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首页> 外文期刊>Journal of Medicinal Chemistry >Synthesis and structure-activity relationships of new 1, 3-disubstituted cyclohexanes as structurally rigid leukotriene B(4) receptor antagonists.
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Synthesis and structure-activity relationships of new 1, 3-disubstituted cyclohexanes as structurally rigid leukotriene B(4) receptor antagonists.

机译:合成和结构,活性关系的新的1,3-二取代的环己烷作为结构刚性白三烯B(4)受体拮抗剂。

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摘要

A series of 1-hydroxy-3-3-hydroxy-7-phenyl-1-hepten-1-yl cyclohexane acetic acid derivatives was designed based on postulated active conformation of leukotriene B(4) (LTB(4)) and evaluated as human cell surface LTB(4) receptor (BLTR) antagonists. Binding was determined through (3)HLTB(4) displacement from human neutrophils and receptor antagonistic assays by in vitro measurements of inhibition of leukocyte chemotaxis induced by LTB(4). On the basis of these assays, a structure-affinity relationship was investigated. Optimization of the acid chain length and omega-substitution of a phenyl group on the lipophilic tail were shown to be critical for binding activity. These modifications led to the discovery of compounds with submicromolar potency and selective BLTR antagonism. The most potent compound 3balpha (IC(50) = 250 nM) was found to significantly inhibit oedema formation in a topical model of phorbolester-induced inflammation. Substantial improvement of in vitro potency was achieved by modification of the carboxylic acid function leading to the identification of the N,N-dimethylamide series. Compound 5balpha, free of agonist activity, displayed higher potency in receptor binding with an IC(50) of 40 nM. These results support the hypothesis that the spatial relationship between the carboxylic acid and allylic hydroxyl functions is crucial for high binding affinity with BLTR.
机译:基于白三烯B(4)(LTB(4))的假定活性构象设计了一系列1-羟基-3-3-羟基-7-苯基-1-庚-1-基环己烷乙酸衍生物人类细胞表面LTB(4)受体(BLTR)拮抗剂。通过(3)从人嗜中性白细胞中去除HLTB(4)和通过体外测量LTB(4)诱导的白细胞趋化性抑制作用的受体拮抗试验来确定结合。在这些测定的基础上,研究了结构亲和性关系。酸链长度的优化和亲脂性尾巴上苯基的ω取代被证明对结合活性至关重要。这些修饰导致发现具有亚微摩尔效能和选择性BLTR拮抗作用的化合物。在佛波酯诱导的炎症局部模型中,发现最有效的化合物3balpha(IC(50)= 250 nM)可以显着抑制水肿的形成。通过修饰羧酸功能实现了体外效能的显着提高,从而鉴定了N,N-二甲基酰胺系列。化合物5balpha,没有激动剂的活性,在受体结合方面表现出更高的效能,IC(50)为40 nM。这些结果支持以下假设:羧酸和烯丙基羟基官能团之间的空间关系对于与BLTR的高结合亲和力至关重要。

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