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首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Design, synthesis and pharmacological evaluation of N-benzyl-piperidinyl-aryl-acylhydrazone derivatives as donepezil hybrids: Discovery of novel multi-target anti-alzheimer prototype drug candidates
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Design, synthesis and pharmacological evaluation of N-benzyl-piperidinyl-aryl-acylhydrazone derivatives as donepezil hybrids: Discovery of novel multi-target anti-alzheimer prototype drug candidates

机译:N-苄基 - 哌啶基芳基 - 酰基 - 酰基 - 酰基 - 酰基 - 酰基 - 酰基 - 酰基苯基 - 苯二苯基酰基的设计,合成和药理评价:新型多靶抗阿尔茨海默蛋白原型药物候选者的发现

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A new series of sixteen multifunctional N-benzyl-piperidine-aryl-acylhydrazones hybrid derivatives was synthesized and evaluated for multi-target activities related to Alzheimer's disease (AD). The molecular hybridization approach was based on the combination, in a single molecule, of the pharmacophoric N-benzyl-piperidine subunit of donepezil, the substituted hydroxy-piperidine fragment of the AChE inhibitor LASSBio-767, and an acylhydrazone linker, a privileged structure present in a number of synthetic aryl- and aryl-acylhydrazone derivatives with significant AChE and anti-inflammatory activities. Among them, compounds 4c, 4d, 4g and 4j presented the best AChE inhibitory activities, but only compounds 4c and 4g exhibited concurrent anti-inflammatory activity in vitro and in vivo, against amyloid beta oligomer (A beta O) induced neuroinflammation. Compound 4c also showed the best in vitro and in vivo neuroprotective effects against A beta O-induced neurodegeneration. In addition, compound 4c showed a similar binding mode to donepezil in both acetylated and free forms of AChE enzyme in molecular docking studies and did not show relevant toxic effects on in vitro and in vivo assays, with good predicted ADME parameters in silico. Overall, all these results highlighted compound 4c as a promising and innovative multi-target drug prototype candidate for AD treatment. (C) 2018 Elsevier Masson SAS. All rights reserved.
机译:合成了一种新的十六型多官能N-苄基 - 哌啶 - 芳基 - 酰基缺水素杂交衍生物,并评估与阿尔茨海默病有关的多目标活性(AD)。分子杂交方法是基于多种子嘧啶的药粒细胞正苄基 - 哌啶亚基的单一分子的组合,取代的疼痛抑制剂Lassbio-767和酰基腙接头,具有存在的特征结构在许多合成芳基和芳基 - 酰基腙衍生物,具有显着疼痛和抗炎活性。其中,化合物4C,4D,4G和4J呈现了最佳的胰腺抑制活性,但只有化合物4C和4G在体外和体内表现出同时的抗炎活性,对抗淀粉样蛋白β低聚物(βO)诱导的神经炎性炎症。化合物4C还表现出最佳的体外和体内神经保护作用对β0诱导的神经变性。此外,化合物4c在分子对接研究中均为乙酰化和自由形式的疼痛和自由形式的疼痛和体外测定表现出类似的结合模式,并且在硅中没有显示出相关的毒性作用。总体而言,所有这些结果都突出了化合物4C作为广告治疗的有前途和创新的多目标药物原型候选者。 (c)2018年Elsevier Masson SAS。版权所有。

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