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Effect of protein malnutrition on the intestinal absorption of monosaccharides in rats in vivo.

The present study was planned to elucidate the role of protein malnutrition on the intestinal absorption of monosaccharides particularly--glucose and xylose, in inbred female albino rats. The experimental rats were fed with protein deficient diet containing 3% protein, whereas the control rats were given a diet containing 18% protein. The study on intestinal absorption of monosaccharides was conducted on both the groups of rats after the 7th and 15th day of receiving respective diets. The results indicated no significant impairment of glucose absorption of experimental rats fed 3% diet for 7 days as compared to the controls. However a 42% decrease in glucose absorption was observed when the animals were fed with the same diet for 15 days. The impairment was significant in all segments of intestine suggesting diminution in the absorption capacity of small intestine in malnutrition perhaps as a result of some permanent injury to mucosal cells of small intestine. Regarding xylose absorption, in experimental rats an increase of intestinal uptake was noticed in most of the segments of small intestine as compared to control rats.

Animals↗

Assessment of intestinal absorption of trace metals in humans by means of stable isotopes.

This study is aimed to demonstrate the feasibility of stable isotopes for the assessment of reliable data on fractional intestinal absorption of trace metals in healthy humans. Among the various methods available, the double isotope technique, i.e. one isotope given orally together with the test substance to be investigated and another isotope injected intravenously to correct for retention and endogenous excretion of the particular trace metal, provides quantitative figures of intestinal absorption at reasonable expenses with regard to costs for materials and number of samples to be evaluated. The trace metals exemplarily included in this study, i.e. iron, cobalt and molybdenum show diverging relations between absorbed fractions and amounts administered which are indicative for different regulatory mechanisms of their body content. Food ligands influence the fractional absorption significantly so that the uptake from a composite meal cannot be derived from results on uptake from particular foodstuffs. Therefore, validated data on the behaviour of intestinal absorption will significantly contribute to a better understanding of human trace metal metabolism.

Female↗

Effects of silicon, citrate and the fasting state on the intestinal absorption of aluminium in rats.

1. The effect of silicon (Si) contained in drinking water and solid food on the intestinal absorption of aluminium (Al) remains a matter of debate. The present study was designed to readdress this issue in the experimental animal, and to examine concomitantly the effects of citrate and the fasting state, respectively. 2. Three groups of young, non-fasted rats (n = 8 per group) were gavaged by solutions containing 3.8 ng of 26Al, 63 ng of 27Al, and either distilled water (< 0.1 mg/l Si) or commercial mineral water with a medium (6 mg/l) or high (14 mg/l) Si concentration. 3. Two other groups of eight non-fasted rats each received the same distilled water or high-Si gavage solution, respectively, together with a high citrate concentration (62 g/l). In each case the animals had free access to drinking water for 5 days before and 2 days after the gavage, containing the same Si concentration as in the gavage solution. A sixth group of eight rats was gavaged by low-Si, Al and distilled water in the fasted state. 4. The animals were killed 48 h after gavage, and blood, tissue and urine samples were collected for 26Al measurements by accelerator mass spectrometry. 5. We found that the fraction of absorbed 26Al retained in the skeleton (0.025-0.030%) was of the same order of magnitude as the fraction excreted in the 48 h urine (0.035-0.037%). High Si concentrations in the drinking water failed to depress the 26Al fraction absorbed, as estimated on the basis of skeletal accumulation and urinary excretion. 6. The administration of citrate-containing fluid enhanced 26Al absorption 5- to 10-fold (P < 0.005), but again the Si content of drinking water did not interfere. Finally, the intestinal absorption of 26Al was approximately 15 times higher in the fasted than in the non-fasted state. 7. In conclusion, the provision of large amounts of Si in the drinking water failed to modify physiological intestinal Al absorption under basal conditions or after its stimulation by citrate. However, a prolonged fast greatly enhanced Al absorption, compared with the non-fasted state.

Aluminum↗

The intestinal absorption of dietary folates in health and disease.

