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Intestinal absorption of fluoride preparations.

Gastric intestinal absorption of five different preparations of sodium fluoride was measured by means of ten hour urinary excretion. Best absorption was by nonenteric coated sodium fluoride. All three enteric coated preparations showed poorer absorption, with marked individual variations. Florical, the currently available preparation, showed better absorption than any enteric coated tablets and only slightly less than sodium fluoride alone. For active cochlear otospongiosis two capsules three times a day should be prescribed.

Administration, Oral

Age-dependent alterations of intestinal absorption. II. A clinical study using a modified D-xylose absorption test.

With advancing age functional and morphological changes take place within the intestinal tract. The age-dependency of intestinal absorption has been studied using a D-xylose absorption test. The absorption rate (constant k12), the time of appearance of the relative maximum of the D-xylose concentrations in the blood serum after oral administration (time tm), and the extent of the relative absorption in the small intestine as a function of time RA(t) were determined by graphic-mathematical evaluation of the blood level kinetics of D-xylose after oral and intravenous administration. Within the age range of 3 to 96 yr, it has been proven that a slowing down of intestinal absorption occurs with advancing age. By prolonging the period during which the food components are absorbed in the small intestine (shift of tm towards the absorption processes take place at a slower rate. Absorption disorders in old age are due to morbidity and not, sui generis, to involution.

Adolescent

Epithelial cell proliferation and intestinal absorptive function during starvation and refeeding in the rat.

1. Intestinal epithelial cell production and intestinal absorption were measured in fed, starved and refed rats. 2. Four days' starvation significantly decreased the crypt cell production rate (CCPR), absorption, small intestinal length and crypt cell population. 3. There was an immediate increase in absorption 1 day after refeeding, which preceded a slower increase in CCPR. The absorption rate then decreased progressively after refeeding, and was significantly lower than control levels 1 week after refeeding. The CCPR, however, increased more gradually, reaching control levels after 2 days and then 'overshooting' control values. 4. There was no significant change in the crypt cell population immediately after refeeding; thus we propose that the initial increase in absorption on refeeding is either due to an accelerated maturation rate of the enterocytes or to the migration of enterocytes from the base of the villus to the functional zone. 5. The rapid recruitment of absorptive function appeared to be a 'one-off' event, the villus compartment then having to wait for increased cell production in the crypts to repopulate the villi.

Animals

Intestinal absorption of calcium in newborn piglets. Role of vitamin D.

The role of vitamin D for intestinal absorption of Ca was studied in neonatal piglets. Piglets of normal phenotype (heterozygotes) and piglets which suffered from pseudo-vitamin D deficiency rickets, type I, which were devoid of renal 25-cholecalciferol-1-hydroxylase were used for the experiments. Intestinal absorption of Ca was measured after an oral dose of 3-7 MBq 45CaCl2. Intestinal absorption of Ca was the same in heterozygotes and homozygotic rachitic piglets during the first 3-4 weeks of life. Ca absorption began to decline in rachitic piglets at the age of 4 weeks. In 8-week-old rachitic piglets intestinal Ca absorption was 50% of control piglets. Body weights of heterozygotes and rachitic piglets were the same at birth and no different weight gains were seen between the two groups during the first 4-5 weeks of life. No differences were observed during the first weeks of life in the concentrations of plasma Ca, inorganic-phosphate and alkaline-phosphatase activity between the groups. Hypocalcemia and hypophosphatemia developed in rachitic piglets between the 3rd and 5th weeks of life. Concentrations of 1,25-(OH)2D3 in plasma declined in heterozygote piglets from 130 +/- 26 to 88 +/- 19 pg/ml and in rachitic piglets from 67 +/- 37 to 23 +/- 11 pg/ml during the first 6 weeks. An intestinal nuclear 1,25-(OH)2D3 receptor was absent in neonatal piglets of both experimental groups. It is concluded that intestinal absorption of Ca in piglets during the first 2-4 weeks of life is independent of vitamin D.

Alkaline Phosphatase

Differential effect of steroids and chloroquine on the intestinal absorption of aluminium and calcium.

