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Biomedical subjects

N Vidon

Publications and source records attributed to N Vidon.

At least 37 records · Page 2Linked to original sources

Inhibitory effect of high caloric load of carbohydrates or lipids on human pancreatic secretions: a jejunal brake.

Effects of jejunal infusion of a saline solution, a protein meal, and a mixed protein and carbohydrate meal on biliopancreatic secretions were compared in six healthy volunteers. Protein infusion stimulated biliopancreatic secretions whereas carbohydrate infusion inhibited these secretions compared with saline infusion. The roles of lipid, carbohydrate, and caloric load on the inhibition of pancreatic secretions by jejunal infusion of nutrients was investigated in six other healthy volunteers. Carbohydrate, lipid, and the mixed meal inhibited pancreatic secretions whereas the carbohydrate solution was the only one that inhibited biliary secretion. These studies indicate that the mechanism of jejunal brake seems mainly related to the jejunal caloric load. In malabsorption or in the short bowel syndrome, a high caloric load or unabsorbed nutrients in the jejunum further inhibits pancreatic secretion, contributing to the loss of nutrients from the intestinal tract.

Adult↗

Evaluation of the gastric absorption and emptying of drugs under various pH conditions using a simple intubation method: application to diclofenac.

Sodium diclofenac (50 mg) together with [14 C]-PEG as a non-absorbable marker were dissolved in 400 ml of water (A), phosphate buffer pH 7.5 (B) or a homogenized meal (C). Each of these was ingested in random order by six volunteers on 3 consecutive days. Some gastric absorption of the drug was established with C but the plasma drug concentration-time profiles mainly reflected the process of gastric emptying.

Absorption↗

Effect of jejunal infusion of nutrients on gastrointestinal transit and hormonal response in man.

The effects of jejunal infusion of nutrients on gastric emptying and secretion, intestinal transit and hormone release were studied in human volunteers. Two caloric loads, 1.3 and 3.3 kcal/min, of a nutrient solution consisting of 18 percent protein, 27 percent lipids, and 55 percent carbohydrates were tested. These were first used in random order in 6 subjects to assess the effects on intestinal transit. For the study of gastric emptying, jejunal infusion was started 1 h after intragastric instillation of a 490 kcal, 400 ml, homogenized meal. Intestinal transit time and gastric emptying half-time increased with the rate of nutrient infusion into the jejunum. Postprandial gastric secretion was reduced. The two caloric loads induced significant rises of plasma cholecystokinin and gastric inhibitory polypeptide concentrations. Plasma motilin decreased in relation to the jejunal caloric load. The other peptides were essentially not affected by jejunal nutrient infusion in fasting subjects. We conclude that in man, gastric emptying rate, gastric secretion, and intestinal transit are regulated by the presence of nutrients in the jejunum.

Adult↗

Metformin in the digestive tract.

After ingestion of metformin, a drug of the biguanide class, there are gastrointestinal effects in the form of nausea and vomiting, and about 30% of the drug is recovered in feces. The purpose of this work was to explain these two phenomena. Two sets of experiments were carried out. Study I evaluated the gastroduodenal (GD) absorption in six healthy volunteers by means of an intubation method, employing a twin-lumen tube introduced into the intestine and another into the stomach. Metformin 1 g was introduced into the stomach with a homogenized meal containing a non-absorbable marker, 14C-PEG 4000; another marker, PEG 4000, was perfused continuously into the duodenum at the ampulla of Vater. Samples of GD contents were collected every 15 min during 4 h. Metformin was poorly absorbed from the stomach, about 10% over a 4-h period. It did not modify the gastric emptying of a meal but induced a duodeno-gastric reflux in five out of six subjects. About 20% of the amount of drug emptied from the stomach were absorbed from the duodenum. The delivery process was the rate-limiting factor for metformin absorption from the duodenum. The AUC/24 h increased as the absorption rate from the duodenum increased. Study 2 investigated in six healthy volunteers, using another intestinal perfusion technique, the jejunal and ileal absorption of metformin. Metformin 400 mg in saline solution was perfused, over a 2-h period, below an inflated balloon, directly into either the jejunum or the ileum.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Influence of digestive secretions and food on intestinal absorption of nicardipine.

