Study of angiomatosis retinae. Report and management of two cases.
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Biomedical subjects
Publications and source records attributed to A Kamel.
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The metabolism, pharmacokinetics and excretion of a potent and selective substance P receptor antagonist, (+)-(2S,3S)-3-(2-methoxy-5-trifluoromethoxybenzlamino)-2-phenylpiperidine, CP-122,721, have been studied in rat following oral administration of a single dose of [14C]CP-122,721. Total recovery of the administered dose was 84.1+/-1.1% for male rat and 80.9+/-2.7% for female rat. Approximately 81% of the administered radioactivity recovered in urine and faeces were excreted in the first 72 h. Absorption of CP-122,721 was rapid in both male and female rat, as indicated by the rapid appearance of radioactivity in plasma. The plasma concentrations of total radioactivity were always much greater than unchanged drug, indicating early formation of metabolites. CP-122,721 t1/2 was 3.1 and 2.2 h for male and female rat, respectively. The plasma concentrations of CP-122,721 reached a peak of 941 and 476 ng ml-1 for male and female rat, respectively, at 0.5 h post-dose. Based on AUC0-tlast, only 1.5% of the circulating radioactivity was attributable to unchanged drug (average of male and female rats) and the balance, approximately 98.5% of the plasma radioactivity was due to metabolites. The major metabolic pathways of CP-122,721 were due to O-demethylation, aromatic hydroxylation and indirect glucuronidation. The minor metabolic pathways included aliphatic oxidation at the piperidine moiety and aliphatic oxidation at the benzylic position of the trifluoromethoxy anisole moiety. In addition, a novel oxidative metabolite resulting from ipso substitution by the oxygen atom and trifluoromethoxy elimination followed by glucuronide conjugation was also identified.
The distribution of [14C]-malathion, an organophosphorus pesticide, in rats after intravenous, oral and dermal administration was carried out using electronic autoradiography of whole body sections of treated animals. The study indicated that a major difference in the disposition of [14C]-malathion occurred following various routes of administration to rats. Following intravenous administration, the liver and kidney accumulated extremely high levels of the chemical. After oral administration, [14C]-malathion absorption from the stomach was slow and its excretion followed mostly the fecal route. Dermal application of [14C]-malathion may represent a high risk for exposure to the organophosphorus pesticide where the entire skin, not only the site of application, may act as reservoir for the compound.
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Phadiatop is a new in vitro screening test for respiratory allergy. This test, based on the RAST procedure, detects in serum, the presence of specific IgE to a mixture of common inhalent allergens. Among 70 patients (26 children and 44 adults) consulting for respiratory syndrome, Phadiatop was positive in 31 cases. There were a good correlation between this new test and skin tests (59% for adults and 92% for children), total IgE (70% for adults and 65% for children) and RAST (93% for adults and 96% for children). Phadiatop, with a specificity of 100%, a sensitivity of 82% (76% for adults and 92% for children) and an efficiency of 90% (86% for adults and 96% for children), is a more accurate test than total IgE and could be an excellent in vitro screening test for respiratory allergy.
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