Dietary folates exist as pteroylpolyglutamates (PteGlun) that undergo hydrolysis to pteroylmonoglutamate (PteGlu) forms during the process of intestinal absorption. Using the technique of jejunal perfusion of separately labeled folates, our laboratory has demonstrated that hydrolysis of PteGlun occurs on the surface of the jejunum and is a prerequisite for folate absorption. An intestinal brush border pteroylpolyglutamate hydrolase (BB-PPH) has been identified in human and pig jejunum with characteristics that are distinct from those of an intracellular hydrolase (IC-PPH). Functional parallels of BB-PPH with in vivo hydrolysis of PteGlun in human and pig intestine and the clinical responsiveness of BB-PPH to different disease states indicate that this enzyme plays the major physiological role in folate absorption. Folate malabsorption is found in diseases which affect the jejunal mucosa and in response to various drugs. In most of these clinical conditions, folate malabsorption results from suppression of both of the processes of hydrolysis of PteGlun and jejunal uptake of PteGlu. Ongoing studies in miniature pigs are aimed at definition of the sequence of development of folate malabsorption in chronic alcoholism.

Animals↗

Biliary phospholipid secretion is not required for intestinal absorption and plasma status of linoleic acid in mice.

Biliary phospholipids have been hypothesized to be important for essential fatty acid homeostasis. We tested this hypothesis by investigating the intestinal absorption and the status of linoleic acid in mdr2 Pgp-deficient mice which secrete phospholipid-free bile. In mice homozygous (-/-) for disruption of the mdr2 gene and wild-type (+/+) mice, dietary linoleic acid absorption was determined by 72 h balance techniques. After enteral administration, [(13)C]-linoleic acid absorption was determined by measuring [(13)C]-linoleic acid concentrations in feces and in plasma. The status of linoleic acid was determined in plasma and in liver by calculating the molar percentage of linoleic acid and the triene:tetraene ratio. Although plasma concentration of [(13)C]-linoleic acid at 2 h after enteral administration was significantly lower in (-/-) compared to (+/+) mice (P</=0.05), net intestinal absorption of dietary linoleic acid or of [(13)C]-linoleic acid was similar in (+/+) and (-/-) mice. Molar percentage of linoleic acid and the triene:tetraene ratio were not different in whole plasma or in liver of (-/-) compared to (+/+) mice. Present data indicate that biliary phospholipids are involved in the rate of appearance in plasma of enterally administered linoleic acid, but are not required for net intestinal absorption or plasma status of linoleic acid.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

A comparison of the effects of mineral oil, vegetable oil, and sodium sulfate on the intestinal absorption of DDT in rodents.

The effects of mineral oil, vegetable oil, and sodium sulfate on the intestinal absorption of a highly lipid soluble pesticide, DDT, were compared in the rat. Intestinal absorption was evaluated by measuring recovery of DDT and metabolites in feces and the concentration of DDT in adipose tissue following oral administration of DDT and each agent. Vegetable oil was shown to significantly increase absorption of DDT when compared to all other treatments.

Adipose Tissue↗

Small intestinal absorption of polyethylene glycol 400 to 1,000 in the portacaval shunted rat.

Functional changes of the intestinal barrier that may occur after the creation of a portacaval shunt (PCS) were investigated. After chronic PCS in the rat, the intestinal absorption of and the jejunal permeability to the inert polymer marker polyethylene glycol (PEG) with molecular weight (Mw) ranging from 400 to 1,000 g/mol were investigated. The PEG mixture was orally fed to PCS and sham-operated rats, and urine was collected for 24 hours to obtain the urinary recovery of the different PEG polymers as a measure of intestinal absorption. To study the intestinal permeability, segments from the proximal small intestine were incubated in diffusion chambers with the PEG mixture on the mucosal side, and samples were withdrawn from the serosal side for analysis. The urinary recovery for the PEGs increased (P < .01) while the tissue permeability decreased (P < .001) in the PCS group rats in comparison with Sham-operated rats. The increased absorption in vivo was caused neither by altered renal clearance, nor by changed portal blood pressure. The decreased jejunal permeability in the PCS rats could be explained by a reduction of the mucosal area by shortening of the microvilli. This discrepancy indicates that changes in permeability and absorption may not be parallel during PCS. It is possible that these changes also may be affected by nutritional factors, drug therapy, as well as toxic substances.

Animals↗

Limited role of P-glycoprotein in the intestinal absorption of cyclosporin A.

