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Biomedical subjects

G M Powell

Publications and source records attributed to G M Powell.

At least 73 records · Page 4Linked to original sources

The biodegradation of the surfactant undecyl sulphate.

1. The metabolism of the odd-numbered carbon chain surfactant, potassium undecyl [35S]sulphate in the rat was investigated. 2. The major route for elimination of radioactivity was the urine, regardless of the route of administration. 3. The surfactant was extensively degraded in vivo to yield propionic acid 3-[35S]sulphate, the major radioactive component in urine. A second urinary metabolite was identified tentatively as pentanoic acid 5-[35S]sulphate. 4. Whole-body autoradiography revealed the liver as the major site of metabolism. 5. The nature of the metabolic products of undecyl sulphate suggest that it is bio-degraded by initial omega-oxidation followed by beta-oxidation.

Animals↗

A model system for investigating the biliary excretion of an anion in the rat.

1. The biliary excretion of phenolphthalein di[35S]sulphate was studied in rats. 2. The conjugate was administered by continuous infusion at rates of 3, 4.5, 6, 9 and 12 mug/min, and kinetic analysis of the rate of biliary excretion was consistent with a two-compartment open-model system. 3. The results obtained after single injections of the ester were also consistent with the model. 4. An essential feature of the model is the presence of a compartment into which the ester may pass as an alternative to direct excretion via the bile. 5. It is suggested that such a compartment may be located within the liver.

Animals↗

The biodegradation of some anionic detergents in the rat. A common metabolic pathway.

1. The metabolism of the anionic detergents potassium decyl [35S]sulphate and potassium octadecyl [35S]sulphate was investigated in the rat. 2. The major route for elimination of radioactivity was urinary regardless of the route of administration. 3. Both surfactants were extensively degraded in vivo to yield a common metabolite, butyric acid 4-[35S]sulphate, the major urinary radioactive component. 4. Whole-body radioautography revealed the liver as the major site of cellular accumulation of radioactivity following administration of either compound indicating the liver as the major site of metabolism. 5. It is suggested that alkyl sulphates with even-numbered carbons are degraded by a common pathway involving omega-oxidation followed by beta-oxidation.

Administration, Oral↗

The metabolism of sodium cortisone 21-( 35 S)sulphate in the rat.

1. The metabolism of sodium cortisone 21-[(35)S]sulphate was investigated in rats. 2. Quantitative and qualitative experiments showed that substantial amounts of (35)SO(4) (2-) appeared in the urine of free-ranging rats receiving the ester. 3. Whole-body radioautograms indicated considerable biliary elimination of (35)S and also pointed to the liver as the site of metabolism. 4. When female rats with bile-duct cannulae received sodium cortisone 21-[(35)S]sulphate approx. 70% of the dose appeared in the bile as a doubly conjugated steroid (metabolite I). This metabolite was identified as 3alpha-(beta-d-glucopyranuronosido)- 17alpha-hydroxy-21-[(35)S]sulpho-oxy-5alpha-pregnane-11,20-dione. 5. When metabolite I was administered to a rat with a bile-duct cannula 90% of the dose appeared in the bile unchanged. After the administration (intraperitoneally or orally) of metabolite I to free-ranging rats considerable amounts of (35)SO(4) (2-) appeared in the urine. 6. The route by which (35)SO(4) (2-) might be produced from cortisone [(35)S]sulphate in free-ranging animals is discussed.

Animals↗