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At least 109 records · Page 6Linked to original sources

The influence of components on the rectal absorption of cefazolin in rats.

A study has been made to identify the component(s) responsible for the absorption-promoting effect of MGK medium chain glyceride preparation commercially available as a mixture of glyceryl-1-monooctanoate, glyceryl-1,3-dioctanoate, glyceryl-1,2-dioctanoate, glyceryl trioctanoate, octanoic acid and glycerol. The action of the individual constituents has been evaluated on the rectal absorption of cefazolin in conscious rats. The results indicate that the action of MGK can be completely explained by the effect of glyceryl-1-monooctanoate, which both enhanced the extent and rate of cefazolin uptake.

Administration, Rectal↗

Experimental and clinicopharmacological study of rectal absorption of chloroquine.

Chloroquine administered as a rectal suppository is resorbed both in rabbits and human volunteers. Although the chloroquine blood level in rabbit is proportional to the dose investigated, the human rectal mucosa has a limited absorption capacity of chloroquine being saturated at 15 mg/kg dose. In spite of this saturation character the chloroquine applied as rectal suppository may be a suitable formulation to treat or prevent the malarial infection for persons unable to take the drug perorally, e.g. children, or unconscious adults, or persons suffering with GI complaints after swallowing the chloroquine tablet.

Administration, Rectal↗

Development of suppository formulation safely improving rectal absorption of rebamipide, a poorly absorbable drug, by utilizing sodium laurate and taurine.

To develop the safe formulation that can safely improve bioavailability of poorly absorbable drugs and that is practically available, we prepared the suppositories of rebamipide, a poorly soluble and poorly absorbable antiulcer drug, by employing the combinatorial use of sodium laurate (C12), an absorption enhancer, with taurine (Tau) or L-glutamine (L-Gln), an adjuvant exerting the cytoprotective action. Although the dissolution of rebamipide from fatty base (FB) suppository prepared using Witepsol H-15 was very slow, it was remarkably improved by the addition of C12 and L-Gln or Tau into the suppository. On the other hand, the dissolution of rebamipide from water-soluble base (WB) suppository prepared using polyethylene glycol was very rapid and the addition of adjuvants did not influence its dissolution so much. Rectal absorption of rebamipide examined in rats was remarkably improved by FB suppository containing C12 or both C12 and Tau, while the enhancing effect of C12 was relatively small in the case of WB suppositories. Biochemical and histopathological studies have confirmed that FB suppository containing both C12 and Tau or L-Gln did not cause any serious local damage, while FB suppository containing C12 only caused the erosion and shrinkage for a lot of rectal epithelial cells. In conclusion, FB suppository employing the combinatorial use of C12 with Tau could be a promising formulation that is effective and safe enough for poorly absorbable drugs to be practically administered.

Alanine↗

Suppression of plasma hydrocortisone levels. A poor estimate of rectal absorption of glucocorticoids.

The relative degree of absorption of methylprednisolone acetate when administered by the rectal and oral routes was studied in 12 normal male subjects. The plasma samples were assayed for methylprednisolone and endogenous hydrocortisone concentrations. After the administration of equal doses of methylprednisolone acetate by the rectal and oral routes, the plasma hydrocortisone levels were not significantly different from each other; but the plasma concentrations of methylprednisolone were significantly lower after rectal administration than after oral administration. We conclude that the practice of utilizing the degree of suppression of endogenous hydrocortisone levels as an indicator of the extent of absorption of rectally administered glucocorticoids is inappropriate.

Adult↗

Effect of glycyrrhizinate on dissolution behavior and rectal absorption of amphotericin B in rabbits.

The effects of dipotassium glycyrrhizinate (GLYK) on the dissolution behavior and bioavailability of amphotericin B (AMB) were investigated. The mixtures of AMB and GLYK were prepared at different molar ratios by lyophilization. Lyophilization resulted in amorphous AMB either alone or in the mixture. Dissolution rates of AMB of the mixtures were markedly faster than that of lyophilized AMB alone, which was followed by a decrease of dissolution. The initially-enhanced dissolution rate was likely to be due to the improvement of surface wettability of drug particles with GLYK rather than the amorphous state of AMB. A phase solubility study of AMB with GLYK indicated that the increasing solubility was caused by micellar solubilization. The in vitro release rate of AMB from suppositories containing the lyophilized mixtures was significantly accelerated by increasing the amount of GLYK. The rectal absorption of AMB from suppositories containing either the drug alone, a physical mixture or a lyophilized mixture was studied using rabbits. The absorption of the mixture (AMB/GLYK = 1/9) was about 35 times greater in the area under the serum concentration-time curve (0-24 h) than that of lyophilized AMB alone. These results suggest that GLYK is useful for improving the dissolution property of AMB and the bioavailability of the drug incorporated in suppositories.

