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2-氨基苯并咪唑衍生物作为强效H3拮抗剂的合成、生物活性、定量构效关系和定量构性研究

Synthesis, biological activity, QSAR and QSPR study of 2-aminobenzimidazole derivatives as potent H3-antagonists.

作者信息

Mor Marco, Bordi Fabrizio, Silva Claudia, Rivara Silvia, Zuliani Valentina, Vacondio Federica, Rivara Mirko, Barocelli Elisabetta, Bertoni Simona, Ballabeni Vigilio, Magnanini Francesca, Impicciatore Mariannina, Plazzi Pier Vincenzo

机构信息

Dipartimento Farmaceutico, Università degli Studi di Parma, Parco Area delle Scienze 27/A, I-43100 Parma, Italy.

出版信息

Bioorg Med Chem. 2004 Feb 15;12(4):663-74. doi: 10.1016/j.bmc.2003.11.030.

Abstract

We report the design, synthesis, QSPR and QSAR of a new class of H(3)-antagonists, having a 2-aminobenzimidazole moiety connected to the 4(5) position of an imidazole ring through di- or tri-methylene chains. Eleven substituents, selected by experimental design to obtain broad and non-correlated variation in their lipophilic, electronic and steric properties, were introduced at the 5(6) position of the benzimidazole nucleus. The compounds were tested for their H(3)-receptor affinity, by displacement of [(3)H]-(R)-alpha-methylhistamine ([(3)H]-RAMHA) binding to rat brain membranes (pK(i)), for intrinsic activity, evaluating their effect on [(35)S]GTPgammaS binding to rat brain membranes, and for H(3)-antagonist potency, on electrically stimulated guinea-pig ileum (pK(B)). The pK(i) values of the derivatives with longer chain (5a-k) ranged over 2 orders of magnitude, with the 5(6)-methoxy derivative 5d endowed with sub-nanomolar affinity (pK(i)=9.37). The series having two methylene groups in the chain spacer (4a-k), showing a small variation in affinity, revealed to be somewhat insensitive to ring substitution. Lipophilicity (log P) and basicity (pK(a)) of the newly synthesized compounds were measured and related to receptor affinity in a QSAR study. Multiple regression analysis (MRA) showed an approximate parabolic dependence of pK(i) on log P, while an additional electronic effect of the substituents on benzimidazole tautomerism is suspected.

摘要

我们报道了一类新型H(3)拮抗剂的设计、合成、定量结构-性质关系(QSPR)和定量结构-活性关系(QSAR),这类拮抗剂具有一个2-氨基苯并咪唑部分,通过二亚甲基链或三亚甲基链连接到咪唑环的4(5)位。通过实验设计选择了11个取代基,以使其亲脂性、电子性质和空间性质具有广泛且不相关的变化,并将其引入苯并咪唑核的5(6)位。通过[(3)H]-(R)-α-甲基组胺([(3)H]-RAMHA)与大鼠脑膜结合的置换实验(pK(i))来测试化合物的H(3)受体亲和力,通过评估它们对[(35)S]GTPγS与大鼠脑膜结合的影响来测试内在活性,并通过对电刺激的豚鼠回肠实验(pK(B))来测试H(3)拮抗剂效力。长链衍生物(5a-k)的pK(i)值范围超过2个数量级,其中5(6)-甲氧基衍生物5d具有亚纳摩尔亲和力(pK(i)=9.37)。在链间隔基中具有两个亚甲基基团的系列化合物(4a-k),其亲和力变化较小,显示出对环取代有点不敏感。在一项QSAR研究中,测量了新合成化合物的亲脂性(log P)和碱性(pK(a)),并将其与受体亲和力相关联。多元回归分析(MRA)表明pK(i)对log P呈近似抛物线依赖性,同时怀疑取代基对苯并咪唑互变异构有额外的电子效应。

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