Relative potency of some neuroleptics as antagonists at dopamine-receptors in vivo compared with their reported ability to displace haloperidol binding in vitro [proceedings].
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Biomedical subjects
Publications and source records attributed to B Cox.
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The changes in core temperature induced by low (5 mg/kg) and high (40 mg/kg) doses of morphine were compared in Wistar and Sprague-Dawley rats. In Sprague-Dawley rats the low dose caused a hyperthermia and the high dose a hypothermia but in Wistar rats both doses caused a hyperthermia. In either case the change in core temperature was antagonized by naloxone (2 mg/kg). Tolerance to the effects of the high dose of morphine developed in both strains of rat. Dextromoramide (3.75 and 15 mg/kg) also had an effect on core temperature, but in this case the responses of the strains were opposite to those seen with morphine. Laevomoramide was relatively ineffective. Naloxone (2 mg/kg) had no effect on the ability of rats of either strain to withstand heat or cold stress, providing no evidence that endogenous morphine-like substances have a physiological role in thermoregulation.
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1 Unilateral intrahypothalamic injection of either dopamine (10 mug) or amphetamine (10 mug) caused a fall in core temperature in the rat. Pimozide (0.5 mg/kg, i.p.) significantly reduced the hypothermic response, whereas pretreatment with phentolamine (1 mg/kg, i.p.) or methysergide (5 mg/kg, i.p.) was ineffective.2 Systemic pretreatment with cocaine (20 mg/kg) abolished the hypothermic effect of amphetamine, but slightly enhanced the hypothermic response to dopamine.3 Systemic pretreatment with tranylcypromine (10 mg/kg) had no significant effect on the fall in core temperature induced by either amphetamine or dopamine.4 Intraperitoneal injection of cocaine and tranylcypromine, on their own, caused a fall in core temperature in the rat, which was significantly antagonized by either systemic or central pretreatment with pimozide. Phentolamine and methysergide failed to block the hypothermia.5 Unilateral intrahypothalamic injection of cocaine (20 mug) or tranylcypromine (10 mug) also caused a significant fall in core temperature, which was reduced by intrahypothalamic pretreatment with pimozide (0.5 mug), but not significantly changed by pretreatment with phentolamine (25 mug) or methysergide (5 mug).6 These results provide evidence for the presence of a dopaminergic system within the preoptic region, which mediates a lowering of core temperature in the rat.
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Dopamine, apomorphine, noradrenaline and isoprenaline reduced the response of the isolated guinea-pig ileum to exogenous acetylcholine by a maximum of 40%. Propranolol reversed this inhibition whilst phentolamine and pimozide were ineffective, suggesting that the drugs were acting on a post-synaptic beta-adrenoceptor. The same agonists were more effective as inhibitors of the response to transmural electrical stimulation of the ileum, lower doses producing almost complete inhibition. This inhibition was partially antagonized by phentolamine, pimozide and propranolol. Clonidine proved to be the most potent inhibitor of the response to transmural electrical stimulation, whilst phenylephrine was ineffective. pA2 determinations showed that phentolamine was a potent antagonist of clonidine but a weak antagonist of apomorphine whilst for pimozide the opposite was true. The results suggest that there are two populations of prejunctional receptors on the cholinergic nerves innervating the smooth muscle of the guinea-pig ileum. One receptor is similar to a classical prejunctional alpha-adrenoceptor and the other resembles a central dopamine receptor.
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Sulfur-containing steroids, analogs, and derivatives were synthesized for evaluation in mice suffering acute toxicity from methylmercuric chloride. Steroids were administered by intraperitoneal injection, by stomach tube feeding, or by absorption through the tail skin. Thiocholesterol and the thiocholanoic acids were effective if given prior to poisoning. The thiosteroids were significantly more effective than penicillamine or dimercaprol under these conditions.
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1. Intrahypothalamic injection of either dopamine (10 microgram) or apomorphine (10 microgram) in a dose volume of 1 microliter. caused an almost immediate rise in tail skin temperature and a concomitant fall in core temperature in the conscious rat maintained at an ambient temperature of 17 +/- 1 degrees C. 2. The location of the dopamine-sensitive site was defined more accurately by reducing the dose volume to 0.5 microliter. and injecting dopamine at different points throughout the preoptic and anterior hypothalamic region. 3. The largest mean fall in core temperature (1.13 +/- 0.22 degrees C) was obtained after injection into the preoptic region. Injections with their perimeters more than 0.4 mm rostral or caudal to this site were ineffective. 4. Rats placed 0.65 m below a 250 W infra-red lamp responded to the imposed heat load by vasodilation of the tail skin blood vessels, indicated by an increased tail skin temperature. 5. Bilateral, but not unilateral, injection of either pimozide (0.5 microgram) or haloperidol (2.5 microgram) into the preoptic region significantly reduced the increase in tail skin temperature so that the rats were less able to withstand the imposed heat load. 6. Three serial sections (0.5 mm thick) were prepared from the preoptic anterior hypothalamic region of the rat brain, one anterior, one posterior and one corresponding to the dopamine-sensitive site. 7. Tissue from the middle slice increased its rate of synthesis of 3,5-cyclic AMP in response to addition of dopamine 20 or 100 micron to the incubation medium. The posterior slice was inactive, but the anterior slice had similar activity to the middle slice. 8. The effect of dopamine on the middle slice was specifically blocked by haloperidol (0.1 micron), whereas the effects on the anterior slice were partially blocked by both haloperidol (0.1 micron) and propranolol (0.1 micron). 9. These results indicate that there is within a well defined area of the preoptic region a population of dopamine receptors, which play a part in the transmission of information from warm sensors to heat loss effectors.
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