Wilk S, Watson E, Stanley M E
J Pharmacol Exp Ther. 1975 Nov;195(2):265-70.
The mechanisms underlying the dissociation of the extrapyramidal and antipsychotic properties of haloperidol as compared to clozapine were explored by studying the effects of these drugs on dopamine metabolism in the straitum and tuberculum olfactorium (TO) of the rat. Homovanillic acid and 3,4-dihydroxyphenylacetic acid were simutaneously measured in these regions by a gas chromatographic techinque after treating the rats with different doses of the drugs. Dose-response curves and time-action curves were generated. For both drugs, a higher dose was required to achieve half-maximal metabolite elevation in the TO as compared to the striatum. The apparent differential sensitivity to haloperidol was attributed to differences in time to peak response. The time to peak response to clozapine was similar in both structures. Thus, the striatum appears to be more sensitive to clozapine than the TO with respect to elevation of dopamine metabolites. The effect of haloperidol on dopamine metabolism in the striatum was more persistent than that in the TO. After 4 hours, metabolite levels were still elevated in the striatum, whereas after 2 hours they returned to base line in the TO. The extrapyramidal effects of haloperidol may be due to the persistent action of this drug on dopamine metabolism in the striatum, and the lack of extrapyramidal effects of clozapine may be due to its brief action on dopamine metabolism in the striatum.
通过研究氟哌啶醇和氯氮平对大鼠纹状体和嗅结节(TO)中多巴胺代谢的影响,探讨了与氯氮平相比,氟哌啶醇锥体外系和抗精神病特性分离的潜在机制。在用不同剂量的药物处理大鼠后,通过气相色谱技术同时测量这些区域中的高香草酸和3,4 - 二羟基苯乙酸。生成了剂量 - 反应曲线和时间 - 作用曲线。与纹状体相比,两种药物在TO中达到代谢物升高半最大值都需要更高的剂量。对氟哌啶醇明显的差异敏感性归因于达到峰值反应的时间差异。氯氮平在两种结构中达到峰值反应的时间相似。因此,就多巴胺代谢物升高而言,纹状体似乎比TO对氯氮平更敏感。氟哌啶醇对纹状体中多巴胺代谢的作用比对TO更持久。4小时后,纹状体中的代谢物水平仍升高,而2小时后TO中的代谢物水平恢复到基线。氟哌啶醇的锥体外系作用可能归因于该药物对纹状体中多巴胺代谢的持续作用,而氯氮平缺乏锥体外系作用可能归因于其对纹状体中多巴胺代谢的短暂作用。