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Biomedical subjects

J Calam

Publications and source records attributed to J Calam.

At least 37 records · Page 2Linked to original sources

Gastric output of pancreatic secretory trypsin inhibitor is increased by misoprostol.

Pancreatic secretory trypsin inhibitor (PSTI) is a potent protease inhibitor that also has growth promoting activity. It has recently been identified in the foveolar cells of the stomach, which secrete mucus. We examined the effects of the prostaglandin E1 analogue misoprostol on gastric PSTI output. Seven normal volunteers took part. An initial period of gastric aspiration was followed by four 40 minute periods of gastric perfusion at 5 ml/minute of: 0.14 mol/l saline, 0.17 mmol/l bicarbonate, bicarbonate with misoprostol 400 micrograms, and then bicarbonate again. All perfusates contained polyethylene glycol 4000 as a marker. Misoprostol increased median gastric secretion of PSTI from 11 to 33 micrograms/hour (p less than 0.05), producing concentrations in gastric juice six times higher than those found in jejunal juice and about 1/30 of the values seen in pancreatic juice. Median mucus secretion increased to a lesser extent from 29 to 38 mg/hour during misoprostol. There was no change in intragastric concentrations of protein or of epidermal growth factor during infusion of misoprostol. Infusion of pentagastrin (6 micrograms/kg/hour) had no effect on gastric secretion of mucus, PSTI, or protein. Human gastric mucus was degraded on incubation with trypsin in vitro and this was prevented by the addition of PSTI. These results suggest that gastric PSTI may protect the gastric mucus layer against refluxed pancreatic proteases. Increased output of PSTI during microprostol may contribute to the protective effect of this drug.

Adult

'Low sodium' diuresis and ileal loss in patients with ileostomies: effect of desmopressin.

Patients with ileostomies show an early diuresis when sodium restricted; this, together with an obligatory ileal sodium loss, predisposes them to severe salt and water depletion. The role of arginine vasopressin in this circumstance and whether it is natriuretic, or antinatriuretic, is unclear. There is also controversy over its likely effect on small bowel fluid reabsorption. We have examined the effect of the non-pressor (V2) synthetic vasopressin analogue 1-deamino-8-D-arginine (desmopressin) on renal and ileal sodium and water excretion in ileostomy patients during acute adaptation to a low sodium diet. Patients were studied on two separate occasions (nonrandomised) with and without the administration of desmopressin (0.75 micrograms intramuscular, three times a day). In eight subjects without desmopressin there was pronounced diuresis on the first low sodium day, associated with a fall in renal sodium excretion and no change in ileal output or composition. In five (of the original) subjects with desmopressin there was pronounced antidiuresis, no change in renal sodium excretion, and no change in ileal output or composition. In both studies rises in plasma renin activity and salivary aldosterone concentration lagged behind the early decline in renal sodium excretion. We have confirmed the phenomenon of 'low sodium' diuresis after sodium restriction in ileostomy patients and shown that it can be prevented by desmopressin. Desmopressin has no direct or indirect effect on renal sodium excretion or ileal fluid and electrolyte loss in humans.

Aged

Inhibitory effect of a cholecystokinin antagonist on the proliferative response of the pancreas to pancreatobiliary diversion.

Since pancreatobiliary diversion probably stimulates pancreatic growth by increasing cholecystokinin secretion, the effect of the cholecystokinin antagonist CR-1409 on this adaptive response was tested. Male Wistar rats (n = 108) weighing 220-250g were randomised to receive either pancreatobiliary diversion (n = 60) or sham diversion (n = 48) and thereafter to receive either saline injections or CR-1409 (10 mg/kg/day, subcutaneously). Rats were killed at four, seven, and 14 days postoperatively, when blood was obtained for cholecystokinin assay and the pancreas was assessed for proliferative activity by three techniques: nucleic acid and protein assay, bromodeoxyuridine labelling, and metaphase arrest after vincristine administration (1 mg/kg, intraperitoneally). Pancreatobiliary diversion increased plasma cholecystokinin concentrations by 91% at seven days and 137% at 14 days, irrespective of CR-1409 treatment. Total pancreatic RNA content was doubled by pancreatobiliary diversion at four days (2.15 v 1.07 mg/100 g body weight: p less than 0.001) and at seven days (3.43 v 1.76 mg/100 g: p less than 0.001), and trebled at 14 days (4.27 v 1.32 mg/100 g: p less than 0.001). Pancreatobiliary diversion increased bromodeoxyuridine labelling index from 1.1 to 3.7% at seven days and the cell birth rate from 0.09 to 0.06%. CR-1409 completely abolished this proliferative response and partly prevented the rise in RNA. The results confirm pancreatic hypertrophy and increased acinar cell proliferation after pancreatobiliary diversion. CR-1409 prevents this adaptive growth, probably by blocking cholecystokinin receptors. Bromodeoxyuridine labelling and the metaphase arrest technique may be used to assess pancreatic cell kinetics.