The contribution of P-glycoprotein (P-gp) to the intestinal absorption of cyclosporin A (CsA) was investigated by comparing the in vivo pharmacokinetics of CsA in P-gp knockout mice versus wild-type mice following both oral and intravenous administration and by examining the transport of CsA across Caco-2 cell monolayers. The apparent oral bioavailability of CsA in P-gp knockout mice was 1.55-fold larger than in wild-type mice, leading to an apparent absolute bioavailability of 41.8%. A concentration dependent efflux transport of CsA across Caco-2 cell monolayers was found, which exhibited saturation at a CsA concentration of 1 muM. These results suggest that the involvement of P-gp in the intestinal absorption of CsA is not as profound as was previously thought.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

[Intestinal absorption of digoxin in systemic sclerosis (author's transl)].

Gastro-intestinal absorption of digoxin was evaluated in 18 patients with progressive systemic sclerosis. In 8 patients a single-dose crossover study was performed after oral and intravenous administration of 0.5 mg digoxin by comparing the aera under the eight-hour plasma concentration curve. The fraction of the dose absorbed was diminished in 4 patients to less than 55%. There was a significant positive correlation between the extent of digoxin absorption and xylose renal excretion. In addition, steady state digoxin plasma levels and 24-h urinary excretion of digoxin were determined during maintenance therapy in 12 patients. In 6 patients renal excretion of digoxin was clearly less than in normal subjects during chronic dosing of the same digoxin preparation. This finding corresponded well with digoxin plasma levels below the usual therapeutic range in most of the patients. The impaired absorption of digoxin failed to correlate with the extent of the skin manifestation or the time course of the disease while there was massive oesophageal dysfunction in most of these patients. The results suggest that an inadequate therapeutic response to cardiac glycosides in patients suffering from progressive systemic sclerosis is at least partially due to impaired digoxin absorption. Similar problems could occur in therapy of the disease itself due to insufficient enteral absorption of drugs used in treatment of systemic sclerosis.

Administration, Oral↗

Effect of raw legume diets on intestinal absorption of D-galactose by chick.

The effect of four raw legume diets on the intestinal absorption of D-galactose and oxygen consumption were studied in chick. Field beans (Vicia faba), soybeans (Glycine soja), bitter vetch (Vicia ervilia), and navy beans (Phaseolus vulgaris), were used. The intestinal absorption was determined by both in vivo and in vitro techniques. In vivo, only navy beans and soybeans inhibit intestinal transport of D-galactose, while in vitro all the diets do. Oxygen consumption by intestinal rings increases in chicks fed on bitter vetch diet.

Animal Feed↗

Bioadhesive polysaccharide in protein delivery system: chitosan nanoparticles improve the intestinal absorption of insulin in vivo.

There are many ongoing investigations to improve the oral bioavailability of peptide and protein formulations. Bioadhesive polysaccharide chitosan nanoparticles (CS-NPs) would seem to further enhance intestinal absorption of them. In this study, Insulin-loaded CS-NPs were prepared by ionotropic gelation of CS with tripolyphosphate anions. Its particle size distribution and zeta potential were determined by photon correction spectroscopy and laser Dopper anemometry. The ability of CS-NPs to enhance intestinal absorption of insulin and increase the relative pharmacological bioavailability of insulin was investigated by monitoring the plasma glucose level of alloxan-induced diabetic rats after oral administration of various doses of insulin-loaded CS-NPs. CS-NPs had a particle size in the range of 250-400 nm and its polydispersity index was smaller than 0.1, positively charged, stable. Insulin association was found up to 80% and its in vitro release showed a great initial burst with a pH-sensitivity property. CS-NPs enhanced the intestinal absorption of insulin to a greater extent than the aqueous solution of CS in vivo. Above all, after administration of 21 I.U./kg insulin in the CS-NPs, the hypoglycemia was prolonged over 15 h and the average pharmacological bioavailability relative to SC injection of insulin solution was up to 14.9%.

Adhesives↗

Intestinal absorption and metabolism of a soluble flavonoid, alphaG-rutin, in portal cannulated rats.

A highly soluble quercetin glycoside, alphaG-rutin, is a glucose adduct of insoluble rutin, and intestinal absorption and metabolism of alphaG-rutin has not been known. We investigated the intestinal absorption and metabolism of alphaG-rutin by using portal and duodenal cannulated rats and the isolated rat intestinal mucosa. After a duodenal instillation of alphaG-rutin (150 mumol), intact alphaG-rutin, rutin and quercetin were appeared in the portal blood and these concentrations were similarly increased at 15 min. Portal quercetin reached a peak value at 60 min, and the value was higher than those of alphaG-rutin and rutin at that time. Quercetin-conjugates were also increased 30 min after the instillation. The remaining of alphaG-rutin metabolites, mainly rutin, in the intestine were 58% of instilled alphaG-rutin after 150 min. In the experiment by using the isolated mucosa of the jejunum, ileum and cecum, alphaG-rutin and rutin, but not quercetin, appeared in the serosal sides of all segments, and they were increased linearly from 10 to 100 mmol/l of mucosal alphaG-rutin. We also showed portal injected alphaG-rutin was very rapidly cleared from the blood, and appeared a large amount of conjugates. In conclusion, a soluble flavonoid-glycoside, alphaG-rutin, was absorbed as glycosides into the portal blood. A part of alphaG-rutin was hydrolyzed to rutin, but not to aglycone, through the intestine.

