Zhao Changhui, Wang Yanli, Ashaolu Tolulope Joshua
College of Food Science and Engineering, Jilin University, Changchun 130062, China.
Institute for Global Health Innovations, Duy Tan University, Da Nang 550000, Viet Nam; Faculty of Medicine, Duy Tan University, Da Nang 550000, Viet Nam.
Food Res Int. 2025 Jan;200:115471. doi: 10.1016/j.foodres.2024.115471. Epub 2024 Nov 30.
The discovery of food-derived biopeptides is becoming increasingly prevalent in the scientific community. Some peptides possess multiple biological functions that can confer health benefits through various mechanisms following ingestion. The present review targets food-derived antioxidant and mineral-binding peptides (AMBPs) including their production procedure i.e., enzymolysis, separation, and purification (through membrane separation, gel filtration, ion exchange chromatography, and high-performance liquid chromatography), followed by mass spectrometry for identification. The most effective AMBPs exhibit radical scavenging activity, detoxification of excess metals, and reduction of lipid peroxidation to facilitate mineral bioavailability. The metal complexation of AMBPs necessitates an optimal metal-to-peptide ratio, specific ligands, precursors, and complexation reactions. The bioavailability and absorbability mechanisms of AMBPs are also elucidated, encompassing gastrointestinal stability, binding mode, and cell absorption machinery. Ultimately, further considerations regarding additional research on AMBPs are provided, which will assist researchers in conducting more comprehensive studies to promote the effective and safe use of AMBPs.
食物源生物活性肽的发现正在科学界变得越来越普遍。一些肽具有多种生物学功能,摄入后可通过各种机制带来健康益处。本综述针对食物源抗氧化和矿物质结合肽(AMBPs),包括其生产过程,即酶解、分离和纯化(通过膜分离、凝胶过滤、离子交换色谱和高效液相色谱),随后通过质谱进行鉴定。最有效的AMBPs表现出自由基清除活性、过量金属解毒以及减少脂质过氧化以促进矿物质生物利用度。AMBPs的金属络合需要最佳的金属与肽比例、特定配体、前体和络合反应。还阐明了AMBPs的生物利用度和吸收机制,包括胃肠道稳定性、结合模式和细胞吸收机制。最后,提供了关于AMBPs进一步研究的其他考虑因素,这将有助于研究人员进行更全面的研究,以促进AMBPs的有效和安全使用。