Department of Chemistry, University College London, Gower Street, London WC1E 6BT, UK.
Eur J Med Chem. 2013 May;63:907-23. doi: 10.1016/j.ejmech.2013.02.029. Epub 2013 Mar 6.
Previously, quinolinium-based tetraazacyclophanes, such as UCL 1684 and UCL 1848, have been shown to be extraordinarily sensitive to changes in chemical structure (especially to the size of the cyclophane system) with respect to activity as potent non-peptidic blockers of the small conductance Ca(2+)-activated K(+) ion channels (SKCa). The present work has sought to optimize the structure of the linking chains in UCL 1848. We report the synthesis and SKCa channel-blocking activity of 29 analogues of UCL 1848 in which the central CH2 of UCL 1848 is replaced by other groups X or Y = O, S, CF2, CO, CHOH, CC, CHCH, CHMe to explore whether subtle changes in bond length or flexibility can improve potency still further. The possibility of improving potency by introducing ring substituents has also been explored by synthesizing and testing 25 analogues of UCL 1684 and UCL 1848 with substituents (NO2, NH2, CF3, F, Cl, CH3, OCH3, OCF3, OH) in the 5, 6 or 7 positions of the aminoquinolinium rings. As in our earlier work, each compound was assayed for inhibition of the afterhyperpolarization (AHP) in rat sympathetic neurons, an action mediated by the SK3 subtype of the SKCa channel. One of the new compounds (39, R(7) = Cl, UCL 2053) is twice as potent as UCL 1848 and UCL 1684: seven are comparable in activity.
先前,基于喹啉的四氮杂环戊烷,如 UCL1684 和 UCL1848,已被证明对其化学结构的变化(尤其是对环戊烷系统的大小)具有极高的敏感性,因为它们是强效的非肽类小电导钙激活钾(SKCa)离子通道阻滞剂。本工作旨在优化 UCL1848 连接链的结构。我们报告了 UCL1848 的 29 个类似物的合成及其对 SKCa 通道的阻断活性,其中 UCL1848 的中心 CH2 被其他基团 X 或 Y = O、S、CF2、CO、CHOH、CC、CHCH、CHMe 取代,以探索键长或柔韧性的微小变化是否可以进一步提高效力。通过在氨基喹啉环的 5、6 或 7 位引入取代基(NO2、NH2、CF3、F、Cl、CH3、OCH3、OCF3、OH),也探索了通过合成和测试 UCL1684 和 UCL1848 的 25 个类似物来提高效力的可能性。与我们之前的工作一样,每种化合物都被检测抑制大鼠交感神经元的超极化后电位(AHP)的作用,该作用由 SKCa 通道的 SK3 亚型介导。新化合物之一(39,R(7) = Cl,UCL2053)的效力是 UCL1848 和 UCL1684 的两倍:七种化合物的活性相当。