The role of digestive absorption in the pharmacokinetics of nicardipine has been studied by the perfusion technique. Nicardipine (40 mg) was perfused in six healthy subjects at 5 ml/min for 2 h either in isotonic saline with (Experiment A) or without (B) an occlusive balloon isolating the test segment from digestive secretions, or in a nutrient solution (Experiment C). In Experiments A and B, 100% of nicardipine was absorbed from the jejunal lumen in a 25 cm test segment and in Experiment C it was slightly lower (94%). There was no relationship between the absorption of nicardipine and water movement or bile salt concentration in the jejunum. Nicardipine was already present in the first plasma sample taken after 15 min and the peak level was found at the end of the perfusion. The areas under the curves differed widely between subjects, because of interindividual variation in the first pass effect, but they were similar in Experiments A, B and C. The experimental data showed a good fit to a mode involving a two-phase absorption process. The first phase was associated with intestinal perfusion (zero order process) and the second with passage across the intestinal wall (1st order process). In three further healthy subjects, nicardipine in saline was perfused in the jejunum and then in the ileum on consecutive days. Mean plasma levels over time were similar. The study showed that absorption of nicardipine both from the jejunum and the ileum was complete and was especially rapid. The food-induced change in the kinetics of absorption from the jejunum was too small to affect the pharmacokinetic parameters of nicardipine.

Adult↗

Effect of different caloric loads in human jejunum on meal-stimulated and nonstimulated biliopancreatic secretion.

The effects on biliopancreatic secretion of two caloric loads (1.3 and 3.3 kcal/min of Realmentyl: proteins 18%, lipids 27%, carbohydrates 55%), infused into the jejuna of 10 healthy men, were compared with those of a control solution. In one set of experiments (six subjects) when biliopancreatic secretion was not stimulated before infusion, the rate 1.3 kcal/min resulted in mild stimulation whereas the rate 3.3 kcal/min brought about an inhibition of biliopancreatic secretion. In another set of experiments (six subjects) when biliopancreatic secretion was stimulated by ingestion of an homogenized meal (400 mL, 490 kcal) 1 h before the start of infusion, both loads resulted in strong inhibition of pancreatic secretions, the effect being more pronounced with the high caloric load.

Adult↗

Jejunal and ileal absorption of oxprenolol in man: influence of nutrients and digestive secretions on jejunal absorption and systemic availability.

1 Study I evaluated the absorption of oxprenolol in the ileum, compared to jejunum, in healthy volunteers by an intestinal perfusion technique. Around 80 mg of drug were delivered as a saline solution directly in the small bowel. 2 Samples taken 30 cm distally to the site of perfusion showed that 63% of perfused oxprenolol was absorbed in the jejunum and 48% in the ileum; the differences were significant. 3 The plasma concentration-time profiles were similar for the two perfusions. The AUC and Cmax values of free and conjugated oxprenolol for the jejunal perfusion were significantly lower than those of ileum. They showed large but consistent intersubject variations in the two treatments. 4 Study II investigated, using the same technique, the influence of nutrients and digestive secretions on jejunal absorption and systemic availability of this drug. A saline (in treatments A and B) or a nutrient (in treatment C) solution containing oxprenolol was perfused into the jejunum below a balloon either inflated (A) or deflated (B and C). 5 The disappearance rate of oxprenolol from the jejunum was unaffected by endogenous secretions. The mean amount of drug absorbed along a 30-cm jejunal segment accounted for 52 (A) and 57% (B) of the total amount perfused. The intestinal absorption rate was markedly increased in the presence of nutrients (mean amount absorbed 96% for C). 6 The change in the rate of disappearance from the intestine had no effect on the systemic availability of oxprenolol (mean AUC values 8740, 8250 and 8020 nmol l-1 h for A, B and C, respectively) or its elimination from plasma.(ABSTRACT TRUNCATED AT 250 WORDS)

Biological Availability↗

Influence of bile salts and lipids on intestinal absorption of griseofulvin in man.

