe6, D-Ala11]-Bn(6-13)OMe, or BIM 26226) on pancreatic adaptation to this diet. Prior to experiments, adult male Fischer rats received a diet containing 22% protein for 1 week. In the first experiment, 48 rats were fed a diet containing 45% protein; they were killed after 0-7 days. In the second experiment, 53 rats were fed the 22- or 45%-protein diet and received three daily injections of either the vehicle alone, MK-329, or BIM 26226 for 7 days before they were killed. When the protein-rich diet was fed for 0-7 days, amylase, in vitro biosynthesis, and mRNA levels were gradually decreased while serine protease biosynthesis was increased, reflecting the general enhancement of chymotrypsinogen, trypsinogen, and elastase mRNA levels. For all these parameters, adaptation leveled off after a 5-day feeding. When the protein diets were fed for 7 days, MK-329 significantly inhibited the adaptation of trypsin (specific activity and mRNA) and elastase (mRNAs) to the 45%-protein diet. BIM 26226 had no effect on pancreatic adaptation to the protein-rich diet.(ABSTRACT TRUNCATED AT 250 WORDS)

Adaptation, Physiological↗

On the importance of cholecystokinin in neonatal pancreatic growth and secretory development in guinea pigs.

The role of cholecystokinin (CCK) in pancreatic growth and secretory development in fetal and neonatal guinea pigs was investigated by CCK receptor blockade. For the last 20 days of gestation, sows received the CCKA receptor antagonist, MK329 (25 nmol/kg/h) by continuous subcutaneous infusion. Alternatively, neonates from untreated females received an MK329 infusion for the first 4 or 15 days following birth. Pancreatic weight, DNA, RNA, protein, and amylase content per 100 g body weight and secretory responses to CCK, carbamylcholine, and phorbol ester were determined at birth and 4 days in animals receiving MK329 in utero and were measured at 4 and 15 days in neonatally infused animals. No significant changes in pancreatic growth parameters were seen in MK329-treated animals compared to controls, except for a small (14%; p < 0.02) decrease in weight after 15 days of neonatal exposure. Enhanced amylase secretion in response to CCK and carbamylcholine was seen in all groups receiving MK329 (all p values < 0.00001). Pancreatic growth and secretion were not inhibited by CCKA receptor blockade, which suggests that the effects of CCK mediated by the CCKA receptor are not essential for growth or development of the pancreatic amylase secretory response in the neonatal guinea pig.

Amylases↗

Role of CCK in the regulation of secretion and adaptation in the pig pancreas.

The effect of cholecystokinin (CCK) on the pancreas was investigated in the pig in two experiments. Fifteen pigs were fed a diet containing 17 or 48% protein with or without MK329 (4.5 mg per meal). MK329 enhanced the postprandial peak of plasma CCK during the first 30 min, but pancreas adaptation to high protein was not affected. Sixteen pigs were divided into two groups: 12 pigs were infused with CCK-8 + secretin for 1 h and four pigs received a standard meal. In both groups, pancreatic secretion tests were performed under infusion of the vehicle alone or with MK329. After CCK + secretin, MK329 (65-500 micrograms/kg/h) did not alter CCK plasma levels and reduced the early pancreatic protein response by about 30%. Enzyme outputs in pancreatic juice were modestly affected by MK329. After the meal, MK329 (500 micrograms/kg/h) doubled the postprandial peak of plasma CCK and lowered the pancreatic protein output by 35-40% for the first 30 min. We suggest that (a) pancreatic adaptation to high dietary protein is not mediated via CCK-A receptors and (b) the stimulation of pancreatic protein secretion by a meal or by exogenous CCK-8 is mediated partly by CCK-A receptors.

Adaptation, Physiological↗

Effect of chronic administration of hydrocortisone on the induction and evolution of acute pancreatitis induced by cerulein.

The effects of chronic administration of hydrocortisone (10 mg/kg/day) on the development and evolution of acute pancreatitis induced by supramaximal stimulation with cerulein were examined in the rat. In these circumstances the potentially therapeutic effect of L-364,718, a CCK-receptor antagonist, was assayed. Administration of hydrocortisone over 7 days did not increase the severity of edematous acute pancreatitis induced by cerulein, since the reduction in pancreatic secretion, the hyperamylasemia and the increase in the levels of hematocrit and fluid in the pancreatic tissue were similar in rats with acute pancreatitis treated and untreated with hydrocortisone previously. When hydrocortisone was administered chronically, before administration of supramaximal doses of cerulein, a spontaneous regression of acute pancreatitis occurred. However, when hydrocortisone administration was continued after inducing pancreatitis, pancreatic recovery was prevented, observing a significantly depressed acinar secretion and elevated values of hematocrit and tissue fluid (edema). L-364,718 administration proved to be detrimental in the evolution of edematous acute pancreatitis when the rats had been treated chronically with hydrocortisone because the blockade exerted on secretion prevented the draining of enzymes stored in excess by hydrocortisone administration.

Acute Disease↗

Modulation of the relationship between amylase and chymotrypsinogen secretion in atropine- and MK329-infused rats.

