Arnt J, Bøgesø K P, Hyttel J, Larsen J J, Svendsen O
Eur J Pharmacol. 1984 Jun 15;102(1):91-9. doi: 10.1016/0014-2999(84)90341-8.
The experiments concerned the pharmacology of the enantiomers of the phenethyl-analogue (3-phenethyl-PP) of the putative dopamine (DA) autoreceptor agonist 3-PPP. In contrast to the almost equipotency of 3-PPP enantiomers, the phenethyl enantiomers showed marked stereoselectivity. S(+)-3-Phenethyl-PP had 25 times higher affinity to D-2 DA receptors in vitro than the R(-)-enantiomer. In vivo a similar potency difference was seen for the inhibition of motility, induction of circling behaviour in 6-OHDA-lesioned rats and emetic effect in dogs. None of the enantiomers induced stereotypy and hypermotility in normal rats or in rats pretreated with reserpine and alpha-methyl-p-tyrosine. In test models for antidopaminergic activity only slight activity of either enantiomer was observed. The S(+)-enantiomer had no antagonistic effect against apomorphine- and amphetamine-induced stereotypies, no cataleptogenic activity and only partially antagonized amphetamine-induced hypermotility. Apomorphine-induced emesis was weakly antagonized. The results indicate a greater and higher selectivity of S(+)-3-phenethyl-PP for DA receptors mediating sedation compared with 3-PPP enantiomers which previously have been shown to exert significant effects on postsynaptic DA receptors. Thus S(+)-3-phenethyl-PP may be a more selective model compound for the differential study of effects elicited by stimulation of pre- and postsynaptic DA receptors.
这些实验涉及假定的多巴胺(DA)自身受体激动剂3 - PPP的苯乙类似物(3 - 苯乙 - PPP)对映体的药理学。与3 - PPP对映体几乎等效不同,苯乙对映体表现出明显的立体选择性。S(+) - 3 - 苯乙 - PPP在体外对D - 2 DA受体的亲和力比R( - ) - 对映体高25倍。在体内,在抑制运动、诱导6 - OHDA损伤大鼠的转圈行为以及犬的催吐作用方面也观察到了类似的效价差异。在正常大鼠或用利血平和α - 甲基 - 对 - 酪氨酸预处理的大鼠中,两种对映体均未诱导刻板行为和运动亢进。在抗多巴胺能活性测试模型中,仅观察到任一对映体的轻微活性。S(+) - 对映体对阿扑吗啡和苯丙胺诱导的刻板行为无拮抗作用,无致僵活性,仅部分拮抗苯丙胺诱导的运动亢进。阿扑吗啡诱导的呕吐有轻微拮抗作用。结果表明,与先前已证明对突触后DA受体有显著作用的3 - PPP对映体相比,S(+) - 3 - 苯乙 - PPP对介导镇静的DA受体具有更高的选择性。因此,S(+) - 3 - 苯乙 - PPP可能是用于差异研究突触前和突触后DA受体刺激所引发效应的更具选择性的模型化合物。