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Elucidation of the role of hydrophobic bonding in influencing intestinal absorption of model sulfonamides and revealing possible mechanism of drug absorption in rat model.

A recirculation technique was used to study the first-order kinetics of intestinal absorption of un-ionized sulfadiazine, sulfamerazine, and sulfamethazine in rats in situ at 32, 35, and 38 degrees C. The absorption rate constant (Kab) of each sulfonamide increased with increase in temperature and, at each temperature, Kab was the highest for sulfamethazine and the lowest for sulfadiazine. Applying the activated complex formation theory, the energy of activation (Ea), free energy of activation (delta F*), enthalpy of activation (delta H*), and entropy of activation (delta S*) of absorption were determined for the sulfonamides to gain some insight into the mechanism of their intestinal absorption. The high values of delta F* indicated that the barrier for sulfonamide absorption was great. For each drug, the value of delta H* was positive and that the delta S* negative. However, delta H* and delta S* were the highest for sulfamethazine and the lowest for sulfadiazine, thus revealing the influence of hydrophobic bonding in increasing Kab of the sulfonamides with the increase in methyl group content of their molecules. By considering the facts that (1) the microvillus membrane of the intestinal absorptive cells regulates the rate of passive absorption of drugs, (2) the microvillus membrane is rich in proteins, which are located external to the membrane and exposed to the intestinal fluid, and (3) hydrophobic bonding contributes to the activation parameters of absorption, it was postulated that the activated complex formed in the absorption process consisted of a transient association of the sulfonamide molecules with some protein component of the microvillus membrane.

Animals

Intestinal absorption of bile acid glucuronides in rats.

While the intestinal absorption of taurine, glycine, and sulfate conjugates of bile acids has been studied extensively, nothing is known about the absorption of bile acid glucuronides. In the present study, the intestinal phase of the enterohepatic circulation of two bile acid glucuronides was examined. [3 beta-3H]cholic acid 3-O-beta-D-glucuronide or [3 beta-3H]lithocholic acid 3-O-beta-D-glucuronide was perfused through isolated segments of ileum or jejunum with intact blood supply in rats prepared with a biliary fistula. [14C]Taurocholic acid was perfused simultaneously with each glucuronide to compare glucuronide absorption with that of an actively transported bile acid. Intestinal absorption was determined by measuring the rate of secretion of labeled bile acid in bile. The absorption of [3H]cholic acid glucuronide by the ileum and jejunum was one fortieth and one eighth, respectively, that of [14C]taurocholic acid. Comparison of the two glucuronides show that [3H]lithocholic acid glucuronide absorption was 18 and 10 times greater than [3H]cholic acid glucuronide absorption from the jejunum and ileum, respectively. Collectively, the above observations suggest that glucuronidation of bile acids markedly reduces absorption from the small intestine.

Animals

The intestinal absorption of cadmium increases during a common viral infection (coxsackie virus B3) in mice.

Murine intestinal absorption, tissue accumulation and redistribution of 109Cd during infection were studied using the common human virus Coxsackie virus B3 (CB3) adapted to the mouse. Female Balb/c mice were infected with CB3 and, on day 4 of the infection, dosed orally with 0.3 or 750 microgram Cd/kg body weight, with 109Cd as a tracer, in order to study intestinal absorption and tissue distribution of Cd during infection (Experiment 1). Other mice were dosed with 0.3 microgram Cd/kg body weight 3 days before being infected and, on day 4 of the infection, Cd redistribution was studied (Experiment 2). In both experiments non-infected control animals received the same treatment as infected animals. Results showed that the infected animals had a higher gastrointestinal absorption of Cd than noninfected animals when Cd was administered during infection. In the infected animals the absorption at the low Cd dosage was increased by 70% and was tripled at the high dosage. The increased absorption enhanced the accumulation of Cd in all organs studied. Moreover, the infection caused a Cd dose-dependent change in the organ distribution of Cd, when Cd was administered during the infection. However, no redistribution of previously accumulated Cd occurred during ongoing disease, indicating that Cd was not mobilised from body stores by the infection. These results show, for the first time, that an invading micro-organism can increase the intestinal absorption and concomitantly alter the tissue distribution of an environmental pollutant (Cd) if exposure occurs during the course of viral infection.

Administration, Oral

Arachidonic acid intestinal absorption: mechanism of transport and influence of luminal factors of absorption in vitro.