Animals↗

Intestinal absorption and biliary secretion of 5MTHF: effect of ethanol.

The aim of this work was to study intestinal absorption, using the whole intestine in vivo with 5-methyltetrahydrofolate (5MTHF), and the subsequent appearance of this compound in the bile, in control and in ethanol-fed rats. The ethanol-fed rats drank ethanol (5 to 30% vol/vol) in tap water for 5 wk. A consumption of 30% was maintained in this group for 20 additional weeks. The two groups of rats were cannulated at the beginning and at the end of the intestine. Three solutions containing 0.5, 1.0, and 2.5 microM of cold 5MTHF and 14C-methyltetrahydrofolic acid (0.01 microCi/mL) in each were perfused throughout the intestine at a flow rate of 4.5 mL/min. The absorption of folate was calculated from the difference between concentrations at the beginning and at the end of the perfusion. A decrease in 5MTHF uptake was observed at the concentration of 1.0 microM (p<0.05): however, folate absorption was not significantly modified at 0.5 and 2.5 microM in the perfusate. Serum folate levels were significantly lower in the ethanol-fed rat group. This fact could be due to a lower intake of folate in the diet and/or to the effect of alcohol on the intestinal absorption. The bile duct was isolated and cannulated with a polyethylene cathether. No significant differences were noted in the biliary folates between the control and the ethanol-fed rats.

Animals↗

Intestinal absorption of sugar-coupled somatostatin analogs.

The intestinal absorption of glycosylated somatostatin analogs was compared in rat enterocyte brush border membranes as an in vitro test system and rats as an in situ absorption model. Derivatives of the cyclic octapeptide octreotide with mono-, di-, and trisaccharide residues were used. The uptake of octreotide by the vesicles was inhibited by the glycosylated analogs. The uptake was not inhibited by the bicyclic octapeptide alpha-amanitin, which exhibits structural similarity but is not absorbed in rats. The inhibition of octreotide permeation into the vesicles decreased in the presence of derivatives with an increasing length of the carbohydrate residues. To evaluate, whether the vesicle system is predictable for the in situ situation, the extent of absorption of the peptides was determined after intrajejunal administration. A linear relationship between inhibitory capacity of the octreotide derivatives in the vesicle system and their in situ absorption efficiency was found when blood was taken from a mesenteric vein. However, after sampling from a peripheral vein, deviations from the predicted values were noted. These differences reflected changes in pharmacokinetics (e.g., hepatic elimination) rather than in absorption. In summary, the data indicate that the vesicle system is a useful tool to predict the absorption efficiency of glycosylated somatostatin analogs in situ.

Animals↗

Intestinal absorption under the influence of vasopressin: studies in unanaesthetised rats.

Experiments were carried out in different segments of the intestine of unanaesthetised rats to assess the effect of vasopressin on intestinal absorptive processes. The following data were observed. (1) Within a physiological range of doses (Aziz, 1969), ADH diminished the net sodium absorption mainly by reducing the unidirectional sodium influx, whereas the behaviour of the efflux was not uniform. (2) The unidirectional volume fluxes showed the same behaviour as did the sodium fluxes. (3) ADH produced an oral-aboral gradient (jejunum greater than ileum greater than colon). (4) ADH did not significantly change the transfer of actively transported sugars; it did influence, however, passively transported substances. (5) During the intravenous application of ADH, a substance was secreted into the perfusion solution which diminished the absorption of volume and electrolytes. (6) Cyclic AMP acted on intestinal absorption in the same way as did ADH. In view of these results two mutually independent transport pathways for sodium and water are supposed, one of which is influenced by ADH or cAMP. Based on a two membrane model, an ADH mechanism is discussed: the permeability of the luminal membrane system is enhanced in the presence of vasopressin.

Animals↗