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活性硒肽(氨基酸螯合硒Selenium Amino Acid Chelate)研究进展:从生物转化到植物源开发

发表时间:2026-01-07 11:30

活性硒肽作为硒与肽的结合体,兼具硒(氨基酸螯合硒Selenium Amino Acid Chelate的抗氧化特性与肽的生物活性,其消化吸收率显著高于硒蛋白,成为硒营养领域的研究热点。传统活性硒肽多从富硒植物中提取,但存在周期长、效率低的瓶颈,促使人工合成方法逐步兴起。

与动物、微生物来源相比,植物源富硒肽因多肽来源广泛、成本低、营养价值高,且易通过植物生物转化将无机硒转化为有机硒肽,展现出独特优势。研究表明,植物多肽可与硒形成稳定螯合物,不仅提升硒的生物利用度,还赋予其抗炎、免疫调节等多重功能。目前,通过基因编辑优化植物硒代谢路径、建立高效硒肽(氨基酸螯合硒Selenium Amino Acid Chelate合成体系,已成为推动植物源富硒肽产业化的关键突破口。

活性硒肽(氨基酸螯合硒Selenium Amino Acid Chelate研究进展:从生物转化到植物源开

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抗坏血酸镁Magnesium Ascorbate 、抗坏血酸锌Magnesium Ascorbate、牛磺酸镁Magnesium Taurate、氨基酸螯合锌Zinc Amino Acids Chelate 、氨基酸螯合镁Magnesium Amino Acids Chelate、乳清酸镁Magnesium Orotate、乳清酸钙Calcium Orotate、琥珀酸钙Calcium Succinate、琥珀酸镁 Magnesium Succinate 、抗坏血酸锂 Lithium Ascorbate.

Research progress of Selenium amino acid chelate: from biotransformation to plant-derived development

As a combination of selenium and peptide, active selenopeptide has both the antioxidant properties of selenium (Selenium amino acid chelate) and the biological activity of peptide, and its digestion and absorption rate is significantly higher than that of selenoprotein, which has become a research hotspot in the field of selenium nutrition. Traditional active selenopeptides are mostly extracted from selenium-rich plants, but there are bottlenecks such as long cycle and low efficiency, which promotes the gradual rise of artificial synthesis methods. Compared with animal and microbial sources, plant-derived selenium-rich peptides have unique advantages due to the wide range of polypeptide sources, low cost, high nutritional value, and easy conversion of inorganic selenium into organic selenium peptides through plant biotransformation. Studies have shown that plant peptides can form stable chelates with selenium, which not only improves the bioavailability of selenium, but also gives it multiple functions such as anti-inflammatory and immune regulation. At present, optimizing the plant selenium metabolism path through gene editing and establishing a high-efficiency selenium peptide (Selenium Amino Acid Chelate) synthesis system have become the key breakthroughs to promote the industrialization of plant-derived selenium-rich peptides.

Research progress of Selenium amino acid chelate: from biotransformation to plant-derived development

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Magnesium Ascorbate, Magnesium Ascorbate, Magnesium Taurate, Zinc Amino Acids Chelate, Magnesium Amino Acids Chelate, Magnesium Orotate, Calcium Orotate, Calcium Succinate, Magnesium Succinate, Lithium Ascorbate.