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3-苄基色满-4-酮中羟基取代的影响:晶体学、剑桥晶体结构数据库、密度泛函理论、傅里叶变换红外光谱、 Hirshfeld表面及能量框架分析

Effect of OH substitution in 3-benzylchroman-4-ones: crystallographic, CSD, DFT, FTIR, Hirshfeld surface, and energy framework analysis.

作者信息

Abdul Salam Abdul Ajees, T Shilpa, Kumar S Madan, Bankapur Aseefhali, Sinha Rajeev K, Simon Lalitha, Chidangil Santhosh

机构信息

Department of Atomic and Molecular Physics, Centre for Applied Nanosciences, Manipal Academy of Higher Education Manipal 576 104 India

School of Allied Healthcare & Sciences, Jain (Deemed to be University) Whitefield Bangaluru - 560 069 India.

出版信息

RSC Adv. 2021 Jun 4;11(33):20123-20136. doi: 10.1039/d1ra02245h. eCollection 2021 Jun 3.

Abstract

3-Benzylchroman-4-ones (homoisoflavanones) are oxygen-containing heterocycles with a sixteen-carbon skeleton. They belong to the class of naturally occurring polyphenolic flavonoids with limited occurrence in nature and possess anti-inflammatory, antibacterial, antihistaminic, antimutagenic, antiviral, and angioprotective properties. Recently, we reported the synthesis and anticancer activity studies of fifteen 3-benzylchroman-4-one molecules, and most of them were proven to be effective against BT549 and HeLa cells. In this work, we report the single-crystal X-ray crystallographic studies of two molecules 3-[(2-hydroxyphenyl)methyl]-3,4-dihydro-2-1-benzopyran-4-one and 3-[(2,4-dimethoxyphenyl)methyl]-3,4-dihydro-2-1-benzopyran-4-one. The single crystals were grown using a novel laser-induced crystallization technique. We observed that the 3-benzylchroman-4-one derivative bearing OH substitution at the 2' position adopted different conformation due to formation of dimers through O-H⋯O, and C-H⋯O intermolecular hydrogen bondings. The role of OH substitution in the aforementioned conformational changes was evaluated using density functional theory (DFT), Hirshfeld surface, energy framework and FTIR spectroscopy analysis. In addition, we have carried out a Cambridge Structural Database (CSD) study to understand the conformational changes using five analogue structures. X-ray crystallographic, computational, and spectroscopic studies of 3-benzylchroman-4-ones provided an insight into the role of substitution at benzyl moieties in stabilizing the three-dimensional (3D) structures.

摘要

3-苄基色满-4-酮(高异黄酮)是具有十六碳骨架的含氧杂环化合物。它们属于天然存在的多酚类黄酮类化合物,在自然界中存在有限,具有抗炎、抗菌、抗组胺、抗诱变、抗病毒和血管保护特性。最近,我们报道了十五种3-苄基色满-4-酮分子的合成及抗癌活性研究,其中大多数已被证明对BT549和HeLa细胞有效。在这项工作中,我们报道了两种分子3-[(2-羟基苯基)甲基]-3,4-二氢-2H-1-苯并吡喃-4-酮和3-[(2,4-二甲氧基苯基)甲基]-3,4-二氢-2H-1-苯并吡喃-4-酮的单晶X射线晶体学研究。单晶采用新型激光诱导结晶技术生长。我们观察到,在2'位带有OH取代基的3-苄基色满-4-酮衍生物由于通过O-H⋯O和C-H⋯O分子间氢键形成二聚体而采用了不同的构象。使用密度泛函理论(DFT)、Hirshfeld表面、能量框架和FTIR光谱分析评估了OH取代在上述构象变化中的作用。此外,我们进行了剑桥结构数据库(CSD)研究,以使用五个类似结构来了解构象变化。3-苄基色满-4-酮的X射线晶体学、计算和光谱研究深入了解了苄基部分取代在稳定三维(3D)结构中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9e51/9033682/5bd1ffa511ca/d1ra02245h-s1.jpg

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