The mechanism and characteristics of intestinal absorption of arachidonic acid were studied in vitro using everted intestinal sacs of the rat. Arachidonic acid absorption was studied at concentrations of 5 micron to 8.36 mM. The plot of absorption rate vs. concentration fitted best to a rectangular hyperbola at low micron concentrations and to a straight linear relationship in the mM range of concentrations. Metabolic inhibitors and uncouplers did not change absorption in either range of concentrations. The absorption of arachidonic acid increased with thinning of the unstirred water-layer, decrease in the pH, or the substitution of sodium taurocholate by Pluronic F 68 OR Tween 80. Absorption decreased following the equimolar additions of oleic, linoleic, and linolenic acids. Absorption rate did not change when the taurocholate concentration was varied from 5-15 mM or following the additions of butyric or glutamic acids, leucine, lysine, or dextrose. It was concluded that arachidonic acid is absorbed by a concentration-dependent dual mechanism of transport which is not energy dependent. At the low micron range of concentrations, facilitated diffusion is predominant, while at mM concentrations, simple diffusion is the dominant mechanism of absorption. Changes in the intestinal fluid composition, flow rate, and pH can modify the rate of absorption of arachidonic acid.

Animals

Site-dependent small intestinal absorption of ranitidine.

The site-dependent, small intestinal absorption characteristics of ranitidine were estimated by the intestinal steady state perfusion technique (triple lumen tubing system) combined with simultaneous measurement of serum concentrations of ranitidine. Ranitidine 150 mg.l-1 was perfused at 10 ml.min-1 for 180 min in different sites of the small intestine between 65-250 cm beyond the teeth. Each of 9 healthy, male volunteers was examined twice, using perfusion sites in different regions of the small intestine to permit intraindividual comparisons. The absorption rates (micrograms.30 cm-1.min-1) calculated from intestinal samples showed distinct site-dependence; the highest rates (medians 160-923 micrograms.30 cm-1.min-1) were found in the most proximal region (duodenojejunal junction), and the most distal perfusion sites (distal jejunum/ileum) showed median rates from 193 to 265 micrograms.30 cm-1.min-1. In both of these regions there was a significant positive correlation between the net intestinal water flux and the movement of ranitidine. Within the mid-jejunum, every subject showed marked secretion of ranitidine into the gut lumen (medians -338 to -124 micrograms.30 cm-1.min-1), and in this region there was no influence of water flux on ranitidine movement. The intraluminal results were confirmed by the corresponding site-dependent areas under the serum concentration-time curves (AUC), which decreased with the distance of the perfusion site from the teeth. After the more distal perfusions individual AUCs amounted to 64-16% of the AUCs obtained after more proximal applications. The results demonstrate the small intestine as the site of a gradient of absorption of ranitidine.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

The effect of luminal pH on large intestinal absorption in ulcerative proctocolitis.

The sensitivity of large intestinal absorption to pH and the absorption of short-chain fatty acids were measured in ulcerative proctocolitis by a dialysis bag method. Lowering luminal pH from 7 to 5.5 significantly reduced absorption of salt and water in proctocolitis, but not in normal controls. Short-chain fatty acid absorption was not affected by inflammation or change in pH when patients with ulcerative proctocolitis were compared with controls.

Adult

Intestinal absorption of copper: effect of sodium.

The mechanisms of copper (Cu) absorption from the small intestinal lumen are poorly understood. In this study we investigated the role of sodium (Na) during the removal of Cu from the lumen of jejunal and ileal segments, using an in situ perfusion procedure in the anesthetized rat. Intestinal absorption of Cu from a 31 microM solution was highest in the presence of an isotonic concentration of NaCl, as compared to solutions containing either glycerol (GRL) or N-methyl-D-glucamine (NMG) as osmotic agents. In the jejunum, mean +/- SEM Cu absorption rates in the presence of the following solutes were: with NaCl, 57.5 +/- 10.5 pmole/min X cm; with GRL, 13.3 +/- 14.7 (P less than 0.05); with NMG, 18.4 +/- 10.1 (P less than 0.05). In the ileum, copper absorption in the presence of NaCl was 64.4 +/- 9.6; with GRL, 24.3 +/- 10.1 (P less than 0.01); with NMG, 15.8 +/- 3.7 (P less than 0.001). Kinetic analysis of the carrier-mediated component of Cu absorption in rat jejunum yielded a Vmax = 47.5 pmole/min X cm and an apparent Kt = 21 microM. The diffusion coefficient was calculated to be 1.4 X 10(-5) cm2/sec. The absorption of Cu was independent of net water absorption, which was highest in the presence of GRL and abolished and reversed into secretion by NMG. The data obtained are indicative of a significant role of Na in the small intestinal transport of Cu, in vivo, although not directly related to unidirectional water fluxes. The cation specificity of Na in this process remains to be elucidated, although the results support earlier studies which postulated that mediated transport may constitute a major component of Cu absorption in the mammalian small intestine.

Absorption

Improvement of bioavailability of poorly absorbed drugs. II. Effect of medium chain glyceride base on the intestinal absorption of cefmetazole sodium in rats and dogs.

