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简化氧杂环及其理论计算提出的衍生物的抗氧化能力。

Antioxidant capacity of simplified oxygen heterocycles and proposed derivatives by theoretical calculations.

机构信息

Núcleo de Estudos e Seleção de Compostos Bioativos, Instituto de Ciências da Saúde, Universidade Federal do Pará, Belém, PA, 66075-110, Brazil.

Instituto de Química de São Carlos, Universidade de São Paulo, CP 780, São Carlos, SP, 13560-970, Brazil.

出版信息

J Mol Model. 2023 Jul 6;29(8):232. doi: 10.1007/s00894-023-05602-8.

Abstract

CONTEXT

Some structural properties can be involved in the antioxidant capacity of several polyphenol derivatives, among them their simplified structures. This study examines the contribution of simplified structure for the antioxidant capacity of some natural and synthetic antioxidants. The resonance structures were related to the π-type electron system of carbon-carbon double bonds between both phenyl rings. Trans-resveratrol, phenyl-benzofuran, phenyl-indenone, and benzylidene-benzofuranone are the best basic antioxidant templates among the simplified derivatives studied here. Additionally, the stilbene moiety was found on the molecules with the best antioxidant capacity. Furthermore, our investigation suggests that these compounds can be used as antioxidant scaffold for designing and developing of new promising derivatives.

METHODS

To investigate the structure-antioxidant capacity for sixteen simplified natural and proposed derivatives we have employed density functional theory and used Gaussian 09. Our DFT calculations were performed using the B3LYP functional and the 6-31+G(d,p) basis set. All electron transfer mechanisms were investigated by using values of HOMO, ionization potential, energy affinity, stabilization energies, and spin density distributions.

摘要

背景

一些结构性质可能与几种多酚衍生物的抗氧化能力有关,其中包括它们的简化结构。本研究考察了简化结构对一些天然和合成抗氧化剂抗氧化能力的贡献。共振结构与两个苯环之间的碳-碳双键的π型电子系统有关。反式白藜芦醇、苯并呋喃、苯并茚酮和亚苄基苯并呋喃酮是本研究中所研究的简化衍生物中最好的基本抗氧化模板。此外,在具有最佳抗氧化能力的分子中发现了二苯乙烯部分。此外,我们的研究表明,这些化合物可用作设计和开发新的有前途的衍生物的抗氧化支架。

方法

为了研究十六种简化的天然和提出的衍生物的结构-抗氧化能力,我们采用了密度泛函理论,并使用了 Gaussian 09。我们的 DFT 计算使用 B3LYP 函数和 6-31+G(d,p)基组进行。通过使用 HOMO、电离势、能量亲和力、稳定能和自旋密度分布值,研究了所有的电子转移机制。

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