In rats with normal renal function the intestinal absorption of aluminium appears to be partly vitamin D dependent. To further characterise the similarities between the absorption of aluminium and calcium we investigated the effects of dihydroxylated vitamin D metabolites, prednisolone, and chloroquine (CQ) in Sprague-Dawley rats with normal or reduced renal function. The latter agents interfere with lysosomal functions and have been reported to reduce the intestinal absorption of calcium, whereas vitamin D metabolites may stimulate the absorption of both aluminium and calcium. To assess the intestinal absorption of aluminium we monitored urinary aluminium excretion and serum aluminium concentrations following an oral load of 410 mumol aluminium. Calcium absorption was calculated from the differences between an orally administered dose of 45calcium and faecal excretion. In vitamin-D-deficient rats cholecalciferol and calcitriol augmented urinary aluminium excretion to a similar degree subsequent to an oral load whereas 24R,25(OH)2D3 was without an apparent effect. In vitamin-D-replete rats with normal renal function CQ (225 mg/kg i.p.; 3 days) as well as prednisolone (25 mg/kg; 7 days) significantly reduced calcium absorption (% dose) (CQ: 39 +/- 5%, prednisolone: 42 +/- 3%, control: 58 +/- 11%). In contrast neither drug reduced urinary aluminium excretion (CQ: 519 +/- 92, prednisolone: 494 +/- 137, control: 469 +/- 187 nmol/5 days) or the postload increase in serum aluminium following oral exposure. When aluminium was administered intravenously recovery of aluminium was comparable between treatment groups and controls.(ABSTRACT TRUNCATED AT 250 WORDS)

Aluminum

Acute effects of ursodeoxycholic and chenodeoxycholic acid on the small intestinal absorption of bile acids.

The effects of ursodeoxycholic acid and chenodeoxycholic acid on the small-intestinal absorption of endogenous bile acids were studied in patients with ileostomies who served as a model to investigate small-intestinal absorption in humans. In the control period, the eight patients excreted 327 +/- 91 (mean +/- standard error of the mean) mumol/8 h cholic acid and 214 +/- 38 mumol/8 h chenodeoxycholic acid by their ileal fluid. Following ursodeoxycholic acid administration (500 mg), ileal excretion of cholic acid increased to 517 +/- 96 mumol/8 h, and that of chenodeoxycholic acid increased to 337 +/- 42 mumol/8 h, indicating decreased absorption of these bile acids. Following chenodeoxycholic acid administration (500 mg), no significant increase of cholic acid excretion was observed, whereas chenodeoxycholic acid excretion increased as expected. It is concluded that following ursodeoxycholic acid administration the absorption of common bile acids from the small intestine decreases markedly. This effect of ursodeoxycholic acid on intestinal absorption of common bile acids probably is responsible for the decrease of their plasma concentrations, the reduction of their pool sizes, the increase of their fractional turnover rates, and most likely also contributes to the increased hepatic synthesis of cholic acid.

Adult

Intestinal absorption and metabolism of 6-mercaptopurine in the rat small intestine.

The intestinal absorption of 6-mercaptopurine was examined in the rat by in vitro and in situ techniques for the purpose of establishing absorption characteristics which might explain the poor systemic oral availability of this drug. Experiments were designed to evaluate the significance of intestinal metabolism and active secretion processes. Since mucosal/serosal drug concentration gradients across in vitro segments were not significantly different (P greater than 0.05) for everted and noneverted preparations, with values of 1.21 +/- 0.27 and 0.91 +/- 0.12, respectively, it was concluded that active secretion or absorption mechanisms were absent. Varying the concentration of 6-mercaptopurine from 0.24 to 5.88 mM demonstrated saturability of the biotransformation of 6-mercaptopurine to 6-thiouric acid with a maximum rate of 1.6 X 10(-5) mmoles per min g for jejunal portions. Distal segments displayed 85% higher rates of biotransformation at concentrations of 1.47 mM. Inclusion of allpurinol (2 mM) completely inhibited biotransformation. With in situ loops perfused with 1.47 mM drug, collection of mesentery blood showed that absorption rates of 6-thiouric acid were 0.67 that of the parent drug.

