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Role of peptide structure in lipid-peptide interactions: nuclear magnetic resonance study of the interaction of pentagastrin and [Arg4]pentagastrin with dimyristoylphosphatidylcholine.

Complexes formed between dimyristoylphosphatidylcholine (DMPC) and the peptide pentagastrin or [Arg4]pentagastrin were examined by 31P- and 2H-NMR. The cationic [Arg4]pentagastrin produces larger changes in the lipid NMR spectra than does the anionic pentagastrin. 31P-NMR spectra of DMPC with [Arg4]pentagastrin below the phase transition exhibits two components one of which is motionally restricted compared with the pure lipid. The exchange between these two lipid domains is slow on the millisecond time scale. The interactions between this peptide and phospholipid are diminished above the melting temperature of the complex. The 2H-NMR spectra of DMPC which had been labelled in a choline methylene group is also affected more by the [Arg4]pentagastrin than by pentagastrin. In the presence of [Arg4]pentagastrin, even above the lipid phase transition, an additional doublet with a smaller quadrupole splitting is observed. These results clearly demonstrate the importance of peptide charge in determining the effects of peptides on lipid bilayers.

Dimyristoylphosphatidylcholine↗

[Functional effects of pentagastrin and diagnostic possibilities of the pentagastrin test].

The effect on gastric secretion of a single pentagastrin dose (6 micrograms/kg) against submaximal doses of histamine, euphylline and limontar was studied in 100 healthy subjects aged 20-30. It is shown that pentagastrin test corresponds to maximal histamine test allowing rough measurement of lining cells mass. Normal secretory values and mass of the lining cells have been established as well as normal secretory response of the stomach to submaximal histamine (0.008 mg/kg) and euphylline (7 mg/kg) tests. Diagnostic significance of the pentagastrin test in peptic ulcer and chronic gastritis with secretory insufficiency has been supported. There were some cases of secretory response to euphylline and limontar in pentagastrin-refractory forms of gastric secretion due to mobilization of functional cellular component of the gastric glands. Pentagastrin inhibited initially enhanced gastric evacuation though motor function of the stomach showed no response.

Adult↗

Effect of met-enkephalin on acid secretion from gastric fistulas and Heidenhain pouches in dogs stimulated by pentagastrin, pentagastrin plus bethanechol, or a meal.

In dogs with denervated Heidenhain pouches and gastric cannulas the authors studied the action of met-enkephalin on acid secretion stimulated by a liquid meal, pentagastrin or pentagastrin + bethanechol. Serum gastrin levels were determined during the feeding experiments. Meal-stimulated and pentagastrin-stimulated acid secretion from the gastric fistula were inhibited by met-enkephalin. A rise in pentagastrin-induced acid secretion was observed in the denervated stomach. No significant changes were observed in the postprandial acid response from the pouch to the meal, nor from the main stomach or the pouch during stimulation with pentagastrin + bethanechol. Gastrin release was decreased by met-enkephalin during the first hour following feeding and increased during the second hour. Our data indicate that met-enkephalin can either inhibit or stimulate acid secretion in dogs. The inhibition occurs only in the innervated fundic mucosa, and might be explained by a decrease in gastrin release and by a decrease in vagal tone.

Animals↗

The effect of long-term postoperative pentagastrin infusion on the maximal acid responses to pentagastrin in patients subjected to antrectomy.

Six duodenal ulcer patients subjected to antrectomy were given a continuous i.v. infusion of pentagastrin in a dose just below ED50 during 1 week in the immediate postoperative course. The peak acid output following stimulation with pentagastrin (PAOG) was determined preoperatively and 1 and 5 weeks postoperatively. PAOG was determined preoperatively and 1 week after antrectomy in a control group of 25 duodenal ulcer patients, and preoperatively and 5 weeks after antrectomy in another control group of 19 duodenal ulcer patients. One week post-antrectomy the PAOG was significantly less reduced (23%) in the pentagastrin infusion group than in the control group (46%). The reductions of PAOG 5 weeks post-antrectomy were not significantly different in the pentagastrin infusion group and the control group. The results show that the dysfunction of the parietal cells, reflected in a decreased capacity to secrete acid following antrectomy, can be partly reversed by continuous administration of pentagastrin in the immediate postoperative course. The results are interpreted as suggesting that antral gastrin in man, besides its property to stimulate acid secretion, also has a trophic effect on the parietal cells in analogy with the postulated trophic effect of antral gastrin in rats.

Adult↗

Acid and pepsin secretion in chronic Chagas' disease patients in response to graded doses of pentagastrin and pentagastrin plus bethanecol.