The influence of bile salts and lipids on the intestinal absorption of griseofulvin has been studied in 11 healthy male volunteers by the intestinal perfusion technique. The drug in a nutrient solution (Realmentyl) was perfused into the second part of duodenum at 5 ml/min. Intestinal samples were taken continuously at 1 ml/min, 20 cm (at the angle of Treitz) and 45 cm distal to the perfusion point. To study the effect of lipids on griseofulvin absorption, the drug was perfused with solutions A and B, of which B contained a total lipid and caloric load three times that of A. The influence of bile salts on griseofulvin absorption was examined by perfusing the drug on Day 1 with bile salts and again on the following day after bile salt depletion. Bile salts and a varying quantity of lipid perfusate had no significant influence on the duodeno-jejunal griseofulvin absorption rate per cm of intestine. Lipids, however, may still play a role in griseofulvin absorption along the entire intestine.

Adult↗

Gastric clearance of alpha-1-antitrypsin under cimetidine perfusion. New test to detect protein-losing gastropathy?

Gastric losses of plasma are usually measured with radiolabeled macromolecules. This method is expensive and cumbersome. Direct measurement of exudated plasma proteins are ineffective since proteins are denaturated by acidic gastric juice and pepsin. It was recently shown that albumin measurement after immediate neutralization allowed detection of gastric protein losses, but this method is quite complex and time consuming. We studied alpha 1-antitrypsin and 51Cr-labeled protein clearance in gastric juice during normal saline and cimetidine (1.5 mg/kg/hr) infusion in six healthy volunteers and six patients with exudative gastropathy. alpha 1-Antitrypsin was measurable in all samples during cimetidine infusion: alpha 1-AT and 51Cr losses were significantly correlated (P less than 0.001). The upper limit of gastric alpha 1-AT clearance in controls was 0.86 ml/hr (mean + 2 SD). Using this value, there was no overlapping between patients and controls. The upper limit of 51Cr test was 1.87 ml/hr (mean + 2 SD) in controls but gastric clearance of 51Cr was below this value in one patient. This suggests that the measurement of alpha 1-AT gastric clearance during cimetidine perfusion is a good test to detect an exudative gastropathy. This test is inexpensive and lasts only 3 hr.

Adult↗

[Influence of Saccharomyces boulardii on jejunal secretion in rats induced by cholera toxin].

The effects of a suspension of Saccharomyces boulardii cells on water and sodium secretion induced by cholera toxin was measured in male Wistar rats weighing 220-260 g, using the isolated jejunal loop technique. Concentrations per ml of 3.1 X 10(9), 2.1 X 10(9) and 0.7 X 10(9) viable cells and 3.1 X 10(9) cells killed by irradiation or heating respectively were tested. At this last concentration, the supernatant obtained after centrifugation of the suspension of living cells or of cells killed by irradiation was also tested. Four 10 cm-long loops, the first one beginning at the angle of Treitz, were isolated: the first two loops with and without S. boulardii, the other two (previously incubated with cholera toxin for 3 h) with and without the cells. Each loop contained 1.5 ml of test solution or suspension. S. boulardii living cells had no effect on water and sodium basal intestinal transport but significantly reduced water and sodium secretion induced by cholera toxin within 20 min. Irradiation and heating did not abolish this antisecretory effect while the supernatant obtained after centrifugation of living or irradiated cell suspensions had no inhibitory effect.

Animals↗

Effect of increased amounts of pectin on a solid-liquid meal digestion in healthy man.