Adaptation, Physiological

Dose-dependent effects of fentanyl on indomethacin-induced gastric damage.

Whilst developing a rat model for studies of gastric protection, we noticed that the anaesthetic agent 'Hypnorm', containing the opiate fentanyl 0.315 mg/ml and the butyrophenone fluanisone 10 mg/ml, was itself protective against indomethacin-induced damage: unrestrained animals given indomethacin (20 mg/kg) subcutaneously had an ulcer score of 9 +/- 1 mm2, compared with 1 +/- 1 mm2 in animals pre-treated with Hypnorm (0.8 ml/kg) and then given indomethacin (p less than 0.01). Further investigation showed this effect to be due to fentanyl-inhibiting gastric acid secretion: doses of fentanyl (90 and 180 micrograms/kg) which decreased indomethacin-induced damage also caused a rise in intragastric pH from 2.7 +/- 0.6 in controls to 5.1 +/- 0.8 and 5.0 +/- 0.8, respectively. However, the response of fentanyl varied depending on the dose given: fentanyl, 3.6 micrograms/kg did not affect indomethacin-induced damage, 8 +/- 2 vs. 9 +/- 1 mm2; fentanyl, 18 micrograms/kg potentiated damage, 15 +/- 4 mm2 (p less than 0.05), whereas fentanyl, 90 micrograms/kg and 180 micrograms/kg decreased damage, 2 +/- 1 mm2 and 0.1 +/- 0.1 mm2, respectively (p less than 0.01). Neither the butyrophenone haloperidol (8.3 mg/kg) nor the alpha-adrenergic receptor antagonist phenoxybenzamine (3 mg/kg) protected against indomethacin-induced damage. We conclude that fentanyl affects intragastric pH and can both potentiate and protect against indomethacin-induced damage. Furthermore, the potentiation of gastric damage by fentanyl occurred at doses similar to those used for human anesthesia, so clinical studies are suggested.

Animals

Interactions of pancreatic secretory trypsin inhibitor in small intestinal juice: its hydrolysis and protection by intraluminal factors.

It has been proposed that modulation of cholecystokinin (CCK) release by proteinases, proteinase inhibitors and protein is mediated by a pancreatic secretory trypsin inhibitor (PSTI), also called monitor peptide, in the rat. When human [125I]-PSTI was incubated with fasting small bowel juice or activated pancreatic juice greater than 88% of tracer eluted from gel chromatography in the characteristic position of hydrolysed PSTI. However, when the small bowel juice had been pre-incubated with soybean trypsin inhibitor 3 g/l, casein 5 g/l or lactalbumin 30 g/l, the hydrolysis of PSTI diminished so that 95%, 32%, and 33% respectively, now eluted in the characteristic position of free (i.e. intact and not bound to an enzyme) PSTI. When [125I]-PSTI was incubated with pure trypsin, chymotrypsin, elastase or enterokinase greater than 95% of tracer eluted in the position of PSTI-enzyme complex. Incubation of PSTI with trypsin plus one other enzyme was required to produce hydrolysis. The degree of protection of PSTI from hydrolysis in duodenal juice produced by these substances correlates with their affects on CCK release. Our findings support the hypothesis that PSTIs mediate the modulation of CCK release by intraluminal proteinases, proteinase inhibitors and proteins.

Body Fluids

Preliminary report: role of peptide YY in defence against diarrhoea.

To investigate whether peptide YY (PYY) has a role in minimising fluid loss during diarrhoea, its effect on hypersecretion induced by vasoactive intestinal peptide (VIP) was studied in seven subjects with ileostomies. An isotonic electrolyte solution containing polyethylene glycol 4000 was infused directly into the duodenum and the effluent was collected for 40 min (baseline), then VIP was infused intravenously at 5 pmol.kg-1.min-1 for 500 min. PYY was infused intravenously at low doses (0.4 and 0.2 pmol.kg-1.min-1) for 100 min each during the continuous VIP infusion. Small-intestinal secretion was assessed by effluent weight and by polyethylene glycol dilution, which gave similar results. Plateau ileal output was 501 (SEM 33) ml/h during VIP infusion. PYY caused significant falls in secretion--to 404 (48) ml/h for the lower dose and to 323 (75) ml/h for the higher. It also prolonged small-bowel transit. These findings suggest that PYY is a natural inhibitor of diarrhoea and that its therapeutic potential merits investigation.