Gastric acid and pepsin secretory responses to graded doses of pentagastrin were measured in 12 Chagas' disease patients and 18 control subjects, and in 7 Chagas' disease patients and 6 controls the study was repeated with an infusion of bethanecol. Calculated maximal outputs of acid and pepsin (Vmax) and responsiveness (D50) of the acid- and pepsin-secreting cells to pentagastrin were lower in the chagasics. Bethanecol had no significant effect on pentagastrin-stimulated gastric secretions in controls. The impairment of responsiveness of the gastric secretory cells in Chagas' disease patients was fully corrected by bethanecol.

Adolescent↗

Pentagastrin analogues containing alpha-aminooxy acids. VII. Catabolism in vivo and in vitro of a pentagastrin analogue containing N-terminal aminooxyacetyl residue.

In rat, BOC-NHO-1-14C-Ac-Trp-Met-Asp-Phe-NH2 (14C-I) is metabolised more slowly than BOC-1-14C-Gly-Trp-Met-Asp-Phe-NH2 (14C-II). Of the cytosol fractions of the rat organs the lung and pancreas exhibited a lower activity in the catabolism of BOC-NHOAc-Trp-Met-Asp-Phe-NH2 (I) than in that of BOC-Gly-Trp-Met-Asp-Phe-NH2 (II). In contrast, the cytosol fractions of the dog's lung, small intestine and pancreas hydrolysed I at a faster rate than they hydrolysed II.

Acetates↗

Fade and tachyphylaxis of gastric acid secretory response to pentagastrin in rat isolated gastric mucosa.

1. Gastric acid secretory responses to pentagastrin were characterized in the rat isolated gastric mucosa. In particular, the mechanisms underlying fade, declining response upon continued stimulation, and tachyphylaxis, progressively reduced responses upon repeated stimulation, were investigated. 2. Pentagastrin, 10(-9)-10(-7) M, resulted in concentration-related increases in acid secretion, with a mean maximum of 2.65 mumol cm-2 h-1 in response to pentagastrin, 10(-7) M. Higher concentrations of pentagastrin produced sub-maximal secretory rates; we define this as auto-inhibition. The responses to all concentrations of pentagastrin demonstrated fade. The rate of fade was correlated with the maximum acid secretory rate, declining at about 36% of the peak over the first 16 min. 3. The PO2, PCO2, [HCO3-], pH, [glucose], [lactate], [Na+] and [K+] did not decline during the fade of the acid secretory response to pentagastrin, 10(-7) M. Addition of a second aliquot of pentagastrin was not able to reverse fade, but these tissues were responsive to histamine. Replacement of the serosal solution, before addition of a second aliquot of pentagastrin, increased the acid response from 3% to 24% of the first response. 4. Serosal solution from donor tissues, allowed to respond to pentagastrin and then the acid secretion to fade, was able to stimulate secretion in fresh recipient tissues, although at lower rates. 5. Acid secretory responses to a second dose of pentagastrin were not significantly different, whether the tissues were previously unstimulated, or stimulated with pentagastrin washed out after attaining its peak secretory response (after 10-20 min). The second response was significantly reduced if the first response was allowed to fade with the pentagastrin in contact for 100 min; i.e. fade significantly influenced the extent of tachyphylaxis. 6. Proglumide, 10(-2) M, a gastrin receptor antagonist, and omeprazole, 10(-5) M, an inhibitor of the gastric (H+ + K+)-ATPase, both inhibited pentagastrin-stimulated acid secretion to similar extents. The second response to pentagastrin after pentagastrin alone, or pentagastrin plus omeprazole were both reduced compared to responses after no stimulation or omeprazole alone, respectively. After pentagastrin plus proglumide, the second response to pentagastrin was not lower than after proglumide alone. Proglumide, but not omeprazole, therefore, prevented pentagastrin tachyphylaxis. 7. It is concluded that gastrin fade and tachyphylaxis are related phenomena. Part of the fade may be due to release of an inhibitor(s). The major proportion of tachyphylaxis is a result of specific interaction of gastrin with its receptors.

Animals↗

Anxiogenic effects of the CCK(B) agonist pentagastrin in humans and dose-dependent increase in plasma C-peptide levels.

