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天然秦皮甲素是一种被忽视的自由基清除剂吗?

Is natural fraxin an overlooked radical scavenger?

作者信息

Nam Pham Cam, Thong Nguyen Minh, Hoa Nguyen Thi, Quang Duong Tuan, Hoang Loc Phuoc, Mechler Adam, Vo Quan V

机构信息

Department of Chemical Engineering, The University of Danang - University of Science and Technology Danang 550000 Vietnam.

The University of Danang, Campus in Kon Tum 704 Phan Dinh Phung Kon Tum Vietnam.

出版信息

RSC Adv. 2021 Apr 15;11(24):14269-14275. doi: 10.1039/d1ra01360b.

Abstract

Fraxin (FX) (7-hydroxy-6-methoxycoumarin 8-glucoside) is a typical natural product of the coumarin family. This compound was shown to protect endothelial cells from oxidative stress; however, the nature of its antioxidant properties is still ambiguous. In this study, we report on a systematic evaluation of the radical scavenging activity of FX using a two-tier protocol based on thermodynamic and kinetic calculations. The results show that FX has moderate activity in the aqueous physiological environment against a range of radicals including HO˙, CClO˙, CClOO˙, NO, , and HOO˙. The latter was examined in detail due to the prevalence of HOO˙ as a source of oxidative stress in biological systems. HOO˙ scavenging activity was promising in the gas phase but low in physiological environments with = 1.57 × 10, 3.13 × 10 and 2.68 × 10 M s in the gas phase, pentyl ethanoate and water solvents, respectively. The formal hydrogen transfer mechanism at the O7-H bond dominates the hydroperoxyl radical scavenging of FX in the nonpolar media, whereas, in the polar environment, the activity is exerted by the single electron transfer mechanism of the anion state. This activity falls behind typical antioxidants such as Trolox, ascorbic acid, and -resveratrol under the studied conditions. Thus FX may have multiple health benefits, but it is not an outstanding natural antioxidant.

摘要

秦皮苷(FX)(7-羟基-6-甲氧基香豆素8-葡萄糖苷)是香豆素家族的典型天然产物。该化合物已被证明可保护内皮细胞免受氧化应激;然而,其抗氧化特性的本质仍不明确。在本研究中,我们报告了基于热力学和动力学计算的两层方案对FX自由基清除活性的系统评估。结果表明,FX在水性生理环境中对一系列自由基具有中等活性,包括HO˙、CClO˙、CClOO˙、NO、 和HOO˙。由于HOO˙作为生物系统中氧化应激源的普遍性,对其进行了详细研究。HOO˙清除活性在气相中很有前景,但在生理环境中较低,在气相、乙酸戊酯和水溶剂中的清除速率常数分别为1.57×10、3.13×10和2.68×10 M s。在非极性介质中,O7-H键处的形式氢转移机制主导了FX对氢过氧自由基的清除,而在极性环境中,活性由阴离子态的单电子转移机制发挥。在所研究的条件下,这种活性落后于典型的抗氧化剂,如托洛克斯、抗坏血酸和白藜芦醇。因此,FX可能具有多种健康益处,但它不是一种出色的天然抗氧化剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/239a/8697747/e1d1fc7a5235/d1ra01360b-f1.jpg

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