PubMed Health⌕ Search

SEARCH · PubMed Health

Results for “Rectal Absorption”

Explore indexed PubMed citations for clinical trials, systematic reviews and public health research. Read source abstracts and follow each citation to its original PubMed record.

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

At least 55 records · Page 3Linked to original sources

Effect of enamine derivatives on the rectal absorption of insulin in dogs and rabbits.

Enamine derivatives resulting from the reaction between ethyl acetoacetate and amino acids were found to promote rectal absorption of insulin in normal rabbits, with the enamine of sodium DL-phenylalanate being the most effective adjuvant tested. Results of glucose tolerance tests in fasted alloxan diabetic rabbits showed that after oral administration of glucose, insulin suppositories containing enamines derived from either sodium phenylalanine or leucine were able to lower the serum glucose level to within the normal range for more than 2.5 h. The absorption-promoting effect of the sodium DL-phenylalanate enamine on rectal absorption of insulin in dogs was studied in two different formulations, gelatin microenema and suppository. The gelatin microenema containing the insulin solution caused a greater increase in the plasma insulin level than that obtained after administration of an insulin suppository.

Adjuvants, Pharmaceutic↗

Rectal absorption of [Bis (acetato) ammine dichloro (cyclohexylamine) platinum(IV)] (BMS-182751), a new anti-tumor agent, in rats.

The rectal absorption of a platinum anti-tumor agent, [bis (acetato) ammine dichloro (cyclohexylamine) platinum(IV)] (BMS-182751), was investigated in rats. BMS-182751 was co-ground with various carriers to improve its poor aqueous solubility. The highest drug dissolution was observed for the co-ground mixture of BMS-182751 and low molecular (LM) gelatin (1:9, w/w), followed by beta-cyclodextrin and polyvinylpyrrolidone. The influence of a suppository base or additive on the rectal absorption of BMS-182751 in the drug state of crystalline powder or co-ground mixture was examined in vitro using excised rat rectum. A macrogol base gave much higher BMS-182751 permeation across the rat rectum than that from a Pharmasol base. The addition of sodium caprylate or caprylic acid to the macrogol base markedly enhanced the drug permeation, and a 3% addition of sodium caprylate to the base afforded maximum drug permeation. Two rectal formulations, the co-ground mixture with LM-gelatin plus 3% sodium caprylate in macrogol and the crystalline drug alone plus 3% sodium caprylate in macrogol, as well as an oral aqueous drug suspension, were administered to rats. The Cmax and AUC0-24h values for platinum from the former suppository were 5.1- and 4.1-fold greater than those from the oral suspension, respectively. The values from the latter suppository were almost comparable to those from the suspension. These results suggest that the suppository may provide a promising therapeutic means for cancer treatment using this platinum agent.

Administration, Rectal↗

Improvement of bioavailability of poorly absorbed drugs. V. Effect of surfactants on the promoting effect of medium chain glyceride for the rectal absorption of beta-lactam antibiotics in rats and dogs.

The promoting effects of medium chain glyceride (MCG) on the rectal absorption of beta-lactam antibiotics were compared among various experimental animals (such as rats, rabbits and dogs). The plasma levels of cefmetazole (CMZ) after rectal administration, when MCG was used as the vehicle, significantly increased in all animals, but the bioavailability of CMZ was greatly varied among the animal species; the bioavailability of CMZ in dogs was apparently less than those in other animals (rats = rabbits greater than dogs). However, in dogs, the promoting effect of MCG on the rectal absorption of CMZ increased by addition of nonionic surfactants such as ether-type (Brij 30 and Brij 35) and ester type (Nikkol MYL-10). And the promoting effect of surfactants in the MCG vehicle is not always correlated with blood hemolysis, suggesting contribution of other physicochemical or biological factors.

Animals↗

Study of the mechanism behind adjuvant action of diethylethoxymethylene malonate enhancing the rectal absorption of cefmetazole and lysozyme.