The effect of three concentrations of high-methoxy apple pectin (5, 10, and 15 g), on solid-liquid meal digestion was studied in 12 healthy men by the gastrointestinal intubation technique. The gastric emptying of water and carbohydrates is significantly reduced only after 10 and 15 g pectin. The changes in gastric pH are similar for pectin-free and pectin-containing meals. Cumulative lipase and trypsin outputs are not significantly different with and without pectin. When gastric uronic acid concentration is above 6 g/l, the duodenal absorption of carbohydrates is significantly reduced (p less than 0.001). The mean blood glucose levels with 10 and 15 g pectin are significantly higher than the control values at 180 min (p less than 0.05). Pectin does not modify serum concentrations of secretin, cholecystokinin (CCK), vasoactive intestinal polypeptide (VIP), gastric inhibitory polypeptide (GIP), and somatostatin but serum motilin and gastrin levels are below the control values after high fiber meal.

Adult↗

Investigation of drug absorption from the gastrointestinal tract of man. II. Metoprolol in the jejunum and ileum.

Absorption of metoprolol in jejunum and ileum was investigated in eight healthy subjects using an intestinal perfusion technique below an occlusive balloon. An isotonic saline solution, with or without metoprolol, was perfused at a flow rate of 10 ml/min, either at the angle of Treitz or in the middle part of the ileum. The absorption in a 30 cm intestinal segment was evaluated at metoprolol concentrations of 20, 40 and 60 mg/l. Metoprolol did not affect gut motility. Metoprolol was similarly absorbed in the jejunum and ileum. The absorption rates appeared to be linearly related to the perfusion rates and to the mean concentration in the segment, indicating a first-order kinetic process. The absorption rate of metoprolol perfused in the jejunum in a saline solution appeared to be lower than that observed after gastric administration of the drug incorporated in a meal. The findings in this and other studies in this series indicate that metoprolol is similarly absorbed throughout the small intestine.

Adult↗

Investigation of drug absorption from the gastrointestinal tract of man. III. Metoprolol in the colon.

The colonic absorption of metoprolol was indirectly evaluated by measuring drug appearance in plasma following intravenous, jejunal or colonic infusion in six healthy volunteers. Plasma concentrations of alpha-hydroxymetoprolol and urinary excretion of the main metabolites were also measured. Plasma profiles of metoprolol after colonic and jejunal perfusion were similar, and the relative bioavailabilities of the drug from these two regions of the gut were not significantly different. The concentrations of alpha-hydroxymetoprolol, the major metabolite in plasma, were similar after jejunal and colonic perfusion, but higher than those observed after intravenous administration. The percentage of the dose recovered in urine over 24 h as two metabolites was not significantly influenced by the route of administration.

Adult↗

Investigation of drug absorption from the gastrointestinal tract of man. IV. Influence of food and digestive secretions on metoprolol jejunal absorption.

The influence of nutrients and digestive secretions on the intestinal absorption and bioavailability of the beta-adrenoceptor antagonist, metoprolol, was investigated in an isolated segment of jejunum using an intestinal perfusion technique. Two solutions containing metoprolol, one with, and one without nutrients, were perfused into the jejunum with an occluding balloon inflated or deflated. Jejunal fluid, blood and urine samples were then collected for drug or metabolite estimation. In the segment studied, metoprolol absorption from the nutrient solution was four times that observed during perfusion of the saline solution. Bile salts did not enhance drug absorption. Both in the presence and absence of nutrients, a linear relationship was observed between the computed cumulative amount of drug absorbed from the gastrointestinal tract and the resulting plasma concentration at each sampling time, indicating that first-pass loss was not saturated. This result was also reflected in the similarity of the AUC:dose ratios, and in the lack of effect of nutrients on the metabolism of the drug.

Adult↗

[Effect of pentagastrin and cimetidine on gastric protein loss in exudative gastropathies].

