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At least 217 records · Page 12Linked to original sources

Preliminary study on the absorption profile after rectal and oral administration of methadone in human volunteers.

Methadone is a potent, long acting narcotic analgesic which can be orally administered due to its almost complete bioavailability. There is a growing interest in the rectal route of administration in the case of acute post-operative or chronic malignant pain. Since virtually no data were available on the rectal absorption profile of methadone in man, plasma concentrations of methadone were determined by means of HPLC analysis after a single dose of 10 mg methadone HCl in a cross-over pilot study in five volunteers. The rectal dosage forms included aqueous solutions and fatty suppositories. A comparison was made with an orally administered solution. Compared with oral dosing, the extent of rectal absorption from an aqueous solution was almost 80% up to 8 h after dosing. Although the mean peak concentration and the AUC0-8h was significantly lower (p less than 0.01), no marked difference in tmax was observed: 2.8 and 3.1 h respectively. Rectal absorption conditions of methadone from fatty suppositories (3 ml) were found to be less favourable. The peak plasma concentration was only reached 3-4 h after administration, whereas the relative bioavailability up to 8 h after dosing ranged from 35-58%. This rate-limiting absorption pattern may be due to the critical solubility properties of methadone HCl at physiological pH.

Administration, Oral↗

Physicochemical characterization of diclofenac sodium-loaded poloxamer gel as a rectal delivery system with fast absorption.

Rectal poloxamer gel systems composed of poloxamers and bioadhesive polymers were easy to administer to the anus and were mucoadhesive to the rectal tissues without leakage after the dose. However, a poloxamer gel containing diclofenac sodium could not be developed using bioadhesive polymers, since the drug was precipitated in this preparation. To develop a poloxamer gel using sodium chloride instead of bioadhesive polymers, the physicochemical properties such as gelation temperature, gel strength, and bioadhesive force of various formulations composed of diclofenac sodium, poloxamers, and sodium chloride were investigated. Furthermore, the pharmacokinetic study of diclofenac sodium delivered by the poloxamer gel was performed. Diclofenac sodium significantly increased the gelation temperature and weakened the gel strength and bioadhesive force, while sodium chloride did the opposite. The poloxamer gels with less than 1.0% sodium chloride, in which the drug was not precipitated, were inserted into the rectum without difficulty and leakage, and were retained in the rectum of rats for at least 6 hr. Furthermore, poloxamer gel gave significantly higher initial plasma concentrations and faster Tmax of diclofenac sodium than did solid suppository, indicating that drug from poloxamer gel could be absorbed faster than that from the solid one in rats. Our results suggested that a rectal poloxamer gel system with sodium chloride and poloxamers was a more physically stable, convenient, and effective rectal dosage form for diclofenac sodium.

Adhesiveness↗

Rate-controlled absorption enhancement of rectally administered cefazolin in rats by a glyceride mixture (MGK).

The enhancing effect of the medium chain glyceride preparation MGK on the rectal absorption of the cephalosporin antibiotic cefazolin sodium was evaluated in relation to the rate of delivery. Cefazolin sodium proved to be absorbed to a small extent (15 to 27%) after rectal administration without MGK. Bolus administration with MGK enhanced rate and extent of cefazolin sodium absorption, resulting in a bioavailability of 57 +/- 26%. Linear infusion of 3 mg cefazolin sodium with MGK in 32 min produced complete absorption of the antibiotic (102 +/- 7%), but absorption occurred slower in comparison with bolus delivery. The rate of administration proved to be an important variable of the absorption enhancing effect of MGK.

Administration, Rectal↗

Absorption enhancement of rectally infused cefoxitin by medium chain monoglycerides in conscious rats.

