基于前沿分子轨道(FMO)理论的玫瑰花抗氧化活性研究

Deriyan Senjaya, Ananto Prabowo, Ronald Hartanto
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摘要

芙蓉属植物(Hibiscus sabdariffa L.)是东南亚,尤其是印度尼西亚丰富的植物之一。玫瑰花瓣是玫瑰属植物的重要组成部分,含有丰富的抗氧化剂,如原儿茶酸(PCA)、槲皮素、抗坏血酸(AA)、花青素-3- o - sambubioside (C3OS)、花青素-3- o - glucoside (C3OG)、单宁酸(TA)等。如今,COVID-19大流行使世界上大多数人的卫生生活方式得到改善。在这个州,重复使用洗手液已经变得司空见惯。因此,开发天然的洗手液或卫生产品是很有趣的,它们更友好,对皮肤的伤害更小。玫瑰花含有几种抗氧化剂,它们具有很高的反应率,可以用来替代酒精作为卫生产品中的活性剂。因此,本研究试图借助前沿分子轨道(Frontier Molecular Orbital, FMO)理论,通过分析各抗氧化剂对单重态氧(1O2)和三重态氧(3O2)的反应可能性,对反应性最高的玫瑰花抗氧化剂进行理论研究。结果表明,PCA和AA对o2正态化的抗氧化活性最高,分别为1.22 eV和1.86 eV。C3OG和TA也是活性抗氧化剂,能结合3o2防止氧化反应,其值分别为3.61 eV和3.50 eV。这一结果支持了一种观点,即玫瑰花中的PCA和AA作为抗氧化剂和天然酸可以通过破坏病毒的蛋白膜而导致COVID-19失活。这种情况的发生是由于大量的电子转移和pH效应,它们破坏了保存病毒结构的氢键。©2022美国物理学会。版权所有。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The study of roselle flower (Hibiscus sabdariffa L.) antioxidants reactivity based on Frontier Molecular Orbital (FMO) theory
The roselle plant (Hibiscus sabdariffa L.) is one of the abundant plants in South-East Asia, especially Indonesia. The roselle flower petals, a resourceful part of the roselle plant, contain a lot of antioxidants such as Protocatechuic Acid (PCA), Quercetin, Ascorbic Acid (AA), Cyanidin-3-O-Sambubioside (C3OS), Cyanidin-3-O-Glucoside (C3OG), and Tannic Acid (TA). The COVID-19 pandemic nowadays increases the hygiene lifestyle for the majority of people in the world. The repetitive usage of hand sanitizer has now become familiar in this state. So, it is interesting to develop natural-based hand sanitizer or hygiene products that are friendlier and has a less invasive effect on the skin. Roselle flower contains several types of antioxidants which have high reactive rates that can be used to alternate the use of alcohol as an active agent in hygiene products. Therefore, this research tried to conduct a theoretical study to understand the highest reactive roselle flower antioxidants by analyzing the reaction possibility of each antioxidant to the singlet oxygen (1O2) and triplet oxygen (3O2) with the help of Frontier Molecular Orbital (FMO) theory. One of the results shows that the PCA and AA have the highest reactive antioxidant rate to normalize1O2 with values of 1.22 eV and 1.86 eV. The C3OG and TA are also reactive antioxidants that bind the3O2 to prevent oxidation reaction with values of 3.61 eV and 3.50 eV respectively. This result supports the idea that the PCA and AA in roselle flower as antioxidants and natural acids can cause the inactivation of COVID-19 by breaking the protein membrane of the viral. This happens due to massive electron transfer and pH effect which dispose of the hydrogen bonds that preserve the viral structure. © 2022 American Institute of Physics Inc.. All rights reserved.
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