Amphotericin B↗

Rectal absorption of diazepam in epileptic children.

The absorption of diazepam after rectal administration was studied in children with epilepsy. When given as a solution, diazepam was rapidly absorbed and produced serum diazepam concentrations above 200 ng/ml within 10 minutes in most children. However, a commercial suppository formulation was absorbed slowly and cannot be recommended for urgent treatment of fits. There is a need in the UK for a rapidly absorbed preparation of diazepam which is approved for rectal use.

Adolescent↗

Rectal absorption enhancement of gentamicin in rabbits from hollow type suppositories by sodium salicylate or sodium caprylate.

The absorption of gentamicin (GM) from the rectum of rabbits after coadministration of GM (60 mg) and sodium salicylate (SA) or sodium caprylate (CA) as absorption-enhancing agents was investigated. Two types of hollow type suppositories were used--a conventional type (Type I) and a release-restricted type (Type II). Without SA or CA, GM was not absorbed. However, GM absorption was marked when 90 mg of solid SA or CA was added (the bioavailability of GM was 58% with SA, and 59% with CA). The enhancing effect of SA or CA (30 mg) in solid or aqueous solution form on GM absorption was evaluated using the Type I suppository. In the case of SA, the highest plasma GM level (Cmax 15.3 +/- 1.7 micrograms/ml, AUC0-4 27.3 +/- 3.9 h.micrograms/ml) was obtained following coadministration of powdered GM and SA; the plasma GM level (Cmax 1.5 +/- 0.6 micrograms/ml, AUC0-4 3.0 +/- 1.3 h.micrograms/ml) following the administration of a solution of GM and SA was significantly decreased as compared with the results using the powdered form. In the case of CA, the plasma GM level (Cmax 14.8 +/- 4.5 micrograms/ml, AUC0-4 25.4 +/- 8.7 h.micrograms/ml) following administration of the solution form was not significantly decreased in comparison with the results obtained using the powdered form. A marked increase in the enhancing effect of SA on the rectal GM absorption was found following use of Type II suppositories when GM and SA were coadministered in solution form. However, the GM absorption after coadministration of GM and CA using Type II suppositories was not significantly different from the absorption resulting from use of Type I suppositories. Our results suggest that the form and concentration of drug should not be ignored in evaluating the enhancing effects of SA or CA on the rectal absorption of poorly absorbed drugs such as GM.

Administration, Rectal↗

Short-chain alkyl esters of L-dopa as prodrugs for rectal absorption.

The bioavailability of L-dopa following rectal administration of a series of short-chain alkyl esters of L-dopa was determined in rats and dogs. The esters were stable (greater than 360 min) to hydrolysis in physiological buffer. In vitro enzymatic hydrolysis of the esters in plasma was species dependent, with the hydrolytic rate being faster in rat plasma (t 1/2 less than 5 min) than dog plasma (t 1/2 = 68-181 min) or human plasma (t 1/2 = 96-238 min). In vivo hydrolysis in dogs, as indicated by the L-dopa plasma profile following intravenous administration of the esters, was very rapid (high extravascular esterase activity). Significant L-dopa bioavailability was observed in rats following rectal administration of the methyl (46%), ethyl (14%), isopropyl (48%), butyl (100%), and 4-hydroxybutyl (13%) esters of L-dopa (rectal L-dopa absorption, less than 5%). In dogs, significant L-dopa bioavailability was also observed for the methyl (28%), isopropyl (30%), butyl (32%), and 4-hydroxybutyl (34%) esters of L-dopa in the presence of carbidopa. The data indicate that these highly water-soluble (greater than 600 mg/ml) esters of L-dopa are potential candidates for controlled-release rectal delivery systems designed to provide more constant plasma L-dopa levels.

Administration, Rectal↗

Rectal absorption of oxcarbazepine.

Physicians regularly challenge the hospital pharmacy departments to find alternative routes for the administration of drugs, which can't be withhold, e.g. anti-epileptic drugs. In our hospital we were confronted with the question whether it was possible to administer oxcarbazepine rectally. In the present report data on the absorption of rectally administered oxcarbazepine is presented. No therapeutic bloodlevels were attained after rectal administration. Administration via the oral route, however, gave within the same period of time a therapeutic bloodlevel. It is concluded that the absorption after rectal administration of oxcarbazepine at least in this dose and frequency used is too low to justify application in practice.

Adolescent↗