The effectiveness of cimetidine in decreasing protein loss in protein-losing gastropathies has recently been questioned. The present investigation was designed to test the effects of pentagastrin and cimetidine on gastric protein loss in 6 patients with this type gastropathy: 4 with Ménétrier's disease and 2 with Stempien's disease. Fecal and gastric loss of 51Cr-labelled proteins were measured and expressed as ml of plasma per unit of time +/- SEM. Gastric protein loss was measured during intravenous infusion of normal saline, pentagastrin alone (6 microgram/kg/h), combined pentagastrin and cimetidine (1.5 mg/kg/h), and cimetidine alone. Each solution was perfused during 105 min to obtain a steady state effect upon gastric protein loss during one hour. Fecal clearance was increased in all patients: 193 +/- 16 ml/day (N less than 40 ml/day). Gastric 51Cr albumin loss was increased by pentagastrin stimulation (15.9 +/- 1.2 ml/h); cimetidine resulted in a reduction of the pentagastrin induced loss (7.0 +/- 3.8 ml/h) while cimetidine alone had no effect (3.8 +/- 0.6 ml/h) on basal loss. Our results suggest that cimetidine therapy may be of benefit in decreasing protein loss in patients with this type of gastropathy.

Blood Proteins↗

Effect of pectin on jejunal glucose absorption and unstirred layer thickness in normal man.

The effect of high methoxy apple pectin, a carbohydrate gelling agent, on the intestinal absorption of glucose, water, and sodium was studied in man. The effect of intraluminal fibre was evaluated in 22 healthy volunteers by the intestinal perfusion technique under an occlusive balloon. The test solutions (NaCl 130 mM, KCl 5 mM, glucose or mannitol 30 mM, PEG 4000 5 g/l) were perfused just beyond the ligament of Treitz at a rate of 10 ml/min. A 25 cm segment was studied. Three concentrations of pectin were tested: 6, 10, and 15 g/l. The effect of this pectin at two concentrations, 6 and 10 g/l, on the jejunal unstirred layer thickness was evaluated in nine other healthy subjects by an electrical technique. In mannitol solution, pectin reversed water and sodium absorption, whatever its concentration was, while in glucose solution it significantly reduced absorption of water and sodium at 10 and 15 g/l only (p less than 0.01). It significantly reduced glucose absorption at all concentrations (p less than 0.01). This reduction was found to be correlated with the solution viscosity (p less than 0.01). Pectin did not alter the glucose dependent sodium transport but increased significantly (p less than 0.001) the unstirred layer thickness. These results suggested that, in healthy man, pectin acutely given may impair intestinal absorption by means of an increased unstirred layer resistance. This effect could contribute to the diminished postprandial glycaemia observed in human subjects fed pectin.

Body Water↗

Maximal capacity for fluid absorption in human bowel.

The intestinal handling of fluid has been studied in ten healthy volunteers while an isotonic saline solution (NaCl 140 mM, KC1 5 mM) was perfused into the stomach at rates of 5, 10, 15, and 20 ml/min. Polyethylene glycol 4000 (PEG-4000), as a nonabsorbable marker, was infused into the second portion of duodenum, and the intestinal contents were sampled continuously at a steady rate at 25, 50, 155, and 180 cm distally. Radiological assessment showed that the proximal sampling point was located at the angle of Treitz when the distal site was usually in the terminal ileum. Stools were collected for the following 12 hr. Volumes sampled from each site were used as a correction for volumes calculated at each distal site. The absorption rates of water (0.035 ml), sodium (4.72 muEq), and potassium ((0.18 183 muEq) per minute and per centimeter of bowel were constant along the small intestine and were independent of the perfusion rate. Stools only appeared when terminal ileal input to the colon was above 6 ml/min. When this occurred, the net absorption of water by the colon was 2.7 +/- 0.3 ml/min whatever the rate fluid entered the colon. A significant positive correlation was observed between ileal outputs and volume of stools.

Adult↗