RATIONALE: Cholecystokinin type B (CCK(B)) receptor agonists such as pentagastrin or CCK-4 have panic-like anxiogenic effects in humans. It has also been shown that CCK-4 can stimulate insulin release and thus C-peptide release from pancreatic islet cells. Combined, these mechanisms may provide a basis for a bioassay. OBJECTIVES: Our aim was to study if a pentagastrin bolus injection evokes insulin release (as measured by C-peptide) and if the levels of C-peptide correlate to the anxiogenic effect of pentagastrin. METHODS: Pentagastrin was given in bolus IV injections to healthy volunteers at increasing doses (0.003, 0.012, 0.05 and 0.2 microg/kg). RESULTS: A significant increase in the plasma level of C-peptide was observed 2-4 min after the highest dose of pentagastrin. This increase was accompanied by a transient panic-like anxiety within 2 min following pentagastrin, measured using a state anxiety scale. Also, 0.05 microg/kg pentagastrin gave a minor but significant subjective discomfort at the same time interval. The basal plasma level of C-peptide preceding the pentagastrin injection showed a positive correlation to the intensity of the subsequent pentagastrin-induced panic-like anxiety as rated on the state anxiety scale. In addition, basal plasma levels of cortisol were positively correlated to the subsequent pentagastrin-induced increase in plasma C-peptide levels. CONCLUSIONS: Our results imply a possible relationship between insulin/C-peptide release and sensitivity to psychotropic activation by CCK(B) receptor stimulation. Furthermore, we postulate that both basal and pentagastrin-induced plasma levels of C-peptide may possess characteristic phenotype properties for anxiety related traits.

Adult↗

Effect of adenosine and histamine receptor stimulation on canine histamine release to pentagastrin.

The effects of adenosine and histamine 2 and histamine 3 receptor agonists on the regulation of gastric histamine release were examined in anesthetized mixed-breed dogs. All compounds were infused directly into the gastrosplenic artery to avoid perturbations in systemic hemodynamics, and the gastric histamine release was stimulated with pentagastrin. The histamine concentration in plasma samples was measured utilizing gas chromatography-negative-ion chemical ionization mass spectroscopy. Pentagastrin consistently stimulated gastric histamine release with the peak stimulation occurring at 5 min, while neither 30 nor 100 microM of adenosine altered the effect of pentagastrin on histamine release. In addition, theophylline at 20 microg/ml exhibited no effect on stimulated histamine release. The histamine 2 receptor agonist dimaprit, at 1 and 3 microM, attenuated pentagastrin-stimulated histamine release at the 5-min time period, but the difference was not sustained at later time points (histamine release from 1.4 +/- 0.6 to 92 +/- 18 ng/min at 5 min with pentagastrin alone; from 1.2 +/- 0.5 to 32 +/- 11 ng/min with pentagastrin plus 1 microM dimaprit, and from 2.0 +/- 1.1 to 32 +/- 9 ng/min with pentagastrin plus 3 microM dimaprit), while the H2 receptor antagonist cimetidine exhibited no effect on pentagastrin-stimulated histamine release. The histamine 3 receptor agonist (R)-alpha-methylhistamine attenuated the pentagastrin-stimulated histamine release at the 5- and 10-min time periods only at 1 microM without showing any effect at the higher (3 microM) concentration. Thioperamide, a H3 receptor antagonist, did not modify pentagastrin-stimulated histamine release. These data demonstrate that adenosine has no modulatory role on gastric histamine release, but histamine via H2 and H3 histamine receptors could modulate its own release but only to a modest degree as compared with the potent effect of the paracrine hormone somatostatin.

Adenosine↗

Comparison of cholecystokinin, pentagastrin, and duodenal oleate in gastroprotection in rats.

BACKGROUND: Cholecystokinin (CCK) and gastrin show a potent influence on gastric secretion and motility, but their role in mucosal integrity has been little studied. METHODS: In this study the effects of CCK-8, pentagastrin, and duodenal oleate on acute gastric lesions induced by 100% ethanol were studied in rats. RESULTS: CCK-8 was about 13 times more potent than pentagastrin in protecting the gastric mucosa against ethanol damage. CCK released by duodenal oleate also protected gastric mucosa against this damage. The protective effects of CCK-8 were almost completely abolished by the blockage of CCK-A receptors with loxiglumide, whereas the protective effect of pentagastrin was completely abolished by L-365,260. The protective effects of CCK, pentagastrin, or duodenal oleate against ethanol injury were accompanied by a marked increase in luminal content of somatostatin, suggesting that this peptide is implicated in this protection. The protective activity of CCK and pentagastrin against ethanol injury was accompanied by a significant increase in gastric blood flow. Inhibition of nitric oxide (NO) synthase with NG-nitro-L-arginine methyl ester abolished almost completely both gastric protection and hyperemia induced by CCK and pentagastrin. Addition of L-arginine, but not D-arginine, restored the protective and hyperemic effects of CCK and pentagastrin. Pretreatment with the sulfhydryl blocking agent N-ethylmaleimide also abolished the protective and hyperemic effects of CCK and pentagastrin. The hyperemia, but not the protection, afforded by CCK and pentagastrin was reduced after sensory nerve deactivation with capsaicin. CONCLUSIONS: Both exogenous and endogenous CCK and pentagastrin exert protective activity against ethanol damage, and this effect is mediated through separate receptors, NO, and sulfhydryl-sensitive pathway.

