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Biomedical subjects

T Gessner

Publications and source records attributed to T Gessner.

At least 55 records · Page 3Linked to original sources

Toxocara-specific antibody in the serum and aqueous humor of a patient with presumed ocular and visceral toxocariasis.

Rarely have concurrent ocular and systemic toxocariasis been reported in the literature. We describe a patient with serologically proven visceral toxocariasis who had a granulomatous lesion in the iris, small rod-like lesions in the retina, and in whom Toxocara-specific antibodies were also demonstrated in the aqueous humor. Two older siblings of this patient also had demonstrable serum antibody to Toxocara. The ocular manifestations resolved rapidly with corticosteroid and thiabendazole therapy and the initial leucocytosis, hepatomegaly, and elevated IgM level were normal at 3.5 months. These changes might be attributed to either the thiabendazole and prednisone therapy or to the natural history of this disease.

Antibodies↗

Presence of glucuronyltransferase activity in human lymphocytes.

Human lymphocytes contain glucuronyltransferase activity. This enzyme requires a high concentration of uridine diphosphoglucuronic acid and can be measured with testosterone as a substrate. This finding is of interest because glucuronidation is a deactivating process for many pharmacologically active compounds that are substrates of glucuronyltransferase.

B-Lymphocytes↗

Drug interactions: inhibition of acetaminophen glucuronidation by drugs.

Glucuronidation of [3H]acetaminophen (APAP) was studied in rat liver preparations. Both Triton X-100 and UDP-N acetylglucosamine (UDPAG) activated 3- to 4-fold the glucuronidation of APAP by liver homogenates or microsomes. Prednisolone inhibited microsomal glucuronidation of APAP, yielding apparent noncompetitive kinetics in native and in UDPAG-activated microsomes. Studies with UDPAG-activated microsomal preparations show that many drugs can inhibit glucuronidation of APAP markedly; among the most poten inhibitors are: morphine, dicumarol, hydroxyzine, phenolphthalein, chloramphenicol and tetracycline.

Acetaminophen↗

Occurrence of steroid glucuronyltransferases in a hepatoma.

Occurrence of estrone, estradiol, and testosterone glucuronyltranferase activities was tested in a well-differentiated hepatoma, Reuber H35. Transferase activities for estrone and estradiol were found in the hepatoma. The Michaelis-Menten kinetics of these two microsomal glucuronyltransferase activities were similar in hepatoma and in liver preparations, except for a somewhat higher apparent Km for estradiol in the hepatoma preparations. Under the same experimental conditions, only trace amounts of testosterone glucuronyltransferase activity could be detected in the hepatoma preparations. By contrast, in liver microsomal preparations, testosterone glucuronyltransferase activity was the highest among the steroid glucuronyltransferase activities tested.

Animals↗

Studies of the effects of cyclophosphamide, vincristine, and prednisone on some hepatic oxidations and conjugations.

The effects of low and high doses of three anticancer agents, cyclophosphamide, vincristine, and prednisone (given individually or in various combinations), on oxidative and conjugation pathways were studied in Sprague-Dawley male rats. Cyclophosphamide used alone at low doses decreased aniline hydroxylase and ethylmorphine demethylase activities by about 20% and at high doses produced a 30%-50% decrease in the specific activities of several microsomal mixed-function oxygenase activities, in the contents of cytochromes P-450 and b5, and in the magnitudes of type I and II drug-binding spectrum. The levels of microsomal glucouronidase, glucuronyl transferase, and sulfatase per gram of liver were also decreased (30%-50%) by the high dose of cyclophosphamide. The high dose of cyclophosphamide in conjunction with either vincristine or prednisone also produced a noticeable decrease in several activities tested; however, when cyclophosphamide was given at either low or high doses in combination with vincristine and prednisone, the activities tested were comparable to those seen in untreated controls. The mechanism of this protection is presently unknown. Vincristine, at both low and high doses, produced little effect on oxidative pathways; however, at low doses it caused a significant increase (80%) in the specific activity of hepatic microsomal sulfatase. This effect was also discernible when vincristine was given in combination with cyclophosphamide and prednisone. Other than producing a 15% decrease in liver weight and a 40% decrease in the specific activity of microsomal glucuronidase, the high dose of prednisone used had no effect on various activities tested. Results of these studies indicate a potential for drug interaction among anticancer agents and supportive drugs used in combination cancer chemotherapy.

Animals↗

Studies of mammalian glucoside conjugation.

The mammalian glucoside-conjugation pathway was studied by using p-nitrophenol as the model substrate and mouse liver microsomal preparations as the source of enzyme. The microsomal preparations supplemented with UDP-glucose glucosylated p-nitrophenol; p-nitrophenyl glucoside was identified by chromatography in six solvent systems. The unsolubilized glucosyltransferase of fresh microsomal preparations did not follow the usual Michaelis-Menten kinetics and was easily inhibited by many steroids. All the steroids tested inhibited glucosylation of p-nitrophenol to a greater degree than glucuronidation of p-nitrophenol when assayed in the same microsomal preparations. The steroids inhibited glucosylation with the following decreasing effectiveness: pregnan-3alpha-ol-20beta-one (3alpha-hydroxypregnan-20-beta-one)>oestradiol-17beta 3-methyl ether>oestradiol-17beta>oestriol>pregnane-3alpha,20beta-diol>oestrone. Pregnan-3alpha-ol-20beta-one, pregnane-3alpha,20beta-diol and oestrone had negligible effect on glucuronidation.

Animals↗