Animals

Intestinal absorption of phosphate: action of protein synthesis inhibitors and glucocorticoids in the rat.

The effect of actinomycin D, cycloheximide and glucocorticoids on the intestinal absorption of phosphate was studied. The effective intestinal absorption of 32P and 47Ca was determined simultaneously in intact rats in vivo using a whole body counter. Both, actinomycin D and cycloheximide caused a significant diminution of the intestinal absorption of phosphate whereas calcium absorption was not altered. Experiments with the in situ ligated loop technique were performed to eliminate the possibility that the action of the protein synthesis inhibitors could be due to an altered intestinal motility effect. Phosphate absorption was also significantly diminished under this condition. On the other hand, the administration of glucocorticoids produced a significant inhibition of phosphate and calcium absorption in the rat in vivo. The reported results indicate that proteins and/or enzymes with a rapid turn-over are involved in the mechanism of phosphate intestinal absorption, and confirm previous observations that phosphate and calcium are transported across the intestine by different mechanisms.

Animals

Intestinal absorption in the mechanically obstructed rat intestine: protection by prostaglandins.

Intestinal obstruction inhibits amino acid absorption. The inhibition, being dependent on the pathological changes of the absorptive epithelium, was considered as an index of injury and measured after varying periods of obstruction and after pretreatment with clindamycin, indomethacin, 16,16-dimethyl-PGE2 or arachidonic acid. A reduction in amino acid uptake was apparent after 2h of obstruction and was increasingly evident after 4, 6 and 18 h. During the late phase (after 6 h), inhibition was partly prevented by pretreatment with clindamycin, but the antibiotic was ineffective during the early phase (within the first 2 h). Bacterial colony counts of luminal contents of rats obstructed for 2 h, were not different from counts obtained in controls, but significantly lower than counts in rats that have been obstructed for 6 h. Pretreatment of rats with 16,16-dimethyl-PGE2 or with arachidonic acid prevented the early inhibitory effects of the obstruction. The findings suggest that the early inhibition in amino acid uptake may be related to metabolic changes that are correctable by the administration of 16,16-dimethyl-PGE2 or of arachidonic acid. The inhibition, during the late phase, is mainly related to an overgrowth of the enteric bacteria.

16,16-Dimethylprostaglandin E2

Intestinal absorption of L-tryptophan in scleroderma.

The purpose of this investigation was to study the intestinal absorption of L-tryptophan and to assess the absorptive function of the intestine in scleroderma. The oral L-tryptophan loading test was performed in 31 cases of systemic scleroderma (progressive systemic sclerosis, PSS) and 3 cases of localized scleroderma. Serum levels of tryptophan and urinary excretion of indole-acetic acid (IAA) and indican (IS) were determined in order to assess intestinal absorption of tryptophan. In 10 cases the D-xylose test and in 4 cases Schilling's test was also performed. Furthermore, in vitro binding of L-tryptophan by plasma proteins in PSS and in other skin diseases as controls was studied. The normal increase in serum tryptophan after loading was noted in 17 cases (in 14 cases of PSS with a mild, slow progression in 3 cases of PSS with a severe, rapidly progressing course). In 10 of these cases, urinary excretion of IAA was higher than normal and in normal and in 3 cases excretion of urinary IS was also above normal. On the other hand, in 14 cases of severe, rapidly progressing PSS and in 2 of 3 cases of widespread linear scleroderma, serum levels of tryptophan were markedly depressed after loading, while urinary excretion of IAA and IS was normal. In all 4 cases studied, Schilling's test was normal, and only in 2 of 10 cases of PSS was the D-xylose test abnormal. It is concluded that in the majority of cases of PSS, intestinal absorpiton of tryptophan is normal as also is the absorptive function of the intestine. The slight rise in serum tryptophan after loading in some cases of PSS may be a result of increased binding of tryptophan by albumin.

