Structure-Activity Relationships of 1,3-Dialkylxanthine Derivatives at Rat A3 Adenosine Receptors
作者:Hea Ok Kim、Xiao-duo Ji、Neli Melman、Mark E. Olah、Gary L. Stiles、Kenneth A. Jacobson
DOI:10.1021/jm00046a022
日期:1994.9
respectively. A synthetic strategy for introducing multiple carboxylate groups at the 8-position using iminodiacetic acid derivatives was explored. The presence of a sulfonate, a carboxylate, or multiple carboxylate groups did not result in a significant enhancement of affinity at rat A3 receptors, although as previously observed an anionic group tended to diminish potency at A1 and A2a receptors. The rat
合成了在 8 位取代基上含有羧酸和其他带电基团的 1,3-二烷基黄嘌呤类似物。使用新的放射性配体 [125I]AB-MECA (N6-(4-amino-3-iodobenzyl)adenosine-5'-N-甲基糖醛酰胺),并分别使用 [3H]PIA 和 [3H]CGS 21680 作用于大鼠脑 A1 和 A2a 受体。探索了使用亚氨基二乙酸衍生物在 8 位引入多个羧酸酯基团的合成策略。磺酸盐、羧酸盐或多个羧酸盐基团的存在不会导致对大鼠 A3 受体的亲和力显着增强,尽管如前所述,阴离子基团倾向于降低对 A1 和 A2a 受体的效力。大鼠 A3 受体亲和力不高度依赖于羧酸盐基团与黄嘌呤药效团的距离。2-Thio 与 2-oxo 取代有利于 A3 效力,8-烷基与 8-芳基取代有利于 A3 选择性,尽管很少有衍生物对大鼠 A3 受体具有真正的选择性。1,3-Dimethyl-8-(3-carb