化学
哌嗪
哌啶
吲哚试验
连接器
生物利用度
兴奋剂
选择性
药代动力学
化学合成
立体化学
亲脂性
部分激动剂
受体
组合化学
体外
药理学
有机化学
生物化学
医学
催化作用
计算机科学
操作系统
作者
Monique B. van Niel,Ian Collins,Margaret S. Beer,Howard B. Broughton,Susan K. F. Cheng,Simon Goodacre,Anne Heald,Karen L Locker,Angus M. MacLeod,Denise Morrison,Christopher R. Moyes,Desmond O’Connor,Andrew Pike,Michael Rowley,Michael G. N. Russell,Balbinder Sohal,Josephine A. Stanton,Steven R. Thomas,Hugh Verrier,Alan P. Watt
摘要
It has previously been reported that a 3-(3-(piperazin-1-yl)propyl)indole series of 5-HT1D receptor ligands have pharmacokinetic advantages over the corresponding 3-(3-(piperidin-1-yl)propyl)indole series and that the reduced pKa of the piperazines compared to the piperidines may be one possible explanation for these differences. To investigate this proposal we have developed versatile synthetic strategies for the incorporation of fluorine into these ligands, producing novel series of 4-fluoropiperidines, 3-fluoro-4-aminopiperidines, and both piperazine and piperidine derivatives with one or two fluorines in the propyl linker. Ligands were identified which maintained high affinity and selectivity for the 5-HT1D receptor and showed agonist efficacy in vitro. The incorporation of fluorine was found to significantly reduce the pKa of the compounds, and this reduction of basicity was shown to have a dramatic, beneficial influence on oral absorption, although the effect on oral bioavailability could not always be accurately predicted.
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