首页> 外文期刊>The Open Medicinal Chemistry Journal >Tacrine, Trolox and Tryptoline as Lead Compounds for the Design and Synthesis of Multi-target Agents for Alzheimer’s Disease Therapy
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Tacrine, Trolox and Tryptoline as Lead Compounds for the Design and Synthesis of Multi-target Agents for Alzheimer’s Disease Therapy

机译:Tacrine,Trolex和Tryptoline作为铅化合物,用于设计和合成阿尔茨海默病治疗的多目标药物

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The versatile biological activities of tacrine, trolox and β-carboline derivatives make them promising lead structures for the development of multifunctional Alzheimer’s disease (AD) agents. Based on the topology of the active site of cholinesterases and other target proteins involved in the pathogenesis of AD, we have designed and synthesized tacrine-trolox and tacrine-tryptoline hybrids with various linker chain lengths. The hybrids containing the trolox moiety (8a-8d) showed moderate to high TcAChE inhibition (IC50: 17.37 - 2200 nM), eqBuChE inhibition (IC50: 3.16 – 128.82 nM) and free radical scavenging activities (IC50: 11.48 – 49.23 μM). The hybrids with longer linker chain lengths in general showed better ChE inhibitory activity. As expected, free radical scavenging activities were not significantly affected by varying linker chain lengths. The hybrid compound containing the tryptoline moiety linked with a 7 carbon spacer to tacrine (14) displayed the best AChE and BuChE inhibitory activity (IC50 = 17.37 and 3.16 nM). Docking experiments exhibited that compounds 8d and 14 were able to bind to both the CAS and PAS of TcAChE and eqBuChE, suggesting that they will be able to inhibit ChE induced Aβ aggregation. Novel multi-target agents that exhibit good ChE inhibition (8d and 14) and anti-oxidant (8d) activity were identified as suitable candidates for further investigation.
机译:甲锭,滴鼻菌和β-咔啉衍生物的多功能生物活性使其具有多功能阿尔茨海默病(AD)药剂的发展的有前途的铅结构。基于胆固磷酶活性位点和参与AD发病机制的其他靶蛋白的拓扑,我们设计了具有各种接头链长的甲锭 - 滴水杂志和鸡碱 - 季节性杂交体。含有Trolox部分(8A-8D)的杂种显示中等至高TCACHE抑制(IC50:17.37-2200nm),EQBUCHE抑制(IC50:3.16-1282nm)和自由基清除活性(IC50:11.48-49.23μm)。具有更长的接头链长度的杂种术语显示出更好的Che抑制活性。正如预期的那样,通过不同的接头链长度不会显着影响自由基清除活性。将含有与7个碳间隔物连接到甲锭(14)的杂种化合物展示了最佳疼痛和Buche抑制活性(IC50 = 17.37和3.16nm)。对接实验表明,化合物8D和14能够与TCACH和EqBuche的CAS和PA结合,表明它们能够抑制Che诱导的Aβ聚集。表现出良好的CHE抑制(8D和14)和抗氧化剂(8D)活性的新型多靶剂被鉴定为适当的候选者,以进一步调查。

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