植物甾醇
化学
机制(生物学)
食品科学
食品标签上的健康声明
健康福利
食品
保健食品
食品包装
人类健康
功能性食品
食品添加剂
生物化学
食品工业
生物技术
作者
Jie Mi,Si Chen,Ruijie Liu,Xiaosan Wang,Ming Chang
标识
DOI:10.1080/10408398.2026.2670726
摘要
Phytosterol esters (PE) are susceptible to oxidation during thermal processing and storage, leading to the formation of potentially harmful derivatives. This review systematically elucidated the dual oxidation sites competitive mechanism of phytosterol esters (PE) between the sterol nucleus and the fatty acid chain during thermal processing and storage. The dominant oxidation pathway was dynamically regulated by key factors such as temperature, oxygen, and the food matrix. Furthermore, phytosterol oxidation products (POPs) and fatty acid oxidation products (FAOPs) exhibited distinct differences in digestibility, bioactivity, and potential health risks, including cytotoxicity and pro-inflammatory effects. Therefore, the review proposed targeted antioxidant strategies tailored to different food systems and introduced novel approaches for the design of functional lipid products with enhanced oxidative stability. This work provided a theoretical foundation for optimizing both the functionality and safety of PE-fortified foods, supporting the development of healthier and more stable functional food products.
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