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A Tothill

Publications and source records attributed to A Tothill.

12 recordsLinked to original sources

Clarithromycin pharmacokinetics in the desert tortoise (Gopherus agassizii).

Clarithromycin is a new, safe orally administered macrolide antibiotic active against Mycoplasma sp. in humans. Single-dose and multidose pharmacokinetic parameters were determined for clarithromycin in wild-caught desert tortoises (Gopherus agassizii) seropositive for M. agassizii. Clarithromycin blood levels were measured in three tortoises for up to 72 hr after a single oral dose of 7.5 mg/kg. In a second group of six tortoises, levels were measured after a dose of 15 mg/kg. Noncompartmental iterative two-stage Bayesian and nonparametric expectation maximization pharmacokinetic parameters were determined for each animal assuming first order rate constants. At 15 mg/kg, the maximum concentration was 1.37 microg/ml, the time to maximum concentration was 8.0 hr, and a plasma half-life of 11.69 hr was derived from the latter method. The absorption constant was 0.08/hr, the absorption half-life was 8.47 hr, and the weight-normalized volume of distribution was 5.30 L/kg. Predictions derived by the latter method suggested a dosage of 15 mg/kg p.o. every 24 hr to achieve maximal blood levels of > or =1 microg/ml for multiple dosing. However, results from a preliminary multidose study with three tortoises indicate that the drug is accumulated; therefore, the predicted dose may be closer to 15 mg/kg p.o. every 2-3 days to maintain blood levels of 2-7.5 microg/ml. (For n = 3, 2-point linear regression median estimates for the apparent elimination rate constant (K) and half-life are 0.0227/hr and 30.52 hr, respectively.) This multidose accumulation reflects a slower apparent elimination than that predicted in the eight single-dose tortoises (i.e., K = 0.0593/hr, t1/2 = 11.69 hr). This study highlights a potential pitfall of depending solely on single-dose studies and the potential value of oral administration in reptiles.

Administration, Oral↗

Prostaglandin E2: a factor in the pathogenesis of cholera.

Injection of cholera toxin in vivo into loops of intestine in rats caused the production of an exudate. This was found to contain prostaglandin E2 by assay on the rat stomach strip and by thin-layer chromatography. The amounts found ranged from 20 to 40 ng per loop of intestine. Introduction of 30 ng of prostaglandin E2 into intestinal loops caused the production of an exudate similar in volume to that found after the introduction of cholera toxin. These results indicate that the exudate in cholera is caused by the action of prostaglandin liberated by the enterotoxin. It is suggested that an inhibitor of prostaglandin release could be added to the solutions used in treatment for the restoration of fluids and electrolytes, with the object of blocking the action of toxin still present in the intestinal lumen, thereby achieving a more rapid therapeutic result.

Animals↗

The effect of autonomic and psychotropic drugs on adrenaline reversal in the rat uterus.

Desipramine and other psychotropic and autonomic drugs were tested for their ability to prevent the motor response of the rat uterus to adrenaline in vitro. Those agents which have been shown to prevent catecholamine uptake into stores most readily reversed the motor response; those which had little or no effect on catecholamine storage were usually without effect on the motor response to adrenaline. The motor response of the rat uterus to adrenaline is due to prostaglandin E2. Agents blocking the motor response prevented the release of prostaglandin and did not block the action of prostaglandin on the uterus. Since all the effective agents also interfered with uptake with catecholamine stores it seems likely that passage of catecholamine in and out of storage depots is involved with the synthesis of prostaglandins.

Animals↗