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常规和微波促进的合成、抗氧化、抗胆碱酯酶活性筛选及新型喹诺酮-三唑杂合体的分子对接研究。

Conventional and microwave prompted synthesis, antioxidant, anticholinesterase activity screening and molecular docking studies of new quinolone-triazole hybrids.

机构信息

Karadeniz Technical University, Department of Chemistry, 61000 Trabzon, Turkey.

Karadeniz Technical University, Department of Chemistry, 61000 Trabzon, Turkey.

出版信息

Bioorg Chem. 2018 Aug;78:236-248. doi: 10.1016/j.bioorg.2018.03.017. Epub 2018 Mar 20.

Abstract

The synthesis of ethyl 4-oxo-1,4-dihydroquinoline-3-carboxylates (4, 5) was performed via the reaction of corresponding anilines with diethyl ethoxymethylenemalonate under conventional and also microwave promoted conditions. The treatment of 4 and 5 afforded the corresponding hydrazides (6 and 7). These hydrazides were converted to the corresponding carbo(thio)amides (9a-f and 10a-e) which were then subjected to an intramolecular cyclisation leading to the formation of quinolone-triazole hybrids (11a-f and 12a-e). The newly synthesized compounds were screened for their biological activities such as antioxidant capacity (AC) and acetylcholinesterase Activity. Inhibition of cholinesterases is an effective method to curb Alzheimer's disease, a progressive and fatal neurological disorder. A series of some novel quinolonederivatives were designed, synthesized, and their inhibitory effects on AChE were evaluated. We obtained our compounds and determined their anticholinesterase activities according to the Ellman's method. 9b and 10c showed the best AChE inhibition with 0.48 ± 0.02 and 0.52 ± 0.07, respectively. Docking studies were performed for the most active compounds (9b, 10c) and interaction modes with enzyme active sites were determined. As a result of these studies, a strong interaction between these compounds and the active sites of AChE enzyme was revealed.

摘要

通过相应苯胺与二乙氧基甲叉丙二酸二乙酯在常规和微波促进条件下的反应,合成了 4-氧代-1,4-二氢喹啉-3-羧酸乙酯(4、5)。4 和 5 的处理得到了相应的酰肼(6 和 7)。这些酰肼被转化为相应的碳(硫)酰胺(9a-f 和 10a-e),然后进行分子内环化,形成喹啉-三唑杂合体(11a-f 和 12a-e)。新合成的化合物进行了抗氧化能力(AC)和乙酰胆碱酯酶活性等生物活性的筛选。抑制胆碱酯酶是抑制阿尔茨海默病(一种进行性和致命的神经退行性疾病)的有效方法。设计、合成了一系列新型喹诺酮衍生物,并评估了它们对 AChE 的抑制作用。我们得到了我们的化合物,并根据 Ellman 法确定了它们的抗胆碱酯酶活性。9b 和 10c 对 AChE 的抑制作用最好,分别为 0.48±0.02 和 0.52±0.07。对最活性化合物(9b、10c)进行了对接研究,并确定了它们与酶活性部位的相互作用模式。这些研究的结果表明,这些化合物与 AChE 酶的活性部位之间存在强烈的相互作用。

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