Diethylethoxymethylene malonate (DEEMM) and diethyl maleate (DEM) enhanced the rectal absorption of cefmetazole in rats when studies were carried out using in vivo, in situ rectal loop and in vitro rectal everted sac method. Since an increase of cefmetazole transport was found when concentration of nonprotein sulfhydryls in rectal tissue was decreased by the presence of either DEEMM or DEM in the study using in vitro everted sac method and the enhancement of cefmetazole absorption by the coadministration of either DEEMM or DEM was suppressed by the treatment with dimercaprol, membrane permeability of rectal tissue seems to be regulated by the concentration of nonprotein sulfhydryls in rectal tissue. On the other hand, it was also found that there were differences between the action of DEEMM and the action of DEM from the following two results: 1) enhancing action of DEEMM was suppressed by the presence of calcium ion in microenema while action of DEM was not so much influenced, and 2) DEEMM enhanced the rectal absorption of lysozyme in rabbits but DEM did not.

Adjuvants, Pharmaceutic↗

Absorption enhancement of polypeptide drugs by cyclodextrins. I. Enhanced rectal absorption of insulin from hollow-type suppositories containing insulin and cyclodextrins in rabbits.

The absorption of insulin (from porcine pancreas) from the rectum of rabbits after the administration of hollow-type suppositories containing insulin and five kinds of cyclodextrins (CyDs) was investigated. Three types of suppositories were employed: suppository I containing insulin (approximately 26 IU/mg) and various amounts of each CyD in citric buffer solution at pH 3.0 or powder in its cavity, suppository II containing CyD without insulin, and suppository III containing insulin without CyD. Without CyD, the insulin and glucose levels in plasma were unchanged, whereas a significant increase in the plasma insulin concentration and a marked decrease in the glucose levels were found following simultaneous administration of insulin and CyDs by suppository I. The enhancing effect of CyD on rectal insulin absorption (absorption-enhancing effect) by chemically modified CyDs (heptakis(2,6-di-O-methyl)-beta-CyD (DM-beta-CyD) and 2-hydroxypropyl-beta-CyD (HP-beta-CyD)) was higher than those by natural CyDs (alpha-, beta-, and gamma-CyD). The area under the plasma concentration-time curve (AUC) and Cmax of insulin significantly decreased with the preadministration (administration of CyD 6, 24 and 48 h before rectal insulin administration) of DM-beta-CyD. The absorption-enhancing effect disappeared 24 h after preadministration. These results suggest that CyDs enhance insulin absorption from the rectum, and that attenuation of the membrane transport barrier function in the rectum recovers at a maximum of 24 h after administration of CyDs.

Absorption↗

Enteral, oral, and rectal absorption of ceftriaxone using glyceride enhancers.

In vivo models in rodents and primates were used to investigate ways of overcoming the poor oral and rectal absorption of ceftriaxone. The sodium salt of ceftriaxone at 20 mg/kg was formulated in C8-C10 chain length, mono- and diglyceride extracts of coconut oil (Capmul) and administered intraduodenally to adult rats. Peak plasma levels of 17-52 micrograms/ml and bioavailability averaging 38% were attained. Significant plasma levels (42-45 micrograms/ml) were also demonstrated in squirrel monkeys with doses of 20 mg/kg ceftriaxone formulated in Capmul and given by the enteral route. Enteric-coated capsules containing this formulation were also orally administered to squirrel monkeys and gave high plasma levels (10-31 micrograms/ml) between 1 and 6 h following dosing. In rectal absorption studies, ceftriaxone formulated in Capmul as a suspension gave peak blood levels of 62-84 micrograms/ml (average bioavailability 42%) in the rabbit. In the baboon, rectal administration of ceftriaxone formulated with Capmul in a Witepsol H15 suppository gave Cmax levels ranging from 9 to 48 micrograms/ml, depending on the dose of the antibiotic and the drug/enhancer ratio.

