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α-倒捻子素清除自由基的性质:HAT 和 RAF 机制的热力学和动力学。

Free radical scavenger properties of α-mangostin: thermodynamics and kinetics of HAT and RAF mechanisms.

机构信息

Departamento de Materia Condensada y Criogenia, Instituto de Investigaciones en Materiales, Universidad Nacional Autónoma de México, México D F.

出版信息

J Phys Chem B. 2011 Nov 3;115(43):12591-8. doi: 10.1021/jp205496u. Epub 2011 Oct 12.

Abstract

Mangosteen is a tropical fruit that presents beneficial effects on human health since it is rich in anthocyanins and xanthones, which are considered bioactive compounds that have been described as good free radical scavengers. One of its most active compounds is α-mangostin. In this report, a theoretical study on the free radical scavenger capacity of α-mangostin and its monoanion is analyzed using the density functional theory approximation. Two well-known reaction mechanisms are investigated: the hydrogen atom transfer (HAT) and the radical adduct formation (RAF). Two other mechanisms are also considered: sequential electron proton Transfer (SEPT) and proton coupled electron transfer (PCET). According to thermodynamics and kinetics, α-mangostin and its deprotonated form are good free radical scavenger through the HAT mechanism, with the anionic (deprotonated) form being more reactive than the neutral one. Their capacity to scavenge OOH free radical is similar to that of carotenes, higher than that of allicin, much higher than that of melatonin and N-acetylcysteine amide, and about 15 times lower than that of 2-propenesulfenic acid.

摘要

山竹是一种热带水果,由于富含被认为具有生物活性的花青素和呫吨酮,对人体健康有益,这些化合物被描述为良好的自由基清除剂。其中最活跃的化合物之一是α-倒捻子素。在本报告中,使用密度泛函理论近似对α-倒捻子素及其单阴离子的自由基清除能力进行了理论研究。研究了两种著名的反应机制:氢原子转移(HAT)和自由基加合物形成(RAF)。还考虑了另外两种机制:顺序电子质子转移(SEPT)和质子耦合电子转移(PCET)。根据热力学和动力学,α-倒捻子素及其去质子形式通过 HAT 机制是良好的自由基清除剂,阴离子(去质子)形式比中性形式更具反应性。它们清除 OOH 自由基的能力与类胡萝卜素相似,高于蒜素,远高于褪黑素和 N-乙酰半胱氨酸酰胺,大约比 2-丙烯亚磺酸低 15 倍。

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