Reaction under Ball-Milling: Solvent- and Metal-Free One-Pot Diastereoselective Synthesis of Tetrahydroquinoline Derivatives as Potential Antibacterial and Anticancer Agents

IF 1.7 4区 化学 Q3 CHEMISTRY, ORGANIC
Synlett Pub Date : 2024-08-23 DOI:10.1055/a-2378-1847
Keya Roy, Anay Saha, Suprakash Sahoo, Subhrajyoti Banerjee, Chitrangada Das Mukhopadhyay, Subhash Banerjee, Laksmikanta Adak
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引用次数: 0

Abstract

A mild and efficient one-pot, three-component ball-mill-assisted reaction of aldehydes, anilines, and dihydrofuran (or dihydropyran and cyclohexenone) has been described for the first time in the presence of the catalytic amount of aqueous perchloric acid (8 mol%) at room temperature under organic solvent- and metal-free conditions. The reactions are fast (1 h), providing the products with excellent yields and high diastereoselectivity. This procedure endows a simple, efficient, and cost-effective method for the diastereoselective synthesis of furano- and pyrano-tetrahydroquinolines and phenanthridinone derivatives, which are important biological compounds. The diastereomers with cis configuration were isolated as major products. The H–H COSY, NOESY experiments and X-ray crystallographic analysis of selected compounds were performed to confirm the cis isomer. The synthesized tetrahydroquinolines have been evaluated in vitro for their antibacterial and anticancer activities, and it was found that both the prepared compounds showed significant antibacterial and anticancer properties.

Abstract Image

球磨条件下的反应:作为潜在抗菌剂和抗癌剂的四氢喹啉衍生物的无溶剂和无金属单锅非对映选择性合成
首次描述了在室温、无有机溶剂和无金属条件下,在催化量的高氯酸水溶液(8 摩尔%)存在下,醛、苯胺和二氢呋喃(或二氢吡喃和环己酮)的一种温和高效的一锅三组分球磨辅助反应。反应速度快(1 小时),产物收率高,非对映选择性强。该方法为非对映选择性合成呋喃基和吡喃基四氢喹啉以及菲啶酮衍生物提供了一种简单、高效和经济的方法,这些衍生物都是重要的生物化合物。该方法的主要产物是顺式构型的非对映异构体。对所选化合物进行了 H-H COSY、NOESY 实验和 X 射线晶体分析,以确认顺式异构体。对合成的四氢喹啉进行了体外抗菌和抗癌活性评价,结果发现制备的两种化合物都具有显著的抗菌和抗癌特性。
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来源期刊
Synlett
Synlett 化学-有机化学
CiteScore
3.40
自引率
5.00%
发文量
369
审稿时长
1 months
期刊介绍: SYNLETT is an international journal reporting research results and current trends in chemical synthesis in short personalized reviews and preliminary communications. It covers all fields of scientific endeavor that involve organic synthesis, including catalysis, organometallic, medicinal, biological, and photochemistry, but also related disciplines and offers the possibility to publish scientific primary data.
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