Administration, Oral↗

Improvement of bioavailability of poorly absorbed drugs. IV. Mechanism of the promoting effect of medium chain glyceride on the rectal absorption of water soluble drugs.

The mechanisms of the promoting effect of medium chain glyceride (MCG) containing glyceryl mono-, di- and tri-caprylate on rectal absorption of water soluble drugs were investigated. It was found that the solubility behavior of the drugs in mucosal fluids on the surface of the membrane are critical factor for the enhanced rectal absorption. Moreover, the drugs to be readily absorbed from MCG base may be ones of low partition coefficients to MCG phase as well as high solubility in water. And it was found that MCG can't be absorbed from the rectum, different from oral administration, suggesting an interaction of MCG with absorption membrane, rather than the carrier effect of MCG itself. Furthermore, from the results in the pretreatment experiments and additional administration of MCG alone, it was suggested that the interactions of MCG with the membrane components, as well as the induction of biological or physiological changes, may be at least partly responsible for the promoting effect of MCG.

Animals↗

Influence of ionic strength on rectal absorption of gentamicin sulfate in the presence and absence of sodium salicylate.

The rectal absorption of gentamicin sulfate in rats, both in the presence and absence of sodium salicylate, was facilitated by the use of high ionic strength aqueous formulations. The relative order of effectiveness in promoting gentamicin absorption was sodium dihydrogen phosphate congruent to sodium chloride much greater than potassium chloride, indicating a preferential effect of sodium ions. The increased gentamicin bioavailability in response to sodium salicylate adjuvant activity appeared to be independent of and additive to the increased gentamicin absorption due to high ionic strength conditions. The inability of sorbitol to increase gentamicin bioavailability above control levels indicated that elevated osmotic pressure was not a major determinant of rectal gentamicin absorption.

Animals↗

Decanoic acid induced enhancement of rectal absorption of hydrophilic compounds in rats.

The enhancing effect of decanoic acid (C10) on the rectal absorption of phenolsulfonphtalein (PSP) was analyzed with a pharmacokinetic model. The transfer index of PSP from the rectal lumen to the epithelial layer in the presence of C10 was proportional to the product of the C10 disappearance rate from the rectal lumen and its calcium ion sequestration capacity. The enhancement of rectal PSP absorption by different doses of C10 was also predictable by using a permeability index, Pa, of PSP, which was defined as a proportionality constant relating transfer index and the product value described above. The Pa values of various hydrophilic compounds with different molecular weights were also estimated from their rectal bioavailability in the presence of C10. A linear relationship was observed between Pa values and reciprocal values of the square root of individual molecular weight. These findings suggest that the Pa index is related to the permeant's diffusion coefficient through paracellular aqueous openings formed by C10.

Animals↗

The influence of caprate on rectal absorption of phenoxymethylpenicillin: experience from an in-vivo perfusion in humans.

