Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Intestinal Absorption”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 559 records · Page 31Linked to original sources

Sodium EDTA enhances intestinal absorption of two bisphosphonates.

Bisphosphonates are poorly absorbed when given orally and their absorption is subject to a large inter- and intraindividual variability. This poor absorbability is thought to result, at least in part, from formation of unabsorbable complexes with calcium. It was therefore investigated whether the calcium chelator EDTA could improve intestinal absorption of two bisphosphonates, 4-amino-1-hydroxybutylidene-1,1-bisphosphonate (AHBuBP), and dichloromethylenebisphosphonate (Cl2MBP). Absorption was assessed indirectly by measuring the suppression of hypercalcemia induced in thyroparathyroidectomized rats by a retinoid. The absorption of AHBuBP was in the range of 1-3%. EDTA increased absorption about tenfold at a AHBuBP dose of 0.6 mg P/kg and about twofold at lower doses, with the minimal effective dose of EDTA being 10 mg/kg. The absorption of Cl2MBP was also increased by EDTA, although to a smaller extent, the lowest effective dose being 100 mg/kg EDTA. Thus, EDTA can, in certain circumstances, increase the intestinal absorption of bisphosphonates. The mechanism might involve an increase in available bisphosphonate and a change in mucosal permeability. The amount of EDTA required is, however, too high for use clinically.

Administration, Oral↗

Intestinal absorption of calcium and oxalate in magnesium-deficient rats.

To examine the contribution of exogenous calcium and oxalate in magnesium deficiency, intestinal absorption of both calcium and oxalate was studied by preparing brush border membrane vesicles (BBMV). Purity of the BBMV was ascertained biochemically by enrichment of the marker enzyme alkaline phosphatase by 14-fold with a concomitant 90 per cent decrease in the basolateral marker enzyme Na+/K(+)-ATPase in the purified membrane preparation as compared to the respective homogenate in both the groups. Uptake studies were carried out by a rapid filtration technique. The kinetics were studied by measuring the rate of influx as a function of concentration (0.1-1.0 mM). BBMV from both the groups showed a linear positive relationship between the uptake rate and the concentration for both calcium and oxalate, thereby demonstrating that calcium and oxalate are transported through intestinal microvillus membrane by a simple passive diffusion process. However, the rate of uptake of calcium and oxalate was significantly higher in the magnesium-deficient group as compared to the pair-fed control group, as shown by the increase in the slope line for both calcium and oxalate (for calcium, control = 3.88, deficient = 5.86; for oxalate, control = 4.41, deficient = 7.20). Analysis of the lipid composition of the BBM revealed a significant decrease in the cholesterol content (P < 0.01) with a concomitant increase in the triglycerides (P < 0.01) and total fatty acid content (P < 0.001) in the magnesium-deficient group. Thus the results indicate that, although the mechanism of translocation of calcium and oxalate in the intestine is similar in the two groups, magnesium deficiency leads to hyperabsorption of both the ligands through alterations in the lipid composition of the membrane, thereby increasing the risk of stone formation.

Animals↗

Inhibition of water-sodium intestinal absorption by an atrial extract.

The rat atrium contains a diuretic and natriuretic factor which appears to inhibit the sodium reabsorption in the kidney tubules. We observed, in rats, that our atrial extract possesses a potent diuretic and natriuretic effect that was accompanied by an increased dextrose excretion. Similarly, extracts of rat atria, but not of ventricles, reduced intestinal absorption of water, sodium, and dextrose. The omission of sodium or dextrose in the perfusion fluid annulled this effect. These data suggest that the substance inhibiting the intestinal absorption of water and solutes is probably atrial natriuretic factor and that it acts on the sodium-dextrose cotransport mechanism.

Animals↗

[Assessment of the role of enterocyte ion exchange in the intestinal absorption of amoxicillin, based on a study of the interaction with amiloride].

Intestinal dipeptide carrier system has been shown in vitro to be involved in intestinal absorption of betalactam antibiotics. Given that efficiency of this transport system depends on a pH gradient (extracellular pH < intracellular pH) at the brush-border membrane of enterocytes, we assessed the effects of amiloride, a known inhibitor of the Na-H exchange, on the bioavilability of oral amoxicillin in eight normal volunteers. Following a single 10 mg oral dose of amiloride, the absolute bioavailability of oral amoxicillin turned out to decrease by 27% (p < 0.01). The extent of reduction of oral amoxicillin AUC appeared to significantly correlate (p = 0.005) with the extent of decrease in potassium renal excretion but not with variations in antibiotic renal clearance under amiloride effect. Such patterns seem to confirm in vivo the role of the Na-H exchange in betalactam absorption and to suggest the underlying regulatory function of intracellular Na concentration, the latter depending on the (NaK)-ATPase activity.

Administration, Oral↗

Intestinal absorption of manganese: an in vitro study.

