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Synthesis, biological evaluation and in silico molecular docking of novel 1-hydroxy-naphthyl substituted heterocycles

机译:新型1-羟基萘基取代杂环的合成,生物学评价和计算机分子对接

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摘要

The versatile precursor 2-acetyl-4-allyl-1-hydroxy naphthalene was synthesized efficiently via Claisen rearrangement 2-acetyl-1-allyloxynaphthalene. The Claisen-Schmidt condensation of latter precursor afforded the corresponding chalcones which were exploited to synthesize a series of potential heterocycles such as pyrazoline, isoxazoline, benzocoumarin and benzoflavone. The synthesized products showed potent antioxidant and antimicrobial activities. Chalcone 3c , naphthyl pyrazoline 6b and hydroxycoumarin 13 exhibited the highest activity as antioxidants. Their binding mode showed specialized recognition of hydroxycoumarin 13 with the triad key amino acids at the active site of the oxidoreductase enzyme (PDB code 1DXO). 1-Hydroxynaphth-2-yl pyrazoline ( 6b ) revealed the highest efficacy against both Gram positive and negative bacterial species. In silico molecular docking of pyrazoline 6b endorsed its proper binding at the active site of the 2EX6 enzyme which explains its potent antibacterial activity in comparison with standard ampicillin.
机译:通过克莱森重排2-乙酰基-1-烯丙基氧基萘有效地合成了通用的前体2-乙酰基-4-烯丙基-1-羟基萘。后一种前体的克莱森-施密特缩合反应提供相应的查耳酮,其被用来合成一系列潜在的杂环,例如吡唑啉,异恶唑啉,苯并香豆素和苯并黄酮。合成产物显示出有效的抗氧化和抗微生物活性。查耳酮3c,萘基吡唑啉6b和羟基香豆素13表现出最高的抗氧化剂活性。它们的结合模式显示了在氧化还原酶的活性位点(PDB代码1DXO)上的三键关键氨基酸对羟基香豆素13的特异性识别。 1-羟基萘-2-基吡唑啉(6b)对革兰氏阳性菌和阴性菌均显示出最高的功效。吡唑啉6b的计算机分子对接在2EX6酶的活性位点上认可了其正确的结合,这解释了与标准氨苄西林相比其有效的抗菌活性。

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