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Application of a mathematical topological pattern of antihistaminic activity for the selection of new drug candidates and pharmacology assays

机译:抗组胺活性的数学拓扑模式在选择新药和药理学检测中的应用

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摘要

Molecular topology was used to achieve a mathematical model capable of classifying compounds according to their antihistaminic activity and low sedative effects. By application of this model of activity to databases containing chemical reagents and drugs exhibiting other pharmacological activity, we selected 30 compounds with possible antihistaminic activity. After those with possible sedative effects were discarded, activity tests were performed with five chemical reagents and three drugs searching for in vivo antihistaminic activity. The obtained results indicate that compounds such as 4-[(E)-2-(1,3-benzothiazol-2-yl)vinyl]-N,N-dimethylaniline (AH2), 2-ethyl-9,10-dimethoxyanthracene (AH4), and 2,4-bis(alpha,alpha-dimethylbenzyl) phenol (AH5) showed antihistaminic activity above terfenadine, the reference drug, whereas others, for instance, pergolide, miconazole, trihexyphenidyl, 2-(dibenzylamino-3-phenyl-1-propanol (AH1), and N-benzylquininium chloride (AH3), were less active than terfenadine.
机译:使用分子拓扑学来建立能够根据化合物的抗组胺活性和低镇静作用对化合物进行分类的数学模型。通过将该活性模型应用于包含化学试剂和具有其他药理活性的药物的数据库,我们选择了30种可能具有抗组胺活性的化合物。丢弃可能具有镇静作用的药物后,用五种化学试剂和三种药物进行活性测试,以寻找体内抗组胺活性。获得的结果表明,诸如4-[((E)-2-(1,3-苯并噻唑-2-基)乙烯基] -N,N-二甲基苯胺(AH2),2-乙基-9,10-二甲氧基蒽( AH4)和2,4-双(α,α-二甲基苄基)苯酚(AH5)在参考药物特非那定上方显示出抗组胺活性,而其他药物例如培高利特,咪康唑,三己基苯基,2-(二苄基氨基-3-苯基) -1-丙醇(AH1)和N-苄基氯化奎宁(AH3)的活性低于特非那定。

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