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某些4-酰基吡唑啉酮类席夫碱的互变异构现象与抗氧化活性:一项理论研究

Tautomerism and antioxidant activity of some 4-acylpyrazolone-based Schiff bases: a theoretical study.

作者信息

Orabi Esam A

机构信息

Department of Chemistry, Faculty of Science, Assiut University Assiut 71516 Egypt

出版信息

RSC Adv. 2018 Sep 3;8(54):30842-30850. doi: 10.1039/c8ra05987j. eCollection 2018 Aug 30.

Abstract

4-Acylpyrazolone Schiff bases display antimicrobial, antiprion, antioxidant, and other biological activities. They are also used as ligands and some of their complexes possess photoluminescence and anticancer properties. These Schiff bases may exist in four tautomeric forms that correspond to H at the C (imine-one(I)), N (imine-one(II)), and O (imine-ol) atoms of the pyrazolone ring or at the azomethine N atom (amine-one). While crystal structures show the amine-one form, the identity of the tautomeric form in solution and the structure-antioxidant activity relationship of these compounds are not clear. We perform quantum mechanical investigations on nine 4-acylpyrazolone-based Schiff bases at the B3LYP/6-311++G(d,p) level of theory in the gas phase and in chloroform, dimethyl sulfoxide, and water using the polarizable continuum model (PCM). Results show that the imine-ol, imine-one(I), and imine-one(II) isomers are, in respective, 6.5-8.0, 17-20, and 19-23 kcal mol less stable than the amine-one form and that solvents further stabilize the later form. The energy barrier for imine-ol to amine-one conversion is only 0-1 kcal mol, showing that formation of the latter form is both kinetically and thermodynamically favorable. NMR calculations show that H in the amine-one and imine-ol forms appears at = 11.9-12.9 and 14.0-15.7 ppm, respectively, revealing that the experimentally reported H NMR spectra of these compounds are due to the amine-one tautomeric form. The structure-antioxidant activity relationship is investigated and structural modifications that increase the antioxidant activity are discussed. Calculations using the PCM show that the vertical ionization potential (IPV) is inversely proportional with the ferric reducing antioxidant power (FRAP) of these compounds. IPV thus presents a valuable tool for predicting the FRAP.

摘要

4-酰基吡唑啉酮席夫碱具有抗菌、抗朊病毒、抗氧化及其他生物活性。它们还用作配体,其一些配合物具有光致发光和抗癌特性。这些席夫碱可能以四种互变异构形式存在,分别对应于吡唑啉酮环的C(亚胺-酮(I))、N(亚胺-酮(II))和O(亚胺-醇)原子上的H或偶氮甲碱N原子上的H(胺-酮)。虽然晶体结构显示为胺-酮形式,但这些化合物在溶液中的互变异构形式以及结构与抗氧化活性的关系尚不清楚。我们在气相以及氯仿、二甲基亚砜和水中,使用极化连续介质模型(PCM),在B3LYP/6-311++G(d,p)理论水平上对九种基于4-酰基吡唑啉酮的席夫碱进行了量子力学研究。结果表明,亚胺-醇、亚胺-酮(I)和亚胺-酮(II)异构体分别比胺-酮形式不稳定6.5 - 8.0、17 - 20和19 - 23 kcal/mol,并且溶剂进一步稳定了后一种形式。亚胺-醇向胺-酮转化的能垒仅为0 - 1 kcal/mol,表明后一种形式的形成在动力学和热力学上都是有利的。核磁共振计算表明,胺-酮和亚胺-醇形式中的H分别出现在δ = 11.9 - 12.9和14.0 - 15.7 ppm处,这表明这些化合物实验报道的氢核磁共振谱是由于胺-酮互变异构形式。研究了结构与抗氧化活性的关系,并讨论了提高抗氧化活性的结构修饰。使用PCM的计算表明,这些化合物的垂直电离势(IPV)与铁还原抗氧化能力(FRAP)成反比。因此,IPV是预测FRAP的一个有价值的工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b11/9085507/4dd82da66ae3/c8ra05987j-f1.jpg

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