The aim of this in-vivo perfusion study in humans was to investigate the influence of a penetration enhancer, sodium caprate, on the rectal absorption of phenoxymethylpenicillin and antipyrine. Six subjects, 3 male and 3 female, were included in two separate studies using perfusion solution of different pH (T1 and T2, respectively). Each in-vivo rectal perfusion investigation lasted for 200 min and consisted of two periods of 100 min, the first serving as a control, and sodium caprate being added in the second period in both T1 and T2. The concentrations of phenoxymethylpenicillin, antipyrine and sodium caprate in the outlet perfusate were assayed by HPLC, as was the plasma concentrations of phenoxymethylpenicillin. At pH 6.0 (0-100 min) the fraction absorbed (f(abs)) and effective permeability (P(eff)) of phenoxymethylpenicillin were 0.3% and 0.06 x 4 cm s(-1), respectively, and remained unaffected by the addition of sodium caprate. When the same subjects were perfused at pH 7.4, the f(abs) and P(eff) of phenoxymethylpenicillin were 2.4% and 0.11 x 10(-4) cm s(-1) (0-100 min), respectively, also remaining unchanged by addition of sodium caprate (100-200 min). It was possible to determine the plasma AUC of phenoxymethylpenicillin after addition of sodium caprate in three subjects at both pHs; this was in the range of 14.0-62.8 and 56.4-231 (min micromol L(-1)) at pH 6.0 and 7.4, respectively. Interestingly, there was a correlation between P(eff) for sodium caprate and the individual plasma AUC and C(max) of phenoxymethyl-penicillin, which indicates that the permeability of the enhancer in the tissue upon which it should act is crucial for achieving an effect. The f(abs) and the P(eff) of antipyrine were not affected at either pH when sodium caprate was added to the perfusion solution. In conclusion, the plasma pharmacokinetics of phenoxymethylpenicillin suggested a slightly increased rectal absorption at pH 7.4 in subjects where sodium caprate was transported into the rectal tissue. However, the increased P(eff) for phenoxymethylpenicillin wastoo small to detectfrom the outlet perfusate, which suggests that sodium caprate alone has a limited effect on the permeability in-vivo across the rectal epithelium when it is presented in a solution.

Administration, Rectal↗

Effect of adjuvants on the rectal absorption and lymphatic uptake of pepleomycin in rats.

The rectal absorption of pepleomycin sulfate (PEPS) in rats was increased significantly by the coadministration with each of diclofenac (DC), sodium 5-methoxysalicylate (5-MSA) and phenylalanine enamine of ethylacetoacetate (Enamine). 5-MSA increased the lymphatic uptake of PEPS after rectal administration while DC and Enamine did not. The mechanism behind the enhancing action of 5-MSA on the lymphatic uptake of PEPS may be due to the suppressing action of 5-MSA on the vascular permeability to PEPS. DC increased the vascular permeability to PEPS but Enamine did not affect it. Findings obtained in this study may indicate that adjuvant used acts independently at the rectal mucosal membrane and at the vascular membrane for membrane for membrane permeability to PEPS.

Adjuvants, Pharmaceutic↗

Possible mechanism behind the adjuvant action of phosphate derivatives on rectal absorption of cefoxitin in rats and dogs.

The mechanism underlying the ability of phosphate derivatives to act as adjuvants and coadjuvants was examined in in vivo and in situ preparations in rats and dogs. The adjuvant effect of DL-alpha-glycerophosphate on the rectal absorption of sodium cefoxitin was greatly augmented by the presence of either sodium phytate or sodium tripolyphosphate. These coadjuvants only slightly enhanced cefoxitin rectal absorption when administered alone. Therefore, enhancement of the permeation of tripolyphosphate and phytate by alpha-glycerophosphate may be necessary before the coadjuvants can significantly affect cefoxitin absorption. The inhibitory effect of disodium 4,4'-diisothiocyano-2,2'-disulfonate stilbene, which is known to interact with the amino group in the protein fraction, on enhanced cefoxitin absorption suggests the involvement of the protein fraction in transport of cefoxitin across the rectal membrane.

Adjuvants, Pharmaceutic↗

Preparation and evaluation of Eudragit gels. VIII. Rectal absorption of 5-fluorouracil from Eudispert hv gels in rats.