We demonstrated previously in ad libitum fed and fasted rats that chymotrypsinogen and amylase secretions were weakly or not at all correlated (1). However, the mechanisms controlling these correlations remain undetermined. We investigated the influences of cholinergic and cholecystokinin-related systems on the relationship between amylase and chymotrypsinogen in rats. Animals provided with pancreatic, biliary, duodenal, and jugular vein cannulas were kept in restraint cages under controlled temperature and humidity, with a regular 12-h light cycle, and divided into five groups. The first group of fed rats was constantly infused with 200 micrograms kg-1 h-1 atropine, the second with 0.5 mg kg-1 h-1 MK329, and the third with both. In the group in which both drugs were simultaneously infused, 500 micrograms kg-1 h-1 atropine was intraperitoneally administered, whereas MK329 was infused by intravenous cannula. Two groups consisted of fasted rats, of which one was also atropinized (100 micrograms kg-1 h-1). Three-day experiments were performed separately with fed rats, and 2-day experiments with fasted rats; atropine and/or MK329 infusion was constant over 48 h, in both fed and fasted rats. Atropine alone did not alter the correlation between enzymes even though the total protein and amylase outputs decreased, whereas the chymotrypsinogen output increased; MK329, slowly but significantly, increased the correlation between enzymes, whereas it decreased the outputs for all secretory parameters. When both antagonists were simultaneously infused in fed rats, correlation coefficients between amylase and chymotrypsinogen rapidly and markedly increased. In fasted rats, atropine infusion induced a tremendous decrease in total protein and amylase mean outputs but a significant increase in chymotrypsinogen output, without any significant change in the correlation between both enzymes. These results indicate that the nonparallel secretion of amylase and chymotrypsinogen is strongly modulated by a cholecystokinin-dependent mechanism and that this modulatory process is potentiated by the parasympathetic system.

Amylases↗

Modulation of pancreatic secretion of individual digestive enzymes in octreotide (SMS 201-995)-infused rats.

We demonstrated previously that pancreatic secretion of individual enzymes is specifically regulated (1). In the present study, we investigated and defined contributing roles of cholinergic and cholecystokinin tones to the specific regulation of rat pancreatic secretion of digestive enzymes. Animals were provided with pancreatic, biliary, duodenal, and jugular vein cannulas allowing separate drainage of bile and pure pancreatic juice, as well as intravenous infusions of MK329 or atropine sulfate along with SMS 201-995 (SMS). Rats kept in restraint cages were divided into four groups. The first rat group was infused with 5 micrograms kg-1 h-1 SMS alone; the second group was infused with a mixture of SMS and MK329 (5 micrograms kg-1 h-1:0.5 mg kg-1 h-1); the third group received a mixture of SMS and atropine (5 micrograms kg-1 h-1); and rats in the fourth group were administrated a mixture of SMS, MK329, and atropine (5 micrograms kg-1 h-1:0.5 mg kg-1:100 micrograms kg-1 h-1). Food, but not water, was denied rats 10 h before the experiment and throughout the 6-h experimental period. During the experiment, pancreatic juice was continuously collected every 15 min from each rat, and a 15-microliter aliquot of the pancreatic juice sample was removed for total protein, amylase, lipase, trypsinogen, chymotrypsinogen, and proelastase assays. Pancreatic juice previously collected from a donor rat was mixed with the fresh bile and the mixture was recirculated into the duodenum. The secretory patterns over the 6-h experimental period showed that during the first hour of drug infusion, MK329 alone did not alter the SMS-induced inhibitory process of total protein and amylase, trypsinogen, and proelastase secretion, and there was no marked change in total protein and enzyme outputs. Adding atropine to SMS did not alter the secretory pattern during the first hour of drug infusion, but a significantly greater decrease in protein and enzymes outputs occurred. Correlations between paired enzyme outputs greatly increased with SMS alone, but some changed when either MK329 or atropine was infused along with SMS. When all drugs were infused together, enzyme outputs became strongly correlated. These results suggest that under fasting conditions, somatostatin and atropine can neutralize basal pancreatic enzyme outputs, leading to a constitutive type of secretion characterized by parallel secretion of the digestive enzymes. Furthermore, it is proposed that under basal secretion conditions, acetylcholine and cholecystokinin reaching the pancreatic acinar cells may act to dissociate pancreatic secretion of individual digestive enzymes originating from heterogeneous secretory granules.

Amylases↗

Pancreatic hypersecretion in the jejunal-bypass rat.