The effect of medium chain glyceride (MCG) on the intestinal absorption of cefmetazole sodium (CMZ) was investigated in rats and dogs. In rats, MCG containing glyceryl mono-, di- and tri-caprylate enhanced the intestinal absorption of CMZ after intraduodenal administration, though the promoting effect of MCG was less than that after rectal administration. The promoting effect of MCG was found to be mainly due to glycerylmonocaprylate and dependent on the dosage of MCG. The plasma CMZ levels after intraduodenal administration as MCG solution tended to be slightly higher than those observed after administration as MCG emulsion, though the differences were found to be statistically insignificant. Moreover, the intestinal absorption of CMZ after intraduodenal administration as MCG emulsion was decreased significantly by increasing the amount of water in the emulsion. The promoting effect of MCG in dogs was more clearly demonstrated in the lower intestine than in the upper intestine. Furthermore, the oral bioavailability of pharmaceutical formulations of CMZ was also investigated in dogs. When enteric coated capsules filled with MCG solution were administered to dogs, the bioavailability of CMZ was enhanced significantly.

Animals

Synthesis, intestinal absorption and metabolism of sarcosine conjugated ursodeoxycholic acid.

Sarcosine conjugated ursodeoxycholic acid (SUDC) was synthesized and its intestinal absorption and metabolism were studied in rat and hamster. Intestinal absorption study using bile fistula rat shows that more than 90% of SUDC administered intraduodenally was excreted in the bile within 24 hr. No change of the administered bile acid was seen during the absorption from the intestine, the passage of the liver, and the excretion into the bile. When [24-14C]SUDC and [11,12-3H2]-ursodeoxycholic acid were administered orally to a hamster, more than 95% of both the administered 14C and 3H were recovered from the feces within 6 days. Most (77%) of the fecal 14C-labeled compound was SUDC, whereas 95% of the fecal 3H-labeled compound was unconjugated lithocholic acid. These results indicate that SUDC, unlike taurine or glycine conjugated bile acid, resists bacterial deconjugation and 7-dehydroxylation.

Animals

Determinants of the rate of intestinal absorption of oral cholecystographic contrast agents in the dog jejunum.

Successful opacification of the gallbladder during oral cholecystography depends on adequate absorption of the contrast agent from the intestine. The present studies were undertaken to define the specific characteristics of the intestinal mucosa and the properties of the various contrast agents which determine their rates of intestinal absorption. The polarity of the compounds was established by determining the ratios of their distribution between bulk solvents (benzene and water). In addition, the maximum aqueous solubility of each compound was determined. Using in vivo cannulated segments of dog jejunum, apparent passive permeability coefficients were measured. From these data, the apparent maximal rate of intestinal absorption was calculated. The six cholecystopaques studied differed markedly in polarity as judged by their varying ratios of distribution between benzene and water. The permeability coefficients varied inversely with the polarity of the compounds. However, the incremental changes in the coefficients were considerably less than the corresponding changes observed in the partition ratios. The rates of absorption of the more polar contrast agents (tyropanoate, iopronic acid, and iocetamic acid) were greater than the less polar compounds (iopanoic acid, sodium ipodate, and calcium ipodate) under the conditions in which the resistance of the unstirred water layer is not rate limiting and where bile acid micelles are not present.

Animals

Intestinal absorption and tissue retention of cadmium and calcium in normal adult rats and rats given an active metabolite of vitamin D (1,25-dihydroxycholecalciferol).

1. Nine-months-old male rats were divided into a normal control group and one experimental group which received eight daily intraperitoneal injections 15 pmol of 1,25-dihydroxycholecalciferol/100 g body weight. After 5 days, 20 muCi of 109CdCl2 or 20muCi of 45CaCl2 was administered by stomach tube. The intestinal absorption and tissue retention of the radioisotopes were analysed during the next 3 days, the animals being kept in metabolic cages. 2. The administration of 1,25-dihydroxycholecalciferol caused significantly increased net absorption of intestinal calcium, hypercalcaemia and increased incorporation of calcium into bone. In comparison, there was no significant effect on the intestinal absorption of trace doses of cadmium or upon the accumulation of cadmium in the liver and kidneys.

Animals

Isolation, chemical characterization, and immunohistochemical localization of a protein from the basolateral plasma membrane of the rat intestinal absorptive cell.

