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首页> 外文期刊>Bioorganic and medicinal chemistry >Synthesis of novel 4- and 5-substituted benzyl ether derivatives of vesamicol and in vitro evaluation of their binding properties to the vesicular acetylcholine transporter site
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Synthesis of novel 4- and 5-substituted benzyl ether derivatives of vesamicol and in vitro evaluation of their binding properties to the vesicular acetylcholine transporter site

机译:新型维他命醇的4和5取代苄基醚衍生物的合成及其与囊泡乙酰胆碱转运蛋白位点的结合特性的体外评价

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Detection of the central cholinergic deficits, a consistent feature of Alzheimer's disease, is essential to allow preventive measures and/or symptomatic treatment already at a very early stage of the disease. The vesicular acetylcholine transporter (VAChT) represents an appropriate target to establish PET radiotracer that are adequate for brain imaging the loss of cholinergic terminals. Here we describe the synthesis and binding characteristics of novel derivatives of vesamicol, known to represent a specific antagonist of VAChT sites. Novel benzyl ether derivatives of vesamicol either 4- or 5-substituted at the cyclohexylring have been synthesized by different regioselective ring opening reactions of a same epoxide precursor. The affinity and selectivity of the novel compounds to VAChT sites were analyzed by competitive radioligand binding studies in rat brain and liver membrane preparations using tritium labeled radioligands. The 4-substituted fluorobenzylether of vesamicol 10b was shown to exhibit a high affinity to VAChT sites (K_i-value_(10b)= 10.7+-1.7 nM), but demonstrated also binding capacities to sigma receptors (K_(i-)value_(10b)= 18.5+-6.9 nM, [~3H]DTG; K_i-value_(10b) = 30.6+-9.6 nM, [~3H]haloperidol). The data suggest the potential of vesamicol derivatives to design appropriate radiotracer for PET imaging of central cholinergic deficits.
机译:中央胆碱能缺陷的检测是阿尔茨海默氏病的一个一致特征,对于在疾病的非常早期就已经采取预防措施和/或对症治疗至关重要。囊泡乙酰胆碱转运蛋白(VAChT)代表建立PET放射性示踪剂的适当目标,该PET示踪剂足以使大脑对胆碱能末梢的丢失进行成像。在这里,我们描述了维他命克新衍生物的合成和结合特性,该衍生物已知代表VAChT位点的特异性拮抗剂。通过相同环氧化物前体的不同区域选择性开环反应合成了在环己基环上被4-或5-取代的维他命醇的新型苄醚衍生物。通过使用radio标记的放射性配体在大鼠脑和肝膜制剂中进行的竞争性放射性配体结合研究,分析了新化合物对VAChT位点的亲和力和选择性。 vesamicol 10b的4-取代氟苄基醚显示出对VAChT位点的高亲和力(K_i-value_(10b)= 10.7 + -1.7 nM),但还显示了与sigma受体的结合能力(K_(i-)value_(10b) )= 18.5±-6.9nM,[〜3H] DTG; K_i-值_(10b)= 30.6±-9.6nM,[〜3H]氟哌啶醇)。数据表明,vesamicol衍生物具有潜力,可以设计适当的放射性示踪剂,以进行中央胆碱能缺陷的PET成像。

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