The enhancing effect of the medium chain monoglycerides glyceryl-1-monoctanoate (GMO), glyceryl-1-monodecanoate (GMD), and glyceryl-1-monododecanoate (GMDD) on rectal absorption of the cephalosporin antibiotic cefoxitin [(6R,7S)-3-hydroxymethyl)-7-methoxy-8-oxo-7-[2-(2-thienyl)acetamido]-5- thia-1-azabicyclo[4.2.0]oct-2-ene-2-carboxylic acid carbamate (ester)] was investigated in unanesthetized rats. Rectal infusion of 3 mg of cefoxitin sodium without monoglyceride resulted in a mean bioavailability of 31 +/- 18% and a mean residence time (MRT) of 134 +/- 44 min. Coadministration with 53% (w/w) GMO significantly enhanced cefoxitin absorption, resulting in a mean bioavailability of 84 +/- 11% and a mean MRT of 75 +/- 8 min. In a lower concentration, GMD (13% w/w) also significantly promoted cefoxitin bioavailability to 68 +/- 14% and reduced MRT to 70 +/- 11 min. With GMDD only, a trend of increasing bioavailability with increasing monoglyceride concentration was observed, which may be explained by its limited aqueous solubility. Concerning the action of GMO and GMD, the longer monoglyceride is, in terms of effective concentration, more potent in enhancing the extent and rate of cefoxitin absorption. However, a further increase in chain length results in a loss of effect, indicating that the effect of monoglycerides on drug absorption may be determined by their intrinsic absorption enhancing action and solubility.

Administration, Rectal↗

The influence of concentration of two salicylate derivatives on rectal insulin absorption enhancement.

3,5-Diiodosalicylate sodium (DIS), a highly lipophilic salicylate, was evaluated against 5-methoxysalicylate sodium (MS) as a potential adjuvant absorption promoter for rectal insulin delivery. Comparative blood glucose measurements were made using the two adjuvants under identical conditions as promoters of rectal insulin absorption in rats. Concentrations of DIS greater than and including 0.1 M produced an unexpected, progressive decrease in adjuvant activity as determined by a decline in observed hypoglycaemic response. This was not due to formation of an insulin-DIS complex. The adjuvant MS produced a classical, sigmoidal log-dose response curve. Possible reasons for the occurrence of the DIS optimum phenomenon are discussed as well as are the observed differences in adjuvant potency of these agents in a propylene glycol-containing vehicle.

Administration, Rectal↗

In vivo effects of highly purified docosahexaenoic acid on rectal insulin absorption.

The purpose of this study was to evaluate the effectiveness and the toxicity of polyunsaturated fatty acid, such as oleic acid, eicosapentaenoic acid (DHA), as potential absorption enhancer for rectal delivery of insulin, using a water-in-oil-in water (W/O/W) multiple emulsion. In a single administration study, rectal insulin absorption was enhanced markedly, and marked hypoglycemia was induced by the emulsion incorporating various fatty acids in an insulin dose-related fashion. The pharmacological availability of the emulsion incorporating 2% oleic acid, EPA and DHA was approximately 7.7, 11.0 and 25.4%, respectively. The insulin absorption enhancement effect was not increased in proportion to the amount of DHA in the emulsion, the mean T(max) value of the serum glucose-time curve could be extended to twice that of the emulsion without PF 127. In a multiple administration study, the mean AUC(glucose) values of the emulsion incorporating DHA showed almost the same value on the first and the tenth day. From the morphological appearance of the mucosal surface, the emulsion incorporating DHA induced no or little mucosal damage. Our findings demonstrated that DHA has a strong insulin permeability enhancement effect and little toxicity. Thus, DHA is an attractive candidate as an absorption enhancer for intestinal delivery of insulin.

Animals↗

The adaptive response of rectal electrolyte absorption to impaired sodium balance in young children.

Rectal electrolyte transport was measured in nine children (median age 160 days) with ileostomies, using a nonequilibrium dialysis technique. Rectal sodium absorption and potassium secretion were significantly higher in children with a subnormal sodium balance compared with children with a positive sodium balance. Rectal sodium absorption and potassium secretion were unchanged after ileostomy closure. These data indicate that rectal electrolyte transport in children can adapt to even modestly impaired sodium balance.

Child, Preschool↗