Department of Pharmacology, School of Pharmacy, University College London, London, UK.
Department of Pharmacology, School of Pharmacy, University College London, London, UK.
Mol Cell Neurosci. 2018 Oct;92:82-92. doi: 10.1016/j.mcn.2018.07.003. Epub 2018 Jul 22.
We have synthesized a novel small molecule based on the pyrrolidinone-containing core structure of clausenamide, which is a candidate anti-dementia drug. The synthetic route yielded multi-gram quantities of an isomeric racemate mixture in a short number of steps. When tested in hippocampal slices from young adult rats the compound enhanced AMPA receptor-mediated signalling at mossy fibre synapses, and potentiated inward currents evoked by local application of l-glutamate onto CA3 pyramidal neurons. It facilitated the induction of mossy fibre LTP, but the magnitude of potentiation was smaller than that observed in untreated slices. The racemic mixture was separated and it was shown that only the (-) enantiomer was active. Toxicity analysis indicated that cell lines tolerated the compound at concentrations well above those enhancing synaptic transmission. Our results unveil a small molecule whose physiological signature resembles that of a potent nootropic drug.
我们合成了一种新型小分子,其基于克劳森酰胺(clausenamide)的吡咯烷酮核心结构,克劳森酰胺是候选的抗痴呆药物。该合成路线在很短的步骤内产生了多克数量的异构外消旋混合物。当在来自年轻成年大鼠的海马切片中进行测试时,该化合物增强了在苔藓纤维突触处的 AMPA 受体介导的信号传递,并增强了局部应用 l-谷氨酸到 CA3 锥体神经元上时所引起的内向电流。它促进了苔藓纤维 LTP 的诱导,但增强的幅度小于未处理切片中观察到的幅度。将外消旋混合物分离,并表明只有(-)对映异构体是活性的。毒性分析表明,细胞系在远远高于增强突触传递的浓度下耐受该化合物。我们的结果揭示了一种小分子,其生理特征类似于强效益智药。