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Biomedical subjects

M I Grossman

Publications and source records attributed to M I Grossman.

At least 19 recordsLinked to original sources

Interaction between stimulants of exocrine pancreatic secretion in dogs.

We measured bicarbonate and protein secretory responses to graded doses of intravenous caerulein and bethanechol and intraduodenal L-phenylalanine alone or with background secretin; graded doses of secretin alone or with background caerulein or L-phenylalanine; and background secretin plus graded doses of caerulein or L-phenylalanine plus background atropine sulfate. Potentiation (more-than-additive response) occurred for bicarbonate secretion between secretin and caerulein, between secretin and L-phenylalanine, but not between secretin and bethanechol. The only potentiating interaction for protein secretion was between secretin and low doses of caerulein. Atropine abolished the potentiated bicarbonate response to secretin plus L-phenylalanine but had no effect on the response to secretin plus caerulein. Potentiation between secretin and cholinergic mechanisms and cholecystokinin for pancreatic bicarbonate secretion may be an important regulatory mechanism, while potentiation of protein secretion with these stimulants does not appear to be important in dogs. A cholinergic mechanism mediates much of the bicarbonate potentiation between secretin and intestinal L-phenylalanine.

Animals

Pancreatic polypeptide inhibits exocrine pancreatic responses to six stimulants.

We determined the effects of three different doses of pancreatic polypeptide (50, 200, and 800 pmol X kg-1 X h-1) on pancreatic responses to graded doses of intravenous secretin, caerulein, and bethanechol and intraduodenal HCl, L-phenylalanine, and sodium oleate in dogs. The two lowest doses of pancreatic polypeptide (PP), which produced blood levels lower than measured after a meal, significantly inhibited the pancreatic responses to secretin, caerulein, HCl, and L-phenylalanine; the highest dose of PP inhibited the responses to bethanechol and sodium oleate. There was no difference in the degree of inhibition of bicarbonate or protein secretion caused by pancreatic polypeptide. With secretin, caerulein, bethanechol, and sodium oleate, inhibition was most pronounced against lower doses and was surmountable with higher doses of these stimulants. Inhibition of responses to HCl and L-phenylalanine was observed at all doses of these stimulants. Inhibition of the exocrine pancreatic secretory responses to six different stimulants by PP suggests that this hormone may play an important role in regulation of postprandial pancreatic secretion.

Animals

Analysis of hydrogen ion concentration in the gastric gel mucus layer.

Secretion of HCO-3 by the gastric epithelium has been thought to lower the concentration of H+ in the gastric mucus layer. This has been analyzed mathematically to include the HCO-3-H+ reaction, bulk water flow, diffusion, ion-ion electrical interaction, and ion-fixed charge interaction. The reaction-electrodiffusion problem is solved by use of singular perturbation theory. We show that there is a very thin layer for the reaction, equivalent to a sink of H+. In this layer there is negligible HCO-3 accumulation. A steady-state model is satisfactory if gastric mixing motions are more frequent than every 3 min. H+ concentration at the epithelium decreases with increased bicarbonate secretion, increased volume flow associated with bicarbonate secretion, increased thickness of the mucus layer, increased fixed negative charge of the mucus, and decreased cation flux into the lumen. The resultant lowering of H+ concentration may be as small as 5 mM but is probably considerably larger. Determining the actual drop will depend on more precise experimental measurements of the parameters of the problem.

Electrophysiology

Pancreatic polypeptide release: role of stimulants of exocrine pancreatic secretion in dogs.

There are apparent similarities in the mechanisms of the intestinal phase of exocrine and pancreatic polypeptide (PP) secretion by the pancreas. To characterize this relationship, we measured incremental responses of protein, bicarbonate, and PP to graded doses of intravenous secretin, caerulein, CCK8, CCK33, bethanechol, and intraduodenally perfused HCl, sodium oleate, and L-phenylalanine in dogs with gastric and pancreatic fistulas and compared them with average postprandial values. Secretin did not release PP at any dose studied, whereas intraduodenal HCl increased PP levels slightly at a load maximal for pancreatic secretion. Caerulein produced dose-related increases in PP secretion (maximal, 106% of meal response) but CCK8 and CCK33 had much less effect at doses equivalent for protein secretion. Bethanechol was a weak stimulant for PP only at the largest tolerable dose. L-Phenylalanine and sodium oleate markedly increased protein secretion, but only oleate clearly stimulated PP. Our results suggest a greater quantitative importance of the intestinal phase for exocrine than endocrine (PP) pancreatic secretion.