Rectal absorption of the hydrophilic 5-fluorouracil (5-FU) in rats was studied with Eudispert hv gels with or without fatty acids as the rectal bases. In the absence of fatty acids, absolute bioavailabilities of 5-FU for Eudispert hv hydrogel and xerogel preparations increased approximately 2.5 times compared with those of Witepsol H-15 and PEG 2000 suppositories. When n-capric acid or linolenic acid was used as an absorption enhancer, absolute bioavailabilities of 5-FU were, respectively, 25.5 and 30.9% for Witepsol H-15 and 64.4 and 66.1% for PEG 2000. Furthermore, the absolute bioavailabilities of 5-FU for Eudispert hv hydrogel with n-capric acid or linolenic acid were 95.6% and 81.7%. The addition of capric acid or linolenic acid to the hydrogel was a useful method for increasing 5-FU permeability through the rectal membranes. These results are consistent with the observation that the total amounts of 5-FU remaining in the lumenal contents of the rectum and that accumulated in the rectal tissue decreased in relation to the increase in the bioavailabilities. Thus, the Eudispert hv hydrogel containing 5-FU with capric acid may be a useful rectal preparation for increasing the maximum plasma level and improving the absolute bioavailability of 5-FU.

Acrylic Resins↗

Calcium ion sequestration by N-acylamino acids within the rectal membrane and the enhancement of the rectal absorption of sodium ampicillin in rats.

The present study reports the contribution of the calcium ion sequestration capacity of N-acylamino acids, used as absorption promoters, to their absorption-promoting action. Different extents of enhanced rectal absorption of sodium ampicillin by N-acylamino acids were well explained by the predicted amount of calcium ion sequestrated by N-acylamino acids existing in the rectal membranes. The amount of N-acylamino acids that penetrated into the rectal membrane was predicted by the product of the Rm value and the dose of N-acylamino acids. Thus, in the present study, it was demonstrated that the extent of the promoting effect of adjuvants at various doses on the membrane permeability may be predicted by multiplying the calcium ion sequestration capacity obtained in vitro by the lipophilicity and the dose applied to the rectal lumen of adjuvants.

Amino Acids↗

Rectal absorption of insulin suppositories in rabbits.

When insulin solutions (100 U kg-1) at various pH values were placed in the rectum of rabbits, a large decrease in blood glucose concentration was observed except at the pH close to the iso-electric point of insulin. The effect of surface-active agents on the rectal absorption of insulin was examined by measuring the blood glucose concentration after the administration of 2 or 5 U kg-1. Non-ionic ether type, anionic, cationic and amphoteric surfactants as well as bile acids increased the absorption. The optimal effect with suppositories was reached with the addition of 1% polyoxyethylene (9) lauryl alcohol ether. Insulin suppositories containing agents enhancing rectal absorption were compared with the insulin for intravenous, intramuscular and subcutaneous injection. The changes of blood glucose and plasma immuno-reactive insulin concentration after rectal administration of insulin were similar to those after intravenous injection.

Animals↗

Enhanced rectal absorption of beta-lactam antibiotics in rat by monodesmosides isolated from pericarps of Sapindus mukurossi (Enmei-hi).

Monodesmosides, saponin A,B and C, isolated from pericarps of Sapindus mukurossi (Enmei-hi) were shown to promote the rectal absorption of beta-lactam antibiotics in rat, using an in situ loop method and an in vivo method. In the in situ loop method, monodesmosides were solubilized with a mixture of bisdesmosides, mukurozi-saponin X, Y1 and Y2, each of which was isolated from pericarps of Sapindus mukurossi. The promoting functions of the three monodesmosides for the rectal absorption of antibiotics were comparable and also suppressed by Ca2+ ion coexisting in the administered solution. Unlike the case of N-acylcollagenpeptides, which were also previously reported as absorption promoters, no influence of osmolarity of the administered solution on the absorption promoting action was observed. Absorption of beta-lactam antibiotics from suppositories was enhanced with the aid of either of monodesmosides without solubilizing agent.

Animals↗

The effect of fatty acids on the rectal absorption of acyclovir in rats.

The enhancing effect of fatty acids on the rectal absorption of acyclovir has been evaluated in rats. Acyclovir proved to be absorbed to the extent of 3 to 9% after oral administration. After rectal administration in the absence of absorption-promoter, the bioavailability of acyclovir was 37%. Its rectal administration with 4% sodium caprate resulted in enhanced bioavailability (81 +/- 3%).

Acyclovir↗