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未配对电子在槲皮素自由基中的离域:实验 ESR 数据与 DFT 计算的比较。

Delocalization of the Unpaired Electron in the Quercetin Radical: Comparison of Experimental ESR Data with DFT Calculations.

机构信息

Department of Pharmacology and Toxicology, Faculty of Health, Medicine and Life Sciences, Maastricht University, P.O. Box 616, 6200 MD Maastricht, The Netherlands.

Research Centre Material Sciences, Zuyd University of Applied Sciences, 6419 DJ Heerlen, The Netherlands.

出版信息

Int J Mol Sci. 2020 Mar 16;21(6):2033. doi: 10.3390/ijms21062033.

Abstract

In the antioxidant activity of quercetin (Q), stabilization of the energy in the quercetin radical (Q) by delocalization of the unpaired electron (UE) in Q is pivotal. The aim of this study is to further examine the delocalization of the UE in Q, and to elucidate the importance of the functional groups of Q for the stabilization of the UE by combining experimentally obtained spin resonance spectroscopy (ESR) measurements with theoretical density functional theory (DFT) calculations. The ESR spectrum and DFT calculation of Q and structurally related radicals both suggest that the UE of Q is mostly delocalized in the B ring and partly on the AC ring. The negatively charged oxygen groups in the B ring (3' and 4') of Q have an electron-donating effect that attract and stabilize the UE in the B ring. Radicals structurally related to Q indicate that the negatively charged oxygen at 4' has more of an effect on concentrating the UE in ring B than the negatively charged oxygen at 3'. The DFT calculation showed that an OH group at the 3-position of the AC ring is essential for concentrating the radical on the C2-C3 double bond. All these effects help to explain how the high energy of the UE is captured and a stable Q is generated, which is pivotal in the antioxidant activity of Q.

摘要

槲皮素 (Q) 的抗氧化活性中,通过未配对电子 (UE) 在 Q 中的离域来稳定 Q 自由基中的能量是关键。本研究的目的是通过将实验获得的电子自旋共振波谱 (ESR) 测量与理论密度泛函理论 (DFT) 计算相结合,进一步研究 UE 在 Q 中的离域,并阐明 Q 的功能基团对 UE 稳定的重要性。Q 和结构相关自由基的 ESR 光谱和 DFT 计算均表明,Q 的 UE 主要在 B 环中离域,部分在 AC 环上离域。Q 的 B 环(3' 和 4')中的带负电荷的氧基团具有供电子效应,吸引并稳定 B 环中的 UE。与 Q 结构相关的自由基表明,4'位带负电荷的氧对集中 UE 在 B 环中的作用比 3'位带负电荷的氧更大。DFT 计算表明,AC 环上 3 位的 OH 基团对于将自由基集中在 C2-C3 双键上是必不可少的。所有这些影响都有助于解释 UE 的高能量如何被捕获,以及如何生成稳定的 Q,这对 Q 的抗氧化活性至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4c46/7139295/27895f42089f/ijms-21-02033-g001.jpg

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