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H3受体拮抗剂:对-和间-取代的4(5)-苯基-2-[[2-[4(5)-咪唑基]乙基]硫代]咪唑的合成及构效关系

H3-receptor antagonists: synthesis and structure-activity relationships of para- and meta-substituted 4(5)-phenyl-2-[[2-[4(5)-imidazolyl]ethyl]thio]imidazoles.

作者信息

Mor M, Bordi F, Silva C, Rivara S, Crivori P, Plazzi P V, Ballabeni V, Caretta A, Barocelli E, Impicciatore M, Carrupt P A, Testa B

机构信息

Dipartimento Farmaceutico, Università degli Studi di Parma, Italy.

出版信息

J Med Chem. 1997 Aug 1;40(16):2571-8. doi: 10.1021/jm970070p.

Abstract

We report the synthesis, octanol/water partition coefficient (log P), dissociation constants (pKa), H3-receptor affinity (pKi in rat brain membranes, [3H]-N alpha-methylhistamine), and H3-antagonist potency (pA2 in guinea ileum, (R)-alpha-methylhistamine) of novel H3-receptor antagonists obtained by introducing a para or meta substituent on the phenyl ring of the lead compound 4(5)-phenyl-2-[[2-[4(5)-imidazolyl]ethyl]thio]imidazole (3a). The substituents were chosen to obtain broad and uncorrelated variation in their lipophilic, electronic, and steric properties. The log P values of the neutral species cover almost 3 orders of magnitude (from 1.40 to 4.11). The pKa,2 values (protonation of the 2-thioimidazole fragment) vary from 3.13 to 4.34, indicating that this fragment, which incorporates the so-called polar group common to many H3-receptor antagonists, is neutral at physiological pH. The compounds had pKi values in a range too narrow (from 7.28 to 8.03) to derive QSAR equations. In one case (3g), a biphasic displacement curve was observed (pKi,1 = 8.53; pKi,2 = 6.90). The pA2 values ranged 2 orders of magnitude (from 6.83 to 8.87) and yielded a QSAR model (PLS) indicating that antagonist potency depends parabolically on lipophilicity and is decreased by bulky para substituents. The compounds of this series, therefore, maintain a fair-to-good affinity for rat brain H3-receptor and a fair-to-good H3-antagonist potency on guinea pig ileum, although varying markedly in their lipophilicity. The series thus appears as a good candidate for pharmacokinetic optimization leading to brain-penetrating H3-receptor antagonists.

摘要

我们报道了通过在先导化合物4(5)-苯基-2-[[2-[4(5)-咪唑基]乙基]硫代]咪唑(3a)的苯环上引入对位或间位取代基而获得的新型H3受体拮抗剂的合成、正辛醇/水分配系数(log P)、解离常数(pKa)、H3受体亲和力(大鼠脑膜中的pKi,[3H]-Nα-甲基组胺)以及H3拮抗剂效价(豚鼠回肠中的pA2,(R)-α-甲基组胺)。选择这些取代基是为了在其亲脂性、电子性质和空间性质方面获得广泛且不相关的变化。中性物种的log P值涵盖了近3个数量级(从1.40到4.11)。pKa,2值(2-硫代咪唑片段的质子化)从3.13到4.34不等,表明该片段在生理pH下呈中性,该片段包含许多H3受体拮抗剂共有的所谓极性基团。这些化合物的pKi值范围过窄(从7.28到8.03),无法推导定量构效关系方程。在一种情况下(3g),观察到双相置换曲线(pKi,1 = 8.53;pKi,2 = 6.90)。pA2值范围为2个数量级(从6.83到8.87),并产生了一个定量构效关系模型(偏最小二乘法),表明拮抗剂效价呈抛物线状依赖于亲脂性,并因庞大的对位取代基而降低。因此,该系列化合物对大鼠脑H3受体保持着相当好到良好的亲和力,对豚鼠回肠具有相当好到良好的H3拮抗剂效价,尽管它们的亲脂性有显著差异。因此,该系列似乎是进行药代动力学优化以获得脑渗透性H3受体拮抗剂的良好候选物。

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