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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Importance of the Dimethylamino Functionality on a Multifunctional Framework for Regulating Metals, Amyloid-beta, and Oxidative Stress in Alzheimer's Disease
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Importance of the Dimethylamino Functionality on a Multifunctional Framework for Regulating Metals, Amyloid-beta, and Oxidative Stress in Alzheimer's Disease

机译:在调节金属,淀粉样β和氧化应激在阿尔茨海默氏病的多功能框架上的二甲氨基功能的重要性。

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摘要

The complex and multifaceted pathology of Alzheimer's disease (AD) continues to present a formidable challenge to the establishment of long-term treatment strategies. Multifunctional compounds able to modulate the reactivities of various pathological features, such as amyloid-beta (A beta) aggregation, metal ion dyshomeostasis, and oxidative stress, have emerged as useful tactic. Recently, an incorporation approach to the rational design of multipurpose small molecules has been validated through the production of a multifunctional ligand (ML) as a potential chemical tool for AD. In order to further the development of more diverse and improved multifunctional reagents, essential pharmacophores must be identified. Herein, we report a series of aminoquinoline derivatives (AQ1-4, AQP1-4, and AQDA1-3) based on ML's framework, prepared to gain a structure reactivity understanding of ML's multifunctionality in addition to tuning its metal binding affinity. Our structure reactivity investigations have implicated the dimethylamino group as a key component for supplying the antiamyloidogenic characteristics of ML in both the absence and presence of metal ions. Two-dimensional NMR studies indicate that structural variations of ML could tune its interaction sites along the A beta sequence. In addition, mass spectrometric analyses suggest that the ability of our aminoquinoline derivatives to regulate metal-induced A beta aggregation may be influenced by their metal binding properties. Moreover, structural modifications to ML were also observed to noticeably change its metal binding affinities and metal-to-ligand stoichiometries that were shown to be linked to their antiamyloidogenic and antioxidant activities. Overall, our studies provide new insights into rational design strategies for multifunctional ligands directed at regulating metal ions, A beta, and oxidative stress in AD and could advance the development of improved next-generation multifunctional reagents.
机译:阿尔茨海默氏病(AD)的复杂和多方面的病理学继续为建立长期治疗策略提出严峻的挑战。能够调节各种病理特征(如淀粉样β(A beta)聚集,金属离子动态平衡和氧化应激)反应性的多功能化合物已成为有用的策略。最近,通过生产多功能配体(ML)作为AD的潜在化学工具,已经证实了一种用于合理设计多功能小分子的方法。为了进一步开发更多样的和改进的多功能试剂,必须确定必需的药效团。在本文中,我们报告了一系列基于ML框架的氨基喹啉衍生物(AQ1-4,AQP1-4和AQDA1-3),这些衍生物准备用于除了调节其金属结合亲和力以外,还可以了解ML的多功能性并对其进行结构反应。我们的结构反应性研究表明,在不存在和存在金属离子的情况下,二甲基氨基基团都是提供ML的抗淀粉样蛋白生成特性的关键成分。二维NMR研究表明,ML的结构变异可以沿A beta序列调节其相互作用位点。此外,质谱分析表明,我们的氨基喹啉衍生物调节金属诱导的Aβ聚集的能力可能受其金属结合特性的影响。此外,还观察到对ML的结构修饰显着改变了其金属结合亲和力和金属与配体的化学计量关系,这些关系被证明与其抗淀粉样蛋白生成和抗氧化活性有关。总体而言,我们的研究为针对多功能配体的合理设计策略提供了新见解,这些配体旨在调节AD中的金属离子,Aβ和氧化应激,并可能促进改进的下一代多功能试剂的开发。

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