Matsuda A, Shinozaki M, Yamaguchi T, Homma H, Nomoto R, Miyasaka T, Watanabe Y, Abiru T
Faculty of Pharmaceutical Sciences, Hokkaido University, Sapporo, Japan.
J Med Chem. 1992 Jan 24;35(2):241-52. doi: 10.1021/jm00080a007.
The synthesis and receptor-binding activities at A1 and A2 adenosine receptors for a series of 2-alkynyladenosines are described. The palladium-catalyzed cross-coupling reaction of 2-iodoadenosine (4a) with various terminal alkynes in the presence of bis(triphenylphosphine)palladium dichloride and cuprous iodide in N,N-dimethylformamide containing triethylamine gives 2-alkynyladenosines (5a-r). An economical synthetic method for the preparation of 9-(2,3,5-tri-O-acetyl-1-beta-D-ribofuranosyl)-6-chloro-2-iodopurine++ + (2), which is a precursor of 4a, is also included. Several transformation reactions of 2-(1-octyn-1-yl)adenosine (5e) and 2-(1-ethyn-1-yl)adenosine (9) and a similar cross-coupling reaction of 6-chloropurine derivative 11 and 8-bromoadenosine (13) with 1-octyne are also reported. Many of these 2-alkynyladenosines tested for A1 and A2 adenosine receptor binding activities in rat brain are selective for the A2 adenosine receptor. Among them, 2-(1-hexyn-1-yl)adenosine (5c) has the highest affinity for both A1 and A2 receptors with Ki values of 126.5 and 2.8 nM, respectively. The structure-activity relationship of this series of compounds including 6- or 8-alkynylpurine nucleosides and 2-alkyl- and 2-alkenyladenosines is discussed in terms of potency at both receptor subtypes. Additionally, we describe how hypotensive activity and heart rate decrease brought on by 5 and some other compounds with spontaneously hypertensive rats are proportional to the order of the potency to both A1 and A2 binding affinities. Thus, 2-alkynyladenosines are interesting and promising as antihypertensive agents that should be considered for further detailed preclinical evaluation.
本文描述了一系列2-炔基腺苷在A1和A2腺苷受体上的合成及受体结合活性。在含三乙胺的N,N-二甲基甲酰胺中,2-碘腺苷(4a)与各种末端炔烃在二氯双(三苯基膦)钯和碘化亚铜存在下进行钯催化的交叉偶联反应,得到2-炔基腺苷(5a-r)。文中还介绍了一种经济的合成方法来制备9-(2,3,5-三-O-乙酰基-1-β-D-呋喃核糖基)-6-氯-2-碘嘌呤++ +(2),它是4a的前体。还报道了2-(1-辛炔-1-基)腺苷(5e)和2-(1-乙炔-1-基)腺苷(9)的几个转化反应,以及6-氯嘌呤衍生物11和8-溴腺苷(13)与1-辛炔的类似交叉偶联反应。对这些在大鼠脑中测试A1和A2腺苷受体结合活性的2-炔基腺苷中的许多进行了研究,发现它们对A2腺苷受体具有选择性。其中,2-(1-己炔-1-基)腺苷(5c)对A1和A2受体都具有最高亲和力,其Ki值分别为126.5和2.8 nM。根据这两种受体亚型的活性,讨论了包括6-或8-炔基嘌呤核苷以及2-烷基和2-烯基腺苷在内的该系列化合物的构效关系。此外,我们描述了5和其他一些化合物对自发性高血压大鼠引起的降压活性和心率降低与它们对A1和A2结合亲和力的活性顺序成正比。因此,2-炔基腺苷作为抗高血压药物很有趣且有前景,应考虑进一步进行详细的临床前评估。