A Novel One-Pot Three-Component Approach to Orthoaminocarbonitrile Tetrahydronaphthalenes Using Triethylamine (Et_3N) as a Highly Efficient and Homogeneous Catalyst Under Mild Conditions and Investigating Its Anti-cancer Properties Through Molecular Docking Studies and Calculations

Qeios Pub Date : 2024-03-20 DOI:10.32388/urq6fq
Abdulhamid Dehghani, Yousef Delshad, Moslem Ahmadpour, Milad Ghezelsofloo
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Abstract

An efficient and environmentally friendly method for the one-pot synthesis of ortho-aminocarbonitrile tetrahydronaphthalenes has been developed in the presence of triethylamine (Et3N) as a homogeneous catalyst. The multicomponent reactions of benzaldehydes, cyclohexanone and malononitrile were carried out under mild conditions to obtain some ortho-aminocarbonitrile tetrahydronaphthalene derivatives. A broad range of structurally diverse benzaldehydes were applied successfully, and corresponding products (4A-L) were obtained in good to excellent yields (87-98%) in very short times (10-25 minutes). The present approach provides several advantages including simple workup, high yields, very mild reaction conditions, short reaction times, little catalyst loading and not requiring specialized equipment. Furthermore, with the help of computational chemistry and drug design methods, the anti-cancer properties of these compounds were studied and investigated. All the synthesized compounds bind to an agonist at the active site of the 3A8P protein, which leads to the inactivation of this protein and produces beneficial effects during cancer treatment. In synthesized compounds, the ligands establish hydrogen bonds with leucine A:728 residues through nitrogen, which has a very special and vital role in biological sciences and pharmaceutical connections. In this study, it was found that these compounds have the potential to become an oral anti-cancer drug.
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在温和条件下以三乙胺 (Et_3N) 为高效均相催化剂一锅三组分制备正交氨基甲腈四氢萘的新方法,并通过分子对接研究和计算探讨其抗癌特性
在三乙胺(Et3N)作为均相催化剂的条件下,开发出了一种高效、环保的单锅合成邻氨基甲腈四氢萘的方法。在温和的条件下进行了苯甲醛、环己酮和丙二腈的多组分反应,得到了一些邻氨基甲腈四氢萘衍生物。研究人员成功地应用了多种结构不同的苯甲醛,并在很短的时间内(10-25 分钟)获得了相应的产物(4A-L),收率从良好到极佳(87-98%)不等。本方法具有多个优点,包括操作简单、产率高、反应条件非常温和、反应时间短、催化剂负载量少以及无需专用设备。此外,在计算化学和药物设计方法的帮助下,对这些化合物的抗癌特性进行了研究和调查。所有合成的化合物都与 3A8P 蛋白活性位点上的激动剂结合,从而导致该蛋白失活,并在癌症治疗过程中产生有益的效果。在合成的化合物中,配体通过氮与亮氨酸 A:728 残基建立了氢键,这在生物科学和医药联系中具有非常特殊和重要的作用。这项研究发现,这些化合物具有成为口服抗癌药物的潜力。
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