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Improved synthesis and in vitro/in vivo activities of natural product-inspired, artificial glutamate analogs

机译:天然产物启发的人工谷氨酸类似物的合成和体外/体内活性得到改善

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摘要

Here, we report our second-generation synthesis of 12 artificial glutamate analogs, starting from heterotricycle intermediates 3a-3d, readily prepared in three steps including tandem Ugi/Diels-Alder reactions. The new synthesis employs imidate intermediates for the deoxygenation of pyrrolidones (10a-10d to 6a-6d), and each advanced intermediate 6a-6d was diversified into three glutamate analogs (1a-1d, 5a-5d, 7a-7d) in 1-2 steps. In vitro electrophysiological assays revealed that the new piperidine-type analog 7c alters neuronal function with lower potency than 1a. Conversely, intracranial injection of 7c into mice produced a greater degree of hypoactivity than 1a. Our recent investigation has revealed that this series of compounds antagonizes AMPA-type glutamate receptor-mediated currents in a subtype selective manner. The more efficient syntheses of this novel set of neuroactive molecules will facilitate their pharmacological characterization.
机译:在这里,我们报告了我们的12代人工谷氨酸类似物的第二代合成方法,该方法从杂环三轮车中间体3a-3d开始,可以通过包括串联Ugi / Diels-Alder反应在内的三个步骤轻松制备。新的合成方法使用亚氨酸酯中间体将吡咯烷酮(10a-10d还原为6a-6d),每个高级中间体6a-6d均以1-的形式分成三种谷氨酸类似物(1a-1d,5a-5d,7a-7d)。 2个步骤。体外电生理测定表明,新的哌啶型类似物7c改变神经元功能的效力低于1a。相反,向小鼠颅内注射7c比1a产生更大程度的机能减退。我们最近的研究表明,这一系列化合物以亚型选择性方式拮抗AMPA型谷氨酸受体介导的电流。这种新型的神经活性分子的更有效的合成将有助于其药理学表征。

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