Monte A P, Marona-Lewicka D, Kanthasamy A, Sanders-Bush E, Nichols D E
Department of Medicinal Chemistry and Pharmacognosy, School of Pharmacy and Pharmacal Sciences, Purdue University, West Lafayette, Indiana 47907.
J Med Chem. 1995 Mar 17;38(6):958-66. doi: 10.1021/jm00006a015.
The 3-pentyl-, (R)- and (S)-2-pentyl-, 2-hexyl-, and 2-heptylamides of d-lysergic acid were synthesized and evaluated in biochemical and behavioral assays for LSD-like activity. In radioligand competition studies, the (R)-lysergamides were consistently more potent than the (S)-amides in displacing [3H]ketanserin from 5-HT2A receptors in rat cortical homogenate and in displacing [3H]-8-OH-DPAT ([3H]-8-hydroxy-2-(di-n- propylamino)tetralin) from rat hippocampal 5-HT1A receptors. As the amide alkyl was lengthened from pentyl to heptyl, the affinity of the (R)-isomers for 5-HT2A sites decreased, while affinity for 5-HT1A sites was maximal for the (R)-2-hexyllysergamide. In rats trained to discriminate 0.08 mg/kg LSD tartrate from saline, a similar stereoselective effect was noted in which the (R)-alkylamides were more potent than the (S)-isomers in producing the LSD-like discriminative stimulus effect. However, as the amide alkyl substituent was increased in length, LSD-like activity decreased, with only partial substitution for training drug being observed for the (R)-hexylamide. The (R)- and (S)-pentyllysergamides were also assayed for their ability to activate intracellular phosphoinositide hydrolysis. Consistent with the binding and behavioral studies, these assays showed that both isomers are potent agonists at the 5-HT2A receptor, but that the (R)-pentyllysergamide is approximately 20 times more active than the (S)-pentyllysergamide in stimulating phosphoinositide turnover.
合成了d-麦角酸的3-戊基、(R)-和(S)-2-戊基、2-己基和2-庚基酰胺,并通过生化和行为学试验评估其类LSD活性。在放射性配体竞争研究中,在大鼠皮质匀浆中,(R)-麦角酰胺在从5-HT2A受体置换[3H]酮色林以及在大鼠海马5-HT1A受体置换[3H]-8-OH-DPAT([3H]-8-羟基-2-(二正丙基氨基)四氢萘)方面始终比(S)-酰胺更有效。随着酰胺烷基从戊基延长至庚基,(R)-异构体对5-HT2A位点的亲和力降低,而(R)-2-己基麦角酰胺对5-HT1A位点的亲和力最大。在经过训练以区分0.08mg/kg酒石酸LSD和生理盐水的大鼠中,观察到类似的立体选择性效应,即(R)-烷基酰胺在产生类LSD辨别刺激效应方面比(S)-异构体更有效。然而,随着酰胺烷基取代基长度增加,类LSD活性降低,对于(R)-己基酰胺仅观察到对训练药物的部分替代。还测定了(R)-和(S)-戊基麦角酰胺激活细胞内磷酸肌醇水解的能力。与结合和行为学研究一致,这些试验表明两种异构体都是5-HT2A受体的强效激动剂,但(R)-戊基麦角酰胺在刺激磷酸肌醇周转方面的活性比(S)-戊基麦角酰胺高约20倍。