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首页> 外文期刊>ACS medicinal chemistry letters >Novel Dithiolane-Based Ligands Combining Sigma and NMDA Receptor Interactions as Potential Neuroprotective Agents
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Novel Dithiolane-Based Ligands Combining Sigma and NMDA Receptor Interactions as Potential Neuroprotective Agents

机译:基于二硫醇的配体,将Sigma和NMDA受体相互作用与潜在的神经保护剂相互作用

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摘要

Sigma receptors (SRs) are recognized as valuable targets for the treatment of neurodegenerative disorders. A series of novel SRs ligands were designed by combining key pharmacophoric amines (i.e., benzylpiperidine or benzylpiperazine) with new 1,3-dithiolane-based heterocycles and their bioisosters. The new compounds exhibited a low nanomolar affinity for sigma-1 and sigma-2 receptors. Five selected compounds were evaluated for their neuroprotective capacity on SH-SYSY neuroblastoma cell line. They were able to counteract the neurotoxicity induced by rotenone, oligomycin and NMDA. Competition studies with PB212, a SIR antagonist, confirmed the involvement of SIR in neuroprotection from the oxidative stress induced by rotenone. Electrophysiological experiments performed on cortical neurons in culture highlighted the compounds ability to reduce NMDA-evoked currents, suggesting a negative allosteric modulator activity toward the NMDA receptor. Altogether these results qualify our novel dithiolane derivatives as potential agents for fighting neurodegeneration.
机译:Sigma受体(SRS)被认为是治疗神经变性障碍的有价值的目标。通过将主要药物胺胺(即苄基哌啶或苄基哌嗪)与新的1,3-二硫醇基杂环及其生物异位酮组合来设计一系列新的SRS配体。新化合物对Sigma-1和Sigma-2受体表现出低纳米摩尔亲和力。评估五种选定的化合物,用于对SH-交流神经母细胞瘤细胞系的神经保护能力。它们能够抵消由Rotenone,Oligomycin和NMDA诱导的神经毒性。 SIR拮抗剂PB212的竞争研究证实了SIR在旋转酮诱导的氧化应激中的神经保护中的参与。在培养中对皮质神经元进行的电生理实验强调了减少NMDA诱发电流的化合物的能力,表明对NMDA受体的负变性调节剂活性。总而言之,这些结果使我们的新型二硫醇衍生物作为用于战斗神经变性的潜在药剂。

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