Design, Synthesis and Evaluation of Novel N-Substituted-[Benzoylamino]-5-Ethyl-1,2,3,6-Tetrahydropyridines as Potential Anti-Cancer Agents.

Madridge journal of pharmaceutical research Pub Date : 2019-01-01 Epub Date: 2019-03-04 DOI:10.18689/mjpr-1000109
Elizabeth D Henderson, Madhavi Gangapuram, Suresh Kumar Vk Eyunni, Kinfe K Redda, Tiffany Wilson-Ardley
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引用次数: 1

Abstract

Background and objective: Inflammation is believed to incite carcinogenesis by causing cell and genome damage. Tetrahydropyridines have gained significant synthetic interest because they constitute biologically active features of pharmaceutical agents. Previous tetrahydropyridines developed by our research group were effective in inhibiting inflammation. Since there is a relationship between inflammation and cancer, the objective of this manuscript is to expand our prior study to determine the anti-cancer activity of novel tetrahydropyridine analogs.

Materials and methods: 3-Ethylpyridine reacted with O-mesitylenesulfonylhydroxylamine to furnish N-amino-3-ethylpyridinium mesitylenesulfonate. The reaction of N-amino-3-ethylpyridinium mesitylenesulfonate with substituted acid chlorides gives the stable crystalline pyridinium ylides. A sodium borohydride reduction of ylides furnishes the target compounds, N-substituted [benzoylamino]-5-ethyl-1,2,3,6-tetrahydropyridines. The evaluation of these analogs cytotoxicity against Ishikawa, MCF-7, and MDA-MB-231 cell lines were determined after 72 hours of drug exposure employing CellTiter-Glo assay. To explore the interaction between the tetrahydropyridine derivatives and estrogen receptor alpha, SYBYL-X 2.1 was used to determine the best bioactive conformations of the tetrahydropyridine derivatives for the active site of the receptor.

Results: Four novel N-substituted [benzoylamino]-5-ethyl-1,2,3,6-tetrahydropyridines were synthesized, purified, and characterized. The four tetrahydropyridine analogs exhibited some anti-cancer activity. Based on the molecular modeling studies, EH3 was expected to have the best antiproliferative activity due to having the highest docking score for ERα. However, EH2 had the best antiproliferative activity. Nevertheless, the biological screening and molecular modeling can provide insight to help with the design of more biologically active compounds as potential anti-cancer agents.

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新型n -取代[苯甲酰胺]-5-乙基-1,2,3,6-四氢吡啶的设计、合成和评价
背景和目的:炎症被认为通过引起细胞和基因组损伤而诱发癌变。四氢吡啶类化合物因其具有生物活性而引起了广泛的合成兴趣。本课课组先前研制的四氢吡啶类化合物具有抑制炎症的效果。由于炎症与癌症之间存在关系,因此本文的目的是扩展我们先前的研究,以确定新型四氢吡啶类似物的抗癌活性。材料与方法:3-乙基吡啶与o-三亚基磺酰羟胺反应生成n -氨基-3-乙基吡啶三亚基磺酸盐。n -氨基-3-乙基甲三磺酸吡啶与取代的酸氯化物反应得到稳定的结晶吡啶。用硼氢化钠还原吡啶得到目标化合物n -取代[苯甲酰胺]-5-乙基-1,2,3,6-四氢吡啶。这些类似物对Ishikawa、MCF-7和MDA-MB-231细胞系的细胞毒性评价在药物暴露72小时后采用CellTiter-Glo测定。为了探讨四氢吡啶衍生物与雌激素受体α的相互作用,采用SYBYL-X 2.1确定了受体活性部位的最佳生物活性构象。结果:合成了四种新型n -取代[苯甲酰胺]-5-乙基-1,2,3,6-四氢吡啶,并对其进行了纯化和表征。四氢吡啶类似物具有一定的抗癌活性。基于分子模型研究,EH3与ERα的对接评分最高,具有最佳的抗增殖活性。而EH2的抗增殖活性最好。尽管如此,生物学筛选和分子建模可以为设计更多具有生物活性的化合物作为潜在的抗癌药物提供帮助。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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