Our work on isolated rat intestine aimed at studying the hypothesis that the intestinal transport of manganese was carrier-mediated and, consequently, subjected to saturation. Our results confirm this hypothesis, assessing the concentration of carrier saturation for manganese at 0.5 mM. As this concentration, which may determine self-limitation in the intestinal absorption of this metal, is much higher than the maximal allowed concentration of the EEC Standard (50 mg/l), food and water should be carefully monitored for their manganese content in order to avoid reaching toxic concentrations in blood and tissues.

Animals↗

Evaluation of chromatographic descriptors for the prediction of gastro-intestinal absorption of drugs.

The use of chromatographic descriptors in QSAR was evaluated. Therefore, retentions were measured on an immobilized artificial membrane system, 2 micellar liquid chromatography systems and 17 orthogonal or disimilar reversed-phase liquid chromatographic systems. It was investigated whether it was possible to model gastro-intestinal absorption as a function of chromatographic retentions applying two linear and one non-linear multivariate modeling technique. In a second step it was evaluated if models built with theoretical descriptors could be improved by adding the measured retention factors to the data set of descriptive variables. It was seen that gastro-intestinal absorption could be modelled in function of chromatographic retention using the non-linear modeling technique multivariate adaptive regression splines (MARS). The best models were obtained using a combination of theoretical and chromatographic descriptors with MARS as modeling technique.

Acebutolol↗

A modified fecal excretion test for assaying intestinal absorption of 3H-folic acid.

A method for determination of the intestinal absorption of folic acid is described. It is based on the principle of double tracer technique in assay of fecal samples using gas proportional counting for 3H determinations. As the procedure is simple, reliable, and inexpensive, it is considered to be of value for laboratories without advanced equipment for radiochemical assay.

Cobalt Radioisotopes↗

Influence of dietary fat composition on intestinal absorption in the rat.

Omega-3 fatty acids influence the function of the intestinal brush border membrane. For example, the omega-3 fatty acid eicosapentaenoic acid (20:5 omega 3) has an antiabsorptive effect on jejunal uptake of glucose. This study was undertaken to determine whether the effect of feeding alpha-linolenic acid (18:3 omega 3) or EPA plus docosahexaenoic acid (22:6 omega 3) on intestinal absorption of nutrients was influenced by the major source of dietary lipid, hydrogenated beef tallow or safflower oil. The in vitro intestinal uptake of glucose, fatty acids and cholesterol was examined in rats fed isocaloric diets for 2 weeks: beef tallow, beef tallow + linolenic acid, beef tallow + eicosapentaenoic acid/docosahexaenoic acid, safflower oil, safflower oil + linolenic acid, or safflower oil + eicosapentaenoic acid/docosahexaenoic acid. Eicosapentaenoic acid/docosahexaenoic acid reduced jejunal uptake of 10 and 20 mM glucose only when fed with beef tallow, and not when fed with safflower oil. Linolenic acid had no effect on glucose uptake, regardless of whether it was fed with beef tallow or safflower oil. The jejunal uptake a long-chain fatty acids (18:0, 18:2 omega 6, 18:3 omega 3, 20:4 omega 6, 20:5 omega 3 and 22:6 omega 3) and cholesterol was lower in safflower oil than with beef tallow. When eicosapentaenoic acid/docosahexaenoic acid was given with beef tallow (but not with safflower oil), there was lower uptake of 18:0, 20:5 omega 3 and cholesterol. The demonstration of the inhibitory effect of linolenic acid or eicosapentaenoic acid/docosahexaenoic acid on cholesterol uptake required the feeding of a saturated fatty acid diet (beef tallow).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

In vitro and in vivo evaluation of the enhancing activity of glycyrrhizin on the intestinal absorption of drugs.

PURPOSE: The enhancing activity of dipotassium glycyrrhizinate (Grz) on the intestinal absorption of drugs has been demonstrated in an in vitro study using Caco-2 cell monolayers and in an in vivo absorption study in rats. METHODS: The hydrolysis of Grz by luminal content and mucosa of the rat colon was investigated. The absorption-enhancing activity of Grz and its hydrolysates was estimated by changes in transepithelial electrical resistance (TEER) and the permeation of sodium fluorescein (Flu-Na) in Caco-2 cell monolayers. It was further evaluated through the absorption of salmon calcitonin (sCT) in the rat colon. RESULTS: Grz was not hydrolyzed to glycyrrhetinylmonoglucuronide (GrMG) and glycyrrhetinic acid (GA) by colonic mucosa, but, rather by the beta-glucuronidase in colonic flora. The hydrolysis of Grz to GrMG was extremely slow and the GrMG produced was rapidly regenerated to GA. Grz and GrMG had no effect on TEER nor on the permeability of Flu-Na across Caco-2 cell monolayers. On the other hand, GA decreased TEER and increased the permeability of Flu-Na in a dose-dependent manner. However, Grz and GrMG enhanced the plasma calcium-lowering effect of sCT after administration in the rat colon. The coadministration of sCT and GA in the rat colon induced the strongest plasma calcium-lowering effect and the highest plasma concentration of sCT. CONCLUSIONS: The in vivo enhancing-activity of Grz in the absorption of drugs is dependent on GA, a hydrolysis product of Grz resulting from the action of beta-glucuronidase in intestinal flora.

