首页> 外文期刊>Nuclear Medicine and Biology >Synthesis, in vitro and in vivo pharmacology of a C-11 labeled analog of CP-101,606, (+/-)threo-1-(4-hydroxyphenyl)-2-(4-hydroxy-4-(p-(11C)methoxyphenyl)piperi dino)-1-propanol, as a PET tracer for NR2B subunit-containing NMDA receptors.
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Synthesis, in vitro and in vivo pharmacology of a C-11 labeled analog of CP-101,606, (+/-)threo-1-(4-hydroxyphenyl)-2-(4-hydroxy-4-(p-(11C)methoxyphenyl)piperi dino)-1-propanol, as a PET tracer for NR2B subunit-containing NMDA receptors.

机译:C-11标记的CP-101,606,(+/-)苏式-1-(4-羟基苯基)-2-(4-羟基-4-(p-(11C))的C-11标记类似物的合成,体外和体内药理学甲氧基苯基)哌啶二基)-1-丙醇,作为含有NR2B亚基的NMDA受体的PET示踪剂。

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摘要

A carbon-11 labeled methoxyl analog of CP-101,606, (+/-)threo-1-(4-hydroxyphenyl)-2-[4-hydroxy-4-(p-[11C]methoxyphenyl)piperi dino]-1-propanol [(+/-)[11C]1], was synthesized as a new subtype-selective PET radioligand for NMDA receptors. The in vitro binding studies using rat brain slices demonstrated that (+/-)[11C]1 shows an extremely high-specific binding to the NR2B subunit of NMDA receptors. In contrast to the in vitro binding, the in vivo binding to mouse and monkey brains showed no apparent specific localization of the radioactivity in any of the brain regions. Metabolism and physicochemical properties such as the lipophilicity of (+/-)[11C]1 seemed unlikely to affect the in vivo (+/-)[11C]1 binding. Among the various endogenous ligands acting at the NMDA receptors, polyamines (spermine and spermidine) and divalent cations (Mg(2+,) Zn(2+,) and Ca(2+)) strongly inhibited the in vitro (+/-)[11C]1 binding. Thus, the present studies point to the possibility that the polyamines and cations behave as endogenous inhibitors for (+/-)[11C]1 binding, leading to the loss of the specific binding in vivo.
机译:CP-101,606的碳11标记的甲氧基类似物,(+/-)硫基-1-(4-羟基苯基)-2- [4-羟基-4-(对-[11C]甲氧基苯基)哌啶二基] -1-合成了丙醇[(+/-)[11C] 1],作为一种新的亚型选择性NMDA受体PET放射性配体。使用大鼠脑切片的体外结合研究表明(+/-)[11C] 1显示与NMDA受体的NR2B亚基的极高特异性结合。与体外结合相反,与小鼠和猴脑的体内结合在任何脑区域均未显示出明显的放射性特异性定位。 (+/-)[11C] 1的亲脂性等代谢和理化特性似乎不太可能影响体内(+/-)[11C] 1的结合。在作用于NMDA受体的各种内源性配体中,多胺(精胺和亚精胺)和二价阳离子(Mg(2+,)Zn(2+,)和Ca(2+))强烈抑制体外(+/-) [11C] 1结合。因此,本研究指出,多胺和阳离子可能作为(+/-)[11C] 1结合的内源性抑制剂,从而导致体内特异性结合的丧失。

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