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M Cieszkowski

Publications and source records attributed to M Cieszkowski.

38 records · Page 3Linked to original sources

Comparison of enkephalin and atropine in the inhibition of vagally stimulated gastric and pancreatic secretion and gastrin and pancreatic polypeptide release in dogs.

Enkephalins have been detected in vagal nerves and myenteric plexus neurons but no study has been performed to determine their action on vagally stimulated gastric and pancreatic secretion. In this study we infused IV methionine-enkephalin (Met-enk) alone, naloxone (a pure opiate antagonist) alone, or their combination before, during and after vagal stimulation in 4 dogs with esophageal, gastric and pancreatic fistulas. For the comparison, atropine was given before, during and after vagal stimulation in the same animals. Vagal stimulation was obtained by 15 min sham-feeding, which produced an increase in gastric H+ output to a peak of about 75% of the maximal response to pentagastrin and pancreatic protein secretion amounting to about 71% of the maximal response to caerulein. It was accompanied by a significant rise in serum gastrin and pancreatic polypeptide (PP) levels. Met-enk inhibited significantly both gastric H+ and pancreatic protein secretion and reduced plasma PP but not gastrin levels. Similar effects were obtained after the administration of atropine. The effects of Met-enk were partly reversed by the addition of naloxone. We conclude that (1) enkephalin suppresses vagally stimulated gastric and pancreatic secretion and plasma PP release; (2) these secretory effects of enkephalin seem to be mediated by opiate receptors and could be explained by its inhibitory action on acetylcholine release ("anticholinergic" action) in the stomach and the pancreas.

Animals↗

Mechanisms of the inhibitory action of prostaglandins on meal-induced gastric secretion.

In dogs with gastric fistula and Heidenhain pouch (HP), 15(S)-15-methyl prostaglandin E2 methyl ester (PG-S) infused intravenously in graded doses (0.5--2.0 microgram/kg/h) inhibited dose-dependently, meal-induced acid secretion both from the vagally innervated main stomach and from the HP. This inhibition was associated with a marked reduction in mucosal blood flow but without significant change in the ratio of aminopyrine concentration in the gastric juice and blood plasma, indicating that the reduction in gastric microcirculation was probably secondary to the inhibition of gastric secretion. In dogs with special cannulae that allowed complete separation of the stomach and the intestine, PG-S caused stronger inhibition of gastric acid and serum gastrin responses to gastric and intestinal meals after application directly to the gastric mucosa, than following duodenal administration. PG-S applied topically to the HP mucosa also suppressed direct chemical stimulation of the HP by L-histidine meal. We conclude that PG-S exerts its inhibitory action on gastric secretion both by local contact with the mucosa via suppression on gastrin release from the antral G-cells and by direct inhibition of the secretory activity of the oxyntic glands.

Animal Feed↗