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Biomedical subjects

O Shaheen

Publications and source records attributed to O Shaheen.

At least 37 records · Page 2Linked to original sources

Cimetidine inhibition of ethmozine metabolism.

Ethmozine, a phenothiazine antiarrhythmic, is effective in atrial and ventricular arrhythmias. Because of the extensive hepatic metabolism of ethmozine, we investigated the effects of the potent hepatic enzyme inhibitor cimetidine on the kinetics and dynamics of ethmozine. Eight healthy men 22 to 40 years old (means = 27.6 years) received a single, oral, 500 mg dose of ethmozine. Ethmozine dosing was repeated 15 days later after cimetidine, 300 mg four times a day for 7 days. Plasma samples were drawn over the next 24 hours for measurement of ethmozine. ECGs were obtained 1, 2, 4, 8, and 24 hours after each dose. After cimetidine, ethmozine clearance fell from 38.2 +/- 10.7 to 19.7 +/- 4.2 ml/kg/min and the t1/2 increased from 3.3 +/- 1.3 to 4.6 +/- 1.6 hours. Ethmozine prolonged the PR and QRS intervals, but there was no detectable further increase after cimetidine. Heart rate and blood pressure were not altered by ethmozine either alone or in the combination. We conclude that cimetidine increases plasma concentrations of ethmozine but did not induce any detectable further increase in the PR or QRS intervals.

Adult↗

Modulation by thyroid status of hepatic low Km phosphodiesterase.

The effects of thyroid status on the activity of hepatic cAMP phosphodiesterase (PDE) were studied in the rat. Male rats were rendered hyperthyroid by treatment with T3 or hypothyroid by treatment with propylthiouracil. The hepatic particulate low Km PDE was solubilized, and its activity was measured at concentrations of 0.12-1.3 microM cAMP. The Km decreased in hypothyroidism and tended to increase in hyperthyroidism with respect to individual controls. The maximal velocity (Vmax) was unaffected by changes in thyroid status. The increases in Km correlated with increasing plasma T3, whereas the Vmax did not. Concentrations of cAMP increased in the livers from hyperthyroid rats and decreased in those from hypothyroid, in comparison with euthyroid rat livers. The effects of thyroid status on various aspects of hepatic lipid metabolism reported from this laboratory may, in part, have resulted from alterations in hepatic cAMP concentrations. These alterations, may have resulted secondarily from changes in the activity of hepatic PDE by changes in the Km for cAMP with little change in the Vmax.

3',5'-Cyclic-AMP Phosphodiesterases↗