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首页> 外文期刊>RSC Advances >Synthesis, biological evaluation and molecular modeling studies of phthalazin-1(2H)-one derivatives as novel cholinesterase inhibitors
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Synthesis, biological evaluation and molecular modeling studies of phthalazin-1(2H)-one derivatives as novel cholinesterase inhibitors

机译:酞嗪-1(2H) - 酮衍生物作为新型胆碱酯酶抑制剂的合成,生物学评价和分子建模研究

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A new series of donepezil analogues based on the phthalazin-1(2 H )-one scaffold was designed and synthesized with the aim of exploring its potential as human ChEIs. Biological results revealed that the structural modifications proposed significantly affected ChE inhibitory potency as well as selectivity for AChE/BuChE. Compound 1d showed promising in vitro inhibition of both enzymes in the μM range. However, most target compounds were significantly more active against AChE than BuChE, specifically 1f , 1h and 1j , with IC _(50) values in the low micromolar or submicromolar range, the most active compounds in the series. Docking simulations suggested that the most active compounds can recognize the donepezil binding site using a similar interactions network. These results allowed us to rationalize the observed structure–activity relationships. Moreover, the predicted physicochemical and ADME properties were also comparable to those of donepezil.
机译:设计并合成了基于酞嗪-1(2小时)的酞菁-1(2小时)-one支架的一系列新的Odpezil类似物,其目的是探索其作为人类的潜力。生物学结果表明,建议的结构修改显着影响CHE抑制性效力以及疼痛/ BUCHE的选择性。化合物1d显示出在μm范围内的两种酶的体外抑制有前途抑制。然而,大多数靶化合物比Buche,特别是1f,1h和1j的疼痛显着更活跃,在低微摩尔或亚微粒范围中的IC _(50)值,该系列中最活跃的化合物。对接模拟表明,最活跃的化合物可以使用类似的相互作用网络识别多奈哌齐结合位点。这些结果允许我们合理化观察到的结构 - 活动关系。此外,预测的物理化学和Adme的性质也与多奈哌齐的物质相当。

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