Diarrhea

Do normal plasma neurotensin concentrations increase ileal output?

Infusions of neurotensin increase ileal secretion in experimental animals, and the volume of ileal effluent in patients with ileostomies. The aim of the present study was to determine whether normal postprandial plasma concentrations of neurotensin increase the volume of fluid leaving the ileum. Basal and peak postprandial plasma neurotensin concentrations were 23 (17-36) and 39 (25-43) pmol/l (median and range) respectively in five subjects with ileostomies and 15 (3-27) and 32 (15-82) pmol/l respectively in nine normal subjects. Infusion of neurotensin for 30 min at a rate of 6.3 pmol/kg/min into six patients with ileostomies increased ileostomy output about 10-fold, and produced a significant decrease in the concentration of solid material, but plasma neurotensin concentrations rose to 237 (82-422) pmol/l during infusion at this rate. Infusion of neurotensin at 2.3 pmol/kg/min, producing plasma levels of 60 (16-108), had no significant effect the amount or nature of ileostomy effluent. We conclude that normal postprandial plasma concentrations of neurotensin are unlikely to influence the volume of fluid leaving the ileum.

Adult

Effects of preprovasoactive intestinal polypeptide-derived peptides on ileal output.

Tumors associated with the Verner Morrison syndrome secrete peptide histidine methionine, its C-terminally extended variant peptide histidine valine, and vasoactive intestinal peptide. There is evidence that vasoactive intestinal peptide mediates diarrhea, but recent evidence suggested that peptide histidine methionine and peptide histidine valine may be at least as important. Infusion of vasoactive intestinal peptide, peptide histidine methionine, and peptide histidine valine into patients with ileostomies produced mean plateau plasma levels of 163, 1301, and 2106 pM, respectively, which are within the range seen in the Verner Morrison syndrome. Vasoactive intestinal peptide produced an integrated ileal output of 174 (53) g (mean [SEM]), compared with only 20 (7) g with peptide histidine methionine and 10 (3) g with peptide histidine valine. These results suggest that vasoactive intestinal peptide is substantially more important than peptide histidine methionine or peptide histidine valine in mediating diarrhea in the Verner Morrison syndrome.

Adult

Pancreatic secretory trypsin inhibitor stimulates the growth of rat pancreatic carcinoma cells.

Pancreatic secretory trypsin inhibitor was examined for growth-promoting activity on five cell lines using standard cell culture techniques. One cell line, AR4-2J, derived from a rat pancreatic acinar cell carcinoma, responded with significantly increased incorporation of [3H]thymidine and colony formation. Pancreatic secretory trypsin inhibitor stimulated the incorporation of [3H]thymidine in liquid culture; the maximal increase was 61 +/- 10% above control (P less than 0.001) and was seen at a concentration of 10(-9) mol/L. Using a soft agarose clonogenic assay, pancreatic secretory trypsin inhibitor also consistently stimulated (3 assays) colony formation: the peak activity occurred at a concentration of 10(-10) mol/L which caused a 150 +/- 55% (mean +/- SE, P less than 0.05) increase above control. Aprotinin had no effect on the growth of AR4-2J cells and pancreatic secretory trypsin inhibitor did not bind to the epidermal growth factor receptor. AR4-2J cells were shown to produce pancreatic secretory trypsin inhibitor. The study raises the possibility that pancreatic secretory trypsin inhibitor provides autocrine stimulation of tumor cell growth.

Animals

Pancreatic secretory trypsin inhibitor in gastrointestinal mucosa and gastric juice.

