Tang A H, Franklin S R, Himes C S, Smith M W, Tenbrink R E
Central Nervous System Research, Pharmacia & Upjohn, Inc., Kalamazoo, Michigan 49001, USA.
J Pharmacol Exp Ther. 1997 Apr;281(1):440-7.
The atypical antipsychotic drug clozapine interacts with multiple transmitter systems, among them the D4 subtype of dopamine receptors. PNU-96415E is chemically unrelated to clozapine and has its highest binding affinity for the D4 and 5-HT2A receptors. In comparison to clozapine, PNU-96415E is weaker in binding to D1, D2, alpha1 and muscarinic receptors. PNU-96415E inhibited exploratory locomotor activity in mice and rats, and antagonized d-amphetamine-induced locomotor stimulation in rats. It antagonized apomorphine-induced cage climbing, and blocked head and body twitch produced by 5-HTP in mice. Like clozapine, but unlike haloperidol, PNU-96415E did not antagonize stereotypic behaviors produced by a high dose of d-amphetamine or methylphenidate in rats and mice. PNU-96415E blocked conditioned avoidance in rats but produced no catalepsy, a pattern similar to clozapine but different from haloperidol. In rats trained to discriminate clozapine from saline injections, the stimulus effect generalized completely with PNU-96415E, but not haloperidol. This profile of pharmacological activities is consistent with that of an atypical antipsychotic and, as in the case with clozapine, the behavioral effects of PNU-96415E cannot be ascribed to a single receptor mechanism.
非典型抗精神病药物氯氮平与多种递质系统相互作用,其中包括多巴胺受体的D4亚型。PNU - 96415E在化学结构上与氯氮平无关,对D4和5 - HT2A受体具有最高的结合亲和力。与氯氮平相比,PNU - 96415E与D1、D2、α1和毒蕈碱受体的结合较弱。PNU - 96415E抑制小鼠和大鼠的探索性运动活动,并拮抗大鼠中由d - 苯丙胺诱导的运动兴奋。它拮抗阿扑吗啡诱导的笼内攀爬,并阻断小鼠中由5 - HTP产生的头部和身体抽搐。与氯氮平一样,但与氟哌啶醇不同,PNU - 96415E不拮抗高剂量d - 苯丙胺或哌醋甲酯在大鼠和小鼠中产生的刻板行为。PNU - 96415E阻断大鼠的条件性回避反应,但不产生僵住症,这一模式与氯氮平相似但与氟哌啶醇不同。在经过训练以区分氯氮平与生理盐水注射的大鼠中,PNU - 96415E能完全产生与氯氮平相同的刺激效应,但氟哌啶醇不能。这种药理活性概况与非典型抗精神病药物一致,并且与氯氮平的情况一样,PNU - 96415E的行为效应不能归因于单一的受体机制。