Adolescent

Effect of colchicine on rat small intestinal absorptive cells. II. Distribution of label after incorporation of [3H]fucose into plasma membrane glycoproteins.

By means of radioautography the influence was tested of various periods (5, 15, 30, 40 min, 2 hr) of pretreatment with colchicine, administered intraperitoneally to rats at a dosage of 0.5 mg/100 g of body weight, on the intracellular pathway of [3H]fucose in absorptive cells of the small intestine. Administration of colchicine for 30 min and longer time intervals causes delay in the insertion of [3H]fucose into the oligosaccharide chains of glycoconjugates in the Golgi apparatus, and results in redistribution of the label apparent over the different portions of the plasma membrane. In controls, at 2 and 4 hr after administration of [3H]fucose the apical plasma membrane is strongly labeled; 53.7 +/- 3.2% of the silver grains are recorded over apical regions of the plasma membrane that contrast to basolateral portions comprising 25.4 +/- 3.2% of the label. Colchicine causes equalization of the reaction of apical and basolateral regions of the plasma membrane: the number of silver grains attributable to the apical plasma membrane is reduced; following treatment with colchicine, apical portions of the plasma membrane comprise 31.6 +/- 1.8% of the silver grains, 38.6 +/- 3.8% are attributable to basolateral membrane regions. The colchicine-induced equalization of the density of label of apical and basolateral regions of the plasma membrane, in addition to the occurrence of basolateral microvillus borders (demonstrated in the companion paper), suggests microtubules to be important in the maintenance of the polar organization of small intestinal absorptive cells.

Animals

Metabolic acidosis enhances 1,25(OH)2D3-induced intestinal absorption of calcium and phosphorus in rats.

The effect of metabolic acidosis on the intestinal absorption of calcium (Ca) and phosphorus (P), plasma vitamin D metabolites and urinary excretion of Ca in adult rats treated with a small dose of 1,25(OH)2D3 were investigated. The rats in the experimental group received 1.8% ammonium chloride (NH4Cl) and a commercial chow, and their pair-fed controls received 0.45% NaCl. Both groups were given subcutaneously 1,25(OH)2D3. Intestinal absorption of Ca and P was measured by gut sac uptake of 45Ca and 32P. In the acidotic rats, duodenal, jejunal and ileal 45Ca uptake as well as jejunal and ileal 32P uptake were significantly increased. Plasma 1,25(OH)2D, 25(OH)D and 24,25(OH)2D were similar in both groups. 1,25(OH)2D3 treatment induced a greater calciuria in acidotic rats and increased their fractional excretion (FE) of Ca. An additional experiment showed increased 45Ca uptake by duodenum at a pH of 7.0 compared to pH 7.4. The present study suggests that NH4Cl-induced metabolic acidosis may enhance the effect of 1,25(OH)2D3 on intestinal absorption of Ca and P in the rat. However, the data from the study cannot exclude the possibility that acidosis may have a direct, vitamin D-independent effect on the intestine.

Acidosis

[Displacing effect of serum protein binding on intestinal absorption of sulfadimethoxine].

The displacing effect of serum protein binding on the intestinal absorption of sulfadimethoxine (SDM) in rabbits was examined by using N4-acetylsulfadimethoxine (N4-AcSDM), a major metabolite of SDM, as a displacing drug. N4-AcSDM markedly decreased the in vitro serum protein binding of SDM, while many drugs including phenylbutazone and salicylic acid did not display such a marked decreasing-effect. The intravenous administration of N4-AcSDM clearly decreased the in situ intestinal absorption of SDM. As expected, the intravenously administered N4-AcSDM enhanced the serum concentration of unbound SDM in the common jejunal vein. However, the intravenously administered N4-AcSDM caused no change in the transfer of SDM across the intestinal membrane. These results indicate that the displacement of serum protein binding can become one of factors decreasing the intestinal absorption of SDM.

Animals

Neuropeptide Y-induced intestinal absorption: mediation by alpha 2-adrenergic receptors.

