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辛弗林作为一种清除剂和促进剂,与橙皮苷协同作用,降低丙烯醛水平。

Synephrine, as a scavenger and promoter, cooperates with hesperidin to reduce acrolein levels.

机构信息

Department of Food Science and Technology, School of Food Science and Pharmaceutical Engineering, Nanjing Normal University, 2(#) Xuelin Road, Nanjing 210023, PR China.

National Liquor Product Quality Supervision and Inspection Center, Suqian Product Quality Supervision & Inspection Institute, 889(#) Fazhan Road, Suqian 223800, PR China.

出版信息

Food Chem. 2024 Jan 15;431:136896. doi: 10.1016/j.foodchem.2023.136896. Epub 2023 Aug 3.

Abstract

Acrolein (ACR) is a harmful and active aldehyde produced in processed food that endangers foods safety. We undertook this work to explore the ACR-trapping ability of hesperidin (HES) and synephrine (SYN) from the diet. After comparing their ACR-trapping abilities, the reaction pathways of HES and SNY were analyzed using LC-MS/MS, and two adducts (HES-ACR-1 and SNY-2ACR) were synthesized, and their structures were identified by NMR. Then, we not only evaluated the synergistic trapping effects of HES and SNY on ACR in the model through the Chou-Talalay method but verified it in the processing of roasted duck wings and cookies. Furthermore, based on the quantitative analysis of the ACR-adducts of HES and SNY, we demonstrated that SYN, as a promoter, could greatly improve the ACR-capturing ability of HES by forming more adducts (3-fold). Our findings could serve as a guide for using SNY and HES as new scavengers in food processing.

摘要

丙烯醛(ACR)是加工食品中产生的一种有害、活跃的醛类物质,危及食品安全。我们开展这项工作是为了探索饮食中橙皮苷(HES)和辛弗林(SYN)对丙烯醛(ACR)的捕获能力。在比较它们的 ACR 捕获能力后,我们使用 LC-MS/MS 分析了 HES 和 SNY 的反应途径,并合成了两种加合物(HES-ACR-1 和 SNY-2ACR),通过 NMR 确定了它们的结构。然后,我们不仅通过 Chou-Talalay 方法评估了 HES 和 SNY 在模型中对 ACR 的协同捕获效果,而且在烤鸭翅和饼干的加工中进行了验证。此外,基于 HES 和 SNY 的 ACR 加合物的定量分析,我们证明了辛弗林(SYN)作为促进剂,通过形成更多的加合物(增加 3 倍),可以极大地提高 HES 对 ACR 的捕获能力。我们的研究结果可以为在食品加工中使用辛弗林(SYN)和橙皮苷(HES)作为新的清除剂提供指导。

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