Animals↗

Effect of pentagastrin on parietal cell ultrastructure in glucagon-pretreated subjects.

The effect on parietal cells of glucagon given prior to pentagastrin is unknown. Fifteen healthy volunteers were studied during constant intravenous infusion of pentagastrin (2 micrograms/kg body weight/hr) and during pentagastrin infusion initiated 20 min after intravenous injection of 2 mg glucagon. Three types of studies were performed: Gastric mucosal biopsies were obtained with a Quinton instrument. Electron micrographs of 320 parietal cells were analyzed by the Loud quantitative method, and intragastric pH (pH probe), or gastric potential difference (PD) were recorded continuously. Pentagastrin infusion produced a significant increase in canalicular and simultaneous reduction of tubulovesicular membrane area of parietal cells. Glucagon pretreatment did not inhibit canalicular and tubulovesicular membrane reaction to pentagastrin; unexpectedly this reaction was significantly greater when compared to that after pentagastrin alone. Initiation of pentagastrin infusion in subjects pretreated with glucagon produced a greater absolute value drop in gastric PD (23 +/- 2 mV) and an earlier drop in intragastric pH (3 min) than in subjects receiving pentagastrin infusion alone (13 +/- 1 mV and 10 min, respectively). In conclusion, at the doses studied, glucagon pretreatment increases parietal cell canalicular reaction to pentagastrin.

Adult↗

Pentagastrin test for anxiety--psychophysiology and personality.

RATIONALE: CCK(B) receptor agonists such as pentagastrin or CCK(4) have anxiogenic panic-like effects in humans. Our previous findings are in agreement with a relationship between C-peptide plasma levels (as a measure of insulin release) and sensitivity to psychotropic activation by CCK(B) receptor stimulation. OBJECTIVES: Our present aim was to study the transient humoral, physiological and psychotropic effects of pentagastrin bolus injection and whether personality might affect the outcome. METHODS: Pentagastrin was given in bolus i.v. injections to healthy volunteers at increasing doses (0.003, 0.012, 0.05 and 0.2 microg/kg). Physiological parameters were recorded before and during each pentagastrin challenge and humoral variables described previously were included in the analyzes. Subjects rated the discomfort following pentagastrin administration on the state anxiety and discomfort scale (SADS). The Karolinska scale of personality (KSP), anxiety sensitivity index (ASI) and Hamilton anxiety scale (HAS) were used to characterize the subjects before the test. RESULTS: Galvanic skin response (GSR) and heart rate (HR) were significantly increased within 1 min following 0.2 microg/kg pentagastrin, the GSR increase correlating negatively to the C-peptide increase and positively to ratings on SADS. Even the lower dose (0.05 microg/kg pentagastrin) induced a significant increase in GSR. ASI measures correlated weakly to the increase in ratings on SADS following 0.05 microg/kg and 0.2 microg/kg pentagastrin. CONCLUSIONS: We found correlations between psychophysiology, humoral response and subjective ratings following pentagastrin administration. CCK(B) receptor stimulation might reveal phenotype properties predictive of anxiety-related traits, measurable through serum levels of C-peptide. Furthermore, our results support the predictive value of ASI for fearfulness.

Adult↗

Additive interaction of pentagastrin and secretin on pancreatic growth in rats.

The role of gastrin in regulating pancreatic growth and its interaction with secretin is unclear. We determined the dose-response relationships of pentagastrin for gastric and pancreatic secretion. Doses that stimulated gastric and pancreatic secretion were given every 8 h for 3 or 5 days; trophic responses of pancreas, oxyntic gland area, duodenum, and colon were compared. Interaction of secretin and pentagastrin on pancreatic growth was measured after 5 days of treatment. Pentagastrin was 250 times less potent for stimulation of pancreatic versus gastric secretion. A submaximal dose of pentagastrin for stimulating pancreatic enzyme secretion doubled pancreatic deoxyribonucleic acid synthesis after 3 days. Pentagastrin caused dose-related increases in pancreatic weight after 3 and 5 days. Pentagastrin had no effect on weight, deoxyribonucleic acid synthesis, or deoxyribonucleic acid content of oxyntic gland area, duodenum, or colon. Secretin had additive effects on pentagastrin-induced pancreatic growth. The pancreas appears to be more sensitive than other organs to trophic effects of pentagastrin. Secretin has additive rather than inhibitory effects on pentagastrin-induced pancreatic growth.

Animals↗