Markstein R, Enz A, Vigouret J M, Jaton A, Closse A, Briner U, Gull P
J Neural Transm. 1987;69(3-4):179-99. doi: 10.1007/BF01244340.
CK 204-933 displaces [3H]dopamine and [3H]spiperone with high affinity from D-1 and D-2 recognition sites in membranes of calf caudate. Results from functional in vitro tests suggest that it is a partial agonist at D-1 receptors and an antagonist at D-2 receptors. These opposite effects at dopamine receptor subtypes are also expressed in vivo. For instance, in 6-hydroxydopamine lesioned rats, CK 204-933 induces contralateral rotations which are antagonised by SCH 23390 but not by sulpiride. On the other hand, CK 204-933 induces a long lasting increase of dopamine turnover in rat striatum and antagonises apomorphine-induced gnawing behaviour in rats. CK 204-933 increases prolactin serum levels in rats after subcutaneous administration, whereas after oral administration a moderate decrease of prolactin serum levels was seen. The latter effect is probably due to the formation of active metabolites. CK 204-933 exhibits also a high affinity to [3H]prazosin binding sites and antagonises serotonin-mediated stimulation of adenylate cyclase in rat hippocampus. On the other hand, CK 204-933 has no effect of only very weak effects on noradrenaline and serotonin release from rat cerebral cortex slices, which is consistent with its weak effects on noradrenaline- and serotonin-turnover in rat brain. Based on these properties it is suggested that CK 204-933 could be of therapeutic value in brain diseases associated with disturbances of monoaminergic neurotransmission.
CK 204 - 933能以高亲和力从小牛尾状核膜中的D - 1和D - 2识别位点置换[3H]多巴胺和[3H]螺哌隆。体外功能测试结果表明,它是D - 1受体的部分激动剂和D - 2受体的拮抗剂。多巴胺受体亚型的这些相反作用在体内也有表现。例如,在6 - 羟基多巴胺损伤的大鼠中,CK 204 - 933诱导对侧旋转,这种旋转可被SCH 23390拮抗,但不能被舒必利拮抗。另一方面,CK 204 - 933诱导大鼠纹状体中多巴胺周转率的持久增加,并拮抗阿扑吗啡诱导的大鼠啃咬行为。皮下给药后,CK 204 - 933可使大鼠血清催乳素水平升高,而口服给药后可见血清催乳素水平适度降低。后一种效应可能是由于活性代谢产物的形成。CK 204 - 933对[3H]哌唑嗪结合位点也表现出高亲和力,并拮抗大鼠海马体中5 - 羟色胺介导的腺苷酸环化酶刺激。另一方面,CK 204 - 933对大鼠大脑皮层切片中去甲肾上腺素和5 - 羟色胺的释放没有影响或只有非常微弱的影响,这与其对大鼠脑中去甲肾上腺素和5 - 羟色胺周转率的微弱影响一致。基于这些特性,有人提出CK 204 - 933在与单胺能神经传递紊乱相关的脑部疾病中可能具有治疗价值。