Animals↗

Interleukin-15 decreases lipid intestinal absorption.

Administration of a single acute intravenous injection of interleukin-15 (IL-15) (100 microg/kg bw) to rats resulted in a significant decrease (22%) in triacylglycerol absorption, as measured by using [14C]-triolein load. The cytokine, however, did not influence the oxidation of the exogenously administered lipid or the tissue uptake of [14C]-triolein; this is in concordance with the lack of effects found in the measurement of the tissue lipoprotein lipase activity. Concerning the mechanism involved in the decreased intestinal absorption associated with IL-15 administration, the results presented clearly demonstrate that changes in gastric emptying and intestinal mobility are not involved, as the effect is specific for triacylglycerols. In conclusion, intestinal absorption may be an additional mechanism to take into consideration to explain the 'anti-fat' effect of this cytokine.

Animals↗

Small-intestine absorption during continuous intraduodenal infusion of nutrients in dogs.

Motility and exocrine and endocrine secretions of the gastrointestinal tract are modified during postprandial periods. Experimental evidence suggests that nutrients stimulate small-intestine absorption, but the mechanisms involved are uncertain. Further, the effects of mixing nutrients with different physicochemical compositions on absorption and motility are not completely elucidated. With the use of a canine model, we investigated the effects of a mixture of different lipids and proteins on small-intestine motility and absorption. Two cannulae, one in the proximal duodenum and one in the distal ileum, were implanted in the dogs. Absorption of a continuous duodenal infusion of eight test mixtures consisting of long- and medium-chain fatty-acid triacylglycerols, soy protein and its hydrolysate, casein and its hydrolysate, and variable amounts of glucose, and glucose polymer were analyzed by measuring the volume, concentration, and total amount of triacylglycerols, nitrogen, and glucose recovered from the ileal cannula. Significant differences in absorption were observed across test mixtures. Significantly lower absorption of H(2)O and nutrients was observed with test mixtures prepared with medium-chain fatty-acid triacylglycerols and soy protein compared with test mixtures prepared with corn oil, casein, and hydrolysates of both proteins. We concluded that the physicochemical characteristics of nutrients in elemental diets continuously infused into the duodenum are important for determining small-intestine absorption.

Animals↗

[Intraoperative intestinal absorption and laparotomy].

The study of the intra- and post-operative intestinal absorption of glucose, xylose and a radionuclide, 99mTc, shows that laparotomy does not influence jejunal function, thus leaving the possibility of an immediate post-operative nutrition with a naso-jejunal tube, a needle catheter jejunostomy or, even, an oral feeding. Parenteral nutrition, for the future, could have a little role in post-operative period and the too much used nasogastric tube should be avoided.

Food, Formulated↗

Intestinal absorption of pyridoxal 5'-phosphate at physiological levels in rats.

The intestinal absorption of pyridoxal 5'-phosphate (PLP) at physiological levels (10(-7) -10(-6) M) was studied in comparison with that of pyridoxal (PL) in rat, using in vitro everted sac and an intestinal preparation that permitted continuous in situ collection of mesenteric venous blood. After PLP administration (10(-6) -10(-3) M) in situ, larger amounts of PLP were found in the mesenteric venous plasma than after PL administration at the same dose. The amount of PLP found in the mesenteric venous plasma was dependent on its dose at lower concentrations up to 10(-4) M but became independent at higher concentrations. After PL administration at various doses, the amount of PL found in the mesenteric venous blood increased linearly with the dose. When various concentrations of PLP were added to the mucosal side, under the in vitro condition with protection from alkaline phosphate hydrolysis, PLP was detected in the serosal side and the extent of PLP transport was dependent on the initial concentration of PLP in the mucosal side. When various concentrations of PL were added to the mucosal side, the extent of PL transport was independent of the initial concentration of PL in the mucosal side. In rat pretreated with actinomycin D, PLP transport in vitro was inhibited but not that of PL. N2-induced anoxia and pyridoxamine 5'-phosphate and anion transport inhibitor (4,4'-diisothiocyanostilben-2,2'-disulfonic acid disodium salt) showed no effect on PLP transport. These results suggest that PLP can be absorbed in the phosphorylated form and imply the presence of a saturable process for direct absorption of PLP itself and a diffusive process for PL absorption. In addition, the result of the in vivo neonatal experiment suggests that the neonatal intestine also can transport PLP in phosphorylated form.

