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6-取代十氢异喹啉-3-羧酸AMPA受体拮抗剂的构效关系研究。2. 远端酸生物电子等排体取代的影响、绝对立体化学偏好及体内活性。

Structure-activity studies of 6-substituted decahydroisoquinoline-3-carboxylic acid AMPA receptor antagonists. 2. Effects of distal acid bioisosteric substitution, absolute stereochemical preferences, and in vivo activity.

作者信息

Ornstein P L, Arnold M B, Allen N K, Bleisch T, Borromeo P S, Lugar C W, Leander J D, Lodge D, Schoepp D D

机构信息

Lilly Research Laboratories, Division of Eli Lilly and Company, Lilly Corporate Center, Indianapolis, Indiana 46285, USA.

出版信息

J Med Chem. 1996 May 24;39(11):2232-44. doi: 10.1021/jm950913h.

Abstract

We have explored the excitatory amino acid antagonist activity in a series of decahydroiso-quinoline-3-carboxyic acids, and within this series found the potent and selective AMPA antagonist (3SR,4aRS,6RS,8aRS)-6-(2-(1H-tetrazol-5-yl )ethyl) decahydroisoquinoline-3-carboxylic acid (1). In this and the preceding paper, we looked at the structure-activity relationships for AMPA antagonist activity in this series of compounds. We have already shown that 1 had the optimal stereochemical array and that AMPA antagonist activity was maximized for a two-carbon spacer separating a tetrazole from the bicyclic nucleus. In this paper, we explored the effects of varying the distal acid and the absolute stereochemical preferences of many of these analogs. We looked at a variety of different acid bioisosteres, including 5-membered hetereocyclic acids such as tetrazole, 1,2,4-triazole, and 3-isoxazolone; carboxylic,phosphonic, and sulfonic acid; and acyl sulfonamides. Compounds were evaluated in rat cortical tissue for their ability to inhibit the binding of radioligands selective for AMPA ([3H]AMPA), NMDA ([3H]CGS 19755), and kainic acid ([3H]kainic acid) receptors and for their ability to inhibit depolarizations induced by AMPA (40 microM), NMDA (40 microM), and kainic acid (10 microM). A number of compounds from this and the preceding paper were also evaluated in mice for their ability to block maximal electroshock-induced convulsions and ATPA-induced rigidity in mice.

摘要

我们研究了一系列十氢异喹啉-3-羧酸的兴奋性氨基酸拮抗剂活性,并在该系列中发现了强效且选择性的AMPA拮抗剂(3SR,4aRS,6RS,8aRS)-6-(2-(1H-四唑-5-基)乙基)十氢异喹啉-3-羧酸(1)。在本文以及上一篇论文中,我们研究了该系列化合物中AMPA拮抗剂活性的构效关系。我们已经表明,1具有最佳的立体化学排列,并且对于将四唑与双环核隔开的两个碳原子的间隔基,AMPA拮抗剂活性最大化。在本文中,我们探讨了改变远端酸以及许多这些类似物的绝对立体化学偏好的影响。我们研究了多种不同的酸性生物电子等排体,包括五元杂环酸,如四唑、1,2,4-三唑和3-异恶唑酮;羧酸、膦酸和磺酸;以及酰基磺酰胺。在大鼠皮质组织中评估化合物抑制对AMPA([3H]AMPA)、NMDA([3H]CGS 19755)和 kainic 酸([3H]kainic acid)受体具有选择性的放射性配体结合的能力,以及它们抑制由AMPA(40 microM)、NMDA(40 microM)和 kainic 酸(10 microM)诱导的去极化的能力。本文以及上一篇论文中的许多化合物还在小鼠中评估了它们阻断最大电休克诱导的惊厥和ATPA诱导的小鼠僵硬的能力。

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