The protein pattern of the basolateral membrane (BLM) of the rat small intestinal absorptive cell shows about 20 major and a multitude of minor bands. A simple and efficient method is described for isolation and purification of a major protein in the 17 kDa molecular weight (MW)-range called Prot 17. The isolated BLM of intestinal epithelial cells was dissolved in buffer 1 (Tris/HCl, 2% SDS, 10% glycerol, 5% beta-mercaptoethanol, pH 6.8) and subsequently dialyzed for 4 h against buffer 2 (Tris/glycine, pH 8.3) and then for 12 h against buffer 2 containing 25% methanol. The resulting precipitate contained Prot 17 and phospholipids in the form of liposomes. All other BLM proteins remained dissolved in the supernatant. Chemical characterization of Prot 17 suggested that it is an integral membrane protein amounting to about 5% of the total BLM protein. Amino acid analysis revealed a MW of 17.6 kDa. The Prot 17 molecule did not contain any PAS-positive carbohydrates. In its isolated form, and apparently also in the BLM, Prot 17 occurred as a polymerized structure with a MW of about 90 kDa. By dissolution in buffer 1 and heating to 100 degrees C for 1 min the complex was split into its 17 kDa subunits. By oxidation with performic acid it was also broken down into its subunits. A specific antiserum against Prot 17 was obtained from immunized Balb/c mice. Immunofluorescence labelling of rat small intestinal sections with this serum showed that Prot 17 was not a BLM-specific protein. It occurred in both plasma membrane domains of the intestinal absorptive cell.

Animals

Intestinal absorption of 5-fluorouracil and its alkylcarbamoyl derivatives in the rat small intestine.

The intestinal absorption of 5-fluorouracil (1) and its alkylcarbamoyl derivatives possessing various lipophilic pro-moieties including the butylcarbamoyl, hexylcarbamoyl, octylcarbamoyl, and nonylcarbamoyl groups, was investigated in the rat using both in situ and in vitro techniques. All compounds showed greater apparent partition coefficients and lipophilic indices (k') (by HPLC) and lower solubilities in water than 1. Although enhancement of uptake by the everted intestine in vitro was observed when the alkylcarbamoyl chain length was increased, the appearance of the prodrugs in the mesenteric vein in the in situ intestinal loop (complete venous collection) was decreased and sustained. The conversion of alkylcarbamoyl derivatives to 1 was noted in the absorption process.

Animals

Small intestinal absorption during endotoxemia in swine.

We studied the effects of systemic endotoxemia on small intestinal absorption in an in vivo animal model. Seven adolescent Yorkshire swine underwent creation of 25 cm distal ileal Thiry-Vella fistulae. After 1 week recovery, the fistulae were perfused with a solution of glucose and electrolytes labeled with 14C-PEG, and net absorption of water, Na+, Cl-, and glucose was calculated. Animals were studied under three different conditions: (1) Basal fasting state, (2) immediately after intravenous injection of E. coli lipopolysaccharide (LPS; 250 micrograms/kg), and (3) 24 hours after LPS. Water, Na+, and Cl- absorption was significantly reduced 2 hours after LPS, but recovered to baseline values by the third hour after LPS. Twenty-four hours after LPS water, Na+, and Cl- absorption was significantly decreased below baseline values. Glucose absorption after LPS paralleled that of water and electrolytes, except that the transient early recovery was not observed. Histological studies of the ileum after LPS showed marked epithelial inflammation at 6 hours, villous atrophy at 24 hours, and signs of recovery at 7 days. Intestinal absorption of water, electrolytes, and glucose is adversely affected in the immediate and early periods after an endotoxemic episode, but the histological epithelial injury secondary to endotoxemia is reversible.

Animals

The effect of di- and trivalent iron on the intestinal absorption of aluminum in rats.

The effect of iron (Fe) on the intestinal absorption of aluminum (A1) was studied in an in situ perfusion system of rat small intestine in combination with systemic and portal blood sampling. The gut was perfused with media containing 0.0, 10.0, 15.0, 20.0, and 25.0 mmol/liter Al chloride and 5 mmol/liter Fe(II) or Fe(III) chloride at pH 3.0. Neither luminal disappearance nor intestinal absorption of A1 were affected by Fe(III). Fe(II), however, enhanced luminal disappearance and reduced absorption of Al.

Aluminum

Intestinal absorption of folic acid, glucose, sodium and water in chronic pancreatitis.

Intestinal absorption of folic acid, glucose, water and sodium in 10 patients with chronic pancreatitis who have abstained from alcohol for at least 2 months is compared with 18 agematched outpatients without gastrointestinal disorders and a daily alcohol intake less than 30 g. Intestinal absorption was measured by segmental perfusion of the jejunum using a triple lumen tube. Patients with chronic pancreatitis showed a significantly decreased absorption of folic acid and glucose, whereas the net absorption of water and sodium was not disturbed.

Adult

[Functional diagnosis of intestinal absorption in gastroenterology surgery].

Clinical tests for measuring the intestinal absorption in abdominal surgery, especially surgery of the GI-tract, are of great importance. The absorption of the proximal small intestine can be investigated via a modified D-xylose-test. The distal small intestine may be studied by using the vitamin-B12 urinary excretion test. The bacterial overgrowth syndrome and the absorption of bile salts can be diagnosed on the basis of a 14C-glykocholate test.

Biopsy