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L-脯氨酸硫酸氢盐催化合成新型香豆素基螺吲哚啉-3,4-二氢嘧啶-2(1H)-酮:体外细胞毒性测定及分子对接研究

L-proline HSO catalyzed synthesis of novel coumarin-based spiroindolino-3,4-dihydropyrimidin-2(1H)-ones: in vitro cytotoxic assay and molecular docking study.

作者信息

Mohanta Rahul, Bordoloi Hemanta, Verma Akalesh Kumar, Bez Ghanashyam

机构信息

Department of Chemistry, North-Eastern Hill University, Shillong, 793022, India.

Department of Zoology, Cell & Biochemical Technology Laboratory, Cotton University, Guwahati, 781001, India.

出版信息

Mol Divers. 2025 Feb;29(1):607-622. doi: 10.1007/s11030-024-10878-w. Epub 2024 Jul 19.

Abstract

Development of environmentally benign catalyst systems, especially those derived from readily available nature's pool, in multicomponent synthesis, consolidates multiple facets of green chemistry. Here, an L-proline derived green acid catalyst in the form of L-proline⋅HSO was developed and employed for multicomponent synthesis of coumarin-based spiroindolino-3,4-dihydropyrimidin-2(1H)-ones from the reaction of 4-hydroxycoumarin, isatin and urea/thiourea. Preliminary cytotoxicity studies showed that a couple of compounds (M5 and M6) have good cytotoxicity (40-50%) against in Dalton's Lymphoma (DL) cells while demonstrating minimal cytotoxicity (10-12%) for normal non-cancerous cell lines. Molecular docking simulations for the least and most cytotoxic compounds, M3 and M6 respectively, against nineteen tumor target proteins were carried out, and seven of them were identified to test against all the sixteen compounds. Based on the estimated docking score and inhibition constants (K), the interaction of the compounds with the tumor target protein, beta-hexosaminidase B (PDB ID: 1NOW) matched closely with in vitro cytotoxicity data.

摘要

开发环境友好型催化剂体系,尤其是那些源自易于获取的天然资源的体系,用于多组分合成,巩固了绿色化学的多个方面。在此,开发了一种L-脯氨酸衍生的绿色酸催化剂L-脯氨酸·HSO,并将其用于由4-羟基香豆素、异吲哚酮和尿素/硫脲反应多组分合成香豆素基螺吲哚啉-3,4-二氢嘧啶-2(1H)-酮。初步细胞毒性研究表明,有几种化合物(M5和M6)对道尔顿淋巴瘤(DL)细胞具有良好的细胞毒性(40-50%),而对正常非癌细胞系的细胞毒性最小(10-12%)。分别对细胞毒性最小和最大的化合物M3和M6针对19种肿瘤靶蛋白进行了分子对接模拟,并确定其中7种用于测试所有16种化合物。基于估计的对接分数和抑制常数(K),这些化合物与肿瘤靶蛋白β-己糖胺酶B(PDB ID:1NOW)的相互作用与体外细胞毒性数据密切匹配。

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