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Research Article | Open Access

Suppressive effect of Armoracia rusticana and three main glucosinolates on heterocyclic amine generation in roasted fish patties and their potential mechanism analyzed by density functional theory

Zhuoming HuangaTiantian HuangaHang SuaZihao YangaJie LuoaQingwu ShenaChaoyi Xueb,c( )Wei Quana,b ( )
College of Food Science and Technology, Hunan Agricultural University, Changsha 410128, China
State Key Laboratory of Food Science and Resources, Jiangnan University, Wuxi 214122, China
Key Laboratory of Development and Utilization of Food and Medicinal Resources, Ministry of Education, Yunnan Agricultural University, Kunming 650201, China

Peer review under responsibility of Beijing Academy of Food Sciences.

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Abstract

This study investigated the suppressive eff ects of Armoracia rusticana (AR) and its three main glucosinolates on both free and bound heterocyclic amines (HAs), along with their mechanisms of free radical quenching using density functional theory. Fish patties were supplemented with varying concentrations of AR (0.5%‒1.5%) and glucosinolates (0.005%‒0.015%), showing a dose-dependent inhibition of HAs and concurrent elimination of free radicals and HAs intermediates. Glucobrassicin demonstrated the highest reactivity, which was verified by frontier orbit analysis and conceptual density functional parameters, consistent with experimental findings. Furthermore, the O-H bond connected to the sulfur atom of glucobrassicin possessed the smallest bond dissociation enthalpy (BDE) value, which indicated that this particular hydrogen atom is most susceptible to react with free radicals. Overall, AR and its glucosinolates, especially glucobrassicin, show promise as natural additives for improving food safety and quality.

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Food Science and Human Wellness
Article number: 9250324

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Cite this article:
Huang Z, Huang T, Su H, et al. Suppressive effect of Armoracia rusticana and three main glucosinolates on heterocyclic amine generation in roasted fish patties and their potential mechanism analyzed by density functional theory. Food Science and Human Wellness, 2026, 15(1): 9250324. https://doi.org/10.26599/FSHW.2024.9250324

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Received: 27 January 2024
Revised: 18 March 2024
Accepted: 11 June 2024
Published: 06 March 2026
© 2026 Beijing Academy of Food Sciences. Publishing services by Tsinghua University Press.

This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).