Seale T W, Avor K, Singh S, Hall N, Chan H M, Basmadjian G P
Department of Pediatrics, University of Oklahoma Health Sciences Center, Oklahoma City 73190, USA.
Neuroreport. 1997 Nov 10;8(16):3571-5. doi: 10.1097/00001756-199711100-00030.
Few studies have characterized the effect of substituents at the 2'-position of cocaine on transporter binding potency and selectivity. We synthesized 2'-OH-, 2'-F- and 2'-acetoxy-cocaines and compared their binding potencies for rat dopamine, norepinephrine and 5-hydroxytryptamine transporters to cocaine, 3'-OH-, 4'-OH-, 2'-OH,4'-I-cocaine derivatives, and to the transporter selective ligands WIN 35,428, nisoxetine and paroxetine. Unlike most substitutions, 2'-OH- and 2'-acetoxy-groups increased cocaine's binding potency for the dopamine transporter (10- and 4-fold, respectively). These substituents also enhanced binding to the norepinephrine transporter (52- and 35-fold, respectively) but had less effect on 5-hydroxytryptamine transporter binding. 2'-Hydroxylation also enhanced binding of 4'-I cocaine, an analog with low DA binding potency. The ability of 2'-substituents to substantially increase cocaine binding potency and to alter selectivity for brain transporters indicates the potential importance of the 2'-position in transporter binding.
很少有研究描述可卡因2'-位取代基对转运体结合亲和力和选择性的影响。我们合成了2'-羟基-、2'-氟-和2'-乙酰氧基-可卡因,并将它们对大鼠多巴胺、去甲肾上腺素和5-羟色胺转运体的结合亲和力与可卡因、3'-羟基-、4'-羟基-、2'-羟基、4'-碘-可卡因衍生物以及转运体选择性配体WIN 35,428、尼索西汀和帕罗西汀进行了比较。与大多数取代情况不同,2'-羟基-和2'-乙酰氧基-基团增加了可卡因对多巴胺转运体的结合亲和力(分别为10倍和4倍)。这些取代基还增强了对去甲肾上腺素转运体的结合(分别为52倍和35倍),但对5-羟色胺转运体结合的影响较小。2'-羟基化还增强了4'-碘可卡因(一种多巴胺结合亲和力较低的类似物)的结合。2'-取代基大幅增加可卡因结合亲和力并改变对脑转运体选择性的能力表明2'-位在转运体结合中具有潜在重要性。