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橙皮素-乙二醛加合物在食品和 中的形成,及其代谢和潜在的健康影响。

Formation of Hesperetin-Methylglyoxal Adducts in Food and , and Their Metabolism and Potential Health Impacts.

机构信息

Department of Food Science and Engineering, Jinan University, Guangzhou, Guangdong 510632, China.

Institute of Laboratory Animal Science, Jinan University, Guangzhou, Guangdong 510632, China.

出版信息

J Agric Food Chem. 2024 May 15;72(19):11174-11184. doi: 10.1021/acs.jafc.4c00481. Epub 2024 Apr 30.

Abstract

Polyphenols with a typical -phenol structure have been intensively investigated for scavenging of methylglyoxal (MGO) to reduce harmful substances in food. However, less attention has been paid to the formation level of polyphenol-MGO adducts in foods and and their absorption, metabolism, and health impacts. In this study, hesperitin (HPT) was found to scavenge MGO by forming two adducts, namely, 8-(1-hydroxyacetone)-hesperetin (HPT-mono-MGO) and 6-(1-hydroxyacetone)-8-(1-hydroxyacetone)-hesperetin (HPT-di-MGO). These two adducts were detected (1.6-15.9 mg/kg in total) in cookies incorporated with 0.01%-0.5% HPT. HPT-di-MGO was the main adduct detected in rat plasma after HPT consumption. The adducts were absorbed 8-30 times faster than HPT, and they underwent glucuronidation and sulfation . HPT-mono-MGO would continue to react with endogenous MGO to produce HPT-di-MGO, which effectively reduced the cytotoxicity of HPT and HPT-mono-MGO. This study provided data on the safety of employing HPT as a dietary supplement to scavenge MGO in foods.

摘要

具有典型 -phenol 结构的多酚类物质因其能清除甲基乙二醛(MGO)以减少食物中有害物质而受到广泛研究。然而,人们对食物中多酚-MGO 加合物的形成水平及其吸收、代谢和健康影响关注较少。本研究发现橙皮苷(HPT)可通过形成两种加合物来清除 MGO,即 8-(1-羟基乙酮)-橙皮苷(HPT-单-MGO)和 6-(1-羟基乙酮)-8-(1-羟基乙酮)-橙皮苷(HPT-二-MGO)来清除 MGO。这两种加合物(总量为 1.6-15.9mg/kg)在添加了 0.01%-0.5%HPT 的曲奇饼干中被检测到。HPT 消耗后,HPT-二-MGO 是大鼠血浆中主要检测到的加合物。加合物的吸收速度比 HPT 快 8-30 倍,并且它们经历了葡萄糖醛酸化和硫酸化。HPT-单-MGO 会继续与内源性 MGO 反应,生成 HPT-二-MGO,这有效地降低了 HPT 和 HPT-单-MGO 的细胞毒性。本研究为将 HPT 作为膳食补充剂用于清除食物中 MGO 的安全性提供了数据。

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