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首页> 外文期刊>Bioorganic and medicinal chemistry >Synthesis, ligand-receptor modeling studies and pharmacological evaluation of novel 4-modified-2-aryl-1,2,4-triazolo(4,3-a)quinoxalin-1-one derivatives as potent and selective human A3 adenosine receptor antagonists.
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Synthesis, ligand-receptor modeling studies and pharmacological evaluation of novel 4-modified-2-aryl-1,2,4-triazolo(4,3-a)quinoxalin-1-one derivatives as potent and selective human A3 adenosine receptor antagonists.

机译:合成,配体-受体建模研究和药理学评价新型的4-修饰-2-芳基-1,2,4-三唑并(4,3-a)喹喔啉-1-酮衍生物作为有效和选择性的人A3腺苷受体拮抗剂。

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摘要

The study of some 4-substituted-2-aryl-1,2,4-triazolo[4,3-a]quinoxalin-1-one derivatives, designed as hA(3) adenosine receptor antagonists, is reported. The new compounds bear on the four-position different acylamino, sulfonylamino, benzylureido and benzyloxy moieties, which have also been combined with a para-methoxy group on the 2-phenyl ring or with a nitro residue at the six-position. Many derivatives show high hA(3) adenosine receptor affinities and selectivities both versus hA(1) and hA(2A) receptors. The observed structure-affinity relationships of this class of antagonists have been exhaustively rationalized using the recently published ligand-based homology modeling (LBHM) approach. The selected 4-bismethanesulfonylamino-2-phenyl-1,2,4-triazolo[4,3-a]quinoxalin-1-one (13), which shows high hA(3) affinity (K(i)=5.5nM) and selectivity versus hA(1), hA(2A) (both selectivity ratios>1800) and hA(2B) (cAMP assay, IC(50)>10,000nM) receptors, was tested in an in vitro rat model of cerebral ischemia, proving to be effective in preventing the failure of synaptic activity, induced by oxygen and glucose deprivation in the hippocampus, and in delaying the occurrence of anoxic depolarization.
机译:报道了一些被设计为hA(3)腺苷受体拮抗剂的4-取代-2-芳基-1,2,4-芳基1,2,4-三唑并[4,3-a]喹喔啉-1-酮衍生物的研究。新化合物在四个位置上带有不同的酰基氨基,磺酰基氨基,苄基脲基和苄氧基基团,它们也与2-苯基环上的对甲氧基基团或在六个位置上的硝基残基结合在一起。许多衍生物与hA(1)和hA(2A)受体相比均显示出高的hA(3)腺苷受体亲和力和选择性。使用最近发布的基于配体的同源性建模(LBHM)方法已完全合理地观察到了此类拮抗剂的结构亲和性关系。所选的4-双甲磺酰基氨基-2-苯基-1,2,4-三唑并[4,3-a]喹喔啉-1-酮(13),具有很高的hA(3)亲和力(K(i)= 5.5nM)并在体外大鼠脑缺血模型中测试了其与hA(1),hA(2A)(选择性比> 1800)和hA(2B)(cAMP分析,IC(50)> 10,000nM)受体的选择性,事实证明,它可有效防止因海马缺氧和缺糖引起的突触活动失败,并能延迟缺氧去极化的发生。

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