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S J Wasserman

Publications and source records attributed to S J Wasserman.

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Acute and multiple injection effects of magnesium on responding maintained by cocaine, extinction from cocaine, glucose + saccharin, and food.

In a variety of behavioral experiments, magnesium has effects that are similar to cocaine and other psychomotor stimulants. Of particular relevance to the present experiments is the recent finding that magnesium maintains responding in cocaine-trained rats. It would be expected, therefore, that injections of magnesium would alter the rate of responding maintained by self-administered cocaine in rats. Five experiments examined the specificity and selectivity of this interaction. Acute and multiple injections of MgCl2 (15-250 mg/kg) produced dose-dependent reductions in responding maintained by cocaine (0.1-2 mg/kg/infusion). Testing for acute injection effects occurred following injections, while testing for multiple injection effects occurred prior to daily injections. Doses of 30 and 125 mg/kg MgCl2 reduced responding maintained by doses of cocaine that were below the training dose of 0.75 mg/kg/infusion. MgCl2 in a dose of 250 mg/kg markedly suppressed responding maintained by each dose of cocaine. A magnesium-deficient diet produced a dose-dependent increase in responding maintained by 0.1 mg/kg/infusion cocaine. In order to determine the specificity and selectively of these effects, acute and multiple injections of MgCl2 were examined on glucose + saccharin- and food-maintained responding. The acute effects of MgCl2 injections were specific because food-maintained responding was not affected, except by the highest dose of 250 mg/kg. This demonstrates that lever pressing was not nonspecifically reduced by 30 and 125 mg/kg MgCl2 during cocaine availability. However, the effects on cocaine-maintained responding were not selective for cocaine because glucose + saccharin-maintained responding and responding during extinction from cocaine were affected by MgCl2 in a manner similar to cocaine-maintained responding.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Magnesium-maintained self-administration responding in cocaine-trained rats.

Magnesium chloride (MgCl2) produces behavioral effects similar to those of psychomotor stimulants in a variety of behavioral situations. Because MgCl2 appears to have stimulant properties, the ability of MgCl2 to maintain responding in a rat self-administration paradigm was examined in seven experiments under different access and schedule conditions in cocaine-trained rats. These varied from the availability of MgCl2 for a single day's test session subsequent to 1 h availability of cocaine, to the availability of MgCl2 for 10 or 20 days after cocaine availability was totally discontinued. Fixed ratio 1, fixed ratio 5, and progressive ratio 1, 2 and 3 schedules of drug delivery were used. The results demonstrate that MgCl2 may substitute for self-administered cocaine because it maintained responding; it did so dose dependently to maintain a constant level of MgCl2 intake; and it did so over a 10-day period of time both with and without access to cocaine on test days. Responding maintained by MgCl2 when cocaine was no longer available was similar under fixed ratio 1 and 5 schedule conditions. The progressive ratio breakpoints for MgCl2 were significantly higher than those for saline, but significantly lower than those for cocaine. These data indicate that MgCl2 has some reinforcing efficacy in cocaine-trained rats, particularly under fixed ratio 1 and 5 schedules, but has a low abuse potential compared to cocaine.

Animals

Microtubule assembly in cultivated Greene melanoma cells is stimulated by dibutyryl adenosine 3':5'-cyclic monophosphate or cholera toxin.

Both dibutyryl cyclic AMP (DBcAMP) and cholera toxin promote the formation and elongation of processes of cultivated Greene hamster melanoma cells. The formation and maintenance of these processes, which contain many microtubules, are sensitive to colcemid and vinblastine. Tubulin was measured by [3H]colchicine binding and by acrylamide gel electrophoresis. We found that DBcAMP or cholera toxin increases the ratio of polymerized to unpolymerized tubulin but not the total amount of tubulin per cell. The sum of the lengths of microtubules per unit area was significantly greater in cells treated with DBcAMP than in control cells. Our findings support the hypothesis that cyclic AMP promotes the elongation of cell processes by stimulating the assembly of microtubules from existing tubulin.

Bacterial Toxins