Animals

Effects of graded amounts of intragastric calcium on acid secretion, gastrin release, and gastric emptying in normal and duodenal ulcer subjects.

We studied effects of graded concentrations of intragastric calcium on acid secretion, residual gastric volume, and serum gastrin and calcium levels. Intragastric titration was performed with solutions of isotonic mannitol or mannitol plus 2.5, 6, 16, 39, and 97 mM CaCl(2) in 10 normal and eight duodenal ulcer subjects. Acid secretion was significantly increased above control values by the two highest CaCl2 concentrations in normal subjects and by the three highest CaCl2 concentrations in ulcer subjects. Highest observed acid output to any concentration of CaCl2 was 55% of peak acid output to pentagastrin in normal subjects and 75% in ulcer subjects. Intragastric calcium also released gastrin; correlation between acid secretion and circulating gastrin was weak (r = 0.43, P less than 0.05). Serum calcium was slightly increased but did not correlate with acid secretion. Residual intragastric volume after both control and CaCl2 solutions was much less in ulcer than in normal subjects; calcium did not alter residual volumes.

Adult

Role of bacteria in gastric ulceration produced by indomethacin in the rat: cytoprotective action of antibiotics.

Indomethacin produces mucosal lesions in both the gastric antrum and small intestine in rats refed for 1 h after a 24-h fast. This study was designed to determine the role of bacteria in the formation of the antral lesions. A mixture of antibiotics (bacitracin, neomycin, and polymyxin B) prevented the antral lesions as well as intestinal lesions. The antibiotics also decreased the gastric corpus lesions induced by indomethacin in the fasted rat. Under a germ-free condition, indomethacin did not produce severe lesions in the small intestine of the refed rat but provoked many lesions in the antrum of the refed rat and in the corpus of the fasted rat. Corpus lesions induced by indomethacin in the fasted rat were decreased markedly by neomycin and slightly by polymyxin B, but not by bacitracin. Corpus lesions produced by an absolute ethanol, however, were prevented by each of the antibiotics. The inhibitory effect of neomycin on the corpus lesions was not blocked by pretreatment with indomethacin. In pylorus-ligated rats, neomycin did not decrease gastric acid secretion. The concentration of nonprotein sulfhydryls in the gastric mucosa was not altered by the treatment with neomycin. The antibiotic solutions were hypotonic. It is concluded that (a) bacteria are not important in the formation of antral and corpus lesions induced by indomethacin, and (b) antibiotics prevent gastric ulceration not by its antibacterial action, but by a "cytoprotective" action. The mechanism is unknown, but it may be different from that of antisecretory drugs, prostaglandins, mild irritants, hypertonic solutions, and sulfhydryl compounds.

Animals

Effect of increased gastric mucosal histamine on alcohol-induced gastric damage in rats.

The aim of this study was to determine whether the cytoprotective effect of prostaglandin might be mediated, at least in part, by inhibition of intramucosal histamine release. Intragastric instillation of increasing concentrations of ethanol in 150 mM HCl resulted in increasing lesion scores and increasing histamine release into the gastric content. Pretreatment with 16,16-dimethyl prostaglandin E2 significantly reduced both lesion scores and gastric histamine output. The intragastric instillation of histamine with tracer [14C]histamine either with or after 50% ethanol resulted in significant gastric tissue uptake of histamine and increased acid secretion. However this had no effect on lesion score, protein output or the protective effect of prostaglandin pretreatment. We conclude that the cytoprotective effect of 16,16-dimethyl prostaglandin E2 in the rat is independent of intramucosal histamine release.

Animals

Rapid gastric emptying in duodenal ulcer patients.

