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首页> 外文期刊>Bioorganic and medicinal chemistry >Acetylcholinesterase inhibitors for potential use in Alzheimer's disease: molecular modeling, synthesis and kinetic evaluation of 11H-indeno-(1,2-b)-quinolin-10-ylamine derivatives.
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Acetylcholinesterase inhibitors for potential use in Alzheimer's disease: molecular modeling, synthesis and kinetic evaluation of 11H-indeno-(1,2-b)-quinolin-10-ylamine derivatives.

机译:可能在阿尔茨海默氏病中潜在使用的乙酰胆碱酯酶抑制剂:11H-茚基-(1,2-b)-喹啉-10-基胺衍生物的分子建模,合成和动力学评估。

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Continuing our work on tetracyclic tacrine analogues, we synthesized a series of acetylcholinesterase (AChE) inhibitors of 11H-indeno-[1,2-b]-quinolin-10-ylaminic structure. Selected substituents were placed in synthetically accessible positions of the tetracyclic nucleus, in order to explore the structure-activity relationships (SAR) and the mode of action of this class of anticholinesterases. A molecular modeling investigation of the binding interaction of the lead compound (1a) with the AChE active site was performed, from which it resulted that, despite the rather wide and rigid structure of 1a, there may still be the possibility to introduce some small substituent in some positions of the tetracycle. However, from the examination of the experimental IC50 values, it derived that the indenoquinoline nucleus probably represents the maximum allowable molecular size for rigid compounds binding to AChE. In fact, only a fluorine atom in position 2 maintains the AChE inhibitory potency of the parent compound, and, actually, increases the AChE-selectivity with respect to the butyrylcholinesterase inhibition. By studying the kinetics of AChE inhibition for two representative compounds of the series, it resulted that the lead compound (1a) shows an inhibition of mixed type, binding to both the active and the peripheral sites, while the more sterically hindered analogue 2n seems to interact only at the external binding site of the enzyme. This finding seems particularly important in the context of Alzheimer's disease research in the light of recent observations showing that peripheral AChE inhibitors might decrease the aggregating effects of the enzyme on the beta-amyloid peptide (betaA).
机译:继续我们对四环他克林类似物的研究,我们合成了一系列11H-茚基-[1,2-b]-喹啉-10-基酰胺基结构的乙酰胆碱酯酶(AChE)抑制剂。为了研究这类抗胆碱酯酶的结构活性关系(SAR)和作用方式,将选定的取代基置于四环核的合成位置上。对铅化合物(1a)与AChE活性位点的结合相互作用进行了分子模型研究,结果表明,尽管1a相当宽且刚性的结构,仍然可能引入一些小的取代基在四环的某些位置。但是,从对实验IC50值的检查中可以得出,茚并喹啉核可能代表了与AChE结合的刚性化合物的最大允许分子大小。实际上,仅第2位的氟原子保持了母体化合物的AChE抑制能力,并且实际上提高了相对于丁酰胆碱酯酶抑制作用的AChE选择性。通过研究该系列中两种代表性化合物对AChE抑制的动力学,结果表明,先导化合物(1a)表现出对混合型的抑制,与活性位点和外围位点结合,而空间位阻较大的类似物2n似乎对仅在酶的外部结合位点相互作用。根据最近的观察结果,该发现在阿尔茨海默氏病研究的背景下显得尤为重要,该观察结果表明,外周AChE抑制剂可能会降低该酶对β-淀粉样肽(betaA)的聚集作用。

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