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新型强效4-芳基烷基取代的3-异恶唑醇GABA(A)拮抗剂:合成、药理学及分子模拟

Novel class of potent 4-arylalkyl substituted 3-isoxazolol GABA(A) antagonists: synthesis, pharmacology, and molecular modeling.

作者信息

Frølund Bente, Jørgensen Anne T, Tagmose Lena, Stensbøl Tine B, Vestergaard Henrik T, Engblom Christine, Kristiansen Uffe, Sanchez Connie, Krogsgaard-Larsen Povl, Liljefors Tommy

机构信息

Department of Medicinal Chemistry and Pharmacology, The Royal Danish School of Pharmacy, 2 Universitetsparken, DK 2100 Copenhagen, Denmark.

出版信息

J Med Chem. 2002 Jun 6;45(12):2454-68. doi: 10.1021/jm020027o.

Abstract

A number of analogues of the low-efficacy partial GABA(A) agonist 5-(4-piperidyl)-3-isoxazolol (4-PIOL, 5), in which the 4-position of the 3-isoxazolol ring was substituted by different groups, were synthesized and tested as GABA(A) receptor ligands. Substituents of different size and structural flexibility such as alkyl, phenylalkyl, diphenylalkyl, and naphthylalkyl were explored. Pharmacological characterization of the synthesized compounds was carried out using receptor binding assays and by electrophysiological experiments using whole-cell patch-clamp techniques. Whereas none of these compounds significantly affected GABA(B) receptor sites or GABA uptake, they did show affinity for the GABA(A) receptor site. While alkyl or benzyl substitution, compounds 7a-h, provided receptor affinities comparable with that of 5 (K(i) = 9.1 microM), diphenylalkyl and naphthylalkyl substitution, as in compounds 7m-t, resulted in a dramatic increase in affinity relative to 5. The 3,3-diphenylpropyl and the 2-naphthylmethyl analogues, compounds 7s and 7m, respectively, showed the highest affinities of the series (K(i) = 0.074 microM and K(i) = 0.049 microM). In whole-cell patch-clamp recordings from cultured cerebral cortical neurons, all of the tested compounds were able to inhibit the effect of the specific GABA(A) agonist isoguvacine (1), compounds 7m and 7s showing antagonist potency (IC(50) = 0.37 microM and IC(50) = 0.02 microM) comparable with or markedly higher than that of the standard GABA(A) antagonist 4 (IC(50) = 0.24 microM). Highly potent convulsant activity was demonstrated in mice with compounds 7m (ED(50) = 0.024 micromol/kg) and 7s (ED(50) = 0.21 micromol/kg) after intracerebroventricular administration, whereas no effects were found after subcutaneous administration. According to a previously proposed pharmacophore model for GABA(A) receptor agonists, a receptor cavity in the vicinity of the 4-position of the 3-isoxazolol ring in 4-PIOL exists. A molecular modeling study, based on compounds 7o,m,l,q,s, was performed to explore the dimensions and other properties of the receptor cavity. This study demonstrates the importance of the arylalkyl substituents in 7m and 7s and the considerable dimensions of this proposed receptor cavity.

摘要

合成了一系列低效能部分GABA(A)激动剂5-(4-哌啶基)-3-异恶唑醇(4-PIOL, 5)的类似物,其中3-异恶唑醇环的4位被不同基团取代,并作为GABA(A)受体配体进行了测试。研究了不同大小和结构灵活性的取代基,如烷基、苯烷基、二苯烷基和萘烷基。使用受体结合试验以及采用全细胞膜片钳技术的电生理实验对合成化合物进行了药理学表征。这些化合物均未显著影响GABA(B)受体位点或GABA摄取,但它们确实对GABA(A)受体位点表现出亲和力。虽然烷基或苄基取代的化合物7a-h提供了与5相当的受体亲和力(K(i)=9.1 microM),但二苯烷基和萘烷基取代的化合物7m-t相对于5而言,亲和力显著增加。3,3-二苯丙基和2-萘甲基类似物,即化合物7s和7m,分别表现出该系列中的最高亲和力(K(i)=0.074 microM和K(i)=0.049 microM)。在培养的大脑皮质神经元的全细胞膜片钳记录中,所有测试化合物都能够抑制特异性GABA(A)激动剂异鹅去甲肾上腺素(1)的作用,化合物7m和7s表现出的拮抗剂效力(IC(50)=0.37 microM和IC(50)=0.02 microM)与标准GABA(A)拮抗剂4(IC(50)=0.24 microM)相当或明显更高。脑室注射后,化合物7m(ED(50)=0.024微摩尔/千克)和7s(ED(50)=0.21微摩尔/千克)在小鼠中表现出高效惊厥活性,而皮下注射后未发现作用。根据先前提出的GABA(A)受体激动剂药效团模型,4-PIOL中3-异恶唑醇环4位附近存在一个受体腔。基于化合物7o、m、l、q、s进行了分子模拟研究,以探索受体腔的尺寸和其他性质。该研究证明了7m和7s中芳烷基取代基的重要性以及该拟议受体腔的相当大的尺寸。

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