Isosmotic liquid peptone meals adjusted to pH 7, 3, and 1.5 were instilled on separate days into the stomachs of 8 duodenal ulcer patients and 7 healthy controls. Using a marker-dilution method, duodenal acid load (DAL) was measured as the amount of unbuffered hydrogen ions delivered to the duodenum per unit time. Gastric emptying was measured as the total volume of gastric contents, including meal plus gastric secretion, passing through the pylorus per unit time (VPP). Mean pentagastrin-stimulated acid output was significantly different between the two groups. However, after all three tests meals, mean DAL was significantly greater in duodenal ulcer than in normal subjects in both hours of the test, and VPP was significantly greater in ulcer than in normal subjects in the first 40 min. In both groups, following peptone meals of pH 7 and 3, the volume of gastric contents delivered through the pylorus decreased as the amount of free hydrogen ions entering the duodenum increased, but a given load of acid was less effective in slowing emptying duodenal ulcer patients than in controls. These studies indicate that duodenal ulcer patients empty liquid meals more rapidly than do normal subjects, independent of the initial pH of the meals, and that, in addition, acid inhibition of gastric emptying is defective in duodenal ulcer.

Adult

Endogenous gastric mucosal prostaglandins: their role in mucosal integrity.

These studies were designed to determine the role of endogenous gastric mucosal prostaglandins (PG) in maintaining mucosal integrity. Vagally denervated, separated pouches of gastric fundic mucosa in unanesthetized dogs were irrigated with either acetylsalicylic acid (ASA) or salicylic acid (SA) (0, 2.5, 5.0, 10.0, 20.0, and 40.0 mM) in 150 mM HCl. Transmucosal potential difference (PD) and net H+, Na+, and K+ flux were measured. Mucosal ex vivo generation of 6-oxo-PGF1 alpha, PGE2, and PGF2 alpha was measured by radioimmunoassay in mucosal biopsies taken after exposure to each agent. No difference in PD or net H+, Na+, or K+ flux was observed between pouch irrigation with ASA or SA at 2.5-20.0 mM concentrations. Net H+ and Na+ flux was significantly greater (P less than 0.01) after irrigation with 40 mM SA than with 40 mM ASA. No significant reduction in gastric mucosal ex vivo generation of 6-oxo-PGF1 alpha (range, 65-98 ng.g-.min-1), PGE2 (range, 250-326 ng.g-1.min-1), or PGF2 alpha (range, 115-156 ng.g-1.min-1) was observed after pouch irrigation with all concentrations of SA. In comparison, gastric mucosal ex vivo generation of 6-oxo-PGF1 alpha (range, 75-2 ng.g-1.min-1), PGE2 (range, 22-3 ng.g-1.min-1), and PGF2 alpha (range, 40-2 ng.g-1.min-1) was significantly reduced after irrigation with all concentrations of ASA. From these data, we conclude that the activity of endogenous gastric prostacyclin, PGE2 alpha, and PGF2 alpha is not a prerequisite for mucosal integrity as measured by PD and net cationic flux.

Animals

Does basal cholinergic activity potentiate exogenous secretin for stimulation of pancreatic bicarbonate output in dogs?

In conscious dogs with gastric and pancreatic Thomas fistulas, we studied the effect of atropine sulfate (20 micrograms kg-1 h-1 intravenously) on bicarbonate output basally and in response to intravenous infusion of synthetic secretin (62.5, 125, 250, 500, 1,000 and 2,000 ng kg-1 h-1). We analyzed the data in an attempt to determine whether basal cholinergic activity potentiates the pancreatic bicarbonate response to secretin. Assuming that atropine suppresses all basal cholinergic activity, C (= bicarbonate response to basal cholinergic activity alone) was calculated by subtracting basal pancreatic bicarbonate output with atropine from that without atropine, S (= response to secretin alone) was calculated by subtracting basal pancreatic bicarbonate output with atropine from that in response to secretin with atropine. SwC was defined as the response to secretin acting simultaneously with (w) basal cholinergic activity and was calculated by subtracting basal pancreatic bicarbonate output with atropine from the response to secretin without atropine. If SwC was significantly greater than S + C (= sum of effects of stimulus alone and basal cholinergic activity alone) potentiation between basal cholinergic activity and secretin was assumed to exist. C was 30 +/- 9 mumol 15 min-1 for bicarbonate output. SwC of bicarbonate output was significantly (p less than 0.05) greater than S + C in response to the four lowest doses (62.5-500 ng kg-1 h-1) of secretin. We conclude that potentiation exists between basal cholinergic activity and low doses of exogenous secretin. Thus, basal cholinergic activity is an important modulator of pancreatic bicarbonate response to secretin.