Aging↗

Copper-sodium linkage during intestinal absorption: inhibition by amiloride.

The possible association between copper and sodium small intestinal absorption in the rat was investigated in the presence or absence of the electrolyte transport inhibitors amiloride, acetazolamide, and furosemide, at pharmacologic concentrations, using an in situ perfusion procedure. Amiloride (1 mM) produced a significant decrease in copper, net water, and sodium absorption, in solutions with sodium. Copper tissue retention was not altered, but was much higher in the absence of sodium. Acetazolamide and furosemide (1 mM), in separate experiments, had no effect on copper removal from the lumen, but generally reduced sodium and water transport. The presence or absence of sodium in the perfusate influenced rates of copper uptake. These data are compatible with a more effective passage of copper across the enterocyte basolateral membrane in the presence of sodium than in its absence.

Acetazolamide↗

Intestinal absorption of aluminium from antacids: a comparison between hydrotalcite and algeldrate.

The intestinal absorption of aluminium (Al) from the antacid hydrotalcite (Ultacit) was compared with that from algeldrate (Algeldratum des-acidans) in 8 healthy human subjects in a cross-over study. The level of Al in serum (AlS) was increased in 7 out of 8 subjects 7 hr after intake of 6 g algeldrate while AlS did not rise after intake of 8 g hydrotalcite--a dose with at least comparable acid-neutralizing capacity--in any of the subjects.

Adult↗

Vitamin K1 intestinal absorption in vivo: influence of luminal contents on transport.

Intestinal absorption of [3H]phylloquinone was investigated in the unanesthetized rat by the use of a technique of recirculating perfused isolated intestinal segments. Apparent saturation kinetics were found as the concentration of the vitamin in the perfusate was increased in a stepwise fashion from 15 nM to 300 muM. Alkalinization of the perfusate or the addition of 2.5 mM linoleic acid to the perfusate caused a significant (P less than 0.05) decrease in the absorption rate of phylloquinone. Modifications in the perfusate concentration of sodium taurocholate, the substitution of a nonionic detergent (Pluronic F-68) for sodium taurocholate, the addition of medium- and long-chain saturated fatty acids, or the addition of vitamins K2 and K3 to the perfusate did not alter the absorption rate of the vitamin. Decreasing the thickness of the unstirred water layer by increasing the perfusion rate caused a significant increase in phylloquinone absorption rate. In vivo absorption of vitamin K1 appears to be mediated by an energy requiring saturable transport mechanism. The composition of the perfusate, its pH, and its rate of flow are all important determinants of vitamin K1 absorption rate.

Animals↗

Intestinal absorption of iron from 59Fe-labelled hexacyanoferrates(II) in piglets.

The intestinal absorption of 59Fe and 14C from hexacyanoferrates(II) was studied in piglets. KFeIII[FeII (CN)6] (I) and FeIII4[FeII(CN)6]3 (II) were labelled with 59Fe both in the Fe(III)-position (outside the complex anion, a) or in the Fe(II)-position (hexacyanoferrate anion, b). Labelling of the Fe(III)-position resulted in a 59Fe-absorption of 1.47% (Ia) and 1.34% (IIa), as judged by the 59Fe whole-body-retention measurement 14 days after oral administration. Even smaller amounts, 0.20% from Ib or 0.15% from IIb of the 59Fe-dose were absorbed and retained from the hexacyanoferrates(II) labelled in the Fe(II)-position. No 14CO2 was detected in the expired air of piglets after oral application of Fe4[59Fe(14CN)6]3, indicating that the amount of incorporated free cyanide ions can only be extremely small or even nil.

Administration, Oral↗

Intestinal absorption of aluminium: studies in the isolated perfused rat intestinal preparation.

Aluminium (Al) absorption was studied using an isolated in vitro vascularly perfused rat intestinal preparation. Al was introduced into the lumen as AlCl3, Al(NO3)3 or Al lactate to give final concentrations equivalent to 0.625, 1.25, 2.50, 5.00, or 10.00 g/L of Al. The intestinal tissue remained viable up to 5.0 g/L of Al. The amount of Al associated with intestinal tissue after 90 min increased with the concentration up to 5 g/L of Al for chloride and nitrate and 10 g/L of Al for lactate. The time course of Al disappearance from the lumen followed a single exponential decay when the intestinal lumen was perfused with 0.625 g/L of Al as the chloride salt. The total amount of Al appearing in the vascular perfusate after 90 min was always small. Absorption quotes ranged between 0.005-3.2% depending on the salt and concentration used. Addition of transferrin to the VM caused a 2-fold increase in the amount of Al appearing in the vascular effluent in comparison with controls when 1.25 g/L of Al as AlCl3 was introduced into the lumen. Al tissue content was not affected.

Aluminum↗