We studied the distribution of pancreatic secretory trypsin inhibitor (PSTI) in the epithelia of the gastrointestinal tract and determined whether PSTI is secreted into gastric juice. PSTI was measured by a specific radioimmunoassay in biopsy specimens taken from the upper (n = 8) and lower (n = 7) gastrointestinal tract of patients with normal endoscopies. PSTI was present in the stomach, small intestine, and colon. Concentrations (micrograms/g protein) were highest in the stomach, and significantly higher in the antrum (1240, 670-1700, median and range) than in the gastric body (370, 350-570) (p less than 0.01). Concentrations were similar in the duodenum (180, 80-210) and colon (160, 130-360). PSTI determined by immunohistochemistry was present in mucus secreting gastric foveolar cells, duodenal Paneth cells, and colonic non mucus cells. PSTI was present in gastric juice. The median (range) concentration of PSTI in basal gastric juice from 13 patients with duodenal ulcers was 9 (3-21) micrograms/l and did not change during stimulation with pentagastrin. The rate of secretion, however, did increase significantly (p less than 0.05) from 1430 (180-2810) ng/h to 4500 (1250-12,770) ng/h during pentagastrin stimulation. PSTI was labile in acid pepsin but stable in the neutral conditions present in the mucus layer. The presence of pancreatic secretory trypsin inhibitor throughout the gut and its secretion into the lumen suggests a hitherto unrecognised mechanism protecting gastrointestinal epithelia against luminal proteases.

Adult

Gastric enterochromaffin-like (ECL) cells in hypergastrinaemic duodenal ulcer disease.

Patients with hypergastrinaemic duodenal ulcer disease were studied to determine whether chronic moderate hypergastrinaemia produces hyperplasia of gastric enterochromaffin-like cells in man. Eight patients had peak postprandial plasma gastrin concentrations greater than 200 pmol/l, which is the 92nd percentile for patients with duodenal ulcer disease in this laboratory. The control group was eight patients with duodenal ulcers whose peak postprandial gastrin concentrations were less than 200 pmol/l. Basal and peak postprandial plasma gastrin concentrations were 107 (37) and 306 (66) pmol/l (mean (SEM] respectively in the hypergastrinaemic patients compared with 26 (4) and 137 (14) pmol/l respectively in the controls. There was no significant difference in the density of gastrin enterochromaffin-like cells between the two groups. The number of enterochromaffin-like cells per high power field was 53 (8) in the hypergastrinaemic patients compared with 50 (8) in the controls. We conclude that chronic moderate hypergastrinaemia does not produce hyperplasia of enterochromaffin-like cells in man. Our hypergastrinaemic group had plasma gastrin concentrations similar to, or greater than those reported during treatment with drugs such as omeprazole and histamine H2 receptor blockers.

Adult

Bismuth induced encephalopathy caused by tri potassium dicitrato bismuthate in a patient with chronic renal failure.

A 68 year old man with a creatinine clearance rate of only 15 ml/min took twice the recommended dose of tripotassium dicitrato bismuthate (TDB) as DeNol liquid; 10 ml qds; a total of 864 mg bismuth daily for two months. Whole blood bismuth concentrations rose to 880 micrograms/l and he developed global cerebral dysfunction with hallucinations, ataxia, and an abnormal EEG. Renal clearance of bismuth rose from 0.24 to 2.4 ml/min when the heavy metal chelator 2-3 dimercapto-1 propane sulphonic acid (DMPS) was given by mouth. Bismuth was measured by a novel method involving inductively coupled plasma source mass spectrometry. Fifty days after stopping TDB, whole blood bismuth concentrations fell to 46 micrograms/l and the patient's EEG returned to normal. His mental function also recovered completely. The case serves as a timely reminder that TDB should not be administered to patients with renal disorders, as stated in the data sheet.

Aged

Saturation of fat and cholecystokinin release: implications for pancreatic carcinogenesis.

In a study to determine the effect of saturation of fats on their ability to stimulate cholecystokinin (CCK) release six normal volunteers ate five test meals containing different fats with intervals of 1 week. Plasma CCK levels were measured by a specific radioimmunoassay and the gallbladder volume was calculated from ultrasound measurements. The sodium salt of the monounsaturated fatty acid oleic acid (3.5 g) produced a significantly greater integrated CCK response than that of the saturated fatty acid stearic acid (mean [SEM] 103 [41] vs 8[41] pmol.l-1.min). The gallbladder contracted to 42 (3)% of its initial volume after oleate but remained at 89 (8)% of its initial volume after stearate. Integrated CCK responses to dietary triglycerides (30 g) also differed significantly according to the degree of saturation--277 (58) pmol.l-1.min after corn oil (predominantly diunsaturated), 143 (14) pmol.l-1.min after olive oil (predominantly monounsaturated), and 44 (12) pmol.l-1.min after suet (predominantly saturated). The finding that unsaturated fats are stronger stimulants of CCK release than saturated fats may explain the promotion of pancreatic carcinogenesis in rats by unsaturated but not saturated fats and may support the role of CCK in this effect.

Adult