Animals

Role of food in gastrointestinal ulceration produced by indomethacin in the rat.

This study was undertaken to determine the role of food in indomethacin-induced gastrointestinal lesions. Following a 24- or 48- fast, rats were given various amounts of rat Chow pellets or various types of diets (high-bulk non-nutritive diet, equicaloric liquid diet, or liquid diet containing cellulose) for 1 h. One half hour after the feeding, 30 mg/kg of indomethacin was administered subcutaneously, and 6 h later the animals were killed and gastrointestinal lesions measured. In the fasted rat, indomethacin produced lesions predominantly in the gastric corpus. In the rat that was fed Chow pellets, indomethacin produced lesions in both the gastric antrum and small intestine. By increasing food intake, the corpus lesions decreased while antral and intestinal lesions increased. In the rat that was fed cellulose or sawdust pellets, indomethacin produced lesions in all three areas. In contrast, indomethacin did not produce any lesions in the liquid diet group. However, when cellulose was added to the liquid diet, indomethacin produced lesions in both the antrum and small intestine, the lesions increasing in proportion to increasing concentrations of cellulose. It is concluded that in indomethacin-induced gastrointestinal lesions: (a) the nutritional component of food prevents the formation of corpus lesions, and (b) the solid component of food, whether nutritive or not, plays an essential role in the formation of antral and intestinal lesions.

Animals

The interaction of stimulants on the function of isolated canine parietal cells.

With isolation, the parietal cell is removed from the effects of the many endogenous substances that may modulate its function in intact mucosa, even in the basal state. The isolated canine parietal cell responds to the major endogenous regulators of secretion: histamine, acetylcholine and gastrin. These agents act on specific receptors as evidenced by (1) the specificity of antagonist (H2 antagonists, atropine, and dibutyryl cyclic GMP respectively), (2) the binding of radiolabelled ligands, and (3) the existence of separate second messenger systems (cyclic AMP for histamine, calcium influx for acetylcholine, and an unidentified mechanism for gastrin). Potentiating interactions, which occur between histamine and acetylcholine or histamine and gastrin, do not involve extra production of second messenger. When histamine and acetylcholine are given together, the amounts of cyclic AMP generated and of calcium entering the cell are not greater than when each is acting alone. The apparent non-specific effects of inhibitors acting in vivo, such as the inhibition of all forms of stimulation by H2 antagonists, could reflect withdrawal of the potentiating action of the background histamine always present in the mucosa.

Acetylcholine

Gastric acid and gastrin response to decaffeinated coffee and a peptone meal.

We compared five graded doses of decaffeinated coffee and a widely used protein test meal (Bacto-peptone) as stimulants of acid secretion (intragastric titration) and gastrin release (radioimmunoassay) in eight healthy men. In each subject, for both acid and gastrin, the sums of the responses to all five doses were greater to decaffeinated coffee than to peptone. The mean +/- SE peak acid output in millimoles per hour was 18.5 +/- 2.9 to decaffeinated coffee and 14.7 +/- 2.7 to peptone, representing 70% and 55%, respectively, of the peak acid output to pentagastrin. The mean +/- SEM peak increment over basal rate in serum gastrin in picograms per milliliter was 84.8 +/- 4.4 to decaffeinated coffee and 44.8 +/- 2.1 to peptone. At equal concentrations, decaffeinated coffee was a more potent stimulant of acid secretion and of gastrin release than peptone. The ingredient(s) of decaffeinated coffee that accounts for its high potency in stimulating acid secretion and gastrin release has not been identified.

Adult

Failure of gastric inhibitory polypeptide to inhibit pentagastrin-stimulated acid secretion in vagotomized human subjects.

Five vagotomized male subjects were given graded doses of pentagastrin without and with a background infusion of 2 microgram/kg/hr of gastric inhibitory polypeptide (GIP). An insulin infusion test (0.1 units/kg/hr) showed that the vagotomies were complete. GIP infusion failed to inhibit pentagastrin-stimulated acid and pepsin secretion even though plasma GIP concentration reached a plateau much higher than that measured after ingestion of a meal. We conclude that GIP does not inhibit pentagastrin-stimulated gastric acid secretion in vagotomized human subjects.

Adult