We diverted bile and pancreatic juice from jejunal blind loops of different lengths in conscious rats to see if the pancreatic secretory response was dependent on the length of the jejunal blind loop. Short-term bile and pancreatic juice diversion from a short jejunal blind loop, representing only 8-10% of the total length of the small intestine, stimulated a significant increase in pancreatic exocrine secretion. Short-term bile and pancreatic juice diversion from jejunal blind loops of increasing length resulted in a progressive decrease in the pancreatic secretory response to diversion (i.e., there appears to be a length-dependent inhibition of the pancreatic secretory response to short-term bile and pancreatic juice diversion from the jejunum). Cholinergic receptor blockade with atropine eliminated this length-dependent inhibition of pancreatic exocrine secretion during short-term bile and pancreatic juice diversion. In contrast to what was observed with short-term bile and pancreatic juice diversion, there was a length-dependent increase in pancreatic secretion during long-term bile and pancreatic juice diversion. The jejunal-bypass rat model can facilitate the investigation of the intestinal mechanisms mediating feedback regulation of pancreatic exocrine secretion.

Animals↗

Effects of lectins on CCK-8-stimulated enzyme secretion and differentiation of the rat pancreatic cell line AR42J.

INTRODUCTION: The peptide hormone cholecystokinin (CCK) plays an important role in the gastrointestinal tract. The rat pancreatic CCK receptor is a highly glycosylated membrane receptor that is able to bind to plant lectins such as wheat germ agglutinin (WGA) and Ulex europaeus agglutinin (UEA-I). AIMS AND METHODOLOGY: We used both lectins to block this receptor for studying the pathophysiologic relevance of its oligosaccharide side chains. In the present study we investigated the influence of WGA and UEA-I on CCK-8-induced alpha-amylase secretion of the rat pancreatic tumor cell line AR42J, which expresses both CCK-A and CCK-B receptors. RESULTS: Under the influence of WGA (25 microg/mL), the alpha-amylase release was reduced by 25% after 30 minutes compared with the hormone-stimulated controls. UEA-I (25 microg/mL) caused a reduction of 20%. The simultaneous application of the lectins with CCK antagonists L 364,718 or L 365,260 led to a reduction of secretion, but the assignment to CCK-A or CCK-B receptors was not possible. CONCLUSION: In long-term studies, both lectins revealed no toxic or apoptosis-inducing effects. On the contrary, WGA showed an inhibitory effect on cell proliferation and led to improved differentiation of cells.

Animals↗

Pathophysiology of alcohol-induced pancreatic injury.

The evidence that ethanol abuse can lead to pancreatitis is overwhelming, but the mechanism(s) by which ethanol causes pancreatic injury and pancreatitis are not known. Many studies have focused on short-term effects of ethanol administration on exocrine pancreatic function, but the results reported have been variable and no clear picture has emerged. Attempts to induce pancreatitis by long-term ethanol administration have, for the most part, failed. We evaluated the effects of ethanol administration on pancreatic secretion of digestive enzymes. These studies indicate that administration of ethanol results in a transient increase in pancreatic amylase output and plasma cholecystokinin (CCK) levels. This phenomenon is mediated by a trypsin-sensitive CCK-releasing factor that is present within the duodenal lumen. These observations lead us to speculate that repeated CCK-mediated, ethanol-induced stimulation of pancreatic digestive enzyme secretion may play a role in the events that link ethanol abuse to the development of pancreatic injury.

Amylases↗

Inhibitory effect of the lectin wheat germ agglutinin on the binding of 125I-CCK-8s to the CCK-A and -B receptors of AR42J cells.

INTRODUCTION: Cholecystokinin (CCK) is a peptide hormone and plays a major role both in the regulation of pancreatic enzyme secretion and growth of the gastrointestinal tract. The pancreatic CCK receptors are highly glycosylated membrane proteins that are able to bind plant lectins such as wheat germ agglutinin (WGA) and Ulex europaeus agglutinin (UEA-I). AIM AND METHODOLOGY: In preceding papers, we demonstrated an inhibition of CCK-8s induced Ca2+ signaling and secretion of rat pancreatic acini and AR42J cells by the lectins WGA and UEA-I (Pancreas 2001;23:368-374). Here we studied the influence of WGA, UEA-I, and 22 other lectins on 125I-CCK-8s binding on AR42J cells. A binding assay was used with 125I-CCK-8s and dexamethasone-stimulated AR42J cells, bearing CCK-A as well as CCK-B receptors. RESULTS: WGA inhibits 125I-CCK-8s binding in a dose-dependent manner. The binding is affected at concentrations of WGA >1 microg/mL. The EC50 for inhibition is 8 microg/mL. At a concentration of 25 microg/mL, WGA inhibits the hormone binding 70%. This inhibition can be abolished by the specific sugars for WGA N,N',N"-triacetylchitotriose and N-acetylglucosamine, but not by N-acetylneuraminic acid. UEA-I diminished hormone binding but without significance, although UEA-I binds to the fucose residues of receptor glycosylations. All other 22 lectins tested here were ineffective. CONCLUSION: The blockage of CCK receptors by WGA explains the inhibition of CCK-8s induced Ca2+ signaling and the secretion of pancreatic acinar cells and AR42J cells. Although the inhibitory effect of WGA is in agreement with the findings of Santer et al, the results with UEA-I are in contrast to those of Santer et al (1990), who described a strong increase in 125I-CCK-8s binding to isolated crude rat pancreatic cell membranes in the presence of UEA-I.

Acetylglucosamine↗