Quantitative Structure-activity Relationship Study of Novel α1a-selective Adrenoceptor Antagonists

P. Singh, R. Kumar
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Abstract

Two series of compounds were recently reported as novel α1a-selective adrenoceptor antagonists. In the first series, a dihydropyrimidone moiety is attached to a 4-phenyl piperidine containing side chain, while in the second, it is linked to a 4-substituted phenyl piperazine containing side chain. These compounds having potential for the treatment of benign prostatic hyperplasia, a urological disorder in the older age male population, were subjected to a quantitative structure-activity relationship study. The analysis has helped to ascertain the role of different substituents in explaining the observed binding potencies of these analogues. In the first category of compounds, three sites R1 R2 and X were varied and from the quantitative structure - activity relationship, it emerged that X- and R1-substituents having respectively, the high values of field and resonance effects may lead to more potent α1a-antagonists. The substituent of R2 being either CH3 or C2H5, does not add to improve the activity and thus the site, at present, becomes redundant. This site may, however, be explored for some additional substituents in future. In the second series of compounds, the phenyl ring, linked to a piperazine moiety at the end of a side chain, was substituted with various groups onto different positions. From derived significant correlations, it appeared the less polar and/or bulky substituents at the meta- and para-positions and a more hydrophobic substituent at the para-position are advantageous.
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新型α1a选择性肾上腺素能受体拮抗剂的定量构效关系研究
最近有两个系列的化合物被报道为新型α1a选择性肾上腺素能受体拮抗剂。在第一个系列中,二氢嘧啶部分连接到含有4-苯基哌嗪的侧链上,而在第二个系列中,它连接到含有4-取代苯基哌嗪的侧链上。这些化合物具有治疗良性前列腺增生(老年男性人群中的一种泌尿系统疾病)的潜力,并进行了定量的构效关系研究。该分析有助于确定不同取代基在解释观察到的这些类似物的结合能力方面的作用。在第一类化合物中,R1、R2和X三个位点发生了变化,从定量构效关系来看,X-和R1取代基分别具有较高的场效应和共振效应,可能会产生更强的α1a拮抗剂。R2的取代基是CH3或C2H5,不能增加活性,因此目前该位点是冗余的。然而,这个位置可能会在未来探索一些额外的取代基。在第二系列化合物中,苯基环在侧链末端与哌嗪基团相连,在不同位置上被不同的基团取代。从推导出的显著相关性来看,间位和对位上极性较小或体积较大的取代基以及对位上疏水性较强的取代基是有利的。
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