In the intestine neuropeptide Y (NPY) is contained in sympathetic nerves, in neuroendocrine cells of the mucosa, and in neurons of the enteric plexuses. After a meal is ingested the concentration of NPY in the blood rises, and intestinal absorption of water and ions increases. We have recently demonstrated a proabsorptive effect of NPY on water and ion transport in the small intestine. The current experiments tested the hypothesis that the alpha 2-adrenergic receptor mediates NPY-induced intestinal absorption. Rabbit ileal segments (n = 35) were harvested and arterially perfused ex vivo. The intestinal lumen was perfused with an isotonic solution containing carbon 14-labeled polyethylene glycol. Net fluxes of H2O, Na+, and Cl- were calculated for three 20-minute periods: basal, drug infusion, and recovery. Five groups were randomly studied: (1) NPY (500 pmol/min); (2) terazosin (1 microgram/min, alpha 1-adrenergic receptor antagonist); (3) NPY + terazosin; (4) yohimbine (1 microgram/min, alpha 2-adrenergic receptor antagonist); and (5) NPY + yohimbine. The infusion of NPY alone caused a significant (p less than 0.05) proabsorptive response for H2O, Na+, and Cl-. Neither terazosin nor yohimbine alone had a significant effect on the transport state of the intestine. Yohimbine, but not terazosin, completely prevented the NPY-induced proabsorptive response. These data support the hypothesis that the proabsorptive effect of NPY is mediated by the alpha 2-adrenergic receptor system.

Adrenergic alpha-Antagonists

Intestinal absorption studies in Fasciolopsis buski infection.

The intestinal absorption of carbohydrate, fat, protein and vitamin B12, serum vitamin B12, serum and red cell folate levels were performed in 10 patients harbouring F. buski. No disturbance of carbohydrate, fat and protein absorption was observed but vitamin B12 absorption was found to be slightly lower than normal in 8 out of 10 patients, and serum vitamin B12 was also lower than normal in 4 out of 9 patients. Red cell and serum flolate levels were within the normal limits. Histological study of jejunal biopsy was normal in 7 out of 8 patients.

Adolescent

Inhibitory effect of bile salts on the enterohepatic circulation of methotrexate in the unanesthetized rat: inhibition of methotrexate intestinal absorption.

The effect of conjugated and unconjugated bile salts on the intestinal absorption of methotrexate (MTX) in the unanesthetized rat was investigated using a recycling perfusion technique. We initially determined the general characteristics of MTX absorption in vivo. Absorption of low (0.5 microM) and high (6 microM) concentrations of MTX was linear with time for 60 min perfusion and occurred at rates of 0.2 and 1.65 nmol/100 cm dry length/min, respectively. Absorption of 0.5 microM MTX was pH-dependent and increased with decreasing perfusate pH. Absorption of MTX involves two processes: (1) a saturable process with a Kt of 0.98 microM, and (2) a nonsaturable diffusion process. The unconjugated deoxycholate and the conjugated taurocholate inhibited the intestinal absorption of 1 microM MTX in a concentration-dependent manner. The inhibitory effect of bile salts was reversible, and was not due to damage to the intestinal mucosa. The structural analogues folic acid and 5-methyltetrahydrofolate and the organic anions rose bengal and sulfobormophthalein were also inhibitory to MTX absorption. This study demonstrates that a variety of organic anions inhibit MTX intestinal absorption. The possible therapeutic importance of this observation is discussed.

Animals

Age influences on intestinal sugar absorption.

Intestinal absorption of sugars show differences depending on animals age. This is demonstrated using in vivo and in vitro techniques. The age dependence relationship is present in animals of different species such as avian, rodents and ruminants. In chicken the intestinal sugar transport increases after hatching and attains its maximum capacity by the first week of life. The D-glucose and D-galactose uptake is greater in young rats, maximum at 21 days, while it decreases thereafter. The total capacity of the small intestine of adult sheep for sugar absorption was approx. 25% of that for lambs less than 1 week of age. The differences observed in intestinal absorption of sugars at different ages could be attributed to differences in sodium and calcium transport. Other authors assume